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스테인레스 스틸은 단일 지점이 아닌 다양한 범위에서 녹습니다. 스테인레스 스틸에는 녹는점이 하나도 없습니다. 이는 합금 계열이며 각 등급은 자체 온도 범위에서 녹습니다. 일반적인 산업용 등급의 경우 범위는 대략 1,375°C(2,500°F)~1,530°C(2,786°F) 사이입니다...
더 읽기구매자나 설계 엔지니어가 스테인리스강의 녹는점을 물을 때 재료 사양에 연결할 수 있는 단일 숫자를 기대하는 경우가 많습니다. 현실은 그보다 더 유용합니다. 예를 들어, 304 스테인리스강은 1400°C~1450°C에서 녹는 반면, 316L은 대략 1375°C~1400°C에서 녹습니다. 이 수치는 일반적으로 85...
더 읽기기술 가이드 모든 콘크리트 배칭 플랜트는 믹서 블레이드가 얇아지기 시작하는 순간, 즉 실제로 파손되기 훨씬 전에 돈을 잃습니다. 혼합 효율성이 떨어지고, 사이클 시간이 늘어나며, 콘크리트 일관성을 제어하기가 더 어려워집니다. 미래 지향적인 공장 운영자는 블레이드 고장 후 대응하는 대신 마...
더 읽기카테고리: 콘크리트 믹서 마모 부품 작성자: FH® 합금 회사: Wuxi Junteng Fanghu 합금 기술 유한 회사 목표 시장: 글로벌 B2B 바이어 OEM 콘크리트 믹서 마모 블레...
더 읽기How does high chromium content improve the wear resistance of high Cr casting wear resistant liners?
1. Formation of hard carbides: In high-chromium cast iron, chromium and carbon form a large number of fine and extremely hard carbides (such as (Cr,Fe)₂C₃). These carbides act as a "grit" barrier under abrasive action, significantly reducing the material's wear rate.
2. Microstructure optimization: An appropriate chromium content (10%~26%) can form a dense three-phase structure of martensite + carbides + a small amount of austenite in the matrix, achieving an overall hardness of HRC52~65, resulting in wear resistance several times higher than ordinary alloy steel.
3. Cost-performance balance: Studies show that a chromium content of about 10% is sufficient to balance wear resistance and cost. While further increasing the chromium content can further improve hardness, the cost increases significantly. Companies can flexibly choose the appropriate chromium content based on the application environment.
4. Company Advantages: Wuxi Junteng Fanghu Alloy Technology Co., Ltd. has focused on the research and development of high-chromium wear-resistant liners since 2006. It possesses a complete high-chromium alloy formula library and mature casting technology, enabling it to provide customized products with different hardness grades ranging from 12% to 26% Cr, ensuring excellent wear resistance even under high-temperature and high-impact conditions.
Why is heat treatment necessary?
1. Improved Hardness and Wear Resistance: Quenching heats the casting to the austenitic region and then rapidly cools it, transforming the microstructure into martensite or lower bainite, significantly increasing surface hardness and thus enhancing wear resistance.
2. Relief of Internal Stress and Reduction of Brittleness: After quenching, high internal stress remains in the material. Tempering, held at a temperature below AC1, releases this stress and reduces brittleness, making the parts less prone to cracking under impact loads.
3.Stable Structure and Dimensional Control:Tempering refines martensite and adjusts carbide distribution, resulting in a more uniform microstructure and ensuring dimensional and shape stability after heat treatment, preventing deformation during use.
4.Company Advantages:Our company has a complete heat treatment workshop, enabling us to provide precise quenching-tempering processes for high-chromium wear-resistant liners. This ensures a hardness of HRC55-65 and internal stress below 30MPa, significantly extending the liner's service life and reducing maintenance costs.