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1.
基于分形几何理论,考虑微凸体因应变硬化而造成弹塑性变形阶段硬度随变形量变化而变化,建立结合面第一、第二弹塑性变形阶段单次加载刚度分形模型。推导出在计入硬度变化的情况下,单个微凸体在弹塑性变形阶段法向接触刚度与接触面积之间的关系式,进而得出结合面在弹塑性变形阶段法向接触刚度与接触面积、接触载荷之间量纲为一的关系式,并通过仿真分析得出相关参数对结合面法向接触刚度的影响。仿真结果显示:考虑硬度变化时,结合面量纲一法向接触刚度的值与法向实际接触载荷、实际接触面积之间存在关系;结合面法向接触刚度随着分形维数D的增大而增大;分形维数一定时,结合面法向接触刚度随表面长度尺度参数G值增大而增大。  相似文献   
2.
基于现有热成形零件冷弯性能不足、氢脆敏感性强等共性技术问题,在22MnB5钢的基础上采用Nb、V微合金化的设计思路,对试验钢的显微组织、淬透性和极限尖冷弯性能进行研究。结果表明:微合金化前后22MnB5热成形钢的显微组织均为全马氏体,但是微合金化后的试验钢组织更为细小;Nb-V微合金化能有效提高22MnB5热成形钢的淬透性,其淬硬层深度达到13~14 mm,并且试验钢的极限尖冷弯角达到58°~72°,进一步拓宽了热冲压成形的工艺窗口。综合分析试验钢微观组织、淬透性能及极限尖冷弯性能的检测结果,添加0.04%Nb和0.04%V实现复合微合金化,提升材料的综合强塑性,满足了高冷弯性能汽车零部件用材需求。  相似文献   
3.
Fully dense ceramics with retarded grain growth can be attained effectively at relatively low temperatures using a high-pressure sintering method. However, there is a paucity of in-depth research on the densification mechanism, grain growth process, grain boundary characterization, and residual stress. Using a strong, reliable die made from a carbon-fiber-reinforced carbon (Cf/C) composite for spark plasma sintering, two kinds of commercially pure α-Al2O3 powders, with average particle sizes of 220 nm and 3 μm, were sintered at relatively low temperatures and under high pressures of up to 200 MPa. The sintering densification temperature and the starting threshold temperature of grain growth (Tsg) were determined by the applied pressure and the surface energy relative to grain size, as they were both observed to increase with grain size and to decrease with applied pressure. Densification with limited grain coarsening occurred under an applied pressure of 200 MPa at 1050 °C for the 220 nm Al2O3 powder and 1400 °C for the 3 μm Al2O3 powder. The grain boundary energy, residual stress, and dislocation density of the ceramics sintered under high pressure and low temperature were higher than those of the samples sintered without additional pressure. Plastic deformation occurring at the contact area of the adjacent particles was proved to be the dominant mechanism for sintering under high pressure, and a mathematical model based on the plasticity mechanics and close packing of equal spheres was established. Based on the mathematical model, the predicted relative density of an Al2O3 compact can reach ~80 % via the plastic deformation mechanism, which fits well with experimental observations. The densification kinetics were investigated from the sintering parameters, i.e., the holding temperature, dwell time, and applied pressure. Diffusion, grain boundary sliding, and dislocation motion were assistant mechanisms in the final stage of sintering, as indicated by the stress exponent and the microstructural evolution. During the sintering of the 220 nm alumina at 1125 °C and 100 MPa, the deformation tends to increase defects and vacancies generation, both of which accelerate lattice diffusion and thus enhance grain growth.  相似文献   
4.
基于流体体积法和k-ε湍流模型对液化天然气单液滴在气流中的变形破碎情况进行模拟研究。研究不同We对液滴形态和破碎模式的影响,分析液滴形态变化过程中速度、加速度和阻力系数随时间的变化趋势,并研究不同流场下液滴变形破碎情况。结果表明,不同的We下,液滴呈现出不同的破碎模式,液滴发生剪切破碎的临界We为80左右,同一We下不同直径的液滴临界破碎时间有所不同;随着气液相对速度的We的增大,液滴的无量纲变形时间先递减后趋向于平缓;液滴变形破碎过程中,速度随着时间的延长而增加,加速度和阻力系数随着时间的延长先增后减;与普通流场相比,带挡板的流场中液滴变形破碎时间明显缩短。  相似文献   
5.
针对传统雷达差分干涉测量技术(DInSAR)无法利用相位信息识别矿区大量级沉降区域地表活动信息的问题,本文采用时序振幅分析方法,对16景Sentinel-1A的振幅数据进行多时相处理,提取了2017年5月13日至2018年2月25日开采沉陷区地表后向散射系数。通过建立研究区后向散射系数分析模型,分析了开采活动过程中地表后向散射系数时序变化特征,发现地表后向散射系数由工作面外边缘至工作面中心逐渐增大,在工作面中心区域变化剧烈;通过对比分析工作面走向和倾向地表特征观测点的沉降速率与后向散射系数的关系,发现两者在开采沉陷过程中平均相关系数r大于0.8,具有较强的相关性。实验结果表明,利用沉陷区地表后向散射系数能较好地分析地表动态沉降速率规律,是识别大量级沉降区域地表活动剧烈程度的指标,为矿区地表变形提供了新的分析手段,具有良好的应用前景。  相似文献   
6.
基于单元变形的思路,由单元守恒方程出发,建立电场中液滴变形的数值计算模型. 在此基础上,将该模型与偶极模型相耦合,提出液滴聚结的计算方法. 由所建模型及计算方法,编制数值计算程序对几种参数下液滴的变形及聚结进行模拟计算. 结果表明,所建模型对液滴变形的预测与实验结果相符较好,对液滴聚结过程的模拟与实验结果大致相符,预测的聚结时间稍低于实验值. 如果进一步提高单元阻力的模化精度及单元离散精度,所建模型会有较好的适用性. 所建模型可实现对液滴的扁平形变形的预测. 研究结果对液滴电变形的理论分析及数值模拟具有一定的借鉴意义.  相似文献   
7.
The glass-to-mold adhesion in precision glass molding could severely degrade the quality of molded optics and shorten the lifespan of the precious molds. Since the consequences of adhesion take effect during the separation between glass and molds, it is important to investigate the debonding behaviors of a typical glass molding interface. To this end, here we perform a probe tack test procedure for borosilicate glass BK7, where debonding is conducted at molding temperature and specific velocity. We fully characterize the debonding behaviors using the peak adhesion stress σmax and the work of debonding Wdeb. Experiments show that when temperature is decreased from 690°C to 655°C at 10 μm/s, σmax continuously increases, while Wdeb first increases but then sharply decreases. When the debonding velocity is increased from 10 to 50 μm/s at 680°C, σmax also increases while Wdeb overall decreases. Therefore, the debonding behaviors are highly temperature and rate dependent. More importantly, depending on the debonding conditions, three debonding types are identified, that is, the cohesive bulk deformation, the cohesive-interfacial transition and the interfacial fracture. The cohesive type can be converted into the interfacial fracture, by either decreasing temperature or increasing the debonding velocity. Based on the Wdeb criterion, the three debonding regimes can be clearly distinguished. Finally, analyses on the temperature and velocity experimental results are unified by incorporating the reduced crack velocity aTvc. The dependences of both viscoelasticity and Wdeb on aTvc qualitatively explain the transition condition for different debonding types. Concerning these findings, the work of debonding not only supplements the characterization of adhesion strength, but also throws insightful light on revealing the debonding mechanisms.  相似文献   
8.
Diatomite, a natural silicate-based sedimentary rock, was densified by cold sintering at room temperature and 150°C under various pressures (100, 200, and 300 MPa) and using different NaOH water solutions (0–3 M). The relative density of cold sintered diatomite can be as high as 90%, a condition that can be achieved by conventional firing only at 1200–1300°C. The cold sintered materials maintain the same mineralogical composition of the starting powder (quartz, glass, and illite) and are constituted by well-deformed and flattened grains oriented orthogonally to the applied pressure. Conversely, an evident phase evolution takes place upon conventional firing with the formation of cristobalite and mullite. The bending strength of cold sintered artifacts can exceed 40 MPa and increases to ≈80 MPa after post-annealing at 800°C, such mechanical strength is much larger than that of conventionally pressed samples sintered at 800°C, which is only ≈1 MPa.  相似文献   
9.
《Ceramics International》2021,47(19):27351-27360
A series of xPbO–(45-x)CuO–55B2O3 glasses (5 ≤ x ≥ 40 mol %) were prepared by the melt-quenching technique. The X-ray diffraction (XRD) patterns of the prepared glasses are found to have amorphous structure. An extensive ultrasonic study has been made to explore the structural role of PbO and CuO in the borate network. Various elastic properties were calculated from the measured data of density and ultrasonic velocity. Ultrasonic velocity and elastic moduli revealed broad humps at about 20 mol % PbO, which are attributed to the borate anomaly. Below 20 mol % PbO, all Pb2+ ions are considered to be entering the borate network as a glass modifier. This results in the transforms the borate network from an open structure to a denser three-dimensional structure due to BO3 → BO4 conversion. Beyond 20 mol, addition of PbO results in the formation of metaborate, pyroborate, and orthoborate units with NBOs. This weakness the glass structure and decrease both ultrasonic velocity and elastic moduli. The elastic properties were predicted and quantitatively analyzed by taking into account the effect of boron coordination number on the compositional and structural parameters involved in Makishima–Mackenzie's theory, ring deformation model and bond compression model. An excellent agreement between the computed theoretical and experimental elastic moduli, micro-harness and Poisson's ratio was achieved for majority of samples.  相似文献   
10.
针对中沙乙烯冷箱系统低压甲烷侧冻堵情况,基于乙烯装置因氮氧化物(NOx)导致冷箱冻堵,检测了在不同复热时期不同取样点的NOx、形态氮、总氮以及裂解原料中氮和氧含量。分析认为,冷箱中NOx的形成原因为进入深冷系统的裂解气从裂解单元带入NO,在冷箱中与O2反应,原料中的氮化物形成了NOx。  相似文献   
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