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1.
以控制大截面Z型材四轴滚弯成形中型材局部起皱、扭曲等质量缺陷为目的,利用ABAQUS有限元软件数值模拟大截面Z型材数控四轴滚弯过程,在分析滚弯成形缺陷产生原因的基础上,提出了侧滚轮非对称加载和二次滚弯方式控制成形缺陷的方法。结果表明:二次滚弯方式对起皱缺陷具有较好的改善作用;侧滚轮非对称式加载方式(左侧滚轮高于右侧滚轮),对起皱和扭曲等缺陷具有明显的抑制作用。滚弯试验结果证明,型材滚弯成形的扭曲量相比数值模拟结果误差在10%以内。  相似文献   

2.
型材拉弯回弹有限元分析   总被引:6,自引:0,他引:6  
对两种不同截面的铝型材分别在6种不同拉弯成形工艺中的拉弯过程进行有限元数值模拟,探讨成形工艺、弯曲半径与型材截面形状对拉弯成形后型材回弹的影响。  相似文献   

3.
滚弯成形解析建模与数值分析   总被引:1,自引:0,他引:1       下载免费PDF全文
建立了考虑材料塑性强化的滚弯成形力学分析解析模型,推导出了应力应变、残余应力以及回弹半径计算公式.基于非线性有限元软件,对滚弯成形进行了动态模拟,对应力应变状态、塑性应变分布、残余应力以及回弹等进行了分析计算,结果表明:板料滚弯成形初始效应明显,下压点附近曲率不均匀;采用足够的滚弯时间后,中间段的曲率均匀度很好;成形半径与上辊下压量呈近似幂函数关系;多道次滚弯可以减小两端的曲率波动和最大应力应变.最后通过与滚弯成形试验数据的对比,分析和验证了解析模型与数值模型的适用性和精度.  相似文献   

4.
型材下陷成形回弹补偿算法   总被引:1,自引:0,他引:1  
下陷成形是一种适用于飞机长桁零件制造的成形工艺,成形后零件发生回弹,并且腹板上方缘条回弹量较大。因此,要在准确预测回弹量的基础上对模具型面进行修正,消除回弹对成形精度的影响。本文针对型材下陷成形提出了一种基于有限元计算的平整性修模与下陷深度修模结合的模具型面迭代修正算法,并应用该算法对角型材、角形带弯钩型材及Z字型材三种型材的下陷零件进行了修模计算分析。从对计算结果的分析中,证明了该回弹补偿方法具有计算精度高、收敛速度快的优点。  相似文献   

5.
典型型材拉弯过程中因存在回弹而不利于模具的设计制造.通过经验法给出拉弯回弹值并进行修模后所拉弯成形的零件不符合制造技术要求,且反复试验有很大的不确定性,存在制造风险.本文通过前期采用有限元仿真技术对典型型材拉弯成形过程进行模拟分析,确定各类参数对零件变形的影响,预测零件在拉弯成形过程中的变形情况,获得型材在理论载荷状态...  相似文献   

6.
采用弹塑性有限元方法对不同预拉力下角型材的转台式拉弯成形过程进行了模拟.首先建立转台式拉弯成形过程的有限元模型,然后通过分析由模拟计算所得到的不同预拉力下拉弯零件的应力应变场和回弹角,得出预拉力对角型材拉弯零件回弹的影响规律.所得结果可作为设计拉弯成形模具和确定拉弯工艺参数的参考.  相似文献   

7.
刘碧颖  李恒  李龙  杨合  谷瑞杰 《航空学报》2016,37(3):1074-1082
中性层偏移是表征管材弯曲内外侧不均匀变形程度的关键参数。基于弯管截面力矩平衡条件,建立了引入材料参数的管材弯曲变形中性层偏移解析模型,针对管材数控绕弯和压弯过程对所建模型从多个方面进行了评估,研究了不同几何和材料等管材本征参数下的管材弯曲中性层偏移规律。结果表明:应用于TA18钛管数控绕弯,发现所建解析模型与已有解析方法预测精度相当,但能考虑材料参数影响,且相较于有限元模拟,本文解析模型更接近实验结果;应用于A6063铝合金管和AZ31镁合金管压弯过程,并与Hasegawa解析方法相较,发现本文解析模型能够准确预测拉压不对称对压弯中性层偏移的影响;弯曲半径减小,弯管直径增大,中性层向弯曲内侧移动;拉压屈服强度比减小,厚向异性指数增大,中性层向弯曲内侧移动。  相似文献   

8.
在考虑加载历史的情况下,采用数值方法分析板材一次拉弯成形,利用应变增量理论,由差分方程求算应力分布,推导出回弹后的应变中性层弯曲半径及弯曲角的计算公式,并对几种成形方式的回弹加以比较.  相似文献   

9.
基于有限元模拟的三维型材拉弯轨迹设计   总被引:2,自引:0,他引:2  
针对三维型材拉弯,提出一种基于变形控制有限元模拟的轨迹设计方法。首先提取模具长度方向特征线并将其离散成诸多线段单元,这样毛料逐步包覆模具的过程就变成毛料包覆这些线段单元的过程。给定毛料依次包覆线段单元发生的变形,根据切线接触条件(拉弯成形过程中毛料离开模具的位置处两者相切)计算出每步毛料末端位移。将这些位移作为边界条件输入有限元模型中计算毛料应力、应变和回弹。根据成形极限图和规定最大回弹超差量来调整变形模式,找到优化的变形模式和拉弯轨迹。以中空矩形截面型材三维拉弯为例,给出了轨迹设计的详细流程。  相似文献   

10.
为了有效地解决航空发动机导管弯曲成形时的回弹问题,开展了0Cr18Ni9不锈钢管数控弯曲工艺试验,采用单一变量 法研究了管径、壁厚、相对弯曲半径、弯曲角对回弹的影响规律,并通过数值仿真和正交试验法分析了弯曲速度、弯模间隙等工艺 参数,以及弹性模量、屈服强度、硬化指数对弯曲回弹角的影响。结果表明:回弹角与弯曲角呈显著的线性关系,当弯曲角在180° 以内时,回弹角为1.6°~6.0°;建立了回弹角预测线性方程,预测误差在[-0.425°,0.502°]内的概率为99.74%,并基于此方程开展了全 尺寸导管的回弹角预测和补偿工艺试验;在各工艺参数中弯曲速度和弯模间隙对回弹角的影响较大,可引起大于0.5°的偏差,而 因材料参数变化导致的回弹角变化不超过0.05°。  相似文献   

11.
《中国航空学报》2016,(5):1436-1444
Plane strain assumption and exponent hardening law are used to investigate the plastic deformation in tube bending. Some theoretical formulae including stress, curvature radius of neu-tral layer, angle of neutral layer deviation, bending moment, wall thickness variation and cross-section distortion, are developed to explain the phenomena in tube bending and their magnitudes are also determined. During unloading process, the springback angle is deduced using the virtual work principle, and springback radius is also given according to the length of the neutral layer which remains unchanged before and after springback. The theoretical formulae are validated by the experimental results or the validated simulation results in literature, which can be used to quickly predict the forming quality of tube numerical control (NC) bending.  相似文献   

12.
《中国航空学报》2020,33(12):3479-3494
Because of the complex constraint effects among layers in multi-layered metallic bellows hydroforming, the stress concentration and defects such as wrinkling and fracture may easily occur. It is a key to reveal the deformation behaviors in order to obtain a sound product. Based on the ABAQUS platform, a 3D-FE model of the four-layered U-shaped metallic bellow hydroforming process is established and validated by experiment. The stress and strain distributions, wall thickness variations and bellow profiles of each layer in the whole process, including bulging, folding and springback stages, are studied. Then deformation behaviors of bellows under different forming conditions are discussed. It is found that the wall thinning degrees of different layer vary after hydroforming, and is the largest for the inner layer and smallest for the outer layer. At folding stage, the wall thinning degree of the crown point increases lineally, and the difference among layers increases as the process going. The displacements of the crown point decrease from the inner layer to the outer layer. After springback, the U-shaped cross section changes to a tongue shape, the change of convolution pitch is much larger than the change of convolution height, and the springback values of the inner layer are smaller than the outer layer. An increase in the internal pressure and die spacing cause the maximum wall thinning degree and springback increase. With changing of process parameters, bellows with deep convolution are easily encountered wall thinning during hydroforming and convolution distortion after springback. This research is helpful for precision forming of multi-layered bellows.  相似文献   

13.
采用有限元软件ABAQUS对Ti-6Al-4V合金板料热压弯成形过程进行了模拟,分析了应力应变分布规律和工艺参数对成形过程的影响。研究表明,压弯过程的变形主要集中在大厚度区域中间位置;当板料表面与模具多点接触后,板料由自由弯曲变为校正弯曲,成形力急剧增大;保压600s时板料最大回弹量和上模成形力分别降低84%和94%。在相同工艺条件下的试验结果验证了有限元模拟的准确性。  相似文献   

14.
夹层板精密成形的数值模拟   总被引:2,自引:0,他引:2  
陈晓  周贤宾 《航空学报》2000,21(5):442-445
为了实现基于“点阵钉模、真空负压、蜂窝夹层”的双曲度面板精密成形过程的有限元数值模拟,分析了成形 2个阶段的变形过程,建立了简化的力学模形,以一种广义协调薄板弯曲四边形位移单元为基础构造了具有公共横向位移自由度的几何非线性四边形四节点分别考虑和不考虑横向剪切的多层板单元,通过牛顿 -拉斐逊法结合载荷、位移约束量的增量法求解几何非线性方程,较好地再现了真实成形过程  相似文献   

15.
《中国航空学报》2022,35(10):8-34
Creep age forming (CAF) is an advanced forming technology that combines creep deformation and age hardening processes. When compared with the conventional forming technologies including roll bending and shot-peen forming, CAF has many advantages of low residual stress, excellent dimensional stability, good service performance and short production cycle. It is an optimal technique for precise manufacturing for shape and properties of large-scale complicated thin-walled components of light-weight and high strength aluminum alloys in the aviation and aerospace industries. Nevertheless, CAF has an inevitable disadvantage that a large amount of springback occurs after unloading, which brings a challenge on the accurate shape forming and property tailoring of components. Therefore, how to achieve accurate prediction and control of springback has always been a bottleneck hindering the development of CAF to more industrial applications. After the factors of affecting springback and measures of reducing springback are summarized from the internal and external aspects, constitutive models for predicting springback and springback compensation methods for CAF of aluminum alloy panel components are reviewed. Then, a review of research progresses on tool design for CAF is presented. Finally, in view of the key issue that it is difficult to predict and control the shape and properties of components during CAF, the technical challenges are discussed and future development trends of CAF are prospected.  相似文献   

16.
Tube thinning control without wrinkling occurring is a key problem urgently to be solved for improving the forming qualities in numerical control (NC) bending processes of large-diameter Al-alloy thin-walled tubes (AATTs). It may be a way solving this problem to exert axial compression loads (ACL) on the tube end in the bending. Thus, this article establishes a three-dimensional (3D) elastic-plastic explicit finite element (FE) model for the bending under ACL and has its reliability verified. Through a multi-index orthogonal experiment design, a combination of process parameters, each expressed by a proper range, for this FE model is derived to overcome the compression instability on tube ends. By combining the FE model with a wrinkling energy prediction model, an in-depth study is conducted on the forming characteristics of large-diameter AATTs with small bending radii and it can be concluded that (1) The larger the tube diameters and the smaller the bending radii, the larger the induced tangent tension stress zones on tube intrados, by which the tube maximum tangent compression stress zones will be partitioned in the bending processes; thus, the smaller the ACL roles in decreasing thinning degrees and the larger the compression instability possibilities on tube ends. (2) The tube wrinkling possibilities under ACL are larger than without ACL acting in the earlier forming periods, and smaller in the later ones. (3) For the tubes with a size factor less than 80, the ACL roles in decreasing thinning degrees are stronger than in increasing wrinkling possibilities.  相似文献   

17.
为了探索Glare层板的成形性能特点,采用单向拉伸实验和三点弯曲实验,分析研究了Glare 2A,Glare 2B和Glare 3层板的基本成形性能,并借助扫描电子显微镜分析了Glare层板的失效特征。结果表明:纤维铺层方向对材料的成形性能存在显著影响,Glare 2A层板抵抗塑性变形的能力强,且难以发生厚向变形:采用σ=σy+Kεn硬化模型拟合真实应力-应变曲线,其相关系数最大,拟合结果最好:Glare 2A的弯曲回弹量最大,其弯曲破坏时,内表层受压应力,以皱缩和压缩断裂为主,外表层受拉应力,以纤维拉伸断裂和分层为主;对于Glare 2B层板,其弯曲回弹量最小,主要以基体破坏为主:通过滚弯成形验证了实验所得结果的准确性。  相似文献   

18.
在冷滚打成形过程中,滚打轮对工件击打和滚压的同时,工件变形区域储存了较大的弹性应变能,导致工件成形结束后会出现回弹,回弹现象对成形工件的廓形精度有着较大的影响。本文主要针对滚打轮公转速度与回弹量之间的关系进行研究。建立了冷滚打成形回弹的有限元仿真模型,通过动态仿真分析获得了不同公转速度时成形齿槽截面在切向、轴向和径向的变形规律;通过静态分析获得了成形齿槽截面各部分在不同公转速度下切向、轴向和径向的回弹规律。结果表明,相同工艺条件下冷滚打实验得到的工件廓形与仿真结果吻合,验证了仿真结果的正确性,通过合理选择工艺参数可以有效控制回弹,提高制件成形精度。  相似文献   

19.
田硕  尚建勤  盖鹏涛  陈福龙  曾元松 《航空学报》2019,40(10):422847-422847
带筋整体壁板特别是高筋整体壁板具有优异的结构效率、减重效益和密封效果,在航空航天等领域备受青睐。预应力喷丸成形是大中型、长寿命、高性能复杂带筋整体壁板的一种不可多得的有效成形手段。数值模拟是促进带筋整体壁板预应力喷丸成形技术研究、进步与应用的一种极具潜力的途径。针对带筋整体壁板预应力喷丸成形数值模拟,建立了基于响应面函数的多弹丸撞击有限元模型、基于应变中性层内移的反弯曲应力场法模拟模型、预应力喷丸成形RBF神经网络预测模型,实现了喷丸成形应力场法数值模拟、预应力喷丸成形较高精度数值模拟与变形预测,为带筋整体壁板预应力喷丸成形技术研究和实际应用提供了一种更为便捷、高效、经济的途径。  相似文献   

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