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Qualification of Hot Isostatic Pressing Processes

机译:热等静压过程的资格

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Hot isostatic pressing (HIP) is a process in which material is subjected to controlled temperature and isostatic gas pressure, such as argon gas. The theory behind this process is to create a hydrostatic pressure in the vessel high enough so that any internal porosity (not surface connected) will collapse. While the effectiveness of the HIP process may be evaluated with actual product, the population may not contain "worst-case" defects. It is therefore of greater interest to use a test sample designed to simulate a worst-case scenario with an exaggerated internal void. The test sample is made of the alloy of interest, for example cast cobalt-28chromium-6molybdenum with a counter-bored hole in the center, and a wrought cobalt-28chromium-6molybdenum cylindrical pin that is vacuum welded after press fit into the hole. A cavity is created within the counter-bore between the bottom of the pin and the surrounding base. This cavity size is designed to be approximately 5 or 10 times larger than the smallest detectable void (based on radiography sensitivity of 2-2T) such that the test sample represents an exaggerated worst-case internal void. An appropriate sample size of the test samples are then subjected to extreme and nominal HIP processing conditions, distributed throughout the HIP vessel. Subsequent solution annealing or other standard thermal processing may be performed. Test samples are evaluated for closure of the internal void by radiography, and residual porosity analysis may be performed by metallographic examination.
机译:热等静压(臀部)是一种方法,其中材料经受受控温度和等静压气体压力,例如氩气。该过程背后的理论是在足够高的血管中产生静水压力,使得任何内部孔隙率(不接通表面)将塌陷。虽然可以用实际产品评估髋关节过程的有效性,但人口可能不含“最坏情况”缺陷。因此,使用旨在模拟具有夸大的内部空隙的最坏情况场景的测试样本更有兴趣。测试样品由感兴趣的合金制成,例如铸造钴-28℃-6moldbdenum,中间的反孔孔,锻造钴-28℃-6moldbumum圆柱形销,在压紧进入孔后,真空焊接。在销的底部和周围基座之间的反孔内产生腔。该腔体尺寸设计为比最小的可检测空隙(基于2-2t的放射线照相灵敏度)大约5或10倍,使得测试样品代表夸张的最坏情况的内部空隙。然后对测试样品的适当样品尺寸进行极端和标称髋关节加工条件,分布在整个髋部容器中。可以执行随后的解决方案退火或其他标准热处理。评估测试样品用于通过射线照相缩小闭合内部空隙,并且可以通过金相检查进行残留的孔隙率分析。

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