...
首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Cavitation erosion behavior of microwave-processed Ni-40Cr_3C_2 composite dads: A parametric investigation using ultrasonic apparatus
【24h】

Cavitation erosion behavior of microwave-processed Ni-40Cr_3C_2 composite dads: A parametric investigation using ultrasonic apparatus

机译:微波处理NI-40CR_3C_2复合爸爸的空化腐蚀行为:采用超声波仪的参数研究

获取原文
获取原文并翻译 | 示例

摘要

Cavitation erosion is the primary cause of material failure of the hydroelectric power plant components. The rapid development in the advanced surface engineering techniques has provided an effective treatment solution for cavitation erosion. One such novel method is microwave cladding. Hence, the Ni–40Cr_(3)C_(2)composite clad was deposited on austenitic stainless steel (SS-316) using a microwave cladding process in the present study. The processing was carried out in a domestic microwave oven of 2.45 GHz frequency and 900 W power. The developed clad was thoroughly characterized for the metallurgical and mechanical properties related to its behavior as a successful cavitation erosion resistance material, like microstructure, crystal structure, porosity, microhardness, flexural strength, and fracture toughness. The results showed that the stripe-type and agglomerated carbides were present in the Ni–40Cr_(3)C_(2)clad. The developed composite clad consists of various carbides (SiC, Ni_(3)C, Cr_(3)Ni_(2)SiC, Cr_(7)C_(3), and NiC) and intermetallic phases (Ni_(3)Fe, Ni_(2)Si, and Cr_(3)Si). Microhardness, flexural strength, and fracture toughness of the microwave-processed clad were observed to be 605 ± 80 HV_(0.3), 813.23 ± 16.2 MPa, and 7.44 ± 0.2 MPa√m, respectively. The microwave-processed composite clad performance in terms of cavitation erosion resistance was determined using the ultrasonic apparatus (ASTM-G32-17). The cavitation experiments were carried out according to Taguchi L9 orthogonal array, taking into account three parameters: standoff distance, amplitude, and immersion depth. The developed composite clad exhibited significant resistance (mass loss 7.6 times lesser as compared to SS-316) to cavitation erosion. ANOVA results showed the standoff distance as the most important factor followed by amplitude and immersion depth. Least cavitation resistance was observed at a smaller standoff distance, higher amplitude, and lower immersion depth. Linear regression equations were obtained to establish the correlation between parameters and cumulative mass loss. The microwave clad specimens tested at optimized test parameters were damaged in the form of fractured intermetallic, extruded lips, pits, and craters.
机译:空化侵蚀是水力发电设备部件材料故障的主要原因。先进的表面工程技术的快速发展提供了一种有效的浮雕侵蚀解决方案。一种这样的新方法是微波包层。因此,将Ni-40Cr_(3)C_(2)的复合包层沉积在奥氏体不锈钢(SS-316),使用在本研究中微波熔覆工艺。该加工在2.45GHz频率的家用微波炉中进行,900 W电源进行。开发的包层彻底地表征了冶金和机械性能,与其行为有关作为成功的空化蚀阻材料,如微观结构,晶体结构,孔隙率,微硬度,弯曲强度和断裂韧性。结果表明,条纹型和附聚的碳化物存在于Ni-40Cr_(3)C_(2)包覆中。开发的复合包层由各种碳化物(SiC,Ni_(3)C,CR_(3)Ni_(2)SiC,CR_(7)C_(3)和NIC)和金属间相(NI_(3)FE,NI_组成) (2)SI,和CR_(3)SI)。观察到微波处理的包层的显微硬度,弯曲强度,和断裂韧度为605±80 HV_(0.3),813.23±16.2兆帕,和7.44±0.2MPa√m,分别。使用超声波装置(ASTM-G32-17)测定微波处理的复合材料在空化腐蚀性抗性方面的性能。通过Taguchi L9正交阵列进行空化实验,考虑到三个参数:支架距离,幅度和浸没深度。开发的复合材料包层表现出显着的阻力(与SS-316相比的质量损失7.6倍),以进行空化腐蚀。 ANOVA结果显示了支架距离作为最重要的因素,然后是幅度和浸入深度。在较小的支座距离,较高幅度和更低的浸入深度下观察到最小空化阻力。获得线性回归方程以确定参数与累积质量损失之间的相关性。在优化的测试参数上测试的微波层状标本以裂缝金属间质,挤压嘴唇,坑和陨石坑的形式损坏。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号