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3D 프린팅 : 소재 및 장비 기회, 동향, 시장

3D Printing: Material and Equipment Opportunities, Trends, and Markets

리서치사 Information Network
발행일 2021년 03월 상품 코드 326278
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3D 프린팅 : 소재 및 장비 기회, 동향, 시장 3D Printing: Material and Equipment Opportunities, Trends, and Markets
발행일 : 2021년 03월 페이지 정보 : 영문

본 상품은 영문 자료로 한글과 영문목차에 불일치하는 내용이 있을 경우 영문을 우선합니다. 정확한 검토를 위해 영문목차를 참고해주시기 바랍니다.

세계의 3D 프린팅 시장(프린터, 소재, 소프트웨어)는 여전히 세분화된 상태입니다. 그러나 이러한 상태는 어느 기업도 지배권을 잡지 못하고 있어 향후 3D 프린터 시장의 성장 촉진요인이 되고 있습니다.

세계의 3D 프린팅용 소재 및 장비 시장에 대해 분석했으며, 3D 프린팅의 기술적 개요와 최신 시장 동향·구조, 대표적인 소재·장비와 향후 시장 동향, 주요 기업·공급업체 개요, 주요 활용 분야와 향후 전망 등의 정보를 전해드립니다.

제1장 서론

제2장 3D 프린팅의 개요

  • 3D 프린팅의 이점
  • 3D 프린팅의 한계
  • 3D 프린팅 시장의 내역
    • 설계
    • 현재 제조 공정의 대체
    • 개인용 및 가정용 3D 프린팅
    • 소재
  • 각 지역 시장 동향
    • 유럽
    • 일본
    • 중국
    • 한국
    • 세계의 연구 개발(R&D) 동향

제3장 시장 분석

  • 서론
  • 3D 프린팅 산업
  • 세계 각 지역의 3D 프린팅 산업
  • 3D 프린터 시장 예측
  • 3D 프린팅 서비스 업체의 시장 예측
  • 3D 프린팅 산업 : 용도별
  • 소재

제4장 기술적 과제와 동향

  • 선택적 레이저 소결법(SLS)
  • 직접 선택적 레이저 소결법(DMLS)
  • 선택적 레이저 용융법(SLM)
  • 광조형법(SLA)
  • 열용해 적층법(FDM) 용융 필라멘트 제법(FFF)
  • 레이저 분말 성형(LPF)
  • PolyJet 기술
  • 레이저 분말 성형(LPF)

제5장 장비 공급업체

  • 서론
    • 시제품(Prototyping)
    • 대량 맞춤(Mass Customization)
  • 주요 프린터 제조업체 개요
    • 3D Systems
    • Stratasys
    • ExOne Company
    • ProtoPlant
    • Mark Forged
    • voxeljet AG(독일)
    • EOS GmbH(독일)
    • Arcam AB(스웨덴)
    • EnvisionTEC GmbH(독일)
    • Renishaw plc(영국)
    • SLM Solutions GmbH(독일)
    • CONCEPT Laser GmbH(독일)
    • Hoganas AB(스웨덴)
    • Materialise NV(벨기에)
    • Mcor Technologies Ltd.(아일랜드)
    • Sintermask GmbH(독일)
    • Cincinnati Inc.
    • Mitsubishi Heavy Industries
    • ExOne(XONE)
    • Beijing TierTime(중국)
    • Shaanxi(중국)
    • Digital Wax Systems (DWS)(이탈리아)
    • Blue Printer
    • Organovo
    • Shapeways(네덜란드)
    • Hewlett-Packard
  • 오픈 소스(RepRaps)

제6장 소재와 그 공급업체

  • 플라스틱/열가소성 수지
    • PLA(폴리젖산)
    • ABS(아크릴로니트릴 부타디엔 스티렌)
    • 나일론
    • ASA(아크릴로니트릴 스티렌 아크릴레이트)
    • PVA(폴리비닐 알코올 플라스틱)
    • 고성능 열플라스틱(PEEK, PEKK, PEK)
    • 폴리카보네이트 소재
    • 내충격용 폴리스티렌(HIPS) 소재
    • 열가소성 폴리우레탄
    • 폴리프로필렌
    • PET/기타 생분해성 플라스틱
    • 투명 플라스틱 소재
  • 분말
    • 폴리아미드
    • 알루마이드
    • 레진
      • 하이 디테일 레진(High Detail Resin)
      • 착색 가능 레진
      • 투명 레진
    • 금속
      • 티타늄
      • 스테인리스강
      • 청동
      • 니티놀
      • 알루미늄
      • 세라믹
  • 첨단 소재
    • 전도성 카본모르프(Conductive Carbomorph)
    • 그래핀
    • 나노재료
  • 서드파티제 소재 인프라
  • 장비 공급업체의 소재 인프라

제7장 용도

  • 서론
  • 전자기기/하이테크 제품
    • 태양광발전
    • RFID(무선 태그)
    • 베터리
    • LED
    • 디지털 섬유
    • OLED 조명 및 디스플레이
    • 스마트 윈도우
    • 프린티드 센서
  • 의료
    • 개요
    • 치과
    • 보철
    • 깁스
    • 보청기
    • 조직
    • 맞춤형 진단 및 약물 전달
    • 의료용 마이크로팩토리
  • 자동차
  • 항공우주
  • 소비자 제품
  • 군 및 방위
  • 산업 제품
  • 교육용

도표

KSM 15.04.03

List of Tables

  • 2.1 SWOT Analysis of 3D Printing
  • 2.2 Force Analysis of 3D Printing
  • 3.1 Advantages And Disadvantages Of Traditional And Subtractive Manufacturing
  • 3.2 Forecast Of 3D Printing Industry By Sector 2013-2020
  • 3.3 Global 3D Printing Market Forecast By Region 2013-2020
  • 3.4 Global Forecast For 3F Enterprise/Consumer Printers 2013-2020
  • 3.5 Market Share By Printing Process
  • 3.6 Service Bureaus North America
  • 3.7 Service Bureaus Europe And Asia
  • 3.8 Market Forecast For The 3d Printing Industry By Application - 2013-2020
  • 3.9 Global Forecast For 3D Printing Materials By Type - 2013-2020
  • 5.1 Classification Of Processes And Selective Developers
  • 5.2 Equipment Suppliers, Type, And Prices
  • 6.1 Material Cost per Pound by Technology
  • 7.1 Features Of Inks For The Manufacture Of Sensors

List of Figures

  • 3.1 Global Forecast For 3D Printers - 2013-2020
  • 3.2 Market Share Of 3D Printing Industry By Region - 2013
  • 3.3 Market Share Of 3D Printing Industry By Region - 2020
  • 3.4 Global Forecast For 3D Printers - 2013-2020
  • 3.5 Global Forecast For 3DPrinting Service Bureaus - 2013-2020
  • 3.6 Global Forecast For 3D Printing Materials - 2013-2020
  • 4.1 Diagram of Selective laser sintering (SLS)
  • 4.2 Diagram of Direct metal laser sintering (DMLS)
  • 4.3 Selective Laser Melting (SLM)
  • 4.4 Diagram of Stereolithography (SLA)
  • 4.5 Diagram of Fused Deposition Modeling (FDM)
  • 4.6 Diagram of Laser Powder Forming (LPF)
  • 4.7 Diagram of PolyJet Technology
  • 4.8 Laser Powder Forming (LPF)
  • 7.1 3D Printed Quantum Dot LED
  • 7.2 Current And Future Applications For 3D Printing For Automobile Applications

3D printing industry remains highly fragmented across different printers, materials, and software. This fragmentation in the 3D industry will be a catalyst for growth, as no single company controls the majority of the market, according to The Information Network's report The Information Network.

There are nearly 200 printer suppliers described in the report with products on the market, and an average of 1.4 different printers per supplier. This does not count home-made 3D printers that can be built in one day for less than $200.

Of the 250 printers described in the report, 200 are fused filament fabrication (FFF) printers, also called fused deposition modeling (FDM), a term penned by Stratasys. Ranging in price from $250 to $10,000, items are produced by extruding small strands of thermoplastic material to form layers as the material hardens immediately after extrusion from the nozzle.

The large market for FFF printers has cultivated another business that is further fragmenting the 3D printing market - materials. Materials represented 19.4% of the 3D printing industry in 2013, which in our analysis includes materials, printers, service bureaus, and spare parts. In the report, we note that materials will be the fastest growing sector of the industry, representing a 22.1% share in 2020.

In the report we identify 225 suppliers of the two common thermoplastic filaments for FFF printers - PLA (Polylactic Acid) and ABS (Acrylonitrile Butadiene Styrene). The growing numbers of third-party material suppliers if causing additional fragmentation of the 3D printing industry. 3D printer manufacturers such as Stratasys and 3D Systems have tried unsuccessfully to limit third-party suppliers, since they encroach on their own materials sold "with specificity" for their own 3D printers.

Table of Contents

Chapter 1 Introduction

Chapter 2 3D Printing Overview

  • 2.1 Benefits Of 3D Printing
  • 2.2 Limitations Of 3D Printing
  • 2.3 3d Market Segmentation
    • 2.3.1 Design
    • 2.3.2 Replacement Of Current Manufacturing Processes
    • 2.3.3 Personalized And Home 3D Printing
    • 2.3.4 Materials
  • 2.4 Regional Activities
    • 2.4.1 Europe
    • 2.4.2 Japan
    • 2.4.3 China
    • 2.4.4 Korea
    • 2.4.5 Global Research And Development

Chapter 3 Market Analyses

  • 3.1 Introduction
  • 3.2 3D Printing Industry
  • 3.3 3D Printing Industry By Geographic Region
  • 3.4 3D Printer Forecast
  • 3.5 3D Printing Service Bureau Forecast
  • 3.6 3D Printing Industry By Application
  • 3.7 Materials

Chapter 4 Technology Issues and Trends

  • 4.1 Selective laser sintering (SLS)
  • 4.2 Direct metal laser sintering (DMLS)
  • 4.4 Selective Laser Melting (SLM)
  • 4.4 Stereolithography (SLA)
  • 4.5 Fused Deposition Modeling (FDM) [Fused Filament Fabrication (FFF)]
  • 4.6 Laser Powder Forming (LPF)
  • 4.7 PolyJet Technology
  • 4.8 Laser Powder Forming (LPF)

Chapter 5 Equipment Suppliers

  • 5.1 Introduction
    • 5.1.1 Prototyping
    • 5.1.2 Mass Customization
  • 5.2 Profiles Of Major Printer Manufacturers
    • 5.2.1 3D Systems
    • 5.2.2 Stratasys
    • 5.2.3 ExOne Company
    • 5.2.4 ProtoPlant
    • 5.2.5 Mark Forged
    • 5.2.6 voxeljet AG (Germany)
    • 5.2.7 EOS GmbH (Germany)
    • 5.2.8 Arcam AB (Sweden)
    • 5.2.9 EnvisionTEC GmbH (Germany)
    • 5.2.10 Renishaw plc (UK)
    • 5.2.11 SLM Solutions GmbH (Germany)
    • 5.2.12 CONCEPT Laser GmbH (Germany)
    • 5.2.13 H¨gan&aml;s AB (Sweden)
    • 5.2.14 Materialise NV (Belgium)
    • 5.2.15 Mcor Technologies Ltd. (Ireland)
    • 5.2.16 Sintermask GmbH (Germany)
    • 5.2.17 Cincinnati Inc.
    • 5.2.18 Mitsubishi
    • 5.2.19 ExOne (XONE)
    • 5.2.20 Beijing TierTime (China)
    • 5.2.21 Shaanxi (China)
    • 5.2.22 Digital Wax Systems (DWS) (Italy)
    • 5.2.23 Blue Printer
    • 5.2.24 Organovo
    • 5.2.25 Shapeways (The Netherlands)
    • 5.2.26 Hewlett-Packard
  • 5.3 Open Source (RepRaps)

Chapter 6 Materials And Materials Suppliers

  • 6.1. Plastics/Thermoplastics
    • 6.1.1 PLA (Polylactic Acid)
    • 6.1.2 ABS (Acrylonitrile butadiene styrene)
    • 6.1.3 Nylon
    • 6.1.4 ASA (Aacrylonitrile styrene acrylate)
    • 6.1.5 PVA (Polyvinyl Alcohol Plastic)
    • 6.1.6 High Performance Thermoplastics (PEEK, PEKK, PEK)
    • 6.1.7 Polycarbonate Materials
    • 6.1.8 High Impact polystyrene HIPS Materials
    • 6.1.9 Thermoplastic Polyurethane
    • 6.1.10 Polypropylene
    • 6.1.11 PET and Other Biodegradables
    • 6.1.12 Transparent Plastic Materials
  • 6.2 Powders
    • 6.2.1 Polyamide
    • 6.2.2 Alumide
    • 6.2.3 Resins
      • 6.2.3.1 High Detail Resin
      • 6.2.3.2 Paintable Resin
      • 6.2.3.3 Transparent Resin
    • 6.2.4 Metals
      • 6.2.4.1 Titanium
      • 6.2.4.2 Stainless Steel
      • 6.2.4.3 Bronze
      • 6.2.4.4 Nitinol
      • 6.2.4.5 Aluminum
      • 6.2.4.6 Ceramics
  • 6.3 Advanced Materials
    • 6.3.1 Conductive Carbomorph
    • 6.3.2 Graphene
    • 6.3.3 Nanomaterials
  • 6.4 Third Party Material Infrastructure
  • 6.5 Equipment Supplier Material Infrastructure

Chapter 7 Applications

  • 7.1 Introduction
  • 7.2 Electronics/High-Tech
    • 7.2.1 Photovoltaics
    • 7.2.2 Radio Frequency Identification (RFID)
    • 7.2.3 Batteries
    • 7.2.4 LEDs
    • 7.2.5 Digital Textiles
    • 7.2.6 OLED Lighting And Displays
    • 7.2.7 Smart Windows
    • 7.2.8 Printed Sensors
  • 7.3 Medical
    • 7.3.1 Introduction
    • 7.3.2 Bones
    • 7.3.3 Dental
    • 7.3.4 Prosthetics
    • 7.3.5 Casts
    • 7.3.6 Hearing Aids
    • 7.3.7 Tissue
    • 7.3.8 Personalized Diagnostics & Drug Delivery
    • 7.3.9 Medical Microfactories
  • 7.4 Automotive
  • 7.5 Aerospace
  • 7.6 Consumer Products
  • 7.7 Military/Defense
  • 7.7 Industrial Products
  • 7.9 Educational
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