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For high-efficiency grinding of difficult-to-cut materials such as titanium and nickel alloys, a high porosity is expected and also a sufficient mechanical strength to satisfy the function.However, the porosity increase is a disadvantage to the mechanical strength. As a promising pore forming agent, alumina bubbles are firstly induced into the abrasive layer to fabricate porous cubic boron nitride(CBN) wheels. When the wheel porosity reaches 45%, the bending strength is still high up to 50 MPa with modified orderly pore distribution. A porous CBN wheel was fabricated with a total porosity around 30%. The grinding performance of the porous composite-bonded CBN wheel was evaluated in terms of specific force, specific grinding energy, and grinding temperature, which were better than those of the vitrified one under the same grinding conditions. Compared to the vitrified CBN wheel, clear straight cutting grooves and less chip adhesion are observed on the ground surface and there is also no extensive loading on the wheel surface after grinding.  相似文献   
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利用Reynolds和Laplace方程以及Darcy定律,导出了可渗透各向同性材料动静压窄轴承的计算方程.计算结果显示出这种轴承具有承载力高和姿态角小的特点,并指出设计参数之间存在优化组合.  相似文献   
3.
利用Reynolds和Laplace方程以及Darcy定律,导出了可渗透各向同性动静压窄轴承的计算方程。计算结果显示出这种轴承具有承载力高和姿态角小的特点,并指出设计参数之间存在优化组合。  相似文献   
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本文研究了相对密度为78%~82%,开孔率大于95%的多孔钨的生产工艺;用扫描电镜观察了钨粉颗粒在工艺过程中的形态、结构变化;根据观测结果对其烧结机理进行了分析。  相似文献   
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