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Design Fabrication i l ios i MIT Computer Controlled Devices 4.212 Design, Computation and Prof. Larry Sass Teach ng Assistant: Car os Barr Department of Architecture and Plann ng

Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

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Page 1: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

Design Fabrication

i l ios

i

MIT

Computer Controlled Devices

4.212

Design, Computation and

Prof. Larry Sass

Teach ng Assistant: Car os Barr

Department of Architecture and Plann ng

Page 2: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

4.212 Reminders

l

4 groups

Deadli

Mike Sure

Fee $100

People group who did not get the emai

Group Printing

One Person in Charge

Photo as you go

Assignment #1 Technical report

ne - October 6 After October 6 – 1 Letter grade October 13 final date to accept assignment

Page 3: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

design fabrication

[1] Physical Representation of Information

[2] Design Exploration as a Paperless Process

[3] New Languages of Design

Page 4: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

process

[ design ] + [ fabrication ]

Page 5: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

design Process

Design through Exploration of Shape and Construction

Page 6: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

fabrication process

a - CAD – Design Model

b – Construction Model

c – Cut Sheet

d – Model Assembly

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Page 8: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming
Page 9: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming
Page 10: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

[ Design Practice ]

Product Design

Car Design

Architectural Design

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2 ]

Origins of CAD and CAM

[ lectur e Monday, Sept 15, 2000

History of Numerically Controlled Machines

Rapid Prototyping & Software

Page 12: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

CAD Computer Aided Design

CAM

CAE

Computer Aided Manufacturing

Computer Aided Engineering

Page 13: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

1952 [1] Numerically Controlled Machines:

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Program

Tape Diskette

Computer Laser Cutter

FDM

Basic Components of an NC Machine

CAD file

Machine Control Unit Processing Equipment

Paper Cutter

ZCORP Modela Milling Machine NC Milling Machine Water Jet Cutter

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• Tooling)

1952 – MIT Servo Lab – Numerically Controlled Machines

Began with the US Air Force

The work Started at the Parsons Lab in the 1940s

Developed the idea of Positional Data on Punch Cards

1949 MIT Servomechanism Laboratory to develop a prototype

The first NC machines was presented in 1952 – 3 Axis milling machine

Work led to the development of the APT (Automatically Programmed

Page 16: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

\

(FM14-9-2003)

T4M6 G90G54X2.3435Y2.003M8

Z0.1

G - Code

O1234

N4G0G40G80G91G28Z0

G43Z1.0H4S4074M3

G1X2.6273Y1.7579Z0.0682F15.28 X2.3435Y2.003Z0.0364 X2.6273Y1.7579Z0.0045 X2.3435Y2.003Z-0.0273 X2.6273Y1.7579Z-0.0591 X2.3435Y2.003Z-0.0909 X2.6273Y1.7579Z-0.1227 X2.3435Y2.003Z-0.1545 X2.6273Y1.7579Z-0.1864 X2.3435Y2.003Z-0.2182

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gehry partnersDevices - Operations

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Overview of CAD CAM

1952

1959

1960

1970

1980

Manufacturing

1990

Numerical Control machines are n widely used to operate a tool positioning through computer commands. MIT’s Servo Mechanisms Laboratory demonstrated a numerically controlled 3 axis milling machine.

Control digital computer. The first application of a control using a digital computer occurred at a Texaco refinery located in Port Author Texas where a catalytic cracking unit was optimized using a linear programming algorithm

Robotic Implementation – The precursor to widespread use of robots in manufacturing processes

Computer Numerical Control – The advent of the mini computer where tools could have there own memory.

Flexible Manufacturing System – The idea of sets of machines to make a relatively wide variety of products with automatic movement of products through any sequence of machines this lead to Computer intergrated

Mass Customization – Joseph Pine

Page 20: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

Craft Manufacturing

Craft/Manufacturing

Mass Customization

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[2] Origins of CAD:

1964

Page 25: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

1963 – Sketch Pad – A Man Made Graphical Communication System

-Parametric Modeler for Engineers - Small changes to existing drawings - Great for the creation of small scientific

operations that can only be understood graphically

- For highly repetitive drawings

Page 26: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

Surface Models Solid Modeling NURB Surface li

ParametricLines

[ Model Representations ]

Mode ng Modeling

Page 27: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

[Industry ]

1970s 1980s 1960s-80s 80s1960sDiscovery

Page 28: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

1980’s

[3] Rapid Prototyping:

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Stepper Motors Gear

Screw

Basic Components of a Rapid Prototyping Machine

Table

Page 31: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

[ Stereo Lithography ]

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z

Page 33: Design, Computation and Computer Controlled Devicesdspace.mit.edu/bitstream/handle/1721.1/46358/4-212Spring2003/NR/rdon...catalytic cracking unit was optimized using a linear programming

[ 3D printing ]

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3]

Assemblies

Poser

[ Lecture Monday, Sept 15, 2000