Resources
Technical guides, FAQs, and company news to help you understand our capabilities
Technical Guides
(9 articles)
What is Bridge Production? The Transition Strategy from Prototype to Mass Production
Bridge Production is a manufacturing strategy during the transition period between prototype completion and mass production launch. This article explains the definition, applicable scenarios, and differences from traditional low-volume production.

Bridge Tooling vs Production Tooling: When to Switch?
Decision nodes, exit strategies. Detailed explanation of the optimal timing and criteria for switching from bridge tooling to production tooling.

The Cost Logic of Bridge Production: Why 100-10,000 Pieces is the Optimal Window
Cost analysis, tooling amortization, total cost of ownership. Explaining why 100-10,000 pieces is the optimal quantity window for bridge production.

MIM vs CNC vs 3D Printing vs Casting: How to Choose the Best Process for Your Parts
A four-dimensional decision framework (quantity/complexity/material/time) to help you select the most suitable manufacturing process for your parts among MIM, CNC, 3D printing, and casting.
How MIM Technology Enables Single-Use Hysteroscopic Scissors with Premium Quality and Cost Advantage
Metal Injection Molding (MIM) technology is transforming the manufacturing of single-use hysteroscopic scissors — addressing the persistent industry challenge of balancing premium quality with cost efficiency. Traditional reusable scissors carry hidden costs: repeated sterilization degrades performance, increases surgical risks, and drives up long-term expenses. Conventional single-use alternatives, manufactured via CNC machining, suffer from low material utilization (30-50%), inconsistent batch quality, and prohibitively high costs that limit widespread adoption. MIM fundamentally changes this equation. By replacing subtractive machining with near-net-shape molding, MIM achieves: ±0.02mm precision — consistent across every batch 96-98% density — no porosity, superior durability 95%+ material utilization — drastically reducing waste and cost 38-42 HRC hardness — sharp, durable, corrosion-resistant blades The result: single-use hysteroscopic scissors that deliver superior clinical performance, eliminate cross-contamination risks, and achieve cost structures that enable widespread adoption across all hospital tiers. This guide walks through the clinical pain points, MIM manufacturing advantages, and the four quality advantages that make MIM the preferred manufacturing route for premium disposable surgical instruments.
The 4 Inherent MIM Manufacturing Bottlenecks: Process Boundaries & Professional Optimization Solutions
Learn the 4 core inherent bottlenecks of MIM manufacturing, including shrinkage deformation, debinding residue, residual porosity & micro-structure forming limits. Haoding Precision, a reliable China MIM supplier, provides one-stop optimized MIM production solutions for automotive, medical, aerospace precision parts.
FAQ
(1 articles)What materials can you machine?
We work with metals (aluminum, steel, stainless steel, brass), plastics (ABS, PC, POM, PEEK), and engineering materials.
News & Updates
(1 articles)New 5-Axis CNC Machine Added to Production Line
Expanding our capabilities with an advanced 5-axis machining center for complex geometry parts.
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