3ders.org – Airwolf 3D’s supplies power take a look at: What’s the strongest 3D printer filament?

July 29, 2017 | From David

There are many different 3D printing materials available to both the 3D printing hobbyist and the professional, and they can vary widely in terms of their key properties. As technology becomes more popular and accessible, it can be useful to test some of these materials to see how they compare against each other. A project recently reported on California’s 3D printer maker Airwolf3D’s website did just that, using one of the company’s machines to 3D print a hook that was then loaded with weight to determine which one the strongest comes from a number of FDM / FFF filaments.

The materials tested were two of the most common 3D printing filaments, PLA and ABS, as well as nylon 910 and polycarbonate. After the hooks were 3D printed, they were placed on the end of a rope attached to a forklift. This was used to hold a tractor tire weighing around 150 pounds, and additional weights from Airwolf’s local gym, Precision Fitness, were added to increase the stakes even further.

The first hook was 3D printed with PLA, with the printer bed heated to 60 degrees Celsius. When the printing was complete, a layer of Wolfbite Nano was added. The PLA hook turned out to be surprisingly strong for such a simple and affordable filament. It survived intact at 285 pounds, which gave it a tensile strength of 7,250 psi. However, the team did not recommend using the PLA material for structural objects or technical purposes. Its biodegradability, which makes it great for the environment, also means it won’t hold its shape for long and structural weaknesses will inevitably appear.

ABS was the next 3D printing material to be tested, a filament commonly used in all kinds of professional engineering projects, mainly for consumer products. It is such a useful material that Airwolf 3D made a desktop 3D printer that was compatible with it and was the first of its kind. In this case the AXIOM machine was used with a bed heated to 120 degrees Celsius. Wolf bite was added again to end the hook. The ABS hook was found to be much weaker than the PLA and instantly snapped with the same 285 pound load that the PLA was holding. ABS has a tensile strength of around 4,700 psi.

Next came a more exotic material that was rarely used by hobbyists. Nylon 910 is widely used to make components and its estimated tensile strength is 7000 psi. In tests, the nylon hook was found to be incredibly strong after initial flexing, requiring a total of 485 pounds of load to eventually break. Because of its strength, predictable performance, and properties, Airwolf 3D often uses nylon 910 in its own commercial products, with every 3D printer it has released in the past 3 years using nylon gears.

Finally, a polycarbonate material was used. Airwolf 3D first launched a desktop 3D printer that could print with polycarbonate in 2014 – the Airwolf HDx. High temperatures are critical when printing with polycarbonates. In this project the print head was set to 290 degrees and the bed to 145 degrees Celsius. These temperatures are not possible with most desktop FDM / FFF devices, which is why Airwolf 3D launched its groundbreaking HDx 3D printer in the first place.

In this case, the axiom was used as with the other materials, and the hook turned out to be incredibly strong. It took 685 pounds to eventually break, and it has an estimated tensile strength of 9,800 psi. This makes polycarbonate the best choice for high-strength functional components and has been crowned by Airwolf 3D as the undisputed material king for desktop 3D printing.

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International PLA Filament for 3D Printing Market 2021 High Corporations Report Covers, Influence, Company Synergy,High International locations evaluation, Disruption, Deep Dive, Core Competency, Incentivize, Outdoors The Field, Traits, And Forecasts 2026

The PLA Filaments for 3D Printing Market report has a complete analysis of the current industry status with basic footprints for PLA Filaments for 3D Printing then goes into all the facts. “Covid-19 Impact on Global and Regional PLA Filament 2021-2026 for 3D Printing Industry Production, Sales, and Consumption Status and Prospects Professional Market Research Report Standard Version”

The market size for PLA filaments for 3D printing in 2021 will grow from XXX in 2019 to XXX in 2026 with an estimated CAGR of XX. The base year considered for the study is 2019, and the 2021 market size is forecast from 2021 to 2026.

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The research team anticipates that the PLA Filament for 3D Printing market size will grow from XXX in 2019 to XXX in 2026, with an estimated CAGR of XX. The base year considered for the study is 2019, and the market size is forecast from 2021 to 2026. The main objective of this report is to help the user understand the market in terms of its definition, segmentation, market potential, influential trends, and importance to the challenges that the market is facing with 10 major regions and 50 major countries. In-depth research and analysis were carried out during the preparation of the report. Readers will find this report very helpful in getting a thorough understanding of the market. The market data and information is sourced from reliable sources such as websites, company annual reports, magazines and other sources, and has been reviewed and validated by industry experts. The facts and data are presented in the report using charts, graphs, pie charts, and other visual representations. This improves the visual representation and also helps in understanding the facts much better.

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The points discussed in the report are the major market players involved in the PLA Filaments for 3D Printing5 market such as market participants, raw material suppliers, equipment suppliers, end-users, traders, distributors, etc.

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PLA Filament data and information for the 3D Printing market participant, by region, type, application, etc. can be added according to specific requirements.

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The next part also highlights the gap between supply and consumption. In addition to the aforementioned information, the growth rate of the market for PLA filaments for 3D printing in 2025 is also explained. In addition, type and application-related consumption tables and images of the market for PLA filaments for 3D printing are given.

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Industrial Filament, Industrial Filament Market, Industrial Filament Market Research, Industrial Filament Market Report, Industrial Filament Market Comprehensive Report, Industrial Filament Market Forecast, Industrial Filament Market Growth, Industrial Filament Market in Asia, Industrial Filament Market in Australia, Industrial Filament Market in Europe, Industrial Filament Market in France, Industrial Filament Market, Industrial Filament Market in Germany, Industrial Filament Market in the UK, Industrial Filament Market in USA, Industrial Filament Market in Canada, Industrial Filament Market in Israel, Industrial Filament Market in UK Korea, Industrial Filament Market in Japan, Industrial Filament Market Forecast to 2027, Industrial Filament Market Forecast to 2027, Comprehensive Analysis of the Industrial Filament Market, Impact of COVID 19 on Industrial Filament Market, Maduratex, Hyosung, Firestone, Milliken & Company, Kolon Industr  ies, Kordsa Global, Performa nce Fibers, Kordarna Plus AS, Teijin, SRF Ltd.

Complete Report on Industrial Filament Market 2021 | Measurement, Development, Demand, Alternatives & Forecast To 2027

Industrial Filament Market Research Report is the new statistical data source added by A2Z market research.

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Various factors are responsible for the growth path of the market, which are examined in detail in the report. Additionally, the report also enumerates the restrictions that pose a threat to the global Industrial Filament Market. It also measures the bargaining power of suppliers and buyers, the threat from new entrants and product substitutes, and the level of competition in the market. The impact of the latest government policies is also analyzed in detail in the report. It studies the development of the industrial filament market between the forecast periods.

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Market segmentation: By type

Nylon filament
Polyester filament

Market segmentation: By application

Tire cord
clothes
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• • Asia Pacific (Vietnam, China, Malaysia, Japan, Philippines, Korea, Thailand, India, Indonesia and Australia)

The cost analysis of the global industrial filament market has been conducted taking into account manufacturing costs, labor costs and raw materials, as well as their market concentration rate, suppliers and price development. Other factors such as the supply chain, downstream buyers, and sourcing strategy were assessed to provide a complete and detailed view of the market. Buyers of the report will also be exposed to market positioning study that takes into account factors such as target customer, brand strategy, and pricing strategy.

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Table of Contents

Global Industrial Filaments Market Research Report 2021-2027

Chapter 1 Industrial Filament Market Overview

Chapter 2 Impact of the World Economy on Industry

Chapter 3 Global Market Competition by Manufacturers

Chapter 4 Global Production, Revenue (Value) by Region

Chapter 5 Global supply (production), consumption, export, import by region

Chapter 6 Global Production, Revenue (Value), Price History by Type

Chapter 7 Global Market Analysis by Application

Chapter 8 Analysis of Manufacturing Costs

Chapter 9 Industry Chain, Sourcing Strategy and Downstream Buyers

Chapter 10 Marketing Strategy Analysis, Distributor / Dealer

Chapter 11 Analysis of Market Effect Factors

Chapter 12 Global Industrial Filaments Market Forecast

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3D Printing Filament Market Is Projected To Attain USD 4.Four Billion By 2023, At A CAGR Of 27.1% From USD 1.Three Billion

(MENAFN – Comserve) Shibuya-ku, Tokyo, Japan, Japan, February 5, 2021, 10:30 a.m. / Comserve / – The world’s leading manufacturers of 3D printing filaments featured in this report are Stratasys, Ltd. (USA). 3D Systems Corporation (USA), Arkema SA (France), Koninklijke DSM NV (Netherlands), Materialize NV (Belgium), Evonik Industries AG (Germany)

The 3D printing filament market is estimated at $ 1.3 billion in 2018 and is projected to reach $ 4.4 billion by 2023, which is an annual growth rate of 27.1% from 2018 to 2023. Key factors expected to drive the 3D printing filament market include increasing applications in various end-use industries and increasing awareness of the use and benefits of 3D printing technology. High installation and operating costs of 3D printing devices are some of the main restraints for the growth of the 3D printing filament market.

The leading global manufacturers of 3D printing filaments featured in this report are Stratasys, Ltd. (USA), 3D Systems Corporation (USA), Arkema SA (France), Koninklijke DSM NV (Netherlands), Materialize NV (Belgium) and Evonik Industries AG (Germany), SABIC (Saudi Arabia), Clariant (Switzerland), HP Inc. (USA) and DowDuPont (USA).

Please fill out the form to receive a sample copy of this report:

“The final report will cover the impact analysis of COVID-19 on this industry (global and regional market).”

‘Plastics are expected to be the most widely consumed material in filament form in the 3D printing filament market over the forecast period.

Depending on their type, plastics are the most consumed and most frequently used material in filament form compared to other materials due to their feasibility, availability, properties and economy. Among the plastics, ABS and PLA are the most widely used materials. The ceramic material market is expected to grow at the highest CAGR during the forecast period.

‘The aerospace and defense industry segment is expected to lead the 3D printing filament market over the forecast period.
The aerospace and defense industries are expected to lead the 3D printing filament market during the forecast period. This growth is due to the increasing global demand for 3D printing filaments mainly in plastic form. Additionally, increasing applications in various end-use industries such as aerospace and defense, healthcare, fashion, education, and others are expected to drive the growth of the 3D printing filament market. In addition, growing demand from developed regions such as North America and Europe is expected in this industry.

‘The Asia-Pacific region is expected to be the fastest growing market for 3D printing filaments over the forecast period.
Due to technological advancement and growth in various end-use industries such as aerospace and defense, North America is expected to lead the 3D printing filament market during the forecast period. The Asia Pacific 3D Printing Filament market is expected to grow at the highest CAGR over the forecast period as people become increasingly informed about the benefits of 3D printing technology, materials and services.

Breakdown of Primary Interviews for the Report on the 3D Printing Filament Market:

  • By type of company: Tier 1 11.1%, Tier 2 33.3% and Tier 3 55.6%
  • By designation: C-Level 20.0%, Director Level 10.0% and other 70.0%
  • By region: North America 35.7%, Europe 28.6%, Asia-Pacific 14.3%, Middle East and Africa 14.3% and South America 7.1%

Please fill out the form to receive a sample copy of this report:

“The final report will cover the impact analysis of COVID-19 on this industry (global and regional market).”

Research reporting:
The report covers 3D Printing Filaments market by type, end-use industry and region. This report aims to estimate the size and future growth potential of the 3D Printing Filaments market across different types of segmentation. The report also includes an in-depth competitive analysis of the major market players along with their profiles and growth strategies.

Main benefits of purchasing the report
From an insight perspective, this report focused on various levels of analysis, including industry analysis (industry trends) and company profiles. These insights together encompass and discuss fundamental views of the competitive landscape, emerging and high-growth segments of the 3D printing filament market, high-growth regions, and drivers, restraints, opportunities and challenges in the 3D printing filament market.

The report provides insights into the following notices:

  • Market Penetration: Comprehensive information on different types of 3D Printing Filament offered by top players in the 3D Printing Filament Market
  • Product Development / Innovation: Detailed insights into upcoming 3D printing technologies and materials, R&D activities and new applications in various end-use industries in the 3D printing filament market
  • Market Development: Comprehensive information on the lucrative and emerging markets. The report analyzes the 3D printing filament markets across different regions.
  • Market Diversification: Comprehensive information on new products, untapped regions, recent developments and investments in the 3D printing filament market
  • Competitive Assessment: In-depth assessment of the strategies, products and manufacturing capabilities of leading companies in the 3D Printing Filament market

TABLE OF CONTENTS

1 INTRODUCTION 20
1.1 AIMS OF THE STUDY 20
1.2 MARKET DEFINITION 20
1.3 MARKET SCOPE 21
1.3.1 YEARS FOR THE STUDY 21
1.4 CURRENCY 22
1.5 UNIT CONSIDERED 22
1.6 STAKEHOLDERS 22
2 RESEARCH METHODOLOGY 23
2.1 RESEARCH DATA 23
2.1.1 SECONDARY DATA 24
2.1.1.1 Key data from secondary sources 24
2.1.2 PRIMARY DATA 25
2.1.2.1 Key data from primary sources 25
2.1.2.2 Important insights into the industry 26
2.1.2.3 Breakdown of the primary interviews 26
2.2 ESTIMATE OF MARKET SIZE 27
2.3 DATA TRIANGULATION 28
2.4 RESEARCH ASSUMPTIONS AND LIMITATIONS 29
2.4.1 ASSUMPTIONS AND RESTRICTIONS 29
2.4.2 GROWTH SCENARIO 29
3 EXECUTIVE SUMMARY 30
4 PREMIUM INSIGHTS 32
4.1 ATTRACTIVE OPPORTUNITIES ON THE 3D PRINTING FILAMENT MARKET 32
4.2 3D PRINTING FILAMENT MARKET ACCORDING TO TYPE 32
4.3 3D PRINTING FILAMENT MARKET BY TYPE AND COUNTRY 33
5 MARKET OVERVIEW 34
5.1 MARKET DYNAMICS 34
5.1.1 DRIVER 35
5.1.1.1 Rising demand from the aerospace and automotive industries 35
5.1.1.2 Increased Demand for 3D Printing Plastic Filaments from Industry for Mass Production 35
5.1.1.3 Increased demand for product modification and development 36
5.1.2 RESTRICTIONS 36

Please fill out the form to receive a sample copy of this report:

“The final report will cover the impact analysis of COVID-19 on this industry (global and regional market).”

The dynamism of the business environment in the current global economy increases the need among business people to be aware of current market situations. To meet these demands, Shibuya Data Count offers market research reports for various business professionals from various industries such as Healthcare & Pharma, IT & Telecommunications, Chemicals & Advanced Materials, Consumer Goods & Food, Energy & Energy, Manufacturing & Construction, Industrial Automation & Equipment, and Agriculture & related activities among others.

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MENAFN05022021004694010674ID1101554490

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3D Printing Filament Market Is Projected To Attain USD 4.Four Billion By 2023, At A CAGR Of 27.1% From USD 1.Three Billion

(MENAFN – Comserve) Shibuya-ku, Tokyo, Japan, Japan, February 5, 2021, 10:30 a.m. / Comserve / – The world’s leading manufacturers of 3D printing filaments featured in this report are Stratasys, Ltd. (USA). 3D Systems Corporation (USA), Arkema SA (France), Koninklijke DSM NV (Netherlands), Materialize NV (Belgium), Evonik Industries AG (Germany)

The 3D printing filament market is estimated at $ 1.3 billion in 2018 and is projected to reach $ 4.4 billion by 2023, which is an annual growth rate of 27.1% from 2018 to 2023. Key factors expected to drive the 3D printing filament market include increasing applications in various end-use industries and increasing awareness of the use and benefits of 3D printing technology. High installation and operating costs of 3D printing devices are some of the main restraints for the growth of the 3D printing filament market.

The leading global manufacturers of 3D printing filaments featured in this report are Stratasys, Ltd. (USA), 3D Systems Corporation (USA), Arkema SA (France), Koninklijke DSM NV (Netherlands), Materialize NV (Belgium) and Evonik Industries AG (Germany), SABIC (Saudi Arabia), Clariant (Switzerland), HP Inc. (USA) and DowDuPont (USA).

Please fill out the form to receive a sample copy of this report:

“The final report will cover the impact analysis of COVID-19 on this industry (global and regional market).”

‘Plastics are expected to be the most widely consumed material in filament form in the 3D printing filament market over the forecast period.

Depending on their type, plastics are the most consumed and most frequently used material in filament form compared to other materials due to their feasibility, availability, properties and economy. Among the plastics, ABS and PLA are the most widely used materials. The ceramic material market is expected to grow at the highest CAGR during the forecast period.

‘The aerospace and defense industry segment is expected to lead the 3D printing filament market over the forecast period.
The aerospace and defense industries are expected to lead the 3D printing filament market during the forecast period. This growth is due to the increasing global demand for 3D printing filaments mainly in plastic form. Additionally, increasing applications in various end-use industries such as aerospace and defense, healthcare, fashion, education, and others are expected to drive the growth of the 3D printing filament market. In addition, growing demand from developed regions such as North America and Europe is expected in this industry.

‘The Asia-Pacific region is expected to be the fastest growing market for 3D printing filaments over the forecast period.
Due to technological advancement and growth in various end-use industries such as aerospace and defense, North America is expected to lead the 3D printing filament market during the forecast period. The Asia Pacific 3D Printing Filament market is expected to grow at the highest CAGR over the forecast period as people become increasingly informed about the benefits of 3D printing technology, materials and services.

Breakdown of Primary Interviews for the Report on the 3D Printing Filament Market:

  • By type of company: Tier 1 11.1%, Tier 2 33.3% and Tier 3 55.6%
  • By designation: C-Level 20.0%, Director Level 10.0% and other 70.0%
  • By region: North America 35.7%, Europe 28.6%, Asia-Pacific 14.3%, Middle East and Africa 14.3% and South America 7.1%

Please fill out the form to receive a sample copy of this report:

“The final report will cover the impact analysis of COVID-19 on this industry (global and regional market).”

Research reporting:
The report covers 3D Printing Filaments market by type, end-use industry and region. This report aims to estimate the size and future growth potential of the 3D Printing Filaments market across different types of segmentation. The report also includes an in-depth competitive analysis of the major market players along with their profiles and growth strategies.

Main benefits of purchasing the report
From an insight perspective, this report focused on various levels of analysis, including industry analysis (industry trends) and company profiles. These insights together encompass and discuss fundamental views of the competitive landscape, emerging and high-growth segments of the 3D printing filament market, high-growth regions, and drivers, restraints, opportunities and challenges in the 3D printing filament market.

The report provides insights into the following notices:

  • Market Penetration: Comprehensive information on different types of 3D Printing Filament offered by top players in the 3D Printing Filament Market
  • Product Development / Innovation: Detailed insights into upcoming 3D printing technologies and materials, R&D activities and new applications in various end-use industries in the 3D printing filament market
  • Market Development: Comprehensive information on the lucrative and emerging markets. The report analyzes the 3D printing filament markets across different regions.
  • Market Diversification: Comprehensive information on new products, untapped regions, recent developments and investments in the 3D printing filament market
  • Competitive Assessment: In-depth assessment of the strategies, products and manufacturing capabilities of leading companies in the 3D Printing Filament market

TABLE OF CONTENTS

1 INTRODUCTION 20
1.1 AIMS OF THE STUDY 20
1.2 MARKET DEFINITION 20
1.3 MARKET SCOPE 21
1.3.1 YEARS FOR THE STUDY 21
1.4 CURRENCY 22
1.5 UNIT CONSIDERED 22
1.6 STAKEHOLDERS 22
2 RESEARCH METHODOLOGY 23
2.1 RESEARCH DATA 23
2.1.1 SECONDARY DATA 24
2.1.1.1 Key data from secondary sources 24
2.1.2 PRIMARY DATA 25
2.1.2.1 Key data from primary sources 25
2.1.2.2 Important insights into the industry 26
2.1.2.3 Breakdown of the primary interviews 26
2.2 ESTIMATE OF MARKET SIZE 27
2.3 DATA TRIANGULATION 28
2.4 RESEARCH ASSUMPTIONS AND LIMITATIONS 29
2.4.1 ASSUMPTIONS AND RESTRICTIONS 29
2.4.2 GROWTH SCENARIO 29
3 EXECUTIVE SUMMARY 30
4 PREMIUM INSIGHTS 32
4.1 ATTRACTIVE OPPORTUNITIES ON THE 3D PRINTING FILAMENT MARKET 32
4.2 3D PRINTING FILAMENT MARKET ACCORDING TO TYPE 32
4.3 3D PRINTING FILAMENT MARKET BY TYPE AND COUNTRY 33
5 MARKET OVERVIEW 34
5.1 MARKET DYNAMICS 34
5.1.1 DRIVER 35
5.1.1.1 Rising demand from the aerospace and automotive industries 35
5.1.1.2 Increased Demand for 3D Printing Plastic Filaments from Industry for Mass Production 35
5.1.1.3 Increased demand for product modification and development 36
5.1.2 RESTRICTIONS 36

Please fill out the form to receive a sample copy of this report:

“The final report will cover the impact analysis of COVID-19 on this industry (global and regional market).”

The dynamism of the business environment in the current global economy increases the need among business people to be aware of current market situations. To meet these demands, Shibuya Data Count offers market research reports for various business professionals from various industries such as Healthcare & Pharma, IT & Telecommunications, Chemicals & Advanced Materials, Consumer Goods & Food, Energy & Energy, Manufacturing & Construction, Industrial Automation & Equipment, and Agriculture & related activities among others.

For more information, please contact:

Hina Miyazu

Shibuya data number
E-mail:
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Part printed in VICTREX AM 200. Photo via INTAMSYS.

INTAMSYS and Victrex accomplice to propel high-performance PAEK filament

Manufacturer of FFF 3D printers INTAMSYS is the world’s first global reseller of polymer specialists VictrexThe new polyaryletherketone (PAEK) filament – VICTREX AM 200. Through the collaboration, INTAMSYS is also the first company in the filament fusion network proposed by Victrex to facilitate and promote the use of AM 200 and future PAEK-based filaments around the world.

Jakob Sigurdsson, CEO of Victrex, explains: “This new generation of PAEK materials for additive manufacturing from Victrex represents an important step forward and we are now excited to be working closely with INTAMSYS. Due to the excellent cooperation with companies and institutions that pursue innovations in additive manufacturing, such as INTAMSYS, as well as the continued research of Victrex, we have made sustainable progress in the development of truly innovative components that rely on the design freedom of additive manufacturing in combination with the high PAEK performance. “

Part printed in VICTREX AM 200. Photo via INTAMSYS.

Optimized for additive manufacturing

According to INTAMSYS, most of the PEEK and PEKK filaments available on the market today, although suitable for 3D printing, have been formulated for traditional manufacturing processes such as injection molding. As a result, they may not be optimal for the additive extrusion process with poor interlayer adhesion and poor Z strengths.

Victrex’s PAEK material is believed to provide relief as the company claims the AM 200 was specifically designed and optimized for 3D printing. When using an FFF 3D printer, the filament should have both higher Z and XY strengths compared to existing PAEK material.

Put the AM 200 to the test

INTAMSYS carried out some internal tests with AM 200 FUNMAT PRO 410 3D printers to see what Victrex was raving about. With XY strengths of up to 90 MPa and elongations of up to 9%, the filament turned out to be a worthy competitor to PEEK. The results also show that AM 200 has better interlayer adhesion than other non-optimized PAEK materials – at least on an INTAMSYS machine.

The duo attributes this to its slow rate of crystallization and refined viscosity, which allow for easier flow through the nozzle. The low shear rates of the material also result in greater outdoor stability once extrusion has taken place. The high wear and temperature resistance of the AM 200 as well as its fatigue and corrosion resistance make it suitable for long-term chemical contact applications.

Internal test data from INTAMSYS.  Image via INTAMSYS.Internal test data from INTAMSYS. Image via INTAMSYS.

Polyketone family polymers are usually quite similar in properties, but can have different uses. Chemical company Evonik recently his Vestakeep i4 3DF PEEK filament specially developed for medical implants. The material meets the requirements of ASTM F2026 and is suitable for long-term contact with body fluids.

Elsewhere, EOS has before released a powdery high performance, carbon fiber reinforced PEKK material for its polymer SLS systems. The high temperature HT-23 material was developed in collaboration with Boeing and is primarily for aerospace applications.

Subscribe to the 3D printing industry newsletter for the latest news in additive manufacturing. You can also stay connected by following us Twitter and continue to like us Facebook.

Looking for a career in additive manufacturing? visit 3D print jobs for a selection of roles in the industry.

The picture shown shows a part printed in VICTREX AM 200. Photo via INTAMSYS.

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Impact of COVID-19 on Narrow Woven Fabrics Market by 2027 |FILATEX, Daman Polythread, U.P. Filament (India), Bally Ribbon Mills, Great American Weaving Corporation

Affect of COVID-19 on Slender Woven Materials Market by 2027 |FILATEX, Daman Polythread, U.P. Filament (India), Bally Ribbon Mills, Nice American Weaving Company

Narrow woven fabrics market Research Report is the new statistical data source added by A2Z market research.

“The narrow woven fabrics market is growing at a high CAGR in the forecast period 2021-2027. The increasing interest of individuals in this industry is the main reason for the expansion of this market. “

Narrow woven fabrics market Research is an intelligence report with meticulous efforts to investigate the correct and valuable information. The data that has been considered is created taking into account both the existing top players and the upcoming competitors. The business strategies of the main players and the new market entry industries are examined in depth. Well-explained SWOT analysis, revenue sharing and contact information are shared in this report analysis.

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Note – For a more accurate market forecast, all of our reports will be updated prior to delivery taking into account the impact of COVID-19.

The main actors in this report are:

FILATEX, Daman Polythread, UP Filament (India), Bally Ribbon Mills, Great American Weaving Corporation, Dadra Poly Plast, India Braids, Narendra Corporation, McMichael Mills, Premco, Performance Fibers.

The main questions answered in this report:

  • What will the market size and growth rate be in the forecast year?
  • What are the key drivers for the Narrow Woven Fabrics Market?
  • What are the risks and challenges facing the market?
  • Who are the key suppliers in the Narrow Woven Fabric Market?
  • Which trend factors influence the market shares?
  • What are the key findings of Porter’s Five Forces Model?
  • What are the global opportunities for expanding the narrow woven fabrics market?

Various factors are responsible for the growth path of the market, which are examined in detail in the report. Additionally, the report also enumerates the restrictions that pose a threat to the global Slim Woven Fabrics Market. It also measures the bargaining power of suppliers and buyers, the threat from new entrants and product substitutes, and the level of competition in the market. The impact of the latest government policies is also analyzed in depth in the report. It studies the development of the narrow woven fabrics market between the forecast periods.

Global Narrow Fabrics Market Segmentation:

Market segmentation: By type

Polyester type
Nylon type
PP type

Market segmentation: By application

clothes
Home furnishings

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Regions Covered in the Global Narrow Woven Fabrics Market Report 2021:
• • The Middle East and Africa (GCC countries and Egypt)
• • North America (USA, Mexico and Canada)
• • South America (Brazil etc.)
• • Europe (Turkey, Germany, Russia, UK, Italy, France, etc.)
• • Asia Pacific (Vietnam, China, Malaysia, Japan, Philippines, Korea, Thailand, India, Indonesia and Australia)

The cost analysis of the global Narrow Woven Fabrics market has been conducted taking into account the manufacturing cost, labor cost and raw materials as well as their market concentration rate, suppliers and price development. Other factors such as the supply chain, downstream buyers and sourcing strategy were assessed to provide a complete and detailed view of the market. The report buyers will also be exposed to a market positioning study that takes into account factors such as target customer, brand strategy, and pricing strategy.

The report provides insights into the following notices:

Market penetration: Comprehensive information on the product portfolios of the top players in the narrow fabric market.

Product development / innovation: In-depth insights into the upcoming technologies, R&D activities and product launches in the market.

Competitive evaluation: In-depth assessment of the market strategies, geographic and business segments of the leading market players.

Market development: Comprehensive information on emerging markets. This report analyzes the market for different segments in different regions.

Market diversification: Comprehensive information on new products, untapped regions, recent developments and investments in the Narrow Woven Fabric market.

Table of Contents

Global Narrow Woven Fabrics Market Research Report 2021-2027

Chapter 1 Narrow Fabrics Market Review

Chapter 2 World Economic Impact on Industry

Chapter 3 Global Market Competition by Manufacturers

Chapter 4 Global Production, Revenue (Value) by Region

Chapter 5 Global supply (production), consumption, export, import by region

Chapter 6 Global Production, Revenue (Value), Price History by Type

Chapter 7 Global Market Analysis by Application

Chapter 8 Analysis of Manufacturing Costs

Chapter 9 Industry Chain, Sourcing Strategy and Downstream Buyers

Chapter 10 Marketing Strategy Analysis, Distributor / Dealer

Chapter 11 Analysis of Market Effect Factors

Chapter 12 Global Narrow Fabrics Market Forecast

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Demand for Pla 3D Printer Filament Market Report by High Distributors, Areas, Nations, Varieties, Developments & Improvements from 2015-2026

The Global Pla 3D Printer Filament Research Report is a detailed analysis of various industries on a regional and country level. This report offers a holistic view of the Pla 3D printer filament industry with forecast market situations through 2026. The report is systematically segmented to provide an analysis of the key types, applications and large companies. The technological progress, the wide range of applications, consumers and the demand for Pla 3D printer filaments in different countries are analyzed. The various factors influencing the sales, market size, share and demand of Pla 3D printer filaments are analyzed in detail. Competitive benchmarking, forecasts, market shares by company, the latest trends and the dynamics of Pla 3D Printer Filament are covered. The market attractiveness analysis for each type from 2015 to 2026 is given.

The top Pla 3D Printer Filament companies, company rankings, and competitive suppliers are listed below:

MakerBot Industries
Octave systems
AFINIA
ProtoParadigm
Aleph Objects, Inc.

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The key factors contributing to the Pla 3D Printer Filament Market growth, constraints, trends, PEST analysis, and Porter’s Five Forces Analysis are presented. The company-wide market share will be provided from 2015 to 2020. The opportunity card analysis covers the optimistic scenario, the likely scenario and the conservative scenario of the Pla 3D printer filament. Pla 3D printer filament feasibility of market investment, analysis of the impact of drivers and constraints, opportunity analysis and manufacturing costs are analyzed.

The main type comparison by sales from 2015 to 2026 is as follows:

Color changing filament
Color filament
Clean filament
Other

The highest application-level fork with revenue from 2015 to 2026 is as follows:


Household printer
Commercial printers

Review full table of contents details with all keys and submit a request for a FREE sample report to your company [email protected] https://www.reportscheck.com/shop/global-pla-3d-printer-filament-market-research-report-2015-2027-of-major-types-applications-and-competitive-vendors-in-top- Regions and Countries / # Table of Contents

Country-level analysis covers the US, Canada, Mexico, France, UK, Germany, Spain, Italy, India, Korea, Japan, Indonesia, Brazil, Saudi Arabia, the United Arab Emirates, South Africa and the rest. The full market share analysis for every Pla 3D printer filament component, deployment type, company size, and end-use industry is provided. The analysis of the Pla 3D Printer Filament market competition scenario, the main portfolio, the product portfolio, the business description, the key financial data from Reports Check and the SWOT analysis are offered.

The innovations and feasibility of Pla 3D printer filament market investment, growth rate, industry guidelines, state rules and regulations are fully studied. The sales comparison for each product type, the application will be carried out from 2015 to 2026. The business strategies of the top business players, the maximum demand for Pla 3D printer filaments in the end-user industry and the trends are given by the report check team. The industry landscape, future trends, mergers and acquisitions and forecasts are also offered.

3D filament printer plan

The report provides key insights into the following aspects of the Pla 3D printer filament industry:

  • Global market analysis with region-specific, country-specific evaluations and market competition
  • Analysis of the market driving forces, strengths, opportunities, market maturity and concentration study
  • Technological advancement, availability of raw materials, production, demand, supply and import / export statistics for Pla 3D printer filaments
  • Analysis of macro and microeconomic factors and government norms, guidelines that affect the presence of Pla 3D printer filaments
  • Comprehensive analysis of all major global players with sales, share, pricing, size, business profiles and the most important financial data of Pla 3D Printer Filament
  • Feasibility study for market investments, new product launches, mergers and acquisitions, consumer base
  • Complete analysis of suppliers, manufacturers, dealers, dealers and distributors on a global and regional level
  • All top regions and countries are analyzed and further adjustments for regional and country-specific reports are possible. This adjustment depends on customer requirements

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Sengled Edison Filament Bulb brings CES 2020 back to 1879

Sengled Edison Filament Bulb brings CES 2020 again to 1879

The folks at Sengled brought a very vintage-esque piece of tech to Las Vegas this week at CES 2020. This is Sengled’s smart LED Edison light bulb with a design that is decidedly old-fashioned. Sengled also unveiled a number of new smart (and not so smart) lighting and smart home solutions at CES 2020, including smart LED candle lamps, a new smart hub, and a smart plug with energy monitoring.

The first recorded demonstration of a working carbon lightbulb was made by Joseph Swan in February 1879. In October 1879, Edison demonstrated a working carbon light bulb. Most modern reproductions of the original carbon light bulb are commonly known as the “Edison light bulb”.

The Edison Filament Bulb, shown this week by Sengled, is “a clear light bulb with a filament that is visible at a color temperature of 2100K”. Much like the few competing lightbulbs with similar intent, this lightbulb aims to “give any home a stylish look and a cozy golden sheen”.

The Sengled Smart LED Edison filament bulb (in a 2-pack) was presented this week (January 6, 2020) at CES 2020 with a price of approx. USD 30 MSRP. A pack of Sengled Smart LED E12 candle lamps, a Sengled Smart Hub and a Sengled Smart Plug with energy monitoring were also presented this week.

The candles work in a variety of colors and fit into many non-smart devices, “chandeliers, ceiling fans, and night lights to name a few”. With the Smart Plug with energy monitoring, even non-intelligent devices can become a little more futuristic. This plug can be connected to a Sengled app, with which you can switch on and off remotely – and monitor energy consumption.

The Smart Hub is actually a third generation device, ie the “3rd Generation Sengled Smart Hub”. If you’ve had either of the first two, this latest edition has some new features. This new version supports Apple HomeKit, which in turn allows Siri to control many types of smart devices.

This hub also supports the Google Local Home SDK for smart home control over a local network, completely offline – no internet required! Earlier versions (and this version) work with Amazon Alexa support and Google Assistant. This hub supports Zigbee 3.0 and “over 64 intelligent lights and accessories”.

The Sengled Smart LED E12 Candle Lamps cost about $ 25, the Sengled Smart Hub costs about $ 30, and the Sengled Smart Plug with Energy Monitoring costs about $ 20. Sengled hasn’t announced any release dates for these new technologies yet, but it wouldn’t be a shock if they all were available in Q1 2020. Take a look at our CES 2020 hub for more gadgets in bulk, weird again!

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