18002757 working drawings
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Working Drawings
S. P. Gaikwad
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First, here’s what we talked about
last time…
Applying Tolerances
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∙ Tolerances are represented
as Direct Lim its (A) or as
Tolerance Values (B).
Representing Tolerance Values ∙ Tolerance is the total amount a
dimension may vary and is the
difference between the maximum
and minimum limits.
(A) Tolerance = .04
(B) Tolerance = .006
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Important Terms of Toleranced Parts
A System is two or more mating parts.
Nominal Size is used to describe the general size (usually in fractions).
Basic Size – theoretical size used as a starting point for the application of
tolerances (written in decimals).
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Important Terms of Toleranced Parts
Limits – the maximum and minimum sizes shown by the tolerance dimension.
The large value on each part is the Upper Limit , the small value = Lower Limit .
Actual Size is the measured size of the finished part after machining.
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Important Terms of Toleranced Parts
Allowance – the tightest fit
between two mating parts.
(The minimum clearance or maximum interference ).
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Important Terms of Toleranced Parts
Maximum Material Condition (MMC)
The condition of a part when it contains
the greatest amount of material.
Least Material Condition (LMC)
The condition of a part when it contains
he least amount of material possible.
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Important Terms of Toleranced Parts Piece tolerance
The difference between the upper and lower limits of a single part
(.002 on the insert in this example, .004 on the slot.).
System tolerance
The sum of all the piece tolerances.
For this example (.006)
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Fit Types:
A Clearance Fit occurs when two toleranced mating parts will
always leave a space or clearance when assembled.
An Interference Fit occurs when two toleranced mating parts will
always interfere when assembled.
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Functional Dimensioning
Functional features are those that come in contact with other parts,
especially moving parts. Holes are usually functional features.
Functional Dimensioning begins with tolerancing the most important features.
Then, the material around the holes is
dimensioned (at a much looser tolerance).
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Tolerance Stack-up Occurs when dimensions are taken
from opposite directions of separate
parts to the same point of an assembly.
Dimensioned
from the
left.
Dimensioned
from the
right.
AVOID THIS!!!
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Tolerance stack-up can
be eliminated by careful
consideration and
placement of dimensions.
(Dimension from same side).
Better still, relate the two
holes directly to each other,
not to either side of the part.
The result will be the best
tolerance possible of ±0.005.
Avoiding
Tolerance
Stack-up
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Today’s Lecture - Week 10:
Working Draw ings Generally, a complete set of Working Drawings for an
assembly includes:1.) Detail Drawings of each non-standard part.
2.) An Assembly or Subassembly drawing showing
all the standard parts in a single drawing.
3.) A Bill of Materials (BOM).
4. A Title Block.
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A Detail Drawing of a Single
Part Called a Lever
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Assembly Drawing of a Piston & Rod containing 8 parts.
An assembly drawing normally consists of the following:1. All parts drawn in their operating position2. A parts list or Bill of Materials (BOM)
3.Leader lines with balloons indicating all parts.4. Machining and assembly instructions
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Detail Drawing of the retainer ring used to fasten the
rod to the piston.
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Drawing Numb
Part Numbers
Multiview Sectioned Assembly
Drawing of a Spring Pack containing…
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Pictorial Assemblies
Sectioned Assembly
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Pictorial Assemblies
Technical Illustration (Exploded) Assembly
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Title Blocks
A. Name & Address of Company
B. Title of the Drawing
C. Drawing Number
D. Names and dates of drafters,
checker, issue date ,contract number, etc.
E. Design Approval
F. Additional Approval Block
G. Drawing Scale
H. Federal Supply Code for
ManufacturersJ. Drawing Sheet Size
K. Actual or estimated weight
L. Sheet Number
…contain...
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The information normally included in a parts list is as follows:
1. Name of the part.
2. A detail number for the part in the assembly.
3. The part material, such as cast iron or bronze.
4. The number of times that part is used in the assembly.
5. The company assigned part number.
6. Other information, such as weight, stock size, etc.
Parts Lists
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Revision BlocksRecord any changes -
Found in upper-right corner
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General tolerance note for inchand millimeter dimensions
S
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ANSI drawing sheets with“zones” located on the border.
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Tabular Drawings
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Fastening is a method of connecting or joining two ormore parts together, using devices or processes.
Mechanical Fastening–
Process that uses manufactureddevices (Nuts and Bolts)
Bonding – Using material (Glue, Welding)
Forming – Using component shape itself (HVAC,
Tupperware, Velcro)
Fastening Devices
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Threaded Fasteners First Application of a screw thread was developed by
Archimedes to lift water.
1800’s Joseph Whitworth – English Standard ScrewThreads
1864 – US Screw Thread Standard
1946 – ISO Develops Metric Standard
1948 – US Develops Unified Standard
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Standard Thread Notations:
Internal Threads
External Threads
Form Chart
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Specifying Tap Drill Size:
A Tap is a tool used to make threads in holes. A Die is used to make external threads.
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Thread Representation:
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General Types of Fasteners:
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Finished vs.
Unfinished Bolts:
The difference between a finished andUnfinished hex head bolt is a washerUnder the head of the finished bolt.
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Nuts:
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Cap Screws:
Notice the chamfer (Also found on bolts).
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Machine Screws:
Machine Screws are finished with flat bottoms instead of chamfered corners.
A ½” Hex Head Machine Screw is used on this week’s assembly drawing.
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Set Screws:
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Shoulder Screw:
Check Appendix 33 for the dimensions of the shoulder screwrequired for this week’s assembly drawing
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Retaining Rings:
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Lock Washers:
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Pin Types:
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Standard Key Types:
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Rivets:
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Rivets:
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Springs:
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Create a complete setof Working Drawings