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Effects of modeling means on properties of monitoring models of spot welding quality 总被引:1,自引:0,他引:1
Analyzing and modeling the relation between monitoring information during welding and quality information of the joints is the foundation of monitoring resistance spot welding quality. According to the means of modeling, the known models can be divided into three large categories: single linear regression models, multiple linear regression models and multiple non-linear models. By modeling the relations between dynamic resistance information and welding quality parameters with different means, this paper analyzes effects of modeling means on performances of monitoring models of resistance spot welding quality. From the test results, the following conclusions can be drawn: By comparison with two other kinds of models, artificial neural network (ANN) model can describe non-linear and high coupling relationship between monitoring information and quality information more reasonably, improve performance of monitoring model remarkably, and make the estimated values of welding quality parameters more accurate and reliable. 相似文献
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采用Ti-50Ni(at%)钎料实现了TZM合金与ZrC_p-W复合材料的真空钎焊连接,通过SEM、EDS、XRD等方法分析了接头界面的微观组织结构,研究了钎焊温度对TZM/Ti-50Ni/ZrC_p-W接头界面组织及性能的影响。结果表明:钎焊接头的典型界面结构为TZM/Ti-Mo+TiNi_3+Mo-Ti-W/Ti Ni+TiNi_3+W(s,s)+(Ti,Zr)C/ZrC_p-W。随着钎焊温度的升高,Ti-Mo固溶体层宽度逐渐增大,线状条纹增多、增宽,组织逐渐粗大,晶界变圆滑;接头的抗剪强度随钎焊温度升高先升高后降低,当钎焊温度为1340℃,保温10 min时,接头获得最大抗剪强度为146 MPa。 相似文献
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采用Ti-28Ni(wt.%)共晶钎料在1100℃实现了高铌TiAl合金(Ti-45Al-8.5Nb-(W, B, Y) (at.%), 简称TAN)的真空钎焊连接。钎焊接头的典型界面结构为TAN/τ3-Al3Ti2Ni + B2/α2-Ti3Al layer/α2-Ti3Al + δ-Ti2Ni/α2-Ti3Al layer/τ3-Al3Ti2Ni + B2/TAN。深入研究了保温时间对钎焊接头界面组织和连接性能的影响。结果表明:Ni元素从熔融钎料向TAN母材的扩散决定了界面组织的演化,随着保温时间的延长促进了扩散层的增厚,同时导致钎缝宽度逐渐减小。接头剪切强度测试结果显示当保温时间为15分钟时,获得的最大接头室温剪切强度和高温(600℃)剪切强度分别是248.6MPa和166.4MPa。接头断口分析表明在剪切实验中裂纹主要沿着连续的金属间化合物层产生和扩展。 相似文献
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选用Ti机械球磨粉末在Q235钢基体表面进行激光熔覆,并实时通入氮气,使钛与氮气发生反应原位合成TiN涂层.运用SEM,XRD,EDS和BSE分析方法对激光熔覆层的组织及成分进行分析,并对熔覆层硬度、高温稳定性及耐腐蚀性进行测试.结果表明,涂层由TiN,TiO2和铁组成,涂层与基体形成了冶金结合,熔覆区组织成球形颗粒状,而稀释区组织多为树枝晶和针状晶,机械球磨过程可起到细化涂层晶粒作用.同时激光熔覆涂层具有较高的硬度及高温稳定性,当激光功率为1 000 W,扫描速度为600 mm/min时,TiN复合涂层最高表面显微硬度为951.5MPa,涂层耐腐蚀性不佳主要是因为涂层中孔洞及疏松等缺陷导致. 相似文献
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400MPa级超级钢主要特征是高洁净度和超细晶粒组织。采用钨极氩弧焊对400MPa级超级钢施焊,并对其空冷和水冷两种冷却方式下的显微组织和力学性能进行分析。结果表明,空冷条件下焊接接头热影响区(HAZ)晶粒严重长大、强度下降,并出现软化区;焊接过程采用喷水冷却加快了冷却速度,有效抑制了焊接接头热影响区晶粒的长大,改善了接头组织,提高了贝氏体和低碳马氏体的含量,进而改善了接头的综合力学性能,满足实际焊接要求。 相似文献
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