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91.
92.
陶瓷结合剂化学组成的计算与配方优化设计 总被引:1,自引:0,他引:1
本文利用计算机技术.对陶瓷结合剂化学成分进行精密计算.在此基础上,根据结合剂所需要的化学成分,采用数学模型精确优化设计出陶瓷结合剂配方(即各种原材料的配比),文章介绍了上述算法具体实现方法,给出了算法模型和精确的程序语言描述,算法重点解决了误差放大.计算稳定性等工程计算问题,对实际系统运行样本数据进行了验证,同时,文章描述了算法所引用的数据库表的结构设计方法及提高数据库应用效率和灵活性的技巧;分析了整个软件系统模块组成,描述了系统功能。通过实际应用与测试.验证了该系统算法和软件系统的可用性,对研究开发新型陶瓷结合剂具有重要指导作用。 相似文献
93.
94.
0IntroductionRecently,the development of bonding technique ofhigh temperature structure ceramic Si3N4becomes a hottopic in the field of ceramic bonding[1].Partial transientliquid phase bonding(PTLP)has been applied in the fieldof high temperature ceramic bonding and made some pro-gress.The selection of interlayer materials is key to PTLPbonding.Since Bender discovered that Ag-based brazingmaterial including Ti could wet ceramic in1954,morestudies have shown that Ti has good wetting prope… 相似文献
95.
Mechanisms of nanostructure and metastable phase formations in the surface melted layers of a HCPEB-treated D2 steel 总被引:1,自引:0,他引:1
This work investigates the mechanism of surface modification associated with the high-current pulsed electron beam (HCPEB) treatment of a D2 steel with increasing numbers of pulses. The surface layers were melted and resolidified but the treated surfaces showed very different features. This variation is essentially due to the different levels of homogeneity and carbide dissolution. It is demonstrated that the presence of carbides served as nucleation sites for the surface eruption phenomenon that creates craters on the surface. After a sufficient number of pulses, most of the carbides in the surface layer were dissolved and an almost crater-free homogeneous melted layer consisting of a very stable nano-austenite structure was formed. The HCPEB technique is thus demonstrated to be a versatile technique for surface microstructure modification involving, in the case of steels, austenite stabilization and ultrafine grain formation. 相似文献
96.
采用水模拟正交试验研究了影响低压铸造液面上升延迟时间的各因素。结果表明,加压速度和型腔内背压对液面上升延迟时间影响显著。随着加压速度增加,液面上升延迟时间有增加的趋势;型腔内背压增加,液面上升延迟时间增加。气源压力和缝隙式浇注系统的缝隙形态对液面上升延迟时间影响很小。加压曲线形态对液面上升延迟时间有一定的影响,加压速度低时,先加速而后减速,此时液面上升延迟时间较小;而加压速度高时,先加速而后减速,液面上升延迟时间更小。 相似文献
97.
无缝管轧制变形区内金属流动和摩擦力的实验研究 总被引:3,自引:0,他引:3
用自行设计的实验装置真实描述出无缝管轧制变形区内单位轧制力,纵、横向摩擦力的分布规律,绘制出变形区各点的摩擦力分布和金属流动轨迹图。 相似文献
98.
A integrated intelligent system for seam tracking and penetration control is given. The system received information of welding seam error and penetration depth from only one sensor, then, it realized seam tracking and penetration control simultaneously. This paper introduces constitution of the system, methods of information recognition, design of the neuralfuzzy controller and results practically. 相似文献
99.
SiC颗粒增强锌基复合材料硬度的研究 总被引:1,自引:0,他引:1
本文研究了热处理条件对SiC/Zn基复合材料硬度的影响,分析了循环等温处理过程中复合材料硬度的变化规律,并讨论了复合材料组分、温度以及热处理条件与该复合材料硬度特性的关系,提出了改善这类复合材料硬度的途径。 相似文献
100.
In this paper, in situ synthesized TiC particles reinforced Fe-based surface composite coatings by multi-pass overlapping gas tungsten arc welding (GTAW) melting process employing a proper amount of graphite and ferrotitanium (FeTi) on AISI 1020 steel substrate was produced. The microstructure and wear properties of the composite coatings were investigated by means of an electron microprobe microanalysis (EPMA), X-ray diffractometer and wear tester. The results showed that the multi-pass overlapping GTAW melting surface composite coatings can be obtained under suitable welding parameters, and no crack and porosity are found in the tracks. The X-ray and EPMA results confirm that TiC particles can be formed via reaction of FeTi and graphite during multi-pass overlapping GTAW melting process. TiC particles present cubic and dendrite shape in the non-overlapping zone. It is found that there occurred TiC particles coarsening at the overlap regions, which can lead to detrimental effects on the hardness and wear performance. Composite coatings give a high hardness and excellent wear resistance; and the wear friction coefficient of the coating is less than that of the 1020 steel. As a result, multi-pass overlapping GTAW melting process can be used effectively for producing surface composite coatings with a pre-placed powder to improve wear resistance of the AISI 1020 steel. 相似文献