INDUSTRY COMPONENT

Frame/Chassis

Frame/Chassis is the structural backbone of Cell Feeder/Input Conveyor systems, providing rigidity, alignment, and mounting points for all components.

Component Specifications

Definition
The Frame/Chassis in Cell Feeder/Input Conveyor systems is a precision-engineered structural assembly designed to support mechanical loads, maintain geometric alignment of conveyor elements, absorb operational vibrations, and provide secure mounting interfaces for motors, rollers, sensors, and control systems. It ensures dimensional stability under dynamic conditions while facilitating maintenance access.
Working Principle
Provides static and dynamic structural integrity through rigid construction, distributing operational loads (weight, torque, vibration) across the assembly to prevent deformation, misalignment, or resonance that could disrupt material flow accuracy.
Materials
Typically constructed from ASTM A36/A572 carbon steel, aluminum alloy 6061-T6, or stainless steel AISI 304/316 for corrosion resistance. Surface treatments include powder coating, galvanization, or anodizing.
Technical Parameters
ParameterTypical rangeNotes & selection driver
ModularityBolted assembly design
Load Capacity500-5000 kg
Surface FinishRAL 9005 powder coat
Natural Frequency>15 Hz
Dimensional Tolerance±1.5 mm/m

Ranges are indicative industry figures for RFQ preparation, not a supplier commitment. Confirm every value and standard with the legal manufacturer before ordering.

Standards
ISO 12100, DIN 15018, ISO 8525

Parent Products

This component is used in the following industrial products

Engineering Analysis

Risks & Mitigation
  • Structural fatigue from cyclic loading
  • Misalignment due to foundation settling
  • Corrosion in humid environments
  • Resonance vibration at operational speeds
FMEA Triads
Trigger: Inadequate material thickness
Failure: Permanent deformation under load
Mitigation: Implement FEA analysis during design phase and specify minimum yield strength materials
Trigger: Improper bolt torque during assembly
Failure: Joint loosening causing misalignment
Mitigation: Use calibrated torque wrenches and implement assembly verification procedures

Industrial Ecosystem

Compatible With

Typical Suppliers & Equivalents

Compliance & Inspection

Tolerance
±1.5 mm overall dimensional, ±0.5 mm/m flatness
Test Method
Laser alignment verification, load testing to 150% rated capacity, vibration analysis per ISO 10816

Procurement Evaluation Criteria

A practical evidence checklist for RFQ preparation and supplier evaluation.

Technical documentation
Request current drawings, revision history, and a signed specification sheet.
Manufacturing capability
Verify equipment lists, process limits, capacity, and representative production evidence.
Inspection readiness
Confirm test methods, calibrated equipment, sampling plans, and traceable reports.
Supplier transparency
Check the legal entity, factory address, ownership, certifications, and direct contacts.

CNFX does not score or rank suppliers. Buyers must verify all claims and documents with the legal manufacturer before ordering.

Manufacturers of Frame/Chassis

Manufacturer profiles associated with Frame/Chassis.

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Frequently Asked Questions

What are the key design considerations for a conveyor frame?

Key considerations include load capacity calculations, vibration damping, corrosion resistance, modularity for maintenance, and compliance with safety standards like ISO 12100.

Can frames be customized for different conveyor lengths?

Yes, modular designs allow extension through standardized joining sections while maintaining structural integrity and alignment specifications.

Data Basis

Editorial classification, named public sources where available, and source-reviewed manufacturer records. See the editorial policy.

Preliminary Technical Classification
This page supports structured research, RFQ preparation, and supplier evaluation. It does not replace buyer-led supplier qualification, standards review, or technical approval.

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