Brand Name: | ZMSH |
Model Number: | SiC Motion Components |
MOQ: | 25 |
Price: | by case |
Delivery Time: | 2-4 weeks |
Payment Terms: | T/T |
SiC Motion Components SiC Ceramics Structural Parts
Silicon Carbide (SiC) motion components are precision ceramic structural parts manufactured using processes such as reaction sintering or chemical vapor deposition (CVD). They are specifically designed to achieve precision positioning, transmission, or clamping functions in extreme industrial environments, including high temperature, corrosion, high wear, and vacuum conditions. By leveraging the core material properties of silicon carbide (SiC)—such as high hardness, high stiffness, low thermal expansion, high thermal conductivity, and excellent chemical stability—they provide highly reliable solutions for precision motion control in fields like semiconductor manufacturing, high-end industrial kilns, and laser systems.
1. Nanoscale Motion Accuracy and High Stability:
2. Exceptional Environmental Adaptability:
3. True Zero Wear and Long Service Life:
4. High Stiffness and Vibration Suppression:
1. Semiconductor Manufacturing and Inspection Equipment:
2. Industrial Kilns and High-Temperature Processing Equipment:
3. Precision Optics and Laser Systems:
4. Other High-End Fields:
Parameter Name | Typical Value/Range |
Coefficient of Thermal Expansion | ~4.5×10⁻⁶/K |
Thermal Conductivity | ~45 W/(m·K) (@1200°C) |
Elastic Modulus | 410 GPa or higher |
Mohs Hardness | 9.5 |
Motion Straightness | ±0.1 - 0.5 μm |
Repeatability | ±75 nm or higher |
Maximum Operating Temperature | >1380°C (oxidizing atmosphere) |
Chemical Stability | Excellent |
Q1: What are silicon carbide (SiC) motion components primarily used for?
A1: They are core precision motion parts in semiconductor lithography equipment and industrial kilns, enabling nanoscale positioning, scanning, and load-bearing under extreme conditions like high temperature and corrosion.
Q2: Why choose silicon carbide over traditional materials for motion components?
A2: Silicon carbide offers exceptional hardness (Mohs 9.5), near-zero thermal expansion (~4.5×10⁻⁶/K), high thermal conductivity, and chemical inertness, ensuring long-term stability, zero wear, and minimal maintenance in high-performance applications.
Tags: #SiC Motion Components, #Customized, #SiC Ceramics Structural Parts, #Chemical Stability Excellent