INDUSTRY COMPONENT

Base Tray

Base tray for industrial storage cases and organizers providing structural support and component organization

Component Specifications

Definition
A structural component designed as the foundational element of industrial storage cases and organizers, providing load-bearing support, dimensional stability, and organized compartmentalization for various industrial parts, tools, or materials. It serves as the primary interface between stored items and the storage system, ensuring proper alignment, protection, and accessibility during storage and transportation operations.
Working Principle
The base tray operates on principles of structural engineering and ergonomic design to distribute weight evenly across its surface, prevent component shifting during movement, and facilitate organized storage through compartmentalization. It interfaces with the storage case frame to create a rigid structure that protects contents from impact, vibration, and environmental factors while allowing for efficient inventory management and retrieval.
Materials
Typically manufactured from injection-molded engineering plastics (ABS, polypropylene, or polycarbonate) or stamped/pressed metals (aluminum, steel, or stainless steel). Material selection depends on load requirements, environmental conditions (chemical exposure, temperature range), and industry-specific regulations. Common specifications include: ABS with 20-30% glass fiber reinforcement for strength, 304 stainless steel for corrosion resistance, or aluminum alloys (6061-T6) for lightweight applications.
Technical Parameters
  • Weight 0.5-3.0 kg
  • Dimensions Standard sizes: 300x200mm to 600x400mm
  • Load Capacity 15-50 kg
  • Surface Finish Powder coating or anodized
  • Temperature Range -20°C to +80°C
  • Compartment Options Fixed, adjustable, or modular
Standards
ISO 9001, DIN 55440, ISO 6780

Industry Taxonomies & Aliases

Commonly used trade names and technical identifiers for Base Tray.

Parent Products

This component is used in the following industrial products

Engineering Analysis

Risks & Mitigation
  • Structural failure under excessive load
  • Material degradation from chemical exposure
  • Warping due to temperature variations
  • Compatibility issues with storage systems
  • Ergonomic hazards during handling
FMEA Triads
Trigger: Insufficient material thickness or reinforcement
Failure: Structural deformation or collapse under load
Mitigation: Implement finite element analysis during design, use reinforced materials, conduct load testing, and specify clear weight limits
Trigger: Incompatible material selection for operating environment
Failure: Cracking, corrosion, or chemical degradation
Mitigation: Perform material compatibility testing, specify appropriate coatings or treatments, and follow industry standards for material selection

Industrial Ecosystem

Compatible With

Interchangeable Parts

Compliance & Inspection

Tolerance
±0.5mm dimensional tolerance, flatness within 0.2mm across surface
Test Method
ASTM D638 for plastic tensile strength, ISO 12100 for safety, load testing per manufacturer specifications, environmental testing per industry requirements

Buyer Feedback

★★★★☆ 4.6 / 5.0 (32 reviews)

"Impressive build quality. Especially the technical reliability is very stable during long-term operation."

"As a professional in the Machinery and Equipment Manufacturing sector, I confirm this Base Tray meets all ISO standards."

"Standard OEM quality for Machinery and Equipment Manufacturing applications. The Base Tray arrived with full certification."

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Frequently Asked Questions

What are the main functions of a base tray in industrial storage systems?

The base tray provides structural support, organizes components through compartments, protects items from damage during handling, facilitates inventory management, and ensures compatibility with storage case frames and transportation systems.

How do I select the right material for a base tray application?

Consider load requirements (weight and distribution), environmental conditions (chemical exposure, temperature, humidity), regulatory compliance needs, durability requirements, and cost factors. Engineering plastics offer chemical resistance and lightweight properties, while metals provide higher strength and temperature tolerance.

Can I contact factories directly?

Yes, each factory profile provides direct contact information.

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Base Structure Base/End Cap