logo
환영합니다 Shaanxi KeGu New Material Technology Co., Ltd
8616602956098

9-10mm Pressureless Sintered Silicon Carbide Grinding Balls

Basic Properties
Place of Origin: 중국
Brand Name: KEGU
Model Number: 맞춤형
Trading Properties
Minimum Order Quantity: 협상 가능
Price: 협상 가능
Payment Terms: L/C,D/A,D/P,T/T,웨스턴 유니온,MoneyGram
제품 요약
9-10mm Pressureless Sintered Silicon Carbide Grinding Balls 9-10mm Pressureless Sintered Silicon Carbide Grinding Balls are medium-to-large ceramic milling media specifically designed for drum ball mills. Engineered for coarse grinding and intermediate comminution of high-hardness, brittle materials...

제품 상세정보

강조하다:

10mm Pressureless Sintered Grinding Balls

,

Sintered Silicon Carbide Grinding Balls

제품 설명
9-10mm Pressureless Sintered Silicon Carbide Grinding Balls
9-10mm Pressureless Sintered Silicon Carbide Grinding Balls are medium-to-large ceramic milling media specifically designed for drum ball mills. Engineered for coarse grinding and intermediate comminution of high-hardness, brittle materials, this size range offers optimal balance between impact momentum and specific surface area.
Product Positioning
These grinding balls are ideal for high-throughput applications including mineral processing, specialty ceramic raw materials, pre-crushing of superabrasives, and coarse milling of new energy battery material precursors. Manufactured from nano-sized silicon carbide powder via high-temperature pressureless sintering, they deliver exceptional strength, extreme hardness, superior wear resistance, high-temperature tolerance, and resistance to acids and alkalis.
Key Performance Parameters
Parameter Typical Value Remarks
Physical Properties
Density ≥ 3.15 g/cm³ Pressureless sintered, high densification
Color Black Typical appearance of pressureless sintered SiC
Mechanical Properties
Hardness (Vickers) HV 2000-2500 Approx. HRA ≥ 93, Mohs hardness ~9.5
Elastic Modulus > 460 GPa >50% higher than steel
Flexural Strength 400-650 MPa Up to 600-650 MPa for high-performance grades
Fracture Toughness 3.5-5.1 MPa*m¹/² Solid-state sintering: 3.5~4.5; optimized formulations >5.1
Compressive Strength > 2500 MPa Resists deformation or fracture under high speed/pressure
Thermal Properties
Max. Service Temperature Up to 1600°C Maintains high strength and hardness at elevated temperatures
Coefficient of Thermal Expansion ~3.8 * 10⁻⁶ /℃ ~25% of steel, excellent thermal stability
Quality & Precision
Sphericity Deviation ≤ 0.5 μm (precision grade) Bearing-grade balls can achieve even tighter tolerances
Surface Roughness Ra ≤ 0.02 μm (precision grade) Significantly reduces friction coefficient
Precision Grade G10 / G16 optional Complies with precision ceramic ball standards
Size Accuracy φ 9 mm / φ 10 mm Custom sizes available upon request
Breakage Rate ≤ 0.2% Under normal milling conditions
Core Advantages of Pressureless Sintering Process
Pressureless sintering densifies silicon carbide powder at high temperature (>2000°C) without external pressure, offering superior performance compared to reaction sintering:
Aspect Pressureless Sintered Reaction Sintered Comments
Density (g/cm³) > 3.15 > 3.02 Higher densification, lower porosity
Hardness (Hv) 2000-2500 -- Higher hardness, superior wear resistance
Corrosion Resistance Excellent against strong acids & bases Poor resistance to HF and superacids More comprehensive chemical stability
High-Temperature Performance Maintains strength up to 1000°C Flexural strength drops sharply above 1400°C Significantly better high-temperature stability
Wear Resistance Excellent Good Outstanding overall wear resistance
Fracture Resistance High Good Higher impact resistance due to better densification
Production Process Complex, high capital investment Simpler, lower cost Higher production threshold
Self-Lubricity Good Slightly better due to free Si Minor advantage for reaction-sintered
Applications & Technical Value
Intermediate Crushing & Coarse Grinding of Superhard Materials
  • Pre-grinding of SiC, B₄C, Si₃N₄, Al₂O₃, and other hard-brittle materials
  • Extremely high hardness (second only to diamond) enables efficient comminution
  • Very low impurity introduction preserves powder purity and particle size consistency
Mineral Processing & Ceramic Raw Material Preparation
  • Efficient crushing of architectural and industrial ceramic raw materials
  • Replaces conventional steel or alumina balls, significantly reducing milling energy consumption
  • Suitable for dry or wet grinding of non-metallic minerals
New Energy Material Pre-treatment
  • Coarse grinding and dispersion of precursors for lithium-ion battery cathode and anode materials
  • Uniquely avoids metallic contamination, safeguarding the purity of battery materials
Specialty Ceramics & Powder Metallurgy
  • Self-grinding of high-purity SiC powder - using identical material eliminates cross-contamination
  • Ideal for electronic ceramics, structural ceramics, and other purity-sensitive production processes
Quality Assurance & Manufacturing Standards
  • Raw Material Control: High-purity nano-sized SiC powder with appropriate sintering aids
  • Forming: Cold isostatic pressing ensures uniform green density
  • Sintering: High-temperature pressureless sintering in non-oxidizing atmosphere
  • Precision Finishing: Processed to G10/G16 grade precision with sphericity deviation <0.5 μm
  • Quality Inspection: Full-line production quality monitoring with advanced testing equipment
Performance Comparison with Other Grinding Media
Property Press. Sintered SiC High-Cr Steel Alumina (92-99%) Zirconia (Y-TZP) Silicon Nitride
Density (g/cm³) 3.15 7.8 3.6-3.9 6.0 3.2-3.3
Hardness (HV) 2000-2500 650-800 1200-1500 1200-1400 1400-1700
Elastic Modulus (GPa) >460 200-210 300-380 210 310-320
Fracture Toughness (MPa*m¹/²) 3.5-5.1 20-50 (metal) 3-4 8-12 6-8
Relative Wear Rate 1 (baseline) 20-50 3-5 1.5-2 1.2-1.5
Max. Service Temp. (°C) 1600 500 (oxidation) 1500 500 1200
Acid/Alkali Resistance Excellent (except HF) Poor (rusts easily) Good (poor in strong alkalis) Excellent Excellent
Magnetic No Yes No No No
Contamination Risk Very low (SiC) High (Fe, Cr) Low (Al₂O₃) Low (ZrO₂) Very low (Si₃N₄)
Relative Cost Medium-high Very low Low High Very high
Engineering Selection Guidelines
Preferred Applications
  • Milling materials with Mohs hardness ≥ 8 (SiC, B₄C, Al₂O₃, ZrO₂, diamond)
  • Strict restrictions on metal contamination and magnetic particles
  • Wet milling requiring long-term resistance to acidic or alkaline slurries (pH 2-12)
  • Dry or semi-dry milling with elevated temperatures (200-800°C)
  • Goal of minimizing media consumption and reducing replacement frequency
Consider Alternative Media When
  • Feed size > 8-10 mm in coarse crushing stage, or severe impact
  • Extremely cost-sensitive, small-scale production
  • Need for maximum fracture toughness and impact fatigue resistance in fine grinding
Summary
The 9-10 mm pressureless sintered SiC grinding ball combines high hardness, exceptional wear resistance, excellent thermochemical stability, and good impact toughness. With ultra-low wear rate (only 1/5 that of zirconia balls), minimal impurity introduction, and long service life, it delivers significant technical and economic value in new energy materials, specialty ceramics, superabrasive processing, and advanced mineral processing.
For further information or to discuss your specific requirements, please contact us directly.
관련 제품
  • 1650°C 최대 사용 온도, 380MPa 휨 강도, 부식 저항성을 갖춘 탄화규소 씰링 링

    탄화규소(SiC) 씰링 링 까다로운 응용 분야를 위한 고급 성능 제품 개요 당사의 무가압 소결 탄화규소 씰링 링은 극한의 작동 조건에서 타의 추종을 불허하는 성능을 제공하도록 설계된 씰링 기술의 정점입니다. 소량 링의 경우 건식 프레스, 대형 부품의 경우 등방 압축을 포함한 고급 제조 공정을 활용하여 특정 요구 사항에 맞춰 정밀하게 제작된 씰링 솔루션을 제공합니다. 주요 특징 및 장점 뛰어난 내구성: 극한의 경도와 뛰어난 내마모성을 결합하여 수명을 연장하고 기존 씰링 재료보다 훨씬 뛰어납니다. 포괄적인 내식성: 다양한 산업 환경에서 ...
  • 1650°C 최대 서비스 온도, 20% 연료 감소, 열 충격 저항을 갖춘 맞춤형 실리콘 탄화물 세라믹 파이프 번어

    맞춤형 실리콘 탄화물 세라믹 파이프 연소기 핀 라디언트 튜브 ZG 인더스트리얼은 고성능의 맞춤형 실리콘 카비드 세라믹 파이프 번너와우리의 Si/SiC 복합 튜브는 뛰어난 열 전달을 제공합니다., 뛰어난 내구성 및 산업용 난방용 에너지 절감. 직경 6인치까지의 시스템에 즉시 설치 할 수 있습니다. 주요 특징 및 이점 우수한 재료 특성:2450°F (1343°C) 까지 높은 온도 내성을 가진 우수한 마모, 산화 및 부식 저항성 증강된 열 전달:첨단 핀트 튜브 설계는 더 나은 열 효율 및 분배를 위해 표면 면적을 증가시킵니다. 증명된 에...
  • 실리콘 탄화탄 샌드브래싱 노즐, 뛰어난 마모 저항, 연장 서비스 수명, 산업용 정밀 엔지니어링

    실리콘카바이드 (SiC) 모래 펌프 산업용 표면 처리용 용품에 더 뛰어난 마모 저항성 우리의 실리콘 탄화탄자 샌드블래싱 노즐은 고도의 내구성과 정밀성을 위해 설계되었습니다.첨단 동역 압축 및 압력 없는 합금 기술로 제조이 노즐은 가장 중요한 곳에서 뛰어난 성능을 제공합니다. 우리는 정밀한 뚫림, 굴곡,그리고 모든 표면 - 복잡한 곡선을 포함하여 - 의 정확한 운영 요구 사항을 충족. 주요 특징 및 장점 특별한 마모 저항성:초고밀도 (>3.15g/cm3) 및 비커스 경직성 (≥23 GPa) 을 가지고 있으며, 가려지기 쉬운 환경에서의 ...
  • NIJ 인증을 받은 실리콘 탄화탄 체조 장갑

    실리콘 탄화물 세라믹 갑옷: 우수한 탄도 보호 우리의 첨단 실리콘 카비드 (SiC) 세라믹 갑옷은 탁월한 강도를 결합하여 탄도 재료 기술의 정점을 나타냅니다.5 모스) 의 무게를 크게 줄여 인력과 차량을 고속 및 갑옷을 뚫는 위협으로부터 비교할 수 없는 보호를 제공합니다.. 발리스틱 의 주요 이점 다중 타격 능력:역동적 임무를 수행할 때 신뢰성을 보장하여 연속적인 영향으로 구조적 무결성을 유지합니다. 경량 방어:동등한 보호 수준에서 강철 갑옷보다 최대 70% 가벼워 착용자의 피로를 줄이고 이동성을 증가시킵니다. NIJ 표준을 완전히 ...

문의 를 보내십시오