China Suppliers Factory for Precision Plastic Injection Molds for Wire Mesh Production
Plastic injection molds for wire mesh materials use injection molding to form products with complex mesh structures from molten plastic. Their core function is to achieve high-precision replication and efficient demolding. The molds feature a modular design, supporting multi-cavity parallel molding. Combined with hot runner systems and water cooling technology, they significantly improve production efficiency and product quality. They are highly adaptable to various materials, including PP and ABS, and can be enhanced with fillers to meet the needs of different applications. These molds play a crucial role in agriculture, industry, construction, and home furnishings, driving the large-scale production and diversified application of wire mesh products.
◎High-precision replication of complex mesh structures, with tolerances up to ±0.001mm, ensuring dimensional consistency and strength. Detail is handled through mechanisms such as angled pull blocks and side sliders, achieving efficient demolding.
◎Supports rapid cycles (one piece formed in as little as 3 seconds), combined with a water-cooling system to shorten the cooling cycle, suitable for mass production. Long lifespan of a single mold set significantly reduces unit cost.
◎Plastics such as PP and ABS can be used, with fillers added to enhance tensile strength, or environmentally friendly materials (such as PLA) can be used to meet specific requirements. Mold design considers draft angles and rounded corners to avoid stress concentration.
◎Modular design supports multi-cavity parallel molding, increasing production capacity; hot runner system reduces material waste and optimizes the appearance quality of the mesh.
Production of insect-proof netting, shade netting, etc., requires weather-resistant and UV-resistant materials.
Manufacturing screens and filters, requiring high-precision pores and resistance to chemical corrosion.
Used for safety nets and cushioning nets, requiring a balance between lightweight and load-bearing capacity.
Such as storage nets and decorative nets, with an emphasis on aesthetics and cost control.
| Cavity Material | P20 Steel |
| Core Material | P20 Steel |
| Mould Base Material | 45# |
| Ejection System | Pin Ejector and Ejection Plate |
| Number of Cavity | 2 Cavities (Right + Left) |
| Gate | Hot Runner System + Normal Side Gate |
| Cooling System | By Water |
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Q What materials are compatible with plastic injection molds for wire mesh?
These molds are compatible with a wide range of thermoplastics, including PP (polypropylene), ABS, and eco-friendly options such as PLA. Fillers can also be incorporated to enhance tensile strength and meet specific performance requirements.
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Q What level of dimensional precision can these molds achieve?
Our wire mesh injection molds achieve tolerances up to ±0.001mm, ensuring consistent dimensional accuracy and structural integrity across every production cycle — ideal for complex mesh geometries.
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Q How fast is the production cycle for wire mesh injection molding?
Thanks to the integrated water-cooling system and optimized mold design, cycle times can be as short as 3 seconds per piece, making these molds highly suitable for large-scale, high-volume manufacturing.
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Q What industries can benefit from plastic wire mesh injection molds?
These molds serve a broad range of industries, including agriculture (insect-proof and shade netting), industrial filtration (screens and filters), construction and packaging (safety and cushioning nets), and home furnishings (storage and decorative nets).
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Q What gate and runner system is used in these molds?
The molds utilize a hot runner system combined with a normal side gate. This configuration minimizes material waste, improves surface quality of the finished mesh, and enhances overall production efficiency.
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Q Can these molds support multi-cavity production?
Yes. The modular design supports multi-cavity parallel molding — the standard configuration features 2 cavities (right + left). This scalable approach increases production output while keeping per-unit costs low, making it ideal for mass production scenarios.


