Custom 304 Stainless Steel Wire Mesh Conveyor Belt - Compound Weave Design for Small Parts, 100-2000mm Width Options
Price:
Negotiable
MOQ:
200pcs
Delivery Time:
15-25days
Brand:
Xmesh
Product Description
Customized 304 Stainless Steel Wire Mesh Conveyor Belt
Professional-grade spiral woven wire mesh conveyor belt engineered for industrial applications requiring high strength and durability. Features compound balance weave construction with extremely close mesh spacing for handling small components.
Key Features & Benefits
High Density Mesh Design
Minimal open area prevents loss of small items like nuts, bolts, screws, and electronic components
Superior Tensile Strength
Multiple spirals and cross rods per pitch provide exceptional load-bearing capacity
Temperature Resistance
Withstands high-temperature processes up to 800°C depending on material selection
Extended Service Life
Premium materials and reinforced structure ensure long-term reliability
Technical Specifications
| Material Options | 304 Stainless Steel, High Carbon Steel, Galvanized Iron, Nickel-Chrome Alloy |
|---|---|
| Mesh Types | Compound Balanced, Balanced with Rod, Double Strand, Spiral Weave |
| Temperature Range | Up to 800°C (depending on material) |
| Width Options | Custom sizes from 100mm to 2000mm available |
Industrial Applications
- Food Processing: Baking biscuits, cookies, snack foods
- Manufacturing: Nuts, bolts, screws, nails, small parts
- Chemical Industry: Acid and alkali environment filtration
- Petroleum: Mud screening and filtering operations
- Plating Industry: Acid cleaning mesh applications
Company Capabilities
With over 40 years of wire mesh manufacturing experience, our technical team provides comprehensive solutions and quality assurance for industrial applications worldwide.
Product Gallery
Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Hebei Qijie Wire Mesh MFG Co., Ltd
Location
Wanggezhuang industry,Anping County, Hebei province, China
Contact Person
Devin Wang