Meat Grinder Housings Custom Metal Fabrication for Industrial Food Processing

Product Specification
Place of Origin: china
Brand Name: custom
Minimum Order Quantity: 100 pieces
Payment Terms: T/T,Western Union
Supply Ability: 5,000 units/month
Product Details
Highlight:

Custom Metal Fabrication Grinder Housing

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Industrial Meat Grinder Housing

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Food Processing Metal Grinder Housing

Features: Shock-resistant, Stable Structure
Name: Custom Industrial Meat Grinder Housing
Materials: Stainless Steel, Aluminium, Etc.
Process: Laser Cutting, Bending, Etc.
Surface Treatment: Wire Drawing, Polishing, Etc.
Fabrication Services: OEM/ODM Custom Metal Fabrication
Function: Electrical And Mechanical Protection
Category: Food Machinery Sheet Metal Parts
Product Description

Custom Metal Fabrication Industrial Meat Grinder Housings for Food Processing

This industrial-grade meat grinder housing is designed to provide structural support and protection for meat processing equipment and is suitable for use with commercial food processing machinery. Constructed entirely of high-quality stainless steel, it provides a stable mounting space for the motor system, transmission mechanism, and grinding components, while enhancing the equipment’s overall rigidity and safety. The housing features a compact design that facilitates the integration of internal modules and maintenance operations, and can be customized with openings, dimensions, and interfaces to suit different equipment models. Suitable for high-intensity, continuous-operation environments, it serves as a critical structural housing solution for meat grinders.

Technical Specifications
Material Types Carbon Steel / Stainless Steel / Aluminium / Iron, etc.
Fabrication Method Laser Cutting / Metal Bending / Tube Bending / Stamping / Machining / Welding / Riveting, etc.
Surface Treatment Wire Drawing / Surface Grinding / Polishing / Electroplating / Anodising / Powder Coating / Baking Finish / High-temperature Coating / Sand Blasting / Enamelling / Pickling & Passivation, etc.
Cutting Precision ±0.1 mm (±0.004 in)
Bending Range 0.3-10 mm (0.012 - 0.394 in)
Pressure Tonnage Range 35T - 150T
Pipe Bending Diameter Range 6-200 mm (0.236 - 7.87 in)
Acceptable Drawing Formats PDF / DWG / DXF / STEP (.step/.stp) / IGES (.iges/.igs) / SolidWorks files (.sldprt/.sldasm)
Production Support Prototype to Mass Production

Uses

Meat processing plants, central kitchens, and commercial food processing equipment manufacturing.

One-Stop Sheet Metal Solutions, From Concept to Production

  • Product Development Support
    We help turn product concepts into manufacturable products.
  • DFM Cost Optimization
    We reduce production costs through design and process optimization.
  • Consistent Quality Control
    We maintain consistent dimensions and quality from prototyping through mass production.
  • Multi-Process Integration
    We minimize communication overhead associated with working with multiple suppliers.
  • Flexible Production Capacity
    We accommodate both small-batch pilot production and mass production needs.
  • Dedicated Project Management
    We provide end-to-end project management and rapid communication and response.

Meat Grinder Housings Custom Metal Fabrication for Industrial Food Processing 0

FAQ

Q1: How is the housing secured for long-term, high-intensity use?
A1: Reinforced at key points and molded as a single unit, it resists vibration and ensures the precise and safe operation of the meat-grinding system.

Q2: How does the manufacturing process balance assembly precision and sealing?
A2: Precision sheet metal fabrication combined with post-welding correction ensures precise alignment of all components, resulting in smooth and stable assembly.

Q3: Is the housing compatible with multiple models of meat grinders?
A3: Hole positions, drive systems, and motor mounting structures can be customized to accommodate different models.

Q4: What factors should be considered when selecting sheet metal materials?
A4: Strength, corrosion resistance, formability, the operating environment, and cost should all be taken into account to achieve optimal product performance and cost-effectiveness.

Q5: How does the bending radius affect the quality of sheet metal fabrication?
A5: A proper bending radius helps prevent material cracking, improves dimensional accuracy, and ensures consistent forming quality.

Q6: How can deformation during sheet metal welding be minimized?
A6: By optimizing weld design, controlling the welding sequence, and using specialized fixtures, welding deformation can be effectively reduced and assembly accuracy improved.

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