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Fastening Assembly Stanford University(紧固装配斯坦福大学)
Fastening Assembly
Training Objective
After watching the video and reviewing this printed material, the viewer will
gain knowledge and understanding of the various fastening devices and assembly
methods used in manufacturing.
• Various mechanical fastener types and assembly devices are shown
• Adhesive bonding is explained
• Manual and automated assembly systems are demonstrated
• Major automated assembly machines are illustrated
Assembly in manufacturing consists of fastening various components into either a
functioning unit or a higher level subassembly. Ideally, a product design should
reduce to a minimum the number of parts requiring assembly. In most situations,
however, the fastening and assembly of several component parts is a necessity.
Assembly may be performed manually, semi-automatically, or by fully automatic
operation using mechanical fastening, and or joining methods, such as adhesive
bonding.
Mechanical Fastening
The most common mechanical fastening methods include:
• Integral fasteners
• Threaded fasteners
• Non-threaded fasteners
• Stapling
Integral fasteners are formed areas designed into sheet metal products. Integral
fasteners function by interlocking or interfering one component with other
components during assembly. The three most common types of integral fasteners
include:
• Embossed protrusions
• Edge seams
• Hemming
Embossed protrusions are formed between two sheet metal components by drawing a
small cup-shaped section through them. As the metals are squeezed through the
components they impact and expand on a die, producing a interlocked button with
a greater diameter than the drawn section. This process is also called clinching
or clinch joining. Edge seams interlock the edges of sheet metal parts by
folding the edges of both components over each other. Edge seams not only
reinforces the entire assembly, but also eliminates sharp edges. Hemming
assembles sheet metal parts together by bending
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