In sheet metal processes the area to volume ratio is high.
Difference between bulk deformation and sheet metal process.
In bulk deformation processes part of the work have low volume to area ratio on the other hand in sheet metal processes part of the work have a high volume to area ratio in sheet metal processes term press working often used for sheet metal processes.
17 1 what are the differences between bulk deformation processes and sheet metal processes.
The term is used because most sheet metal operations are performed on presses.
Answer in bulk deformation the shape changes are significant and the workparts have a low area to volume ratio.
I what are the differences between bulk deformation processes and sheet metal from mecha 000 at mfi technological institute.
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The key difference between bulk deformation and sheet metal forming is that in bulk deformation the work parts have a low area to volume ratio whereas in sheet metal forming the area to volume ratio is high.
Chapter 18 review questions and problem answers review questions 18 1 what are the differences between bulk deformation processes and sheet metal processes.
In bulk deformation the shape changes are significant and the work parts have a low area to volume ratio.
What are the differences between bulk deformation processes and sheet metal processes.
Bulk causes workpiece to deform plastically pushed to fill die sheet metal is on workpiece of sheets or strips pushed into a die 17 2 extrusion is a fundamental shaping process.
Bulk causes workpiece to deform plastically pushed to fill die sheet metal is on workpiece of sheets or strips pushed into a die.
Mechanical engineering questions and answers.
Why is the term pressworking often used for sheet metal processes.
Deformation processes are important in transforming one shape of a solid material into another shape.
In sheet metal processes the area to volume ratio is high.
In bulk deformation the work parts have a low area to volume ratio whereas in sheet metalworking the area to volume ratio is high.