Showing posts with label Design process and management. Show all posts
Showing posts with label Design process and management. Show all posts

Thursday, August 13, 2020

Introduction to Design of Machine Elements and Machine


Design Philosophy
http://nptel.iitm.ac.in/courses/Webcourse-contents/IIT%20Kharagpur/Machine%20design1/pdf/Module-1_Lesson-1.pdf

Product Development Approaches
http://www.nd.edu/~manufact/FME%20pdf_files/FME_Ch01.pdf



Machine Design
Ch.8 of S.B. Mathur's Mechanical Engineering (Conventional & Objective)

1. Fasteners 380 - 390
2. Keys 391-393
3. Joints 393 - 400
4. Shafts 401 - 404
5. Couplings 404 - 410
6. Riveted Joints 410 - 417
7. Welded Joints 417 - 421
8. Transmission Systems 421- 428
9. Bearings 429 - 434
10. Gears 435 - 438
11. Springs 439 - 442


1. Fasteners

Standard screw thread forms

1. BSW
2.B.A.
3. Metric
4. Square
5. Acme
6. Buttress



Types of threaded fasteners

1. Through bolts
2. Tap bolt, cap screws
3. Studs
4. Machine screws
5. Set screws

Locking devices

1.Lock nut
2. Washer

Design of bolted joints

Stresses

Initial stress

Tensile stress
Compression and shearing

External stresses

stresses due to combined load - initial and external

Power Screws

Force analysis

Design of a power screw

Design of a nut

Compound screw

Differential screw

It is necessary to determine the stresses in screw fastening due to both static and dynamic loading in order to determine their dimensions based on the strength of material being used. In order to design bolts for static loading both initial tightening and external loadings need be known.

Initial tightening load

When a nut is tightened over a screw following stresses are induced:

(a) Tensile stresses due to stretching of the bolt
(b) Torsional shear stress due to frictional resistance at the threads.
(c) Shear stress across threads
(d) Compressive or crushing stress on the threads
(e) Bending stress if the surfaces under the bolt head or nut are not perfectly normal to the bolt axis.


(a) Tensile stress

Bolts are usually designed on the basis of direct tensile stress with a large factor of safety. The initial tension in the bolt is estimated by an empirical relation P1 =284 d kN, where the nominal bolt diameter d is given in mm. The relation is used for steam tight joints. If such leakproofing is not required half of the  above estimated load may be used (142 d kN).


2. Keys 391-393
3. Joints 393 - 400
4. Shafts 401 - 404
5. Couplings 404 - 410
6. Riveted Joints 410 - 417
7. Welded Joints 417 - 421
8. Transmission Systems 421- 428
9. Bearings 429 - 434
10. Gears 435 - 438
11. Springs 439 - 442

Updated on 13 August 2020
21 July 2012

Sunday, June 14, 2015

Product Design Methods and Practices - Henry W. Stoll - Book Information

Product Design Methods and Practices

Henry W. Stoll
CRC Press, Jun 1, 1999 - 400 pages


"Focuses on functional, aesthetically pleasing, mechanically reliable, and easily made products that improve profitability for manufacturers and provide long-term satisfaction for customers. Offers concrete, practical insight immediately applicable to new product design and development projects."


https://books.google.co.in/books?id=mbtkxzX1wUMC


Table of Contents

Considerations of good design: the product design environment; design for profitability; improving early design decisions; principles of good design; total cost reduction; design process improvement.

Conceptual design: customer focused concept design; the rational building block method; formal concept selection methods; model-driven design.

Design for efficient manufacture: process-driven design; part elimination strategies; assembly design; tolerance design; component design; manufacturability improvement method. total cost reduction: elimination and simplification strategies; standardization and rationalization; internal standard components.

Design for quality: design improvement methods; failure mode and effects analysis; design review checklist; references.

https://www.crcpress.com/product/isbn/9780824775650

Monday, September 1, 2008

Engineering Design Processes - Web Pages

Engineering Design Processes
http://www.iisme.org/etp/HS%20Engineering-%20Engineering.pdf

Engineering Design Processes, Problem Solving &Creativity
Don L. Dekker
Rose-Hulman Institute of Technology


http://fie.engrng.pitt.edu/fie95/3a5/3a54/3a54.htm

The Engineering Design Process

http://www.design.engr.uvic.ca/uploads/engr400-designprocess.pdf

Usability Engineering Design Process
Brad Myers
http://www.cs.cmu.edu/~bam/uicourse/1997spring/lecture04process.html

Engineering Design Process –An
Interdisciplinary Approach
Maureen MacGillivray, Tanya Domina , Terry Lerch, Patrick Kinnicutt
Central Michigan University, Mt. Pleasant MI 48849
http://icee2007.dei.uc.pt/proceedings/papers/495.pdf



Issues in Mechanical Engineering Design Management
http://www.sigmod.org/record/issues/0406/RR3.VIPER031.pdf

Engineering design management: an information structure approach
A. YASSINE, D. FALKENBURG and K. CHELST
http://www.iese.uiuc.edu/pdlab/Papers/IJPR.pdf



TEACHING ETHICS IN THE ENGINEERING DESIGN PROCESS:
A LEGAL SCHOLAR’S PERSPECTIVE
Vincent M. Brannigan*
http://ecow.engr.wisc.edu/cgi-bin/get/epd/155/ross/brannigan_ethics.pdf