Effect of Rolling Process on Microstructure and Wear Properties of High Carbon Equivalent Gray Cast

来源 :武汉理工大学学报(材料科学版)(英文版) | 被引量 : 0次 | 上传用户:douliangster
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Rolling process based on the plastic deformation as a surface strengthening treatment was employed, aiming to improve the wear resistance ability and functional performance of the high carbon equivalent gray cast iron (HCEGCI). The microstructures and tribological performance of the untreated and rolled samples were characterized. In addition, the wear mechanism of HCEGCI samples was also studied via pin-on-disc tests. The experimental results show that the as-rolled samples possess the structure-refined layer of 15 μm and work-hardened layer of 0.13 mm. In comparison with the surface hardness of untreated samples, the surface hardness of as-rolled samples increases by 84.6% (from 240HV0.1 to 443HV0.1) and the residual compressive stresses existed within the range of 0.2 mm. The wear rates of as-rolled samples were decreased by 38.4%, 37.5%, and 44.4% under different loads of 5 N, 10 N, and 15 N, respectively. The wear characteristics of the untreated samples mainly exhibit the peeling wear coupled with partial adhesive and abrasive wear. However, as for the as-rolled samples, the adhesive wear was limited by the structure-refined layer and the micro-crack propagation was controlled by the work-hardened layer. Therefore, the wear resistance of as-rolled samples can be improved significantly due to the low wearing degree of the friction contact zone.
其他文献
A hyperbranched epoxy (AHEP) resin with terminal allyl groups was synthesized. The number average molecular weight of the synthesized AHEP is 1260, the multi-dispersion coefficient is 1.88, and the branching degree is 0.9. The hyperbranched epoxy resin an
Both experimental and numerical approaches were used to study dynamic failure properties and patterns of flattened Brazilian discs, containing two prefabricated cracks intersected at a varying angle. Mechanism of crack initiation, propagation, and cut-thr
This article explores the effects of doping ferroelectric materials MgTiO3 with different proportions on the properties of polyaniline (PANI). PANI / MgTiO3 composites were prepared by in-situ composite method. Fourier transform infrared spectroscopy (FTI
Hollow silica nanospheres with radical pore on the surfaces were prepared using the assemblies of valine amphiphilic small molecule and benzene as double-templates through sol-gel method in tetramethylammonium hydroxide (25wt%) solution at the stirring ra
High entropy alloys (HEAs) possess good mechanical properties and a wide range of industrial applications. In this paper, phase formation prediction theory, microstructure, properties and preparation methods of light-weight HEAs (LWHEAs) were reviewed. Th
Through the influence of the dosage of culture solution and calcium source on hardness and compressive strength of samples, the formulation of microbial cementitious materials was optimized and defined. The influence of temperature on composition, microst
We demonstrate a 2205 duplex stainless steel (DSS) synthesized by aluminothermic reaction and followed two-step rolling which had a superior yield strength of 863 MPa, ultimate tensile strength of 1103 MPa and an elongation of 21% at room temperature. The
The active oxygen species in the catalytic oxidation system of Fe(Ⅲ)PcTs-t-BuOOH were identified, and the mechanism of the catalytic oxidation of phenolic substrates was proposed. Quinone imine molecules, the main products of catalytic oxidation reaction,
The changes of the microstructure and the mechanical properties of FeCrMoCBY amorphous coatings prepared by plasma spraying after heat treatment were investigated. 300, 400, 500 and 600 ℃ were selected as the heat treatment temperature, and the crystalliz
A facile modification strategy is developed to promote the proliferation and osteogenic differentiation of rat bone marrow stromal cells (rBMSCs) through deposition of a bioactive calcium silicate (CS) coating on the porous surface of poly (ether-ether-ke