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Improvement of Surface Properties of CP-Titaniumby Thermo-Chemical Treatment (TCT) Process

机译:通过热化学处理(TCT)改善CP-钛的表面性能

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The thermo-chemical treatment (TCT) process was applied to achieve surface hardening of CP titanium. The following three different surface modification conditions were tested so that the best surface hardening process could be selected: (a) PVD, (b) TCT+PVD, and (c) TCT+Aging+PVD. These specimens were tested and analyzed in terms of surface roughness, wear, friction coefficient, and the gradient of hardening from the surface of the matrix. The three test conditions were all beneficial to improve the surface hardness of CP titanium. Moreover, the TCT treated specimens, that is, (b) and (c), showed significantly improved surface hardness and low friction coefficients through the thickness up to 100μm. This is due to the functionally gradient hardened surface improvement by the diffused interstitial elements. The hardened surface also showed improvement in bonding between the PVD and TCT surface, and this leads to improvement in wear resistance. However, TCT after aging treatment did not show much improvement in surface properties compared to TCT only. For the best surface hardening on CP titanium, TCT+PVD has advantages in surface durability and economics.
机译:进行了热化学处理(TCT)工艺以实现CP钛的表面硬化。测试了以下三种不同的表面改性条件,以便可以选择最佳的表面硬化工艺:(a)PVD,(b)TCT + PVD和(c)TCT + Aging + PVD。对这些样品进行了表面粗糙度,磨损,摩擦系数和从基体表面硬化的梯度的测试和分析。这三个测试条件均有利于提高CP钛的表面硬度。此外,经TCT处理的试样,即(b)和(c),在达到100μm的厚度时,表面硬度显着提高,摩擦系数低。这是由于扩散的填隙元素改善了功能梯度硬化表面。硬化的表面还显示出PVD和TCT表面之间的粘合性的改善,这导致耐磨性的改善。但是,时效处理后的TCT与仅TCT相比,表面性能并未显示出很大的改善。为了在CP钛上实现最佳的表面硬化,TCT + PVD在表面耐久性和经济性方面均具有优势。

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