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Zr基非晶合金精密直齿轮超塑性成形试验研究 被引量:21
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作者 张志豪 刘新华 谢建新 《机械工程学报》 EI CAS CSCD 北大核心 2005年第3期151-154,共4页
具有多种优异性能的大块非晶合金是近年来材料领域的重要研究成果之一。由于非晶合金在过冷区域表现出良好的超塑性性能,因而有望通过塑性加工的方法来获得非晶质的复杂结构精细零部件。以直径为5 mm的zr41.25Ti13.75Ni10Cu12.5Be22.5... 具有多种优异性能的大块非晶合金是近年来材料领域的重要研究成果之一。由于非晶合金在过冷区域表现出良好的超塑性性能,因而有望通过塑性加工的方法来获得非晶质的复杂结构精细零部件。以直径为5 mm的zr41.25Ti13.75Ni10Cu12.5Be22.5非晶合金棒材为试验材料,采用自行设计的专用真空炉和精密模锻装置,对带轮毂的精密直齿轮(节圆直径6 mm,齿数24,模数0.25 mm)进行了超塑性成形试验。分析对比了上芯杆直接冲孔成形、下芯杆直接冲孔成形和两阶段冲孔成形三种不同工艺的成形结果。结果表明,在其他工艺参数相同的条件下,两阶段成形工艺比其余两种工艺具有更低的成形压力和较小的内孔偏心度。选用两阶段成形工艺和合理的模具结构,制备出了具有良好尺寸精度和表面粗糙度的精密齿轮。经x射线衍射分析表明,所成形的齿轮没有发生明显晶化现象,从而较好地保持了大块非晶合金材料的各种优异性能。 展开更多
关键词 大块非晶合金 超塑性 精密直齿轮
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浇口对玻纤增强塑料齿轮精度及力学性能的影响 被引量:2
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作者 沈亚强 张杨 +2 位作者 赵凯 辛栋 曹伟 《模具工业》 2021年第8期46-49,共4页
通过对3点进料玻纤增强塑料齿轮的齿形精度及力学性能进行测试,结合MoldFlow模拟仿真结果,分析了齿轮啮合精度低、齿轮强度一致性差的原因。针对此问题,提出采用中心进料的设计方案,实现了玻纤的均匀排列,结果证明该方法可有效提高玻纤... 通过对3点进料玻纤增强塑料齿轮的齿形精度及力学性能进行测试,结合MoldFlow模拟仿真结果,分析了齿轮啮合精度低、齿轮强度一致性差的原因。针对此问题,提出采用中心进料的设计方案,实现了玻纤的均匀排列,结果证明该方法可有效提高玻纤增强塑料齿轮的啮合精度和齿轮强度的一致性。 展开更多
关键词 玻纤增强塑料齿轮 中心进料 玻纤取向 注射成型 啮合精度
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Predetermination of potential plastic hinges on reinforced concrete frames using GFRP reinforcement
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作者 Dominik KUERES Dritan TOPUZI Maria Anna POLAK 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2022年第5期624-637,共14页
In the past,glass fiber-reinforced polymer(GFRP)-reinforcement has been successfully applied in reinforced concrete(RC)structures where corrosion resistance,electromagnetic neutrality,or cuttability were required.Prev... In the past,glass fiber-reinforced polymer(GFRP)-reinforcement has been successfully applied in reinforced concrete(RC)structures where corrosion resistance,electromagnetic neutrality,or cuttability were required.Previous investigations suggest that the application of GFRP in RC structures could be advantageous in areas with seismic activity due to their high deformability and strength.However,especially the low modulus of elasticity of GFRP limited its wide application as GFRP-reinforced members usually exhibit considerably larger deformations under service loads than comparable steel-reinforced elements.To overcome the aforementioned issues,the combination of steel and GFRP reinforcement in hybrid RC sections has been investigated in the past.Based on this idea,this paper presents a novel concept for the predetermination of potential plastic hinges in RC frames using GFRP reinforcement.To analyze the efficiency of the concept,nonlinear finite element simulations were performed.The results underscore the high efficiency of hybrid steel-GFRP RC sections for predetermining potential plastic hinges on RC frames.The results also indicate that the overall seismic behavior of RC structures could be improved by means of GFRP as both the column base shear force during the seismic activity as well as the plastic deformations after the earthquake were considerably less pronounced than in the steel-reinforced reference structure. 展开更多
关键词 glass fiber-reinforced polymer GFRP hybrid section plastic hinge seismic design reinforced concrete
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