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971.
1 Introduction Magnesium alloys are attractive for applications in the automobile, aerospace and electronic industries due to their light mass, high stiffness, high specific strength, good dimensional stability and damping capacity. It is the lightest sp… 相似文献
972.
Morphology, structure and formation mechanism of silicide coating by pack cementation process 总被引:3,自引:0,他引:3
The MoSi2 coating on C 103 niobium based alloy was prepared by pack cementation method. The formative mechanism, morphology and structure of coating were investigated. The silicide coating was formed by reactive diffusion obeying parabolic rule during pack cementation process. It is found that the composite structural coating is composed of three inferior layers as follows. The main layer is composed of MoSi2, the two phases' transitional layer consists of NbSi2 and a few NbsSi3 and the diffuse layer is composed of NbsSi3. The dense amorphous glass layer formed on the surface at high temperature oxidation circumstance can effectively prevent the diffusion of oxygen into coating. 相似文献
973.
The analysis of the microstructural characterization and phase composition of electron beam welded joint zones of Ti- 43Al-9V-O. 3Y alloy has been done in this study. The welded seam is mainly composed of B2 phase, the partial γ + α2 twophase lamellar structure and granular γm phase. And the lanthanon Y existed as YAl2 phase and served as grain refined. The impact of different cooling rates on joint microstructure, fracture characteristic and tensile strength were investigated. The high cooling rate restrained the structural transformation and resulted in the ordering structure. The fracture of the joint was brittle cleavage fracture because the ordering structure went against restraining the crack propagation. With the decrease of cooling rate, the transformation amounts of lamellar structure increased, and the fracture presented the layered and crosslayered characteristic. 相似文献
974.
系统地改变A201(0.75%Ag)铝合金平板铸件的长度、厚度及冒口大小,以探讨这些冒口对不同尺寸A201平板铸件抗拉强度及微孔隙的影响程度,进而在铸造生产中,可为冒口设计及金属凝固控制提供参考。型砂为100%硅砂。试验结果表明,A201铝合金平板铸件的力学性能及微孔隙受冒口补充的影响,当微孔隙增加时,会降低铸件的抗拉强度及伸长率。 相似文献
975.
976.
977.
978.
LI Zhigang JIA Chengchang SUN Lan HE Yuntao FAN Shimin 《稀有金属(英文版)》2006,25(2):124-128
1. Introduction W-Cu alloys are widely used in many fields due to their superior properties [1]. With the rapid de-velopment of technology, more demands are being made on the W-Cu alloys. For instance, higher heat conductivity, lower thermal expansion coefficient, and more rigorous air tightness are required when these alloys are used for electronic package materi-als, such as heat sink materials. Especially, the re-quirement of more rigorous air tightness means that the W-Cu alloys must pos… 相似文献
979.
采用自行开发的控制往复喷射成形专利技术,以产业化规模制备了铝合金锭坯,研究了对传统铸造A356铝合金的组织及其力学性能的影响.结果表明:喷射成形态合金组织均匀,致密度达到95.8%;挤压态合金中均匀分布大量细小Si颗粒;固溶温度为540℃,时效温度为160℃,时效10 h时硬度达到峰值,继续延长时效时间对硬度值影响甚微;经过固溶时效处理的A356铝合金常温抗拉强度σb=337 MPa,屈服强度σ0.2=281 MPa,伸长率δ5=18.3%,分别提高21.2%,35.7%,205%. 相似文献
980.
Qun-Feng Chang Da-Yong Li Ying-Hong Peng Xiao-Qin Zeng 《International Journal of Machine Tools and Manufacture》2007,47(3-4):436-443
Warm forming of magnesium alloy sheet has attracted more and more attention in recent years. The formability of magnesium alloy sheet at elevated temperature depends on appropriate processes, and the fabrication of high-performance sheet. In this research, an AZ31 magnesium alloy sheet with excellent performances is fabricated by the cross-rolling and the uniform annealing treatments. The uniaxial tensile tests are conducted using a Gleeble 3500 thermal–mechanical simulator, and the mechanical properties of AZ31 magnesium alloy sheet are analyzed. Finally, some limiting drawing ratio (LDR) experiments are performed. The experiments show that the LDR can reach 2.0 at the forming temperature of 150 °C and the drawing velocity of 15 mm/s. A warm deep drawing process is also simulated by the finite element method. The influences of drawing temperature and blank holder force on the formability are numerically investigated. The simulation demonstrated that variable blank holder force technology can improve the LDR from 3.0 to 3.5, and decrease the wall thinning ratio from 15.21% to 12.35%. 相似文献