Customizable Surface and Material 1+1 Cavity ABS 738hhrc35-40 Mold Steel Plastic Laser Housing Base Molding

This custom single-cavity precision injection mold is specially engineered for manufacturing ergonomic plastic structural accessories of laser processing, laser marking and laser testing equipment. The molded curved plastic part serves as equipment positioning bracket, sensor protective housing, operation positioning base and anti-collision fitting for laser industrial devices, with high-gloss seamless surface, reserved assembly positioning holes and limit grooves, delivering stable dimensional consistency, dustproof and anti-corrosion performance for long-term industrial workshop operation.
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  • 25139

  • YIXUN mold

  • 8480419090

This custom single-cavity precision injection mold is specially engineered for manufacturing ergonomic plastic structural accessories of laser processing, laser marking and laser testing equipment. The molded curved plastic part serves as equipment positioning bracket, sensor protective housing, operation positioning base and anti-collision fitting for laser industrial devices, with high-gloss seamless surface, reserved assembly positioning holes and limit grooves, delivering stable dimensional consistency, dustproof and anti-corrosion performance for long-term industrial workshop operation.

Core Product Features

1. Anti-Corrosion Mold Material for Long-Term Industrial Production

  • Mold core and cavity adopt S136 pre-hardened stainless mold steel, featuring excellent rust resistance, wear resistance and acid-base corrosion resistance, adapting to harsh factory environments with cutting fluid, dust and volatile chemical agents in laser processing workshops.

  • Standard mold service life ranges from 500,000 to 1,000,000 shots, ensuring stable batch production of laser equipment spare parts with ultra-low defect rate.

  • Adopts 5-axis CNC + EDM precision machining, dimensional tolerance controlled within ±0.01mm, to guarantee interchangeability of spare parts for laser equipment.

2. High-Gloss Dust-Proof Surface for Laser Industrial Scenarios

  • Mold cavity is processed with mirror polishing technology, the finished plastic part has smooth burr-free seamless surface, effectively preventing dust accumulation which may interfere with laser sensor signal transmission and optical path accuracy.

  • Ergonomic curved structure effectively buffers mechanical vibration generated during laser equipment high-frequency operation, protecting internal precision optical modules, circuit boards and laser transmitters from collision damage.

  • Pre-reserved positioning holes and limit concave structure realize fast locking assembly, ensuring no displacement deviation during long-term continuous laser operation.

3. Balanced & Stable Injection Mold Structure

  • High-rigidity standard mold base with precision guide sleeve positioning and spring balance ejection system, stable mold opening and closing, effectively avoiding product warpage, flash and deformation in continuous high-speed injection molding.

  • Optimized cold runner balanced feeding design ensures uniform melt filling and consistent shrinkage rate, greatly reducing dimensional deviation between batches of laser equipment plastic parts.

  • Reasonable draft angle design avoids surface scratch during ejection, protecting the high-precision appearance required for laser industrial equipment.

4. Industrial-Grade Customization for Laser Equipment

  • Accept customized development based on customer STEP/IGS 3D drawings or 2D engineering drawings; provide DFM structural optimization and mold flow analysis in advance to avoid molding defects such as shrinkage, warpage and short shot.

  • Optional industrial engineering plastics: high-impact ABS, high-temperature resistant PC, flame-retardant PC/ABS, anti-static PP, which can meet anti-static, high-temperature, dust-proof and flame-retardant requirements of laser equipment.

  • Support customized color, matte/textured surface treatment, conductive coating and laser marking for equipment model and parameter coding.


Technical Specification Table

Item Detailed Parameter
Mold Cavity 1 Cavity Custom Design
Application Laser Marking / Laser Cutting / Laser Testing Equipment Plastic Bracket & Protective Parts
Mold Core & Cavity Material S136 Anti-Corrosion Stainless Mold Steel
Mold Surface Treatment High Gloss Mirror Polishing
Dimensional Precision ±0.01mm
Standard Mold Lifespan 500,000 ~ 1,000,000 Shots
Recommended Raw Materials Flame-retardant ABS, High-temperature PC, Anti-static PC/ABS
Mold Runner Type Cold Runner
Compliance Standard RoHS Industrial Environmental Standard

Plastic Laser Housing Base Molding

Application Scenarios

  1. Laser marking machine optical module positioning brackets and sensor protective covers

  2. Fiber laser cutting equipment internal anti-vibration structural fittings

  3. Laser measuring & precision testing instrument mounting bases

  4. Industrial automated laser processing equipment operation positioning accessories

  5. Laser welding equipment dust-proof outer shell and limit fixing parts


Our Competitive Advantages

  1. Rich experience in industrial laser equipment plastic mold development, familiar with anti-static, high-precision, dust-proof industrial part design and molding standards.

  2. Strict full-dimensional inspection for every batch of products, providing dimension inspection reports, raw material certification to guarantee spare part interchangeability for laser equipment after-sales maintenance.

  3. Strict confidential agreement protection for all customer laser equipment design drawings, to prevent leakage of your proprietary optical equipment technical solutions.

  4. One-stop service including product structural optimization, mold development, trial sample verification and mass injection molding, helping you shorten the R&D and mass production cycle of laser equipment.


FAQ

Q1: Can you provide anti-static plastic material for laser equipment parts?

A: Yes, we can adopt conductive/anti-static grade ABS, PC or PC/ABS raw materials to prevent static electricity from damaging laser precision optical and electronic components.

Q2: Why is S136 steel selected for laser equipment component molds?

A: Laser workshop has volatile chemical gases and frequent mold cleaning, S136 stainless steel effectively avoids mold rust, ensures consistent smooth product surface and stable dimensional accuracy for long-term mass production.

Q3: What is the lead time for this laser equipment precision injection mold?

A: Standard lead time is 16–25 working days, including multiple rounds of trial molding and dimensional calibration to ensure parts perfectly match your laser equipment assembly requirements.

Q4: Is it available to modify the mold after sample confirmation?

A: Minor structural adjustments to the mold cavity are allowed within a reasonable scope to optimize assembly precision, vibration resistance and dustproof performance of your laser device components.


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