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3D Printing Past, Present, & Future

3D Printing: Past, Present, & Future

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Page 1: 3D Printing: Past, Present, & Future

3D Printing Past, Present, & Future

Page 2: 3D Printing: Past, Present, & Future

q  This webinar will be available afterwards at www.designworldonline.com & email

q  Q&A at the end of the presentation q  Hashtag for this webinar: #DWwebinar

Before We Start

Page 3: 3D Printing: Past, Present, & Future

Moderator Presenter

Leslie Langnau Design World

Tyler Reid GoEngineer

Page 4: 3D Printing: Past, Present, & Future

•  3D printing has moved into the mainstream no longer exclusive to engineers or CAD users

•  Transitioned from Rapid Prototyping to Additive Manufacturing New applications are quickly being discovered & implemented

•  Technology adoption and market growth trending upward 3D Prints now available in online & brick and Mortar marketplaces

3D Printing Past, Present, & Future

Page 5: 3D Printing: Past, Present, & Future

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3D Printing Past

Industrial Machine Sales

First 3DP usage

Wohlers Report 2013

First Monday, August 2013

*May

Page 6: 3D Printing: Past, Present, & Future

85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 00 01 02 03 04 05 06 07 08 09 10 11 12 13 14 15

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3D Printing Past

Page 7: 3D Printing: Past, Present, & Future

SLA FDM DMLS

SLS EBM PolyJet

LOM WDM SLM

Page 8: 3D Printing: Past, Present, & Future

SLA FDM DMLS

SLS EBM PolyJet

LOM WDM SLM

Page 9: 3D Printing: Past, Present, & Future

Gypsum Wax

Ceramics Paper

Biomaterials Food

concrete

Stainless steel Titanium Inconel

Cobalt Chrome Tool steel Aluminum

Gold Silver

Bronze

ABS ASA Nylon

Polycarbonate PLA

Acrylic PPSF Ultem

Rubber PVA

Composite polymers

Plastics Metals Other

3D Printing Materials

Page 10: 3D Printing: Past, Present, & Future

Gypsum Wax

Ceramics Paper

Biomaterials Food

concrete

Stainless steel Titanium Inconel

Cobalt Chrome Tool steel Aluminum

Gold Silver

Bronze

ABS ASA Nylon

Polycarbonate PLA

Acrylic PPSF Ultem

Rubber PVA

Composite polymers

Plastics Metals Other

3D Printing Materials

Page 11: 3D Printing: Past, Present, & Future

Aerospace/Defense Food Processing

Automotive/Motorsports Fashion

Medical Jewelry

Industrial Goods Art/Sculpture

Energy Retail

Education Electronics

3D Printing Industries

Page 12: 3D Printing: Past, Present, & Future

•  Prototyping Concept, fit, Ergonomic, & Functional Prototypes

•  Digital Manufacturing Mold Patterns, Jigs/Fixtures, Composite tooling & Injection molds

•  Marketing Physical models for advertising & focus groups

3D Printing Applications

Page 13: 3D Printing: Past, Present, & Future

Concept Modeling GoEngineer

Page 14: 3D Printing: Past, Present, & Future

FIt Prototype Integrated Engineering

Page 15: 3D Printing: Past, Present, & Future

Ergonomic Prototype Pyott Design

Page 16: 3D Printing: Past, Present, & Future

Functional Prototype Airdog

Page 17: 3D Printing: Past, Present, & Future

Mold Patterns GoEngineer

Page 18: 3D Printing: Past, Present, & Future

Mold Patterns GoEngineer

Page 19: 3D Printing: Past, Present, & Future

Assembly fIXTURES Rutland Plastics

Page 20: 3D Printing: Past, Present, & Future

Inspection fIXTURES RapidFit+

Page 21: 3D Printing: Past, Present, & Future

Composite molds Tru Design & Oak Ridge National Laboratory

Page 22: 3D Printing: Past, Present, & Future

Injection molds GoEngineer

Page 23: 3D Printing: Past, Present, & Future

Marketing Models Solid-Ideas

Page 24: 3D Printing: Past, Present, & Future

•  Increased Throughput/Speed Improvements in existing & Emerging Technologies

•  Improved materials o  Semi-crystalline thermoplastics Desirable mechanical properties o  composite Polymers metal powders, continuous fibers, aligned nanotubes o  Conductive materials Directly print conductive traces o  greater variety of photopolymers variable qualitative & quantitative attributes o  multi-material parts Metal & ceramic composite parts o  Metals post-processing Handling warp, corrosion resistance, Heat treating,

plating

•  Software improvements Greater accessibility & Capability in CAD programs

3D Printing Future

Page 25: 3D Printing: Past, Present, & Future

Source: Siemens

3D Printing Future

Page 26: 3D Printing: Past, Present, & Future

0

2

4

6

8

10

12

14

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18

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2014 2015 2016 2017 2018 2019 2020

PRevious forecast Current FOrecast

Wohlers Report 2013

Wohlers Report 2014

3D Printing Future

Global 3DP Industry

$ B

illio

n

Page 27: 3D Printing: Past, Present, & Future

Increased Throughput Carbon3d

25-100x Faster?

Page 28: 3D Printing: Past, Present, & Future

Topology Optimization

4.52 lb 28.3 in3

Paretoworks

1.36 lb 70.0 % Reduction

Page 29: 3D Printing: Past, Present, & Future

Cellular architecture

4.52 lb 28.3 in3

Titan Industries

0.62 lb 86.3 % Reduction

Page 30: 3D Printing: Past, Present, & Future

Production Parts Airbus

Page 31: 3D Printing: Past, Present, & Future

Mass Production Stratasys

Page 32: 3D Printing: Past, Present, & Future

Production Parts GE Aviation

Page 33: 3D Printing: Past, Present, & Future

Consumer Accessibility Lowes Innovation Labs

Page 34: 3D Printing: Past, Present, & Future

Questions? Leslie Langnau Design World [email protected] Twitter: @DW_3DPrinter

Tyler Reid GoEngineer [email protected]

Page 35: 3D Printing: Past, Present, & Future

Thank You q  This webinar will be available at

designworldonline.com & email

q  Tweet with hashtag #DWwebinar

q  Connect with Design World

q  Discuss this on EngineeringExchange.com