INDUSTRY COMPONENT

Body Housing

Structural housing for precision dispensing heads that protects internal components and ensures accurate fluid delivery.

Component Specifications

Definition
The Body Housing is the primary structural component of a precision dispensing head, designed to enclose and protect critical internal mechanisms such as valves, nozzles, and sensors. It maintains alignment, provides mounting interfaces, and ensures environmental sealing for consistent performance in industrial applications requiring micron-level accuracy.
Working Principle
Provides mechanical stability and protection for internal dispensing components, maintaining precise alignment between the nozzle and valve systems to ensure accurate fluid metering and droplet formation through controlled pressure and flow pathways.
Materials
Typically manufactured from 316L stainless steel (for corrosion resistance), aluminum alloys (for lightweight applications), or engineered plastics like PEEK (for chemical compatibility). Surface finishes may include electropolishing or anodizing.
Technical Parameters
  • Weight 50-200g
  • Sealing IP65 or higher
  • Mounting Standard flange or threaded interface
  • Dimensions Varies by model (e.g., 40mm diameter x 80mm length)
  • Pressure Rating Up to 100 psi
  • Temperature Range -20°C to 120°C
Standards
ISO 9001, DIN 11851, ISO 14001

Industry Taxonomies & Aliases

Commonly used trade names and technical identifiers for Body Housing.

Parent Products

This component is used in the following industrial products

Engineering Analysis

Risks & Mitigation
  • Material fatigue under cyclic loading
  • Corrosion from aggressive fluids
  • Misalignment due to thermal expansion
  • Seal failure leading to leaks
FMEA Triads
Trigger: Vibration from machine operation
Failure: Crack formation in housing
Mitigation: Use damping materials, optimize wall thickness, and conduct regular inspections.
Trigger: Exposure to corrosive chemicals
Failure: Material degradation and leaks
Mitigation: Select corrosion-resistant materials, apply protective coatings, and implement routine cleaning protocols.
Trigger: Thermal cycling
Failure: Dimensional instability affecting alignment
Mitigation: Design with thermal expansion coefficients in mind, use temperature-stable materials, and incorporate thermal management features.

Industrial Ecosystem

Compatible With

Interchangeable Parts

Compliance & Inspection

Tolerance
±0.05mm for critical dimensions
Test Method
Dimensional inspection via CMM, pressure testing per ISO 228, and material certification per ASTM standards

Buyer Feedback

★★★★☆ 4.7 / 5.0 (23 reviews)

"Testing the Body Housing now; the technical reliability results are within 1% of the laboratory datasheet."

"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 Body Housing meets all ISO standards."

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Sensor Element
Core sensing component in industrial smart sensor modules that converts physical parameters into electrical signals for process monitoring and control.

Frequently Asked Questions

What materials are best for corrosive fluid applications?

316L stainless steel or PEEK plastic are recommended for corrosive environments due to their chemical resistance and durability.

How does the housing affect dispensing accuracy?

It maintains precise alignment of internal components, minimizes vibration, and ensures consistent pressure distribution, directly impacting droplet size and placement accuracy.

Can housings be customized for specific machines?

Yes, customizations include mounting interfaces, material selection, and integrated features like sensor ports or cooling channels.

Can I contact factories directly?

Yes, each factory profile provides direct contact information.

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