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제품 소개실리콘카바이드 세라믹

14*11 Pressureless Sintered SiC Roller

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중국 Shaanxi KeGu New Material Technology Co., Ltd 인증
중국 Shaanxi KeGu New Material Technology Co., Ltd 인증
고객 검토
NGK는 산시 케구와의 오랜 파트너십을 소중히 여기고 있습니다. 그들의 SSiC 세라믹은 품질과 혁신에 탁월하며, 우리의 상호 성공을 이끌고 있습니다.

—— NGK 열 기술 회사

후이커는 신뢰, 혁신, 그리고 공동의 우수성을 바탕으로 하는 산시 커구 신소재 기술 유한 회사와의 오랜 파트너십에 자부심을 느낍니다. SSiC 세라믹에 대한 그들의 전문 지식과 안정적인 솔루션은 지속적으로 저희 프로젝트를 지원해 왔습니다.

—— 쑤저우 후이커 기술 유한 회사

케다에서 우리는 산시 케구 신소재 기술 회사와 오랜 파트너십을 매우 높이 평가합니다.그들의 고품질의 SSiC 세라믹 솔루션은 우리의 프로젝트에 필수 요소였습니다. 우리는 지속적인 협업과 공동의 성공을 기대합니다..

—— 케다 산업 그룹 (Keda Industrial Group Co.,Ltd)

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14*11 Pressureless Sintered SiC Roller

14*11 Pressureless Sintered SiC Roller
14*11 Pressureless Sintered SiC Roller 14*11 Pressureless Sintered SiC Roller 14*11 Pressureless Sintered SiC Roller 14*11 Pressureless Sintered SiC Roller

큰 이미지 :  14*11 Pressureless Sintered SiC Roller

제품 상세 정보:
원래 장소: 중국
브랜드 이름: KeGu
모델 번호: 14*11 무압력 소결 SiC 롤러
결제 및 배송 조건:
가격: Open to negotiation
포장 세부 사항: 글로벌 배송을 위한 튼튼한 나무 상자
공급 능력: 2,000 PCS/월

14*11 Pressureless Sintered SiC Roller

설명

14*11 Pressureless Sintered SiC Roller

Product Overview: Seamless Pressureless Sintered Silicon Carbide (SSiC) Rods, OD 14 mm * ID 11 mm

This product is a hollow tube made of pressureless sintered silicon carbide (SSiC) with outer diameter 14 mm and inner diameter 11 mm. It is manufactured from high-purity SiC powder with composite sintering aids, followed by high-temperature pressureless densification sintering. The rods feature high density, precise dimensional accuracy, low thermal expansion, high thermal conductivity, excellent corrosion resistance, and thermal shock resistance. They can operate reliably for long periods in harsh conditions such as high temperature, corrosive atmospheres, abrasive environments, and high-purity processes. As a high-performance replacement for traditional alumina ceramics or reaction-bonded SiC rods, they are widely used for support, transmission, and heat conduction structures in precision high-temperature equipment.

Material and Physicochemical Properties

The base material is high-purity pressureless sintered silicon carbide (SSiC). It is produced from ultrafine α-SiC powder with boron carbide and carbon-based eco-friendly sintering aids, densified under no external pressure. The material is free of free silicon, has no open pores, and exhibits a uniform, dense microstructure. It is a high-performance covalent bond ceramic with outstanding physicochemical stability.

Property Category Technical Parameter Description
Physical Properties Bulk density: 3.10–3.18 g/cm³ Relative density ≥98.5%; dense structure without porosity defects
Grain size: ≤20 μm Fine and uniform grains; high surface finish; no pores or cracks
Mohs hardness: 9.5 Excellent wear resistance, second only to diamond; outstanding scratch and abrasion resistance
Thermal expansion coefficient: 4.5*10⁻⁶/K Low thermal expansion; excellent dimensional stability under high/low temperature variations
Microstructure: No free silicon, no porosity Eliminates risks of permeation, corrosion, and aging failure
Chemical Properties Strong chemical inertness Resistant to strong acids, strong alkalis, organic solvents, high-temperature oxidation, and sulfur corrosion. No crystallization or oxidation at high temperatures; does not react with metal melts or furnace atmospheres; excellent anti-stick properties for metals; suitable for high-purity, contamination-free processes
Manufacturing Process

The product is manufactured using a standardized, refined pressureless solid-state sintering process. No external mechanical pressure is applied throughout the process. Precise formulation and staged temperature control achieve full densification, ensuring high process consistency, product stability, and yield.

  1. Precise Raw Material Batching and Mixing
    High-purity ultrafine SiC powder is selected and precisely mixed with B₄C and C composite sintering aids. High-energy ball milling homogenizes the mixture, thoroughly removing agglomerates and impurities to ensure uniform particle size and composition.
  2. Vacuum Precision Extrusion Forming
    Dedicated Φ14/Φ11 mm hollow tube dies are used with a vacuum extrusion press to form green bodies. The roundness, wall thickness uniformity, and straightness are precisely controlled from the start.
  3. Gradient Drying and Binder Removal
    A multi-step low-temperature gradient drying process slowly removes free moisture and organic binders, effectively preventing cracking, deformation, or delamination.
  4. High-Temperature Pressureless Sintering in Inert Atmosphere
    The dried green bodies are placed in an inert-gas-protected sintering furnace and sintered at 1950–2100 °C under no external pressure. The sintering aids promote grain growth and interface densification.
  5. High-Precision Finishing and Full Inspection
    Sintered blanks are precision ground and mirror-polished to accurately adjust core dimensions. Finished products undergo non-destructive testing, dimensional verification, pressure resistance testing, and visual inspection.
Product Specifications

This product is a standardized, customizable hollow SiC rod. High dimensional accuracy and tight tolerances allow easy integration into various precision high-temperature equipment.

Parameter Value
Product Model SSiC-14/11
Outer Diameter 14 mm
Inner Diameter 11 mm
Standard Wall Thickness 1 mm, wall thickness deviation ≤0.5 mm
Customizable Length Range 100 mm – 2000 mm; standard stocked lengths: 500 mm, 800 mm, 1000 mm
Configuration Fully dense hollow tube; flat, burr-free ends; optional custom features such as chamfers, grooves, threads
Geometric Accuracy Straightness <1 mm/m; high-temperature deflection ≤0.1 mm/m; excellent coaxiality and roundness
Key Advantages

Compared to traditional high-temperature rods made of reaction-bonded SiC, alumina ceramics, or quartz ceramics, this pressureless sintered SiC rod offers significant advantages in densification, mechanical properties, thermal stability, and corrosion resistance.

  1. Fully Dense, Defect-Free Structure
    Pressureless solid-state sintering eliminates residual free silicon and internal pores, achieving much higher densification than conventional reaction-bonded SiC.
  2. High Strength, Wear Resistance, and Resistance to Thermal Deformation
    Vickers hardness ≥2000 HV, three-point flexural strength ≥350 MPa. No softening, bending, or wear under high temperatures.
  3. High Thermal Conductivity for Energy Saving and Uniform Thermal Field
    Thermal conductivity ≥120 W/(m·K) at room temperature. Efficient heat transfer equalizes the temperature field inside equipment.
  4. Excellent Thermal Shock Resistance
    Combined low thermal expansion coefficient and high density enable resistance to frequent thermal cycling between room temperature and 1500 °C.
  5. High Purity, Corrosion Resistance, and No Product Contamination
    Made from high-purity raw materials without metallic conductive impurities. Resists strong corrosive media.
  6. Lightweight, High Precision, Low Inertia
    Hollow lightweight design reduces equipment inertia. High dimensional accuracy and consistency allow precise mounting.
Application Scenarios

Leveraging its small size, high precision, high temperature resistance, strong corrosion resistance, and high thermal conductivity, this product is particularly suitable for compact precision high-temperature equipment, high-purity processes, and fine corrosive environments.

  • Precision Ceramics – Used as transmission, load-bearing, and support components in small sintering kilns, pusher kilns, and laboratory furnaces for electronic ceramics, structural ceramics, and functional fine ceramics.
  • New Energy and Electronics – Suitable for high-temperature annealing, sintering, and curing equipment for lithium battery cathode/anode materials, ceramic substrates, and semiconductor components.
  • Chemical High-Temperature Applications – Used as heat exchanger flow guides, equipment supports, and positioning components in high-temperature heat exchangers and reactors.
  • Research and Laboratory – Widely used as specimen supports, temperature measurement aids, and positioning structures in tube furnaces, atmosphere furnaces, and vacuum high-temperature furnaces.
  • Glass and Metallurgy – Applied in small glass annealing furnaces and precious metal micro-melting equipment, offering excellent resistance to metal melt adhesion and high-temperature corrosion.
Core Material Performance

Pressureless sintered silicon carbide maintains stable performance across high and low temperatures without degradation or structural failure. Its comprehensive properties are at the advanced level in the industry.

Performance Dimension Core Technical Indicator Advantage
High-Temperature Resistance Continuous service temperature 1500 °C; short-term limit 1650 °C No loss of strength or hardness at high temperatures; no risk of softening, deformation, or collapse
Mechanical Properties Three-point flexural strength ≥350 MPa; high compressive strength and fracture toughness Impact and bending resistance; wear resistant; no loss of performance under long-term operation
Thermal Properties Thermal conductivity 120–130 W/(m·K); low thermal expansion coefficient Uniform heat transfer; strong thermal stability; suitable for frequent equipment start/stop cycles
Corrosion and Environmental Resistance Resistant to strong acids, strong alkalis, organic solvents, high-temperature oxidation, and sulfur corrosion Long-term service in corrosive, high-temperature, dusty environments; no aging, spalling, or failure
Electrical Insulation Stability High purity, no conductive impurities; stable insulation at high temperatures High dimensional consistency; strong operational stability for batch equipment; no electrical hazards

For further information or to discuss your specific needs, please contact us directly.

연락처 세부 사항
Shaanxi KeGu New Material Technology Co., Ltd

담당자: Ms. Yuki

전화 번호: 8615517781293

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