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Destructive and non-destructive evaluation methods of interface on F82H HIPed joints

机译:F82H髋关节接口的破坏性和非破坏性评估方法

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The first walls of F82H steel with built-in cooling channels will be assembled thin plates and rectangular pipes by a HIP method. Silicon oxides form on an interface of HIPed joints during HIPing and result in the lowering of toughness of the HIPed joints. A large issue is investigation method of HIPed interface. The flexibility of specimen size for the investigation will be necessary because of the thin wall of cooling channels. A small specimen destructive test technique which is able to distinguish a base metal and an excellent HIPed joint has been desired, and recent researches find out a torsion test method to solve the issue. Non-destructive test technique is another issue for the inspection of the first wall. An ultrasonic inspection method is a candidate but silicon oxides are too small to produce good flaw echo from oxides, some solutions will be necessary. Present research introduces the current status of development of small specimen destructive test technique and the ultrasonic method for the first wall inspection. (C) 2015 Elsevier B.V. All rights reserved.
机译:带有内置冷却通道的F82H钢的第一壁将通过HIP方法组装成薄板和矩形管。在HIP时,在HIP接头的界面上会形成氧化硅,从而导致HIP接头的韧性降低。一个大问题是HIPed接口的调查方法。由于冷却通道壁薄,因此需要灵活的样本尺寸进行研究。人们希望有一种能够区分母材和优良的HIP接头的小型试样破坏性测试技术,并且最近的研究找到了解决该问题的扭转测试方法。无损检测技术是检查第一道墙的另一个问题。可以使用超声波检查方法,但是氧化硅太小,无法从氧化物中产生良好的缺陷回波,因此必须采取一些解决方案。目前的研究介绍了小样品破坏性测试技术的发展现状以及用于首次墙体检查的超声方法。 (C)2015 Elsevier B.V.保留所有权利。

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