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911.
AA 6061 alloy and interstitial-free(IF)steel plates were joined by the friction stir welding(FSW)method,and the microstructure,mechanical properties,and biaxial stretch formability of the friction stir welded(FSWed)parts were investigated.The results indicate that the FSWed parts showed optimum tensile strength during FSW with the 0.4-mm offset position of the tool.The Fe4Al13 intermetallic compound formed in the defect-free intersection of AA 6061 and IF-steel plates during FSW.The hardness of the IF-steel part of the FSWed region increased almost 90%relative to its initial hardness of HV0.2 105.The tensile and yield strengths of FSWed regions were approximately 170 MPa and 145 MPa,respectively.According to the formability tests,the Erichsen Index(EI)of the IF-steel,AA 6061,and the FSWed samples were determined to be 2.9 mm,1.9 mm,and 2.1 mm,respectively.The EI of the FSWed sample was almost the same as that of the AA 6061 alloy.However,it decreased compared with that of the IF-steel.The force at EI(FEI)was approximately 1180 N for the FSWed condition.This value is approximately 70%higher than that of AA 6061 alloy.  相似文献   
912.
新型多孔Ti-Nb合金因为具有良好的生物相容性,在硬组织植入材料领域中受到关注。本文利用纯Ti和Nb粉采用粉末烧结法制备多孔Ti-45Nb合金。通过造孔剂NH4HCO3调控多孔钛合金的孔隙度、孔隙尺寸、孔隙形貌、弹性模量和抗压强度。研究结果表明:随着造孔剂含量的增加,多孔Ti-45Nb合金的孔隙度和孔隙尺寸增大,孔隙连通性增加;弹性模量和抗压强度减小。多孔Ti-45Nb合金的孔隙特性和力学性能满足硬组织植入材料的基本要求。  相似文献   
913.
通过氧氮分析、SEM和EDS对Ti‐IF钢冶炼过程不同阶段钢液及铸坯进行分析,研究钛铁合金所含杂质对Ti‐IF钢洁净度的影响。结果表明,Ti‐IF钢冶炼过程添加FeTi70时,RH出站处钢液中的平均氮含量较添加FeT i30时增加值为8.86×10-6,铸坯平均氮含量较添加FeT i30时增加值为10.83×10-6,这是由于所用FeTi70合金中T(O)、N含量较高,这些在RH冶炼过程中较难去除的 O、N元素形成尺寸不同的含氧夹杂,其结果降低了T i‐IF钢洁净度。  相似文献   
914.
碳纤维布加固铝合金连接试验   总被引:1,自引:1,他引:0  
铝合金材料的可焊性较差,焊接热影响区强度降低显著,用碳纤维布加固铝合金是一种有效的措施.为此探究了碳纤维布与铝合金间的黏结性能,完成2批共计37个碳纤维布加固铝合金双搭接节点试验,研究了碳纤维布黏结长度、宽度、层数、碳纤维布材料以及黏结构造等对黏结效果的影响.总结了碳纤维布加固铝合金双搭接节点的破坏模式和破坏机理,得到碳纤维布的应力应变分布规律,提出了双搭接节点的有效黏结长度和承载力实用计算公式.  相似文献   
915.
通过金相显微镜和室温拉伸性能测试,研究固溶处理对TC16钛合金棒材显微组织和拉伸性能的影响.结果表明:TC16钛合金低于800℃进行固溶处理,初始组织为初生α相和亚稳态β相,随着固溶温度的升高,亚稳态β相会发生α"马氏体转变,温度达到900℃时,α"马氏体析出晶界完整的β相,出现过烧组织,抗拉强度和屈服强度先降后升,温度对塑性影响不大.该合金固溶处理后,冷镦性能差,不同的冷却速度使钛合金有不同的α和β相比率,冷却速度决定β→α转变反应中间相的形成条件,水淬、空冷、炉冷后的TC16钛合金显微组织和拉伸性能差异较大.  相似文献   
916.
In this paper, the stress-rupture tests of a low Re-containing single crystal alloy IC21 before and after thermal exposure at 1100 ℃for various periods of time were conducted under the test condition of 1100 ℃/137 MPa, and the microstructure of the tested specimens was characterized by SEM and TEM. The experimental results showed that the stress rupture life of this alloy was over 150 h after the standard heat treatment of1320 ℃, 10 h/AC t 870, 32 h/AC, however the stress rupture life decreased with the increase of exposure time due to the microstructure degradation. The TEM analysis revealed that the interface mismatch dislocation networks were well established. It was observed that these mismatch networks could form at 1100 ℃ even after thermal exposure for 1 h without the external stress, which is quite different from that in the traditional single crystal superalloys.  相似文献   
917.
High temperature heat treatments were conducted for as-cast N08028 alloy to obtain various microstructures with different amounts of σ-phase,and then hot compression tests were carried out using Gleeble-3500 thermo-mechanical simulator in deformation temperature range from 1100 to1200 ℃ and strain rate range from 0.01 to 1 s-1. For the same initial microstructure, the flow stress was observed to increase with increasing the strain rate and decreasing the deformation temperature, while for the same deformation condition, the flow stress was found to increase with increasing the amount of σ-phase in the initial microstructure. Moreover, dynamic recrystallization was found to be the main dynamic soften mechanism. On this basis, Arrhenius-type constitutive equations and artificial neural network(ANN) model with back-propagation learning algorithm were established to predict hot deformation behavior of the alloy. Furthermore, the parameters of constitutive equations were found to be dependent on the initial microstructure, which was also as one of the inputs for the ANN model. Suitability of the two models was evaluated by comparing the accuracy, correlation coefficient and average absolute relative error, of the prediction. It is concluded that the ANN model is more accurately than the constitutive equations.  相似文献   
918.
The hot deformation behavior,hot workability and dynamic recrystallization evolution of Zr-1.0(wt%) Be alloy in single a phase were investigated by conducting hot compression tests.The strain rates ranging from 10~(-3) s~(-1) to 10° s~(-1) and testing temperatures varying from 650 ℃to 850℃ were used.Flow stress was found to increase with increasing strain rate and decrease with the increment of the deformation temperature.A constitutive equation of flow behavior was established to describe the dependence of flow stress on strain rate and deformation temperature.The activation energy for deformation of Zr-1.0Be alloy was determined to be Q= 301 kJ/mol.The processing map of Zr-1.0Be alloy was constructed at strain rates ranging from 10~(-3) s~(-1) to 10° s~(-1) and deformation temperatures varying from 650 ℃ to 850 ℃ at the true strain of 0.7.A processing map was used to identify the best domains of thermal processing,including a domain at a temperature of 650 ℃ and strain rate of 10~(-3) s~(-1) as well as another domain at deformation temperatures ranging from 800 ℃ to 850 ℃ and strain rates varying from 10~(-3) s~-~(-1) to 10~(-1) s~(-1).Microscopic analysis of Zr-l.OBe alloy showed that the flow instability and kink were very obvious at low temperatures and high strain rates.At high temperatures and low strain rates,the dynamic recrystallization became the main softening mechanism during hot working.  相似文献   
919.
研究金刚石包埋深度分别为20%、40%、50%、60%、80%的钎料对单层钎焊金刚石工具性能的影响。利用有限元软件ANSYS对Ag-Cu-Ti合金钎焊金刚石过程中形成的残余应力进行数值模拟,采用线性和静态的分析方法。研究结果表明,最大应力值位于金刚石和钎料界面结合处的最底部,应力从金刚石底部到顶部逐渐减小,金刚石受拉应力,钎料和工具基体受压应力。当金刚石的包埋深度介于20%与40%之间时,钎焊残余应力最小。  相似文献   
920.
为改善5083铝合金的力学性能,先后对其进行一道次等通道转角挤压处理及再结晶退火处理,再进行拉伸实验,分析变形温度、变形速率对合金伸长率和抗拉强度的影响,并观察合金的断口形貌.结果表明,在拉伸温度为100℃,应变速率为6.67×10-4 s-1时,合金的抗拉强度最高,达到319.7 MPa;当拉伸温度为300℃,应变速率为1.67×10-4 s-1时,合金的伸长率最大,达到75.8%.在拉伸变形过程中,合金出现应变硬化和应变软化现象,并且伴随有锯齿形流变现象.拉伸试样的断裂形式宏观表现为韧性断裂,微观形式为穿晶断裂,断口形貌由韧窝组成.随着变形温度的升高,韧窝的数量增多,尺寸变大,分布变均匀.  相似文献   
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