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With economic development, the rock material is widely applied in the water conservation、 resources mining、 the civil construction 、 the railway and so on, a lot of problem about rocks urgently is demanded to solve, so there are very important theory and realistic meanings to thoroughly research its nature、 concerning and destroying mechanism,Due to natural function, massive joint and crack with rock, though the scale of these is small, it changes mechanics nature of rock greatly and reduces deforms mould and intensity parameter, and makes it presenting aeolotropy .

随着我国经济建设的发展,岩石材料被广泛应用于水利、资源开采、土木建筑、铁路等领域,与此同时出现许多岩石方面迫切需要解决的问题,所以对其性质、本构关系、破坏机理的深入研究有重要的理论意义和现实意义。由于天然作用,岩石内部存在大量的节理和裂隙,虽然这些裂隙的规模不大,但裂隙的存在大大地改变了岩体的力学性质,使其变形模量及强度参数降低,且使岩体的力学性质呈各向异性。

EXPERIMENTAL STUDY ON THE INFLUENCE OF PROCESSING ON THE MECHANICAL PROPERTIES OF ENGINEERING CERAMICS Fan Ning Ai Xing Deng Jianxing Wang Yixing (Shandong University of Technology) Abrstract The mechanical properties of engineering ceramic are impacted by itself and its surface status.

加工方法对工程陶瓷力的影响摘要工程陶瓷的力学性能受材料本体和表面状况的共同影响。加工方法对材料的表面状况有较大的影响,因此,陶瓷材料的力学性能也受加工方法的影响深圳陶瓷加工工业陶瓷加工

Based on the foregoing analysis, the critical condition of realizing ductile/brittle transform is confirmed, and then, the model of ductile grinding of engineering ceramic is built.

以陶瓷材料压痕断裂力学、线性断裂力学和微观断裂物理学为理论基础,系统的分析和讨论了磨削加工过程中微裂纹的产生机理及其影响因素,建立了裂纹分布模型,并根据位错产生微裂纹机制,对磨削过程微裂纹的形成采用位错塞积模型来描述,从能量平衡的角度,讨论位错裂纹的稳定性与磨削应力的关系,确定了材料脆性去除和塑性去除转换的临界条件,最终建立以此为基础的工程陶瓷材料延性域去除模型。

The results show that the shrinkage temperature of the leather tanned with QUIMITAN ABC is 101.4℃, and the physical-mechanical properties of QUIMITAN ABC tanning leather are better than that of chrome powder tanning leather; the content of Cr2O3 (0.4142 g/L) in the float of QUIMITAN ABC tanning is lower than that of the content of Cr2O3 (1.9481 g/L) chrome powder tanning, it's clear that QUIMITAN ABC tanning is good for Cleaner production; under the same content of chromic oxide, the physical properties of retanning leather with QUIMITAN ABC are better than that of retanning leather with chrome containing sytan and chrome powder, such as thichkening, flexibility, physical-mechanical properties.

结果表明:QUIMITAN ABC主鞣后的坯革的收缩温度为101.4℃,且其坯革物理力学性能高于用6%的铬粉主鞣后的坯革;QUIMITAN ABC主鞣后的废液Cr2O3含量(0.4142 g/L)明显低于用6%的铬粉主鞣后废液Cr2O3含量(1.9481 g/L),用QUIMITAN ABC主鞣有益于清洁化生产;在Cr2O3含量相同的情况下,用QUIMITAN ABC复鞣的坯革在增厚率、柔软度、物理力学性能等方面都要好于含铬鞣剂及铬粉复鞣的坯革。

They include the fundamental concepts of jet bundle geometry needed in describing time-dependent mechanical systems, decomposition of jet bundles into a direct sum according to the constraints, horizontal distributions on constraint mainifolds, the global formulation of D'Alembert-Lagrange's equations and Chaplygin's equations, and nonholonomic mechanics on a Riemann-Cartan manifold. Meanwhile, the geometric significance of Chetaev's conditions and $\rd$-$\delta$ commutation relation are discussed in depth.

本文主要综述非完整约束系统几何动力学的外附型和内禀型Lagrange理论,包括非定常力学系统所需要的射丛几何学的基本概念、射丛按约束的直和分解、约束流形上的水平分布、 D'Alembert-Lagrange方程与Chaplygin方程的整体描述、以及Riemann-Cartan流形上的非完整力学,文中对Chetaev条件和d-δ交换关系的几何意义作了深入讨论。

RESULTS: Stent materials play an important role in reducing inflammatory reaction and restenosis following stent implantation. As a medical material for humans, the features of stent should be meet the requirements of reliable distensibility, mechanical persistence, good flexibility and geometrical stability, possible small diameter, excellent blood compatibility, as well as good corrosion resistance. All of these depended on the mechanical and physical features of materials.

结果:支架材料的选择在减少机体炎症反应的强度和持续时间,减少支架置入后血管内再狭窄的发生起着重要的作用,作为人体医用材料,对支架各方面性能都提出了很高的要求,包括可靠的扩张性和力学持久性、良好的柔韧性和几何稳定性、尽可能小的外径,优异的血液相容性和耐蚀性,而支架上述特性都依赖于材料的力学和物理特性。

As a medical material for humans, the features of stent should be meet the requirements of reliable distensibility, mechanical persistence, good flexibility and geometrical stability, possible small diameter, excellent blood compatibility, as well as good corrosion resistance.

结果:支架材料的选择在减少机体炎症反应的强度和持续时间,减少支架置入后血管内再狭窄的发生起着重要的作用,作为人体医用材料,对支架各方面性能都提出了很高的要求,包括可靠的扩张性和力学持久性、良好的柔韧性和几何稳定性、尽可能小的外径,优异的血液相容性和耐蚀性,而支架上述特性都依赖于材料的力学和物理特性。

The mechanical properties of these silk fibers were also measured. To explore the control capability of spider on the spinning process and its influence on the mechanical properties of dragline silk, spiders were anaesthetized and the mechanical properties of dragline silk reeled from an being anaesthetized spider were measured.

采用麻醉的方法研究蜘蛛在逐步失去自我控制的过程中分泌的牵引丝的力学行为,以探索蜘蛛对成丝的控制能力与纤维性能间的关系,分析了成丝张力和湿度对牵引丝力学性能的影响。

This paper studies the effect of consequent post heat treatment on the mechanical property and shape memory ratio of the welded TiNi joints in TiNi shape memory alloy precise pulse resistance butt welding,analyzes the joint structures and fractographies affecting mechanical property and shape memory ratio of welded joint by using strength testing, SEM and TEM, gets the optimum welding parameters obtaining good shape recovery ratio welded joint, and has discovered the inherent reason for proper consequent post heat treatment to promote the joint shape recovery ratio from microcosmic point.

摘 要:采用拉伸测试、SEM、TEM和定点成分能谱分析等手段研究了随机后热处理对TiNi形状记忆合金精密脉冲电阻对焊焊接接头力学性能、形状恢复率的影响,并对影响接头力学性能和形状恢复率的接头组织和形貌进行了研究,得出了获得具有较高形状恢复率接头的焊接参数,从微观角度揭示了随机后热处理提高接头形状恢复率的内在原因,为TiNi形状记忆合金的开发和应用提供了基础,具有重大的理论和实际应用价值。

For the purpose to study its critical issues for fusion application, many kinds of V-W-Cr-Ti-Al alloys were developed, and were used for studies of recovery and recrystallization, aging behavior and precipitation hardening, high-temperature mechanical performance, effects of H on mechanical properties and hydrogen enbrittlement, H release behavior and oxidation behavior at elevated temperature. Mechanizms for the behaviors were analyzed and the relationship between chemical composition, microstructure and properties was established.

为研究其聚变应用关键问题,本项目研制了多种V-W-Cr-Ti-Al合金,利用它们完成了合金的回复和再结晶、时效行为和析出强化、高温力学性能、氢对合金力学性能的影响及氢脆、氢释放行为、高温氧化行为等研究,分析了合金的行为机理,建立起了合金性能与化学成份、微观组织结构的关系,是以后研制更高性能合金的基础。

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