Bumpers, Feet, Pads, Grips

Image Part Number Description / PDF Quantity Rfq
SJ5782

SJ5782

3M

BUMPER PROTECTIVE PRODUCTS SJ578

0

SJ-5017 (BROWN)

SJ-5017 (BROWN)

3M

BUMPER CYLINDRICAL 0.75" DIA BRN

0

SJ-5518 (WHITE)

SJ-5518 (WHITE)

3M

BUMPER SQUARE 0.5"L X 0.5"W WHT

0

SJ6208

SJ6208

3M

BUMPER ROLLSTOCK 108'L X 9"W BLK

0

SJ5816

SJ5816

3M

BUMPER ROLLSTOCK 108'L X 9"W BLK

0

SJ6016

SJ6016

3M

BUMPER ROLLSTOCK 108'L X 9"W BLK

0

SJ5632

SJ5632

3M

BUMPER ROLLSTOCK 216'L X 9"W CLR

0

SJ5003

SJ5003

3M

BUMPER CYLINDRICAL 0.44" DIA CLR

0

SJ-5514 (BROWN)

SJ-5514 (BROWN)

3M

BUMPER SQU 0.81"L X 0.81"W BRN

0

SJ-5518 (BROWN)

SJ-5518 (BROWN)

3M

BUMPER SQUARE 0.5"L X 0.5"W BRN

0

SJ5474

SJ5474

3M

BUMPER RECT 0.375"L X 0.2"W GRY

0

SJ5916

SJ5916

3M

BUMPER ROLLSTOCK 108'L X 9"W BLK

0

SJ67A1

SJ67A1

3M

BUMPER CYLIN 0.312" DIA BLK

0

SJ6118

SJ6118

3M

BUMPER SQUARE 0.5"L X 0.5"W BLK

0

SJ5608

SJ5608

3M

BUMPER ROLLSTOCK 108'L X 9"W CLR

0

SJ-5523 (BROWN)

SJ-5523 (BROWN)

3M

BUMPER SQU 0.812"L X 0.812"W BRN

0

SJ5393

SJ5393

3M

BUMPER PROTECTIVE PRODUCTS SJ539

0

SJ5832BR

SJ5832BR

3M

BUMPER ROLLSTOCK 216'L X 9"W BRN

0

Bumpers, Feet, Pads, Grips

1. Overview

Bumpers, feet, pads, and grips are critical hardware components designed to provide mechanical support, vibration damping, surface protection, and slip resistance. These accessories play a vital role in enhancing equipment durability, safety, and operational efficiency across industrial, commercial, and consumer applications. Their importance has grown with advancements in automation, robotics, and precision manufacturing.

2. Major Types and Functional Classification

Type Functional Characteristics Application Examples
Rubber Bumpers High impact absorption, noise reduction, chemical resistance Industrial machinery guards, automotive door seals
Adjustable Feet Load distribution, height leveling, vibration isolation CNC machine bases, server racks
Anti-Slip Pads High friction coefficient (0.8-1.2), temperature resistance Electronic device bases, medical equipment
Ergonomic Grips Vibration damping, thermal insulation, tactile feedback Power tools, robotic arms, mobility aids

3. Structural Composition

Typical construction includes: - Base Materials: Thermoplastic elastomers (TPE), silicone rubber, polyurethane - Core Structure: Metal inserts (steel/zinc alloys) for load-bearing - Surface Treatment: Textured patterns for enhanced friction - Mounting Systems: Threaded studs, adhesive backing, snap-fit mechanisms

4. Key Technical Parameters

Parameter Description Importance
Hardness (Shore A) Material rigidity (30-90 Shore A) Directly affects shock absorption capability
Load Capacity Static/dynamic weight limits (5-500 kg) Ensures structural integrity under stress
Temperature Range Operational limits (-40 C to 150 C) Determines environmental compatibility
Friction Coefficient Surface grip performance (0.6-1.5) Critical for slip prevention

5. Application Fields

  • Industrial Automation: Conveyor systems, robotic workcells
  • Consumer Electronics: Display stands, audio equipment isolation
  • Medical Equipment: MRI machines, diagnostic devices
  • Transportation: Automotive trim components, railcar buffers
  • Case Study: Semiconductor manufacturing equipment using anti-vibration pads to maintain sub-micron precision

6. Leading Manufacturers and Products

Manufacturer Key Products Specialization
3M Scotch-Weld pads Adhesive-based mounting solutions
Rubbermaid Commercial Shock-absorbing bumpers Heavy-duty industrial applications
McMaster-Carr Adjustable leveling feet Modular mechanical components

7. Selection Guidelines

Key considerations include: - Environmental factors (chemical exposure, UV resistance) - Load requirements (static vs dynamic forces) - Surface compatibility (delicate surfaces require softer materials) - Regulatory compliance (FDA for food processing, RoHS for electronics) - Maintenance accessibility (replaceable modular designs)

8. Industry Trends

Current developments include: - Smart materials with variable durometer properties - Nanotechnology-enhanced friction surfaces - 4D-printed components with shape-memory capabilities - Increased adoption of bio-based polymers for sustainability - Integration with IoT sensors for condition monitoring

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