冷間圧造加工は、切削の少ない、あるいは切削を必要としない新しい圧造加工のひとつである。
金属。の作用による金属の塑性変形を利用した加工法である。
外力を受け、金型の助けを借りて、金属の体積を再分配し、移動させる。
必要な部品やブランクを製造します。冷間圧造工程は、標準的な
ボルト、ネジ、ナット、リベット、ピンなどの留め具。
1. Definition & Primary Function
A Chicago Screws with tooth is a specialized variant of Chicago fastener featuring:
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Serrated flange teeth (typically 8-16 teeth)
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Two-piece threaded assembly (male screw + female barrel)
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Permanent-lock design that bites into materials when tightened
Primarily used for vibration-proof fastening in high-stress applications where standard Chicago screws might loosen.
2. Key Components
A. Male Component
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Slotted or hex drive head
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Machine threads (usually #10-24 or 1/4″-20)
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Hardened steel construction
B. Female Barrel
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Toothed flange (teeth angle: 30-45°)
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Internal matching threads
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Barrel length options: 1/4″ to 1″
3. Unique Features
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Self-locking teeth: Cut into material surface when torqued
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Anti-rotation design: Prevents barrel spinning
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Material-gripping capability: Works with:
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Leather (8oz+ recommended)
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Wood (hardwoods preferred)
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Plastic (ABS, polycarbonate)
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Composite materials
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6. Industrial Applications
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Motorcycle/ATV components (vibration-prone areas)
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Industrial equipment panels
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Heavy-duty leather goods (saddles, tactical gear)
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Outdoor signage (wind-resistant mounting)
7. Installation Guide
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Drill pilot hole (match barrel diameter)
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Press barrel teeth into material surface
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Thread screw until teeth fully engage
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Final torque: 1/8 turn past firm resistance
8. Removal Considerations
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Requires destructive extraction in most cases
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May leave permanent tooth marks
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Replacement barrels often needed
9. Industry Standards
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ASME B18.6.4 (dimensional compliance)
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MIL-F-18866 (military binding barrels)
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ASTM F468 (nonferrous fasteners)
10. Purchasing Specifications
When ordering, specify:
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Thread size (e.g., #10-24)
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Barrel length
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Tooth configuration
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Material grade
Chicago Screws with tooth provide superior holding power for critical applications where vibration-induced loosening cannot be tolerated. Their semi-permanent nature makes them ideal for final assembly situations.
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