INDUSTRY COMPONENT

Housing / Mounting Bracket

Structural housing and mounting bracket for stroke length adjuster and speed controller assemblies in industrial machinery.

Component Specifications

Definition
A precision-engineered structural component that serves as both protective housing and mounting interface for stroke length adjuster and speed controller mechanisms in industrial equipment. It provides mechanical support, alignment, vibration damping, and environmental protection for internal components while ensuring proper integration with machine frames.
Working Principle
The housing provides structural integrity and protection through rigid enclosure design, while the mounting bracket functions as an interface using mechanical fastening principles (bolted connections, alignment pins) to secure the adjuster/controller assembly to the machine frame. It distributes operational loads, isolates vibration through material damping properties, and maintains component alignment through precision machining tolerances.
Materials
Typically manufactured from aluminum alloys (6061-T6, 7075-T6) for lightweight corrosion resistance, or carbon steel (AISI 1018, 1045) for high-strength applications. Surface treatments include anodizing (aluminum), powder coating, or zinc plating for corrosion protection.
Technical Parameters
  • Weight 0.5-3.5 kg
  • IP_Rating IP54-IP65
  • Dimensions 150-400mm L x 100-250mm W x 50-150mm H
  • Load_Capacity 50-200 kg static
  • Surface_Finish Ra 3.2 μm
  • Temperature_Range -20°C to 120°C
  • Flatness_Tolerance ±0.1mm
  • Mounting_Hole_Pattern M6-M12 threaded
Standards
ISO 2768, DIN 6930, ISO 9013, DIN 17100

Industry Taxonomies & Aliases

Commonly used trade names and technical identifiers for Housing / Mounting Bracket.

Parent Products

This component is used in the following industrial products

Engineering Analysis

Risks & Mitigation
  • Improper installation causing misalignment
  • Material fatigue under cyclic loading
  • Corrosion in harsh environments
  • Vibration-induced loosening of fasteners
  • Thermal expansion mismatch with mounted components
FMEA Triads
Trigger: Insufficient fastener torque
Failure: Bracket loosening during operation
Mitigation: Implement torque-controlled installation procedures and use thread-locking compounds
Trigger: Material corrosion in aggressive environments
Failure: Structural degradation and loss of mounting integrity
Mitigation: Specify corrosion-resistant materials and protective coatings based on environmental conditions
Trigger: Excessive vibration loads
Failure: Fatigue cracking at stress concentration points
Mitigation: Incorporate vibration-damping materials and redesign stress concentrations with fillets or reinforcements

Industrial Ecosystem

Compatible With

Interchangeable Parts

Compliance & Inspection

Tolerance
Geometric tolerances per ISO 2768-m, dimensional tolerances ±0.2mm for critical features
Test Method
Dimensional verification via CMM, load testing per ISO 898-1 for fasteners, vibration testing per ISO 10816, corrosion resistance per ASTM B117 salt spray test

Buyer Feedback

★★★★☆ 4.9 / 5.0 (19 reviews)

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Frequently Asked Questions

What materials are best for housing/mounting brackets in corrosive environments?

Aluminum alloys with anodized coatings or stainless steel (304, 316) provide optimal corrosion resistance in humid or chemical environments while maintaining structural integrity.

How do I ensure proper alignment when installing this component?

Use precision alignment pins during installation, verify flatness with dial indicators, and follow torque specifications for mounting bolts to prevent distortion and ensure optimal component performance.

Can this bracket be customized for different machine frames?

Yes, mounting hole patterns, dimensions, and material specifications can be customized to match specific machine interfaces while maintaining structural and functional requirements.

Can I contact factories directly?

Yes, each factory profile provides direct contact information.

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