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提出了一个在有界区域内求对已知各障碍物的最大避障圆问题。首先给出此问题的数学描述,然后分析了当有界区域为圆域,并将各障碍物看成一个有限点集时,避障圆的基本性质,从而得到一种求最大避障圆的有效算法。  相似文献   
2.
用新方法合成了含 S,P,Mo 三种活性元素的油溶性有机化合物,并在四球机、Falex 试验机上作了摩擦磨损试验。结果表明:添加0.5%的该化合物到46~#汽轮机油中就能显示很好的减摩、抗极压作用,在油中、空气中均较稳定。理化性能试验表明:加入该添加剂后,基础油的理化性能均合格。用 X—射线光电子能谱(XPS)对摩擦副的表面进行了测试,初步探讨了其极压抗磨机理。  相似文献   
3.
本文对含硫、钼的有机化合物的合成及性能进行了研究,并探讨了其化学结构对极压抗磨性能的影响。四球机试验表明:这类化合物有很好的抗磨性能和较高的承载能力,在润滑油中性能稳定,是较好的极压抗磨添加剂。烃基的改变对其极压抗磨性能有一定的影响。  相似文献   
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Projectiles made of reactive structure materials(RSM)can damage the target with not only kinetic but also chemical energy,but the enhanced damage potential of RSM may become compromised if extreme loading condition disintegrates the projectile before the target is reached.In this work,a ductile coating of Ni was introduced to a tungsten-zirconium(W-Zr)alloy,a typical brittle RSM,to preserve the damage potential of the projectile.Detonation driving tests were carried out with X-ray photography and gun-powder deflagration driving tests were carried out with high-speed photography for the coated and uncoated RSM samples,respectively.The craters on the witness target were analyzed by scanning electron microscopy and X-ray diffraction.The Ni coating was found to effectively preserve the damage potential of the W-Zr alloy under extreme loading conditions,whereas the uncoated sample fractured and ignited before impacting the target in both detonation and deflagration driving.The crack propa-gation between the reactively brittle core and the ductile coating was analyzed based on the crack arrest theory to mechanistically demonstrate how the coating improves the structural integrity and preserves the damage potential of the projectile.Specifically,the Ni coating envelops the W-Zr core until the coated sphere penetrates the target,and the coating is then eroded and worn to release the reactive core for the projectile to damage the target more intensively.  相似文献   
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