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Casting an Object with a Core

机译:使用核心投射对象

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摘要

In casting, molten material is poured into the cavity of the cast and allowed to solidify. The cast has two main parts to be removed in opposite parting directions. To manufacture more complicated objects, the cast may also have a side core to be removed in a direction skewed to the parting directions. In this paper, given an object and the parting and side core directions, we give necessary and sufficient conditions to verify whether a cast can be constructed for these directions. In the case of polyhedral objects, we develop a discrete algorithm to perform the test in O(n~3 log n) time, where n is the object size. If the test result is positive, a cast with complexity O(n~3) can be constructed within the same time bound. We also present an example to show that a cast may have Θ(n~3) complexity in the worst case. Thus, the complexity of our cast is worst-case optimal.
机译:在铸造中,将熔融材料倒入铸模的空腔中并使其固化。铸件有两个主要部分,分别沿相反的分离方向移除。为了制造更复杂的物体,铸件还可具有侧芯,该侧芯将在偏向分型方向的方向上移除。在本文中,给定一个对象以及分型和侧芯方向,我们给出了必要和充分的条件,以验证是否可以针对这些方向构造铸件。对于多面体对象,我们开发了一种离散算法以在O(n〜3 log n)时间内执行测试,其中n是对象大小。如果测试结果为肯定,则可以在同一时间范围内构造复杂度为O(n〜3)的演员表。我们还提供了一个示例来说明在最坏的情况下强制转换可能具有Θ(n〜3)复杂度。因此,演员阵容的复杂性是最坏情况下的最佳选择。

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