首页> 外文会议>International Symposium on New Frontier of Advanced Si-Based Ceramics and Composites >Rare Earth Containing Sialons: Microstructure, Mechanical and Tribological Properties
【24h】

Rare Earth Containing Sialons: Microstructure, Mechanical and Tribological Properties

机译:含有SiAlons的稀土:微观结构,机械和摩擦学特性

获取原文

摘要

Silicon nitride based ceramics have been investigated since more than forty years. Nevertheless, a good understanding of the microstracture-properties relationships on the level of small samples is not enough to bring ceramic parts into the industrial market. More convincing is a demonstration of the excellent potential in specific applications where the requirements of a more complex system are considered. In this work, siaions are investigated for a use in lubricated wear applications. The target system is a fuel injection pump for pressures up to 30 MPa. It requires very small friction coefficients and wear rates. Isooctane was used as lubricating liquid. A friction coefficient of 0.3 has been achieved with a piston-on-plate configuration for two sialon ceramics with different a/p-ratios. The sample surfaces were in a ground condition. For comparison, tribological testing was also performed with commercial alumina and silicon nitride materials which exhibited higher friction coefficients. In order to be closer to the real conditions a test rig has been designed and constructed with a piston running in a cylinder that actually pumps isooctane at the desired pressures of up to 30 MPa. With it, the high potential of sialon ceramics for lubricated sliding applications was proven. In the fields of microstructural design neodymia and ytterbia containing siaions with varying a/p-sialon ratios and different amounts of additives have been investigated. These parameters have a strong effect on the achieved aspect ratios of the sialon grains which can be correlated to the amount of liquid phase during sintering, kinetic considerations and the additives' cationic radii. Finally, the effect of these varying grain shapes on the mechanical properties hardness and fracture toughness has been determined.
机译:自从四十多年以来已经研究了氮化硅基陶瓷。然而,对小型样品水平的微动画性质的良好理解不足以将陶瓷部件带入工业市场。更令人信服的是在考虑更复杂的系统的要求的特定应用中的优异潜力。在这项工作中,调查唾液中用于润滑磨损应用。目标系统是燃油喷射泵,用于高达30MPa的压力。它需要非常小的摩擦系数和磨损率。异辛烷用作润滑液。已经通过具有不同A / P比率的两个唾液陶瓷的活塞板构造来实现0.3的摩擦系数。样品表面处于地面条件下。为了比较,还使用具有较高摩擦系数的商业氧化铝和氮化硅材料进行摩擦学检测。为了更接近真实条件,设计了测试钻机的设计和构造,其中活塞在圆柱体中运行,实际上在高达30MPa的所需压力下泵送的异络。使用它,已证明润滑滑动应用的唾液陶瓷的高潜力。在微观结构设计领域,研究了含有不同A / P-Sialon比和不同量的添加剂的唾液瘤和含有不同量的添加剂的唾液。这些参数对唾液颗粒的达到的纵横比具有很强的效果,其可以与烧结期间的液相量,动力学考虑因素和添加剂的阳离子半径相关。最后,已经确定了这些不同晶粒形状对机械性能硬度和断裂韧性的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号