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Modeling of Material Orientation Effects on AHSS Crush and Fracture Behavior in Axial Crush Tests

机译:轴压试验中AHSS粉碎和断裂行为的材料取向效果建模

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Objective: Due to the rolling manufacturing process, most advanced high-strength steels (AHSS) demonstrate in-plane anisotropic material behavior. This study investigates the effects of material orientation on the axial crush behavior and fracture of AHSS with axial crush tests and computer simulations. Methods: Crush simulation models considering material anisotropy and damage evolution were developed in LS-DYNA based on the drop-tower crush test results and coupon characterization test data for DP780 steel. The modified Mohr-Coulomb (MMC) isotropic fracture model was employed in the crush simulation models for fracture prediction. Results: The 12-sided components fabricated in the transverse (T) direction of the sheet exhibited slightly higher crush loads and reduced crush distances compared to those in the longitudinal (L) direction. The crush behavior in each direction was generally proportional to ultimate tensile strength. All of the materials investigated in this study showed some cracking in the crush tests for both component orientations, but only DP780 showed significant anisotropy in fracture behavior with more cracking for the T direction compared to the L direction. Overall, the amount of cracking observed in the tests had little or no significant effect on the axial crush performance. The MMC fracture loci in both the L and T directions were determined using a reverse engineering approach, and the stress-strain curves beyond the uniform elongation point were extended using an optimization method. Both material models MAT103 and MAT224 predicted the crush and fracture behavior with reasonably good accuracy. Conclusions: The predicted fracture mode and force-displacement curves agreed well with the test data for both the L and T directions in axial crush tests of the 12-sided components. The simple isotropic material model MAT224 is adequate for crush simulations to predict material orientation effects on AHSS component crush performance and fracture behavior.
机译:目的:由于轧制制造工艺,大多数先进的高强度钢(AHSS)展示了面内各向异性材料行为。本研究调查了材料取向对具有轴压试验和计算机模拟的AHSS轴压行为和骨折的影响。方法:基于DP780钢的液滴碾碎试验结果和优惠券表征测试数据,在LS-DYNA中开发了考虑材料各向异性和损伤演化的挤压模拟模型。改进的MoHR-Coulomb(MMC)各向同性裂缝模型用于粉碎模拟模型进行裂缝预测。结果:与纵向(L)方向上的那些相比,在纸张的横向(T)方向上制造的12侧部件表现出略高的挤压负载和减小的挤压距离。每个方向的挤压行为通常与极限拉伸强度成比例。本研究中研究的所有材料表明,在组分取向的压碎试验中表现出一些裂缝,但是只有DP780在与L方向相比的T方向上的裂缝行为中显示出显着的各向异性。总的来说,在测试中观察到的裂缝量对轴压性能几乎没有显着影响。使用逆向工程方法确定L和T方向上的MMC裂缝基因座,使用优化方法延长超出均匀伸长点的应力 - 应变曲线。 Mat103和Mat224的两种材料模型都预测了粉碎和断裂行为,具有相当好的精度。结论:预测的断裂模式和力 - 位移曲线与用于12针挤压试验的L和T方向的测试数据相同。简单的各向同性材料模型MAT224足以用于挤压模拟,以预测对AHSS组分压碎性能和裂缝行为的材料取向效应。

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