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Mastering Complexity: Ceramic Injection Molding (CIM) for Micron-Precision Advanced Ceramic Parts | CRAC Solution

Introduction: When Standard Manufacturing Fails Precision

In sectors demanding high wear resistance, thermal stability, and biocompatibility—from smart wearables to medical devices—components are shrinking while complexity increases. Traditional ceramic manufacturing methods often struggle with low yields, high tooling costs, and limited geometric capabilities when attempting to mass-produce small parts featuring threads, internal features, or extremely fine tolerances.
Chuangrui Advanced Ceramics (CRAC)? leverages the Ceramic Injection Molding (CIM)? process to deliver solutions where conventional methods fall short. CIM, recognized as the fastest-developing and most widely applied near-net-shape ceramic plastic forming technology, is an essential interdisciplinary application, integrating plastic injection molding and ceramic sintering. CRAC utilizes CIM to facilitate the mass production of small-sized, precise, and complex advanced ceramic products.

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CIM: The Technological Bridge to Unconstrained Design

Ceramic Injection Molding liberates product design from the constraints of conventional processes. By blending ceramic powders with polymer binders and injecting the mixture into molds, CIM allows for the creation of intricate parts in a manner similar to plastic molding.

Why CIM is the Apex of Ceramic Forming:

  1. High Degree of Design Flexibility:? CIM allows for the design of special-shaped structures? both internally and externally. This includes the efficient creation of features such as internal threads, undercuts, and small apertures.
  2. Micron-Level Precision:? CRAC specializes in molding ceramics for small, complex, and precise parts. While a general tolerance accuracy of ±0.5%? can be obtained, even higher dimensional accuracy? can be achieved when combined with other post-processing methods.
  3. Robust Material Performance:? CIM utilizes high-performance advanced ceramics—inorganic nonmetallic materials distinguished by their capacity to integrate mechanical, thermal, and optical properties in an extremely complex manner. These parts boast superior characteristics, including high density, high strength, high fracture toughness, and high hardness.

Performance Data: The Material Foundation for CIM Success

CRAC processes a variety of high-performance materials through CIM, strictly following design specifications. The selection of the material dictates the final mechanical strength and wear resistance of the injected part.
Material
Key Feature
Density (g/cm³)
Flexural Strength (MPa)
Vickers Hardness (HV)
Black Zirconia (Y-PSZ)?
Superior fracture toughness
≥6.0?
≥1200?
1200?
99.7% Alumina?
High electrical insulation
≥3.92?
≥600?
2000?
Zirconia Toughened Alumina (ZTA)?
Enhanced wear resistance
≥4.8?
1500?

CRAC's Precision Parts Portfolio: Applications Driving Innovation

CRAC’s expertise in CIM enables the mass production of high-value components across diverse application fields. These parts possess key attributes such as biocompatibility, excellent wear resistance, high strength, and a rich variety of colors.
Application Field
CRAC Part Examples (Selection)
Specific Performance Advantages
Personal & Consumer Care?
Ceramic Clipper Blades, Ceramic Cosmetic Parts
High hardness, scratch and corrosion resistance, and no release of metal ions?
Medical & Biotechnology?
Ceramic Medical Parts, Medical filling ceramic pump
Corrosion-resistant, wear-resistant, high hardness, high fracture toughness, low thermal expansion rate, and good biocompatibility?
Optical & Semiconductor?
Ceramic Capillary, Ceramic Split Sleeve
High strength, wear-resistant, anti-static, high purity, and ultra-high dimensional accuracy. Applied across semiconductor manufacturing and optical communication
Luxury & Wearables?
Ceramic Jewelry Pieces, Ceramic Watch Components
High hardness, scratch resistance, non-allergenicity, low susceptibility to bacterial growth, and strong signal penetration?

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CRAC Authority: Experience and Quality in Precision Ceramics

Choosing CRAC means partnering with a recognized leader in the advanced ceramics sector:
  1. Pioneering Heritage:? The founder of Chuangrui Company was the first in China to develop and launch zirconia beads in 1997, successfully breaking the foreign monopoly? in this technical field.
  2. Decades of Focus:? CRAC possesses 28 years' experience? in advanced ceramics, focusing on technology leadership and product innovation.
  3. Comprehensive Product Matrix:? We have successfully developed and mass-produced a complex product matrix, including micron precision ceramic injection parts.
  4. Rigorous Quality Control:? CRAC maintains a stable raw material supply chain and employs advanced production processes and strict product quality inspection standards, ensuring meticulous quality control from raw material procurement to finished product output, thereby guaranteeing the quality and stability of each batch of products.

Call to Action: Design Without Compromise

If your project requires high-volume, small-sized ceramic components with complex geometries and micron-level precision, Ceramic Injection Molding is the most efficient solution.
Contact CRAC Advanced Ceramics to leverage our 28 years of expertise and state-of-the-art CIM technology.

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