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Tribological behaviour of AFNOR grade Z6 NCT DV 25-15 precipitation hardening austenitic stainless steel with NiCr-B coating in high temperature liquid sodium

机译:高温液体钠与NiCR-B涂层逆级Z6 NCT DV 25-15沉淀硬化奥氏体不锈钢的摩擦学行为

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The sliding wear and friction behaviour between AFNOR Grade Z6 NCT DV 25-15 precipitation hardening austenitic stainless steel and NiCr-B hardface coating was investigated in high purity liquid sodium at 823 K employing an indigenously developed reciprocating-type tribometer. The specimens for testing were in the form of pins and disc, with two pins in contact with both the surfaces of a disc specimen. The pin and disc specimens were made from precipitation hardened Z6 NCT DV 25-15 alloy and NiCr-B alloy deposited on 316L stainless steel substrate using Plasma Transferred Arc (PTA) welding process respectively. Testing was carried out at sliding speeds of 2 mm/s for a total sliding distance of 200 m under contact stress of 10 and 20 MPa respectively. The static friction coefficient (μ_s) and dynamic friction coefficient (μ_d) were estimated from the maximum value of friction force at the start of the movement and from the friction force measured during movement respectively. In both the tests μ_d was found to be significantly lower than μ_s. Weight loss measured for both the pins and disc at the end of the tests were negligible and this indicates that wear is very low in both the tests carried out at contact stress of 10 and 20 MPa. Worn scar profilometry on disc specimens was also carried out using Talysurf CLI 1000 Optical Profilometer with laser triangulation gauges, which revealed scars with larger scar depth on disc tested at 20 MPa stress level than on disc tested at stress level of 10 MPa. Scanning Electron Microscopy (SEM) on worn disc specimens revealed the presence of deformed and delaminated layer zone in both the cases. However this was significantly more in disc tested at 20 MPa, which is due to higher localized stress between rubbing surfaces at this stress level. It is concluded from this study that the static and dynamic friction coefficients (μ_s and μ_d) values are about 0.2 and 0.10 obtained at 20 MPa which are more than the friction coefficients values of about 0.11 and 0.05, respectively, at 10 MPa stress level. This is attributed to higher surface degradation caused by deformation and delamination at 20 MPa stress than at 10 MPa stress level. Results also indicate negligible wear loss in liquid sodium, which could be due to the lubricating action of liquid sodium.
机译:在823K的高纯度液体钠中,在823K采用本发明开发的往复式摩擦计的高纯度液体钠中研究了折叠级Z6 NCT DV 25-15沉淀硬化奥氏体不锈钢和NiCR-B硬表面涂层之间的滑动磨损和摩擦行为。用于测试的标本是销和盘的形式,具有两个与盘样本的表面接触的引脚。使用等离子体转印的电弧(PTA)焊接工艺,由沉积在316L不锈钢基板上的沉淀硬化的Z6 NCT DV 25-15合金和NiCR-B合金制成销和盘标。测试在2mm / s的滑动速度下进行,该速度为2mm / s的总滑动距离,分别在接触应力为10和20MPa的接触应力下进行。从运动开始时的摩擦力的最大值和分别在移动期间测量的摩擦力估计静态摩擦系数(μ_s)和动态摩擦系数(μ_d)。在测试μ_d中,发现μ_d明显低于μs。测试结束时销钉和盘的重量损失可以忽略不计,这表明在接触应力的测试中磨损非常低,在10和20MPa的接触应力下进行。使用Talysurf CLI 1000光学轮廓仪进行激光三角测量仪的磨损瘢痕样品,其中透露了在20MPa应力水平上测试的圆盘上具有较大瘢痕深度的疤痕,而不是在10MPa的应力水平上测试的圆盘上。磨损盘样本上的扫描电子显微镜(SEM)显示出在这种情况下存在变形和分层的层区。然而,这在20MPa的圆盘中显着更多,这是由于这种应力水平在摩擦表面之间的局部应力较高。从该研究结束,静态和动态摩擦系数(μ_和μ_d)值为约0.2和0.10,在20MPa中获得,分别在10MPa应力水平下大于约0.11和0.05的摩擦系数值。这归因于由20MPa应力下的变形和分层引起的更高的表面劣化,而不是在10MPa应力水平下引起。结果还表明液体钠中的可忽略不计,这可能是由于液体钠的润滑作用。

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