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基于CATIA的橡皮囊液压成形钣金件回弹工艺数模生成技术研究 被引量:5
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作者 韩志仁 刘振宇 +1 位作者 石章虎 刘雁 《现代制造工程》 CSCD 北大核心 2019年第7期89-95,共7页
橡皮囊液压成形零件普遍存在的回弹是影响成形质量的重要因素之一,建立钣金件回弹工艺数模是实现回弹补偿的重要途径。以模线理论和单截面修正方法为基础,采用单截面回弹补偿与多截面曲面拟合相结合的方法,建立包括回弹补偿的钣金件表面... 橡皮囊液压成形零件普遍存在的回弹是影响成形质量的重要因素之一,建立钣金件回弹工艺数模是实现回弹补偿的重要途径。以模线理论和单截面修正方法为基础,采用单截面回弹补偿与多截面曲面拟合相结合的方法,建立包括回弹补偿的钣金件表面,通过边界转移、增厚等方法得到钣金件回弹工艺数模。对CATIA进行二次开发,建立了内嵌回弹数据库,实现了回弹工艺数模快速生成软件,测试结果表明:使用本软件回弹工艺数模的生成效率提高了3倍以上。 展开更多
关键词 橡皮囊液压成形 回弹补偿 钣金件 回弹工艺数模快速生成 组件应用架构
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带缺口飞机框肋类零件展开工艺数模快速设计 被引量:1
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作者 韩志仁 王毛 +1 位作者 张敏 余志良 《制造技术与机床》 北大核心 2019年第1期78-83,共6页
飞机零件工艺数模设计效率直接影响飞机数字化制造周期,提高零件工艺数模设计效率是数字化制造中急需解决的问题之一。通过分析零件展开工艺数模理论,充分利用CATIA/CAA开发平台优势,开展了飞机框肋类零件快速展开工艺数模技术研究,研... 飞机零件工艺数模设计效率直接影响飞机数字化制造周期,提高零件工艺数模设计效率是数字化制造中急需解决的问题之一。通过分析零件展开工艺数模理论,充分利用CATIA/CAA开发平台优势,开展了飞机框肋类零件快速展开工艺数模技术研究,研发了一套系统适用于复杂框肋类零件展开工艺数模快速设计软件,并以实例进行了验证。介绍了系统的设计流程以及关键技术。该系统保证了展开信息的准确性,提高了工艺稳定性,满足了质量需求,缩短了制造周期,在实际生产应用中有着重要作用。 展开更多
关键词 飞机框肋类零件 缺口 快速展开 工艺数模 CAA
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工艺数模在ARJ21飞机钛合金零件制造中的应用 被引量:3
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作者 张云鹏 白杨 李东升 《机械设计与制造》 北大核心 2014年第3期224-226,共3页
随着现代飞机制造技术的不断提高,零件的复杂程度在逐渐加大,钛合金的应用也愈加广泛,这就对钛合金零件加工工艺提出了更高的要求。对于复杂钛合金零件数字化加工所用到的工程数模有的不能完全满足加工需要,为此,需要根据零件形状和材... 随着现代飞机制造技术的不断提高,零件的复杂程度在逐渐加大,钛合金的应用也愈加广泛,这就对钛合金零件加工工艺提出了更高的要求。对于复杂钛合金零件数字化加工所用到的工程数模有的不能完全满足加工需要,为此,需要根据零件形状和材料特性等相关工艺重新构建区别于工程数模的工艺数模,进而更好地完成钛合金零件的加工制造。这里主要介绍了工艺数模在ARJ21飞机焊接类钛合金零件加工制造过程中的具体应用实例。 展开更多
关键词 ARJ21 钛合金 工艺数模 工程数模 焊接 超塑成形
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大曲率整体蒙皮镜像加工工艺数模设计技术 被引量:2
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作者 杨开海 雷玉如 +2 位作者 李仁花 张文俊 陈志敏 《南方农机》 2021年第8期129-130,共2页
某机型整体蒙皮,曲面凹凸相间,曲率大,半径小,外形陡峭变化,涉及数控镜像铣切减重区域、切通窗、切边及钻孔等多种工艺,镜像铣切加工时,型面与铣刀刀轴相碰,加工难以实现。本文阐述了一种避免型面与刀轴相碰,且保证该类整体蒙皮镜像加... 某机型整体蒙皮,曲面凹凸相间,曲率大,半径小,外形陡峭变化,涉及数控镜像铣切减重区域、切通窗、切边及钻孔等多种工艺,镜像铣切加工时,型面与铣刀刀轴相碰,加工难以实现。本文阐述了一种避免型面与刀轴相碰,且保证该类整体蒙皮镜像加工质量的过渡工艺数模设计方式。 展开更多
关键词 整体蒙皮 数控镜像铣 过渡工艺数模
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大曲率复杂钛合金零件成形工装设计研究 被引量:2
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作者 张云鹏 《航空制造技术》 北大核心 2013年第16期116-118,共3页
在钛合金零件加工过程中,热成形和超塑成形是零件成形的两种方式,而这两种方式加工依据是成形工装,通过对成形工装的合理设计,可以有效提高钛合金零件成形的表面质量和工作效率,所以,成形工装的设计将是钛合金零件加工的关键因素。
关键词 钛合金 工装设计 热成形 超塑成形 工艺数模
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空间曲面类复合材料构件固化变形修正软件开发 被引量:1
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作者 刘宝明 项松 +1 位作者 薛继佳 曲长征 《机床与液压》 北大核心 2017年第20期6-8,34,共4页
利用CATIA/CAA二次开发技术,以CATIA软件作为开发平台,开发复合材料修正软件,能够完成空间曲面类复合材料构件的固化变形修正,生成用于制造模具的工艺数模。详细介绍了软件的总体结构和各功能模块实现方法,并以机翼曲面为例进行了实验... 利用CATIA/CAA二次开发技术,以CATIA软件作为开发平台,开发复合材料修正软件,能够完成空间曲面类复合材料构件的固化变形修正,生成用于制造模具的工艺数模。详细介绍了软件的总体结构和各功能模块实现方法,并以机翼曲面为例进行了实验验证。实验结果表明:经过该软件的修正后,有效控制了复材构件的变形量,提高了产品精度。 展开更多
关键词 空间曲面类复合材料构件 变形修正 CATIA二次开发 工艺数模
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数字化技术降低复合材料的制造成本
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作者 汪心文 冯汉斌 +1 位作者 徐大鹏 李萌 《航空制造技术》 2011年第3期45-47,共3页
采用复材构件的数字化设计和数控下料技术,优化并罐固化方案,提高了复合材料制造效率,降低了制造成本和能源消耗,提高了复合材料构件质量,有显著的经济效益,是当前低成本技术现实的发展途径。该技术已经在某型机批生产中得到广泛应用,... 采用复材构件的数字化设计和数控下料技术,优化并罐固化方案,提高了复合材料制造效率,降低了制造成本和能源消耗,提高了复合材料构件质量,有显著的经济效益,是当前低成本技术现实的发展途径。该技术已经在某型机批生产中得到广泛应用,取得非常好的效果。 展开更多
关键词 复合材料 工艺数模 制造效率 下料 热压罐 铺层 制造成本
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变频和脉冲跳变双模式控制电荷泵的建模和实现
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作者 施明薇 李晴平 +2 位作者 赵梦恋 陈明阳 刘胜 《半导体技术》 CAS CSCD 北大核心 2017年第1期10-16,共7页
提出了一种高性能电荷泵的建模和设计实现方法。为了实现在大的负载电流变化范围内具有高转换效率和低输出电压纹波,提出了变频模式(VFM)和脉冲跳变模式(PSM)双模式控制的电荷泵,并建立了相应的数学模型以方便设计参数的分析和选取。芯... 提出了一种高性能电荷泵的建模和设计实现方法。为了实现在大的负载电流变化范围内具有高转换效率和低输出电压纹波,提出了变频模式(VFM)和脉冲跳变模式(PSM)双模式控制的电荷泵,并建立了相应的数学模型以方便设计参数的分析和选取。芯片采用TSMC0.35μm标准CMOS数模混合工艺进行设计制造,总面积约为1.4 mm×1.5 mm。测试结果表明,所设计的电荷泵在全负载电流范围内(5~100 m A)能够实现双模式的自动切换,取得较低电压纹波和较高效率,达到了设计预期,从而验证了变频和脉冲跳变双模式控制电荷泵的可行性。 展开更多
关键词 双模式控制 电荷泵 低电压纹波 高转换效率 标准CMOS数模混合工艺
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Constitutive model and numerical simulation for injection molding of MgTiO_(3) ceramic parts 被引量:1
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作者 GU Xing-jian LIU Kai +2 位作者 HU Jia-ming DU Yan-ying SUN Hua-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期1244-1254,共11页
In order to predict the powder flow law of the injection molding process of MgTiO3 ceramic parts with complex structures,a constitutive model and numerical simulation method for MgTiO3 ceramic injection molding were e... In order to predict the powder flow law of the injection molding process of MgTiO3 ceramic parts with complex structures,a constitutive model and numerical simulation method for MgTiO3 ceramic injection molding were established based on the Hunt method.The material parameters of MgTiO3 such as elastic modulus,Poisson ratio,glass transition temperature,thermal conductivity and specific heat capacity were measured.Based on the fitting curve and the material parameters measured,the cross-WLF viscosity model and P-V-T model required for MgTiO3 ceramic injection molding were optimized.Furthermore,the influence of process parameters on mold filling flow and distribution of parts defects was researched.It was found that the gate position,injection speed and melt temperature have greater influence on mold filling flow and the packing process has an obvious effect on parts’defects.On this basis,the MgTiO3 ceramic parts injection molding experiment verification was carried out.By comparing the experimental results with the simulated results,it is found that the deformation error is within 1.5%and the density error is within 1%.Therefore,this research provided theoretical guidance for the engineering application of MgTiO3 ceramic parts fabricated by injection molding. 展开更多
关键词 MGTIO3 ceramic injection molding constitutive model process parameters
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Prediction and optimization of process parameter of friction stir welded AA5083-H111 aluminum alloy using response surface methodology 被引量:26
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作者 R.Palanivel P.Koshy Mathews 《Journal of Central South University》 SCIE EI CAS 2012年第1期1-8,共8页
A systematic approach was presented to develop the empirical model for predicting the ultimate tensile strength of AA5083-H111 aluminum alloy which is widely used in ship building industry by incorporating friction st... A systematic approach was presented to develop the empirical model for predicting the ultimate tensile strength of AA5083-H111 aluminum alloy which is widely used in ship building industry by incorporating friction stir welding(FSW) process parameters such as tool rotational speed,welding speed,and axial force.FSW was carried out considering three-factor five-level central composite rotatable design with full replications technique.Response surface methodology(RSM) was applied to developing linear regression model for establishing the relationship between the FSW process parameters and ultimate tensile strength.Analysis of variance(ANOVA) technique was used to check the adequacy of the developed model.The FSW process parameters were also optimized using response surface methodology(RSM) to maximize the ultimate tensile strength.The joint welded at a tool rotational speed of 1 000 r/min,a welding speed of 69 mm/min and an axial force of 1.33 t exhibits higher tensile strength compared with other joints. 展开更多
关键词 friction stir welding design expert design of experiments analysis of variance (ANOVA) response surfacemethodology (RSM) optimization
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Effects of process parameters on warpage of rapid heat cycle moulding plastic part 被引量:3
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作者 刘东雷 辛勇 +1 位作者 曹文华 孙玲 《Journal of Central South University》 SCIE EI CAS 2014年第8期3024-3036,共13页
The effects of process parameters in rapid heat cycle moulding (RHCM) on parts warpage were investigated. A vehicle-used blue-tooth front shell (consisting of ABS material) was considered as a part example manufac... The effects of process parameters in rapid heat cycle moulding (RHCM) on parts warpage were investigated. A vehicle-used blue-tooth front shell (consisting of ABS material) was considered as a part example manufactured by RHCM method. The corresponding rapid heat response mould with an innovational conformal heating/cooling channel system and a dynamic mould temperature control system based on the Jll-W-160 type precise temperature controller was proposed. During heating/cooling process, the mould was able to be heated from room temperature to 160 ~C in 6 s and then cooled to 80 ~C in 22 s. The effects of processing conditions in RHCM on part warpage were investigated based on the single factor experimental method and Taguchi theory. Results reveal that the elevated mould temperature reduces unwanted freezing during the injection stage, thus improving mouldability and enhancing part quality, whereas the overheated of mould temperature will lead to defective product. The feasible mould temperature scope in RHCM should be no higher than 140 ~C, and the efficient mould temperature scope should be around the polymer heat distortion temperature. Melt temperature as well as injection pressure effects on warpage can be divided into two stages The lower stage gives a no explicit effect on warpage whereas the higher stage leads to a quasi-linear downtrend. But others affect the warpage as a V-type fluctuation, reaching to the minimum around the heat distortion temperature. Under the same mould temperature condition, the effects of process parameters on warpage decrease according to the following order, packing time, packing pressure, melt temperature, injection pressure and cooling time, respectively. 展开更多
关键词 rapid heat cycle moulding plastic part process parameters WARPAGE
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Effects of process parameters and die geometry on longitudinal welds quality in aluminum porthole die extrusion process 被引量:2
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作者 刘健 林高用 +2 位作者 冯迪 邹艳明 孙利平 《Journal of Central South University》 SCIE EI CAS 2010年第4期688-696,共9页
By using the rigid-visco-plasticity finite element method, the welding process of aluminum porthole die extrusion to form a tube was simulated based on Deform-3D software. The welding chamber height (H), back dimens... By using the rigid-visco-plasticity finite element method, the welding process of aluminum porthole die extrusion to form a tube was simulated based on Deform-3D software. The welding chamber height (H), back dimension of die leg (D), process velocity and initial billet temperature were used in FE simulations so as to determine the conditions in which better longitudinal welding quality can be obtained. According to K criterion, the local welding parameters such as welding pressure, effective stress and welding path length on the welding plane are linked to longitudinal welds quality. Simulation turns out that pressure-to-effective stress ratio (ρ/σ) and welding path length (L) are the key factors affecting the welding quality, Higher welding chamber best and sharper die leg give better welding quality. When H=10 mm and D=0.4 mm, the longitudinal welds have the best quality. Higher process velocity decreases welds quality. The proper velocity is 10 mm/s for this simulation. In a certain range, higher temperature is beneficial to the longitudinal welds. It is found that both 450 and 465℃ can satisfy the requirements of the longitudinal welds. 展开更多
关键词 aluminum alloy longitudinal welds porthole die die geometry extrusion process K criterion
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Parametric optimization of friction stir welding process of age hardenable aluminum alloys-ANFIS modeling 被引量:2
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作者 D.Vijayan V.Seshagiri Rao 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第8期1847-1857,共11页
A comparative approach was performed between the response surface method(RSM) and the adaptive neuro-fuzzy inference system(ANFIS) to enhance the tensile properties, including the ultimate tensile strength and the ten... A comparative approach was performed between the response surface method(RSM) and the adaptive neuro-fuzzy inference system(ANFIS) to enhance the tensile properties, including the ultimate tensile strength and the tensile elongation, of friction stir welded age hardenable AA6061 and AA2024 aluminum alloys. The effects of the welding parameters, namely the tool rotational speed, welding speed, axial load and pin profile, on the ultimate tensile strength and the tensile elongation were analyzed using a three-level, four-factor Box-Behnken experimental design. The developed design was utilized to train the ANFIS models. The predictive capabilities of RSM and ANFIS were compared based on the root mean square error, the mean absolute error, and the correlation coefficient based on the obtained data set. The results demonstrate that the developed ANFIS models are more effective than the RSM model. 展开更多
关键词 aluminum alloys response surface method(RSM) adaptive neuro-fuzzy inference system(ANFIS) friction stir welding Box-Behnken design neuro fuzzy
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Process parameter effects on microstructure and mechanical properties of tubes processed via friction assisted tube straining method
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作者 S.H.HOSSEINI M.SEDIGHI 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第10期3008-3017,共10页
This paper investigates process parameter effects on microstructure and mechanical properties of the tubes processed via recently developed friction assisted tube straining(FATS)method.For this purpose,design of exper... This paper investigates process parameter effects on microstructure and mechanical properties of the tubes processed via recently developed friction assisted tube straining(FATS)method.For this purpose,design of experiment was used to arrange finite element analyses and experimental tests.Numerical and experimental tests were executed by changing rotary speed,feed rate and die angle.Taguchi design results show that increasing feed rate and decreasing rotary speed enhance Zener-Hollomon(Z)parameter and decrease average grain size,while die angle has no considerable effect.Increasing Z value reduces grain size and enhances flow stress of the processed samples,while the experiment with the highest Z value refines initial microstructure from 40 to 8μm and increases flow stress by 5 times. 展开更多
关键词 friction assisted tube straining process parameter MICROSTRUCTURE Taguchi method finite element simulation
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