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课程思政视域下“材料力学”隐性教育思考与实践
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作者 肖丽萍 吴星瞳 +2 位作者 刘兆朋 李文彬 陈雄飞 《南方农机》 2024年第21期174-177,共4页
【目的】加强机械类专业课程思政教育建设。【方法】分析了课程思政视域下专业课程隐性教育的现状,提出了在“材料力学”教学过程中融入科学精神与人文情怀、强化工程意识与职业道德、激发学习兴趣与自主学习能力、培养辩证思维与逻辑... 【目的】加强机械类专业课程思政教育建设。【方法】分析了课程思政视域下专业课程隐性教育的现状,提出了在“材料力学”教学过程中融入科学精神与人文情怀、强化工程意识与职业道德、激发学习兴趣与自主学习能力、培养辩证思维与逻辑思维等隐性教育方法,并通过科技竞赛中的思政融入、课堂讨论中的思政引导、课下解答中的思政渗透及生活常识中的思政关联等具体措施,实现了“教书”与“育人”的有机统一,促进了学生社会主义核心价值观的塑造及综合素质的全面提升。【结果与结论】将思政教育元素有机融入专业课程之中,对于提升教学质量、促进学生全面发展具有不可替代的作用,未来可以继续深化课程思政理念在“材料力学”教学中的应用与实践,不断探索更加有效、更加新颖的隐性教育方式和方法,为培养具有安全意识、科学精神和实践能力的社会主义建设者和接班人贡献更多的智慧和力量。 展开更多
关键词 “材料力学” 课程思政 隐性教育 实践思考
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以工程能力培养为导向的“1+2+2”“材料力学”混合式一流课程探索与实践——以新疆理工学院为例 被引量:2
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作者 王磊元 李风娟 +3 位作者 赵群喜 秦翠兰 刘泽锋 邱媛媛 《南方农机》 2024年第16期162-164,195,共4页
【目的】培养学生的工程思维和创新能力,实现知识、能力、素质“三位一体”的课程目标。【方法】以新疆理工学院的“材料力学”课程为例,剖析了该课程教学中的“痛点”,如课程公式多、理论性强、计算复杂、难度大,难以激发学生学习兴趣... 【目的】培养学生的工程思维和创新能力,实现知识、能力、素质“三位一体”的课程目标。【方法】以新疆理工学院的“材料力学”课程为例,剖析了该课程教学中的“痛点”,如课程公式多、理论性强、计算复杂、难度大,难以激发学生学习兴趣;课堂以“教”为中心,教育理念滞后,与当前工程教育理念不符,难以培养学生工程思维;课程思政落实不到位,难以达到全员、全方位育人目标;课程考核形式单一,难以达到全过程育人目标。为此,提出以工程能力培养为导向的教学改革方案,实施“1+2+2”的线上线下混合式教学模式,“1”即以学生为中心,“2”即引入线上资源、引入工程实例;“2”即夯实课程思政、构建多元化考评体系。【结果】该教改方案可有效激发学生学习积极性,提高了教学效果,基本达到了课程的教学目标。【结论】该教学模式的推广实施可以提高学生解决实际工程问题的能力,培养学生的工程思维能力、逻辑思维能力、抽象能力及实践创新能力。 展开更多
关键词 工程能力 “材料力学” 一流课程
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“三全育人”背景下“材料力学”课程教学设计与改革 被引量:6
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作者 叶卉 汪中厚 钱炜 《南方农机》 2021年第16期195-196,共2页
在“三全育人”背景下,将思政教育内容以案例形式融入“材料力学”课程教学中,通过课前引导、课中分析、课后延伸的“三步法”教学设计,使思政元素贯穿课堂内外。同时,形成包含思政素质和工程能力考核的课程评价模式,并构建以“互联网+... 在“三全育人”背景下,将思政教育内容以案例形式融入“材料力学”课程教学中,通过课前引导、课中分析、课后延伸的“三步法”教学设计,使思政元素贯穿课堂内外。同时,形成包含思政素质和工程能力考核的课程评价模式,并构建以“互联网+”教学互动平台为依托的材料力学数字化思政案例库。“三步法”教学有利于激发学生学习动力和专业兴趣,不仅能对学生的思想进行积极引导和浸润,同时还提高了学生的工程应用能力。 展开更多
关键词 思政教育 “材料力学” 教学设计 课程评价 案例库
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分组讨论教学法在“材料力学”教学中的应用效果 被引量:2
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作者 郭飞 陈坤 孙艳丽 《南方农机》 2021年第7期140-141,151,共3页
为了适应高等教育多样化的发展,充分调动学生在学习材料力学课程中参与教学的积极性,本文通过探讨分组讨论在"材料力学"教学过程中的存在的问题及优势,提出相应的解决方案,以提高该课程的教学质量。
关键词 分组讨论 “材料力学” 教学质量
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数值模拟技术在“材料力学”教学中的应用研究
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作者 乐建波 况小春 +1 位作者 计燕华 程栋 《南方农机》 2021年第16期146-149,共4页
针对“材料力学”传统教学方式易导致学生学习主动性差、理论知识掌握不牢靠,工程运用能力不足,而新的教学改革手段则存在成本大、耗材大及未做到理论与实践相结合等问题,课题组以材料力学中受力弯曲的T形截面梁为例,基于数值模拟方法,... 针对“材料力学”传统教学方式易导致学生学习主动性差、理论知识掌握不牢靠,工程运用能力不足,而新的教学改革手段则存在成本大、耗材大及未做到理论与实践相结合等问题,课题组以材料力学中受力弯曲的T形截面梁为例,基于数值模拟方法,采用线模型建立T形截面梁的简化物理模型,构建受力过程中的数学模型,并进行数值模拟。利用数学模型的理论计算及材料力学中相应判断原则得到T形梁受载荷后的剪力、挠度及弯矩分布情况与模拟结果相吻合,验证了模型的有效性。数值模拟得到T形梁受载荷后剪力云图、挠度云图、弯矩分布情况及相应位置数值的大小,可为数值模拟技术在“材料力学”教学中的应用提供指导。 展开更多
关键词 “材料力学” 教学改革 T形截面梁 数值模拟 线模型 物理模型 数学模型
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Microstructure and mechanical properties of novel SiC-TiC/Al-Mg-Sc-Zr composites prepared by selective laser melting
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作者 LU Ren-yi MA Guo-nan +4 位作者 BAI Guan-shun ZHAO Wen-tian ZHANG Hui-hua ZHAO Shu-ming ZHUANG Xin-peng 《Journal of Central South University》 2025年第5期1641-1659,共19页
In order to obtain high-density dual-scale ceramic particles(8.5 wt.%SiC+1.5 wt.%TiC)reinforced Al-Mg Sc-Zr composites with uniform microstructure,50 nm TiC and 7μm SiC particles were pre-dispersed into 15−53μm alum... In order to obtain high-density dual-scale ceramic particles(8.5 wt.%SiC+1.5 wt.%TiC)reinforced Al-Mg Sc-Zr composites with uniform microstructure,50 nm TiC and 7μm SiC particles were pre-dispersed into 15−53μm aluminum alloy powders by low-speed ball milling and mechanical mixing technology,respectively.Then,the effects of laser energy density,power and scanning rate on the density of the composites were investigated based on selective laser melting(SLM)technology.The effect of micron-sized SiC and nano-sized TiC particles on solidification structure,mechanical properties and fracture behaviors of the composites was revealed and analyzed in detail.Interfacial reaction and phase variations in the composites with varying reinforced particles were emphatically considered.Results showed that SiC-TiC particles could significantly improve forming quality and density of the SLMed composites,and the optimal relative density was up to 100%.In the process of laser melting,a strong chemical reaction occurs between SiC and aluminum matrix,and micron-scale acicular Al_(4)SiC_(4) bands were formed in situ.There was no interfacial reaction between TiC particles and aluminum matrix.TiC/Al semi-coherent interface had good bonding strength.Pinning effect of TiC particles in grain boundaries could prevent the equiaxial crystals from growing and transforming into columnar crystals,resulting in grain refinement.The optimal ultimate tensile strength(UTS),yield strength(YS),elongation(EL)and elastic modulus of the SiC-TiC/Al-Mg-Sc-Zr composite were~394 MPa,~262 MPa,~8.2%and~86 GPa,respectively.The fracture behavior of the composites included ductile fracture of Al matrix and brittle cleavage fracture of Al_(4)SiC_(4) phases.A large number of cross-distributed acicular Al_(4)SiC_(4) bands were the main factors leading to premature failure and fracture of SiC-TiC/Al-Mg-Sc-Zr composites. 展开更多
关键词 selective laser melting interface structure aluminum matrix composite mechanical properties elastic modulus
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Mechanical properties and wear behavior of extruded basalt fibers/7075 aluminum matrix composites used for drill pipes
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作者 MA Yin-long SUN Zhi-gang +3 位作者 XIONG Hong-wei REN Jie ZHAO Jing-jing GUO Cheng-bin 《Journal of Central South University》 2025年第1期21-33,共13页
Basalt fibers/7075 aluminum matrix composites were studied to meet the demand of aluminum alloy drill pipes for material wear resistance.The composites with different basalt fiber additions were prepared by hot presse... Basalt fibers/7075 aluminum matrix composites were studied to meet the demand of aluminum alloy drill pipes for material wear resistance.The composites with different basalt fiber additions were prepared by hot pressed sintering and hot extrusion.The mechanical properties as well as friction and wear properties of the composites were studied by microstructure analysis,tensile experiments,friction and wear experiments.The results showed that basalt fibers were oriented and uniformly distributed and led to local grain refinement in the alloy matrix.The hardness and elongation of the composites were improved.The friction coefficient of the composites increased and then decreased,and the maximum wear depth and wear amount decreased,then increased,then decreased again with the growth of basalt fiber addition.Meanwhile,the inclusion of basalt fibers mitigated the uneven wear of the extruded 7075 aluminum alloy.The value of wear depth difference of 7075-0.2BF was the smallest,and that of 7075-2.0BF was close to it.The maximum wear depth and wear volume the 7075-0.2BF and 7075-2.0BF were also the smallest.The inhibition of uneven wear by basalt fibers enhanced of wear resistance for 7075 aluminum alloy,which has reference significance for improving the performance of aluminum alloy drill pipes. 展开更多
关键词 aluminum matrix composites basalt fibers mechanical properties wear behavior
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Multi-objective parameter optimization of abrasive water jet polishing for fused silica
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作者 LI Qian YAO Peng +6 位作者 DENG Hong-xing FENG Chen-yu XU Chong-hai QU Shuo-shuo YANG Yu-ying ZHU Hong-tao HUANG Chuan-zhen 《中国光学(中英文)》 北大核心 2025年第5期1185-1199,共15页
As a non-contact ultra-precision machining method,abrasive water jet polishing(AWJP)has signi-ficant application in optical elements processing due to its stable tool influence function(TIF),no subsurface damage and s... As a non-contact ultra-precision machining method,abrasive water jet polishing(AWJP)has signi-ficant application in optical elements processing due to its stable tool influence function(TIF),no subsurface damage and strong adaptability to workpiece shapes.In this study,the effects of jet pressure,nozzle diameter and impinging angle on the distribution of pressure,velocity and wall shear stress in the polishing flow field were systematically analyzed by computational fluid dynamics(CFD)simulation.Based on the Box-Behnken experimental design,a response surface regression model was constructed to investigate the influence mech-anism of process parameters on material removal rate(MRR)and surface roughness(Ra)of fused silica.And experimental results showed that increasing jet pressure and nozzle diameter significantly improved MRR,consistent with shear stress distribution revealed by CFD simulations.However,increasing jet pressure and impinging angle caused higher Ra values,which was unfavorable for surface quality improvement.Genetic algorithm(GA)was used for multi-objective optimization to establish Pareto solutions,achieving concurrent optimization of polishing efficiency and surface quality.A parameter combination of 2 MPa jet pressure,0.3 mm nozzle diameter,and 30°impinging angle achieved MRR of 169.05μm^(3)/s and Ra of 0.50 nm.Exper-imental verification showed prediction errors of 4.4%(MRR)and 3.8%(Ra),confirming the model’s reliabil-ity.This parameter optimization system provides theoretical basis and technical support for ultra-precision polishing of complex curved optical components. 展开更多
关键词 ABRASIVE computational fluid dynamics tool influence function material removal rate surface roughness
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Time-dependent effects in transient liquid phase bonding of 304L and Cp-Ti using an Ag-Cu interlayer
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作者 Saeed VAZIRIAN Mohammad MOSHKBAR BAKHSHAYESH Ali FARZADI 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2237-2255,共19页
One of the challenges for bimetal manufacturing is the joining process.Hence,transient liquid phase(TLP)bonding was performed between 304L stainless steel and Cp-Ti using an Ag-Cu interlayer with a thickness of 75μm ... One of the challenges for bimetal manufacturing is the joining process.Hence,transient liquid phase(TLP)bonding was performed between 304L stainless steel and Cp-Ti using an Ag-Cu interlayer with a thickness of 75μm for bonding time of 20,40,60,and 90 min.The bonding temperature of 860℃ was considered,which is under the β transus temperature of Cp-Ti.During TLP bonding,various intermetallic compounds(IMCs),including Ti_(5)Cr_(7)Fe_(17),(Cr,Fe)_(2)Ti,Ti(Cu,Fe),Ti_(2)(Cu,Ag),and Ti_(2)Cu from 304L toward Cp-Ti formed in the joint.Also,on the one side,with the increase in time,further diffusion of elements decreases the blocky IMCs such as Ti_(5)Cr_(7)Fe_(17),(Cr,Fe)_(2)Ti,Ti(Cu,Fe)in the 304L diffusion-affected zone(DAZ)and reaction zone,and on the other side,Ti_(2)(Cu,Ag)IMC transformed into fine morphology toward Cp-Ti DAZ.The microhardness test also demonstrated that the(Cr,Fe)_(2)Ti+Ti_(5)Cr_(7)Fe_(17) IMCs in the DAZ on the side of 304L have a hardness value of HV 564,making it the hardest phase.The maximum and minimum shear strength values are equal to 78.84 and 29.0 MPa,respectively.The cleavage pattern dominated fracture surfaces due to the formation of brittle phases in dissimilar joints. 展开更多
关键词 diffusion brazing transient liquid phase bonding dissimilar material joints microstructural evolution mechanical properties grade 2 titanium
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Sintering behavior and mechanical properties of sintered ceramics based on spodumene tailings 被引量:2
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作者 YANG Jie XU Long-hua +5 位作者 WU Hou-qin WANG Zhou-jie SHU Kai-qian XU Yan-bo LUO Li-ping TANG Zhen 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第6期1637-1651,共15页
In this study,ceramics was prepared by slip casting(no pressure was used during shaping step)and atmospheric pressure sintering with low-melting point glass(LPG)powder as the binding material to facilitate the transfo... In this study,ceramics was prepared by slip casting(no pressure was used during shaping step)and atmospheric pressure sintering with low-melting point glass(LPG)powder as the binding material to facilitate the transformation of spodumene flotation tailings(SFTs)into ceramics at lower temperatures.The influence of sintering temperature and mass ratio of LPG on the mechanical properties(flexural strength and compressive strength)of ceramic materials was studied by orthogonal test.The results showed that when the mass ratio of LPG powder was higher than or equal to 20 wt%and the sintering temperature was higher than or equal to 550℃,mutual adhesion between the sample particles was realised and consequently the ceramic materials could be prepared with good mechanical properties(the maximum flexural strength=19.55 MPa,the maximum compressive strength=42.25 MPa,average porosity=24.52%,average apparent density=1.66 g/cm^(3),and average water absorption=14.79%).The sintered ceramics were characterized by XRF,XRD,optical microscopy analysis,SEM,TGA-DSC and FT-IR.The formation of liquid phase at high temperature may lead to the mutual bonding between particles,which might be the main reason for the improvement of mechanical properties of ceramic materials.Overall,SFTs were successfully sintered at low temperature to prepare ceramic materials with good mechanical properties,which are crucial for energy conservation and environmental preservation. 展开更多
关键词 spodumene tailings low-temperature sintering ceramic materials mechanical property
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Processing and properties of 2D SiC/SiC composites by precursor infiltration and pyrolysis 被引量:2
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作者 于海蛟 周新贵 +3 位作者 王洪磊 赵爽 羊建高 黄泽兰 《Journal of Central South University》 SCIE EI CAS 2009年第2期190-194,共5页
Two-dimensional plain-weave silicon carbide fiber fabric reinforced silicon carbide(2D-SiC/SiC)composites were molded by stacking method and densified through precursor infiltration and pyrolysis(PIP)process.SiC coati... Two-dimensional plain-weave silicon carbide fiber fabric reinforced silicon carbide(2D-SiC/SiC)composites were molded by stacking method and densified through precursor infiltration and pyrolysis(PIP)process.SiC coating was deposited as the fiber/matrix interphase layer by chemical vapor deposition(CVD)technique.Fiber/matrix debonding and relatively long fiber pullouts were observed on the fracture surfaces.Additionally,the flexural strength and elastic modulus of the composites with and without fiber/matrix interphase layer were investigated using three-point bending test and single-edge notched beam test.The results show that the fiber fraction and the porosity of 2D-SiC/SiC composites with and without coating are 27.2%(volume fraction)and 11.1%,and 40.7%(volume fraction)and 7.5%,respectively.And the flexural strength and elastic modulus of 2D-SiC/SiC composites with and without coating are 363.3 MPa and 127.8 GPa,and 180.2 MPa and 97.2 GPa,respectively.With a proper thickness,the coating can effectively adjust the fiber/matrix interface,thus causing a dramatic increase in the mechanical properties of the composites. 展开更多
关键词 SiC/SiC composites COATING precursor infiltration and pyrolysis chemical vapor deposition
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Improved parameter selection method for mesoscopic numerical simulation test of direct tensile failure of rock and concrete 被引量:1
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作者 刘智光 陈健云 +1 位作者 白卫峰 徐强 《Journal of Central South University》 SCIE EI CAS 2010年第5期1079-1086,共8页
In order to numerically simulate the failure process of rock and concrete under uniaxial tension,an improved method of selecting the mechanical properties of materials was presented for the random mechanic parameter m... In order to numerically simulate the failure process of rock and concrete under uniaxial tension,an improved method of selecting the mechanical properties of materials was presented for the random mechanic parameter model based on the mesoscopic damage mechanics.The product of strength and elastic modulus of mesoscale representative volume element was considered to be one of the mechanical property parameters of materials and assumed to conform to specified probability distributions to reflect the heterogeneity of mechanical property in materials.With the improved property parameter selection method,a numerical program was developed and the simulation of the failure process of the rock and concrete specimens under static tensile loading condition was carried out.The failure process and complete stress-strain curves of a class of rock and concrete in stable fracture propagation manner under uniaxial tension were obtained.The simulated macroscopic mechanical behavior was compared with the available laboratory experimental observation,and a reasonable agreement was obtained.Verification shows that the improved parameter selection method is suitable for mesoscopic numerical simulation in the failure process of rock and concrete. 展开更多
关键词 ROCK CONCRETE stable fracture propagation product of strength and elastic modulus HETEROGENEITY numerical simulation uniaxial tension
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Fatigue life prediction and experiment research for composite laminates with circular hole 被引量:1
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作者 齐红宇 温卫东 孙联文 《Journal of Central South University of Technology》 2004年第1期19-22,共4页
Based on the fatigue prediction model of exponential function and Whitney-Nuismer(WN) criterion of static strength for the composite material laminate with a circular hole, the stress correct factor ( β ) was put for... Based on the fatigue prediction model of exponential function and Whitney-Nuismer(WN) criterion of static strength for the composite material laminate with a circular hole, the stress correct factor ( β ) was put forward and a new fatigue prediction model for composite material laminate was set up. T300/KH304, which is recently studied and is a high capability composite material, was used as the raw material. In order to gain the factor β , the fatigue experiments of the laminates with holes in different diameters and the same ratio of width to diameter were conducted. The fatigue analysis and tests of the laminates with a hole 5 mm in diameter are carried out at different stress levels, and the results meet the engineering requirement. The simple, prompt and practical method is provided for the prediction of S-N curve of composite laminate with a circular hole. 展开更多
关键词 composite material FATIGUE Whitney-Nuismer criterion laminate with a hole
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Preparation and characterization of different surface modified SiCp reinforced Al-matrix composites 被引量:11
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作者 LÜ Pin-hui WANG Xiao-feng +2 位作者 DONG Cui-ge PENG Chao-qun WANG Ri-chu 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第9期2567-2577,共11页
The effects of SiCp surface modifications(Cu coating,Ni coating and Ni/Cu coating)on the microstructures and mechanical properties of Al matrix composites were investigated.Surface modification of SiC particles with C... The effects of SiCp surface modifications(Cu coating,Ni coating and Ni/Cu coating)on the microstructures and mechanical properties of Al matrix composites were investigated.Surface modification of SiC particles with Cu,Ni and Cu/Ni,respectively,was carried out by electroless plating method.SiCp/Al composites were prepared by hot pressed sintering followed by hot extrusion.The results show that the surface modification of SiC particles plays an effective role,which is relative to the type of surface coating,and the interfacial bonding become stronger in the following order:untreated SiCp<Ni(Cu)-coated SiCp<Ni/Cu-coated SiCp.The Ni/Cu-coated SiCp/Al composites exhibit the best comprehensive mechanical properties,with ultimate tensile strength(σUTS)and fracture strain(εf)of 389 MPa and 6.3%,respectively.Compared with that of untreated-SiCp/Al composites,theσUTS andεf are enhanced by 19.3%and 57.5%. 展开更多
关键词 SiCp/Al composite surface modification electroless plating mechanical properties interfacial bonding
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Mechanical property of single-bolted composite laminates 被引量:1
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作者 王富生 王佩艳 +2 位作者 姬尧尧 刘志强 岳珠峰 《Journal of Central South University》 SCIE EI CAS 2014年第2期466-471,共6页
In order to investigate the effects of different geometrical parameters and pretightening loads on failure mode and bearing strength,a large number of single-bolted T300/QY8911 composite laminates were tested under st... In order to investigate the effects of different geometrical parameters and pretightening loads on failure mode and bearing strength,a large number of single-bolted T300/QY8911 composite laminates were tested under static tension load.Box-plot was used to extract the singular testing values of bearing strength and effective statistical values were obtained.T-test method of independent samples was used to study how much pretightening loads influence bearing strength.The results show that the geometrical parameters,such as ratios of width to hole diameter(w/d) and edge distance to hole diameter(e/d),remarkably influence failure mode and bearing strength.Net-section failure will occur when w/d is smaller than 4,and shear-out failure will occur when e/d is smaller than 2.Bearing failure or bearing and shear-out combined failure will occur when w/d is greater than 4 and e/d is greater than 2.There is an optimal combination of geometrical parameters to achieve the highest bearing strength.For most of specimens,pretightening loads do not explicitly influence bearing strength. 展开更多
关键词 single-bolted composite laminate geometrical parameter pretightening load singular testing values T-test method of independent samples
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A mesomechanical ductility model of SiC_p/Al composite
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作者 陈康华 黄大为 +2 位作者 宋日文 李侠 方玲 《Journal of Central South University of Technology》 EI 2006年第4期325-331,共7页
Based on tensile cracking of SiC_p and decohesion of the interface between SiC_p and Al matrix, a mesomechanical model for tensile deformation of SiC_p/Al composites was developed. The microcracks and multi-scale seco... Based on tensile cracking of SiC_p and decohesion of the interface between SiC_p and Al matrix, a mesomechanical model for tensile deformation of SiC_p/Al composites was developed. The microcracks and multi-scale second phase particles were assumed to distribute homogeneously. A nonlinear quantitative relationship between tensile ductility and volume fraction of SiC_p was established based on the model. The tensile ductility values of 2xxx SiC_p/Al and 6xxx SiC_p/Al composites predicted by the model are in good agreement with the experimental values. The analysis of effects of multi-scale second phases on the ductility of the composites indicates that the ductility decreases with the increase of the volume fraction of SiC_p and precipitates in Al matrix and is almost independent of constituents and dispersoids. 展开更多
关键词 SICP/AL COMPOSITE MESOMECHANICS tensile ductility model
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Interface microstructure and mechanical properties of selective laser melted multilayer functionally graded materials 被引量:7
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作者 WANG Di DENG Guo-wei +4 位作者 YANG Yong-qiang CHEN Jie WU Wei-hui WANG Hao-liang TAN Chao-lin 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期1155-1169,共15页
Functionally graded material(FGM)can tailor properties of components such as wear resistance,corrosion resistance,and functionality to enhance the overall performance.The selective laser melting(SLM)additive manufactu... Functionally graded material(FGM)can tailor properties of components such as wear resistance,corrosion resistance,and functionality to enhance the overall performance.The selective laser melting(SLM)additive manufacturing highlights the capability in manufacturing FGMs with a high geometrical complexity and manufacture flexibility.In this work,the 316L/CuSn10/18Ni300/CoCr four-type materials FGMs were fabricated using SLM.The microstructure and properties of the FGMs were investigated to reveal the effects of SLM processing parameters on the defects.A large number of microcracks were found at the 316L/CuSn10 interface,which initiated from the fusion boundary of 316L region and extended along the building direction.The elastic modulus and nano-hardness in the 18Ni300/CoCr fusion zone decreased significantly,less than those in the 18Ni300 region or the CoCr region.The iron and copper elements were well diffused in the 316L/CuSn10 fusion zone,while elements in the CuSn10/18Ni300 and the 18Ni300/CoCr fusion zones showed significantly gradient transitions.Compared with other regions,the width of the CuSn10/18Ni300 interface and the CuSn10 region expand significantly.The mechanisms of materials fusion and crack generation at the 316L/CuSn10 interface were discussed.In addition,FGM structures without macro-crack were built by only altering the deposition subsequence of 316L and CuSn10,which provides a guide for the additive manufacturing of FGM structures. 展开更多
关键词 selective laser melting multilayer functionally graded material interfacial characterization crack defects mechanical properties
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Mechanical analysis of fixed geosynthetic technique of GRPS embankment
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作者 张军 郑俊杰 马强 《Journal of Central South University》 SCIE EI CAS 2013年第5期1368-1375,共8页
To overcome the deficiencies of conventional geosynthetic-reinforced and pile-supported (GRPS) embankment, a new improvement technique, fixed geosynthetic technique of GRPS embankment (FGT embankment), was developed a... To overcome the deficiencies of conventional geosynthetic-reinforced and pile-supported (GRPS) embankment, a new improvement technique, fixed geosynthetic technique of GRPS embankment (FGT embankment), was developed and introduced. Based on the discussion about the load transfer mechanism of FGT embankment, a simplified check method of the requirement of geosynthetic tensile strength and a mechanical model of the FGT embankment were proposed. Two conditions, the pile cap and pile beam conditions are considered in the mechanical model. The finite difference method is used to solve the mechanical model owing to the complexity of the differential equations and the soil strata. Then, the numerical procedure is programmed. Finally, a field test is conducted to verify the mechanical model and the calculated results are in good agreement with field measured data. 展开更多
关键词 mechanical model load transfer mechanism fixed geosynthetic technique GRPS embankment field test
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Quantitative analysis on microstructure and high temperature fracture mechanism of 2.6vol%TiBw/Ti6Al4V composites with equiaxed microstructure after heat treatment
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作者 PAN Jin-qi ZHANG Wen-cong +2 位作者 YANG Jian-lei CHEN Wen-zhen CUI Guo-rong 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第8期2307-2319,共13页
In this paper,the 2.6 vol%TiBw/Ti6Al4V composites with network architecture were fabricated by hot press sintering(HPS)at 1100℃ for 1 h,and the quantitative relationships between phases and heat treatment temperature... In this paper,the 2.6 vol%TiBw/Ti6Al4V composites with network architecture were fabricated by hot press sintering(HPS)at 1100℃ for 1 h,and the quantitative relationships between phases and heat treatment temperatures were established.The results showed that the volume fraction phases changed linearly with a range of solution temperature(930-1010℃)and aging temperature(400-600℃).Moreover,the composites with equiaxed microstructure were obtained due to the static recrystallization after solution treated at 950℃ for 1 h and aging treated at 600℃ for 12 h.The ultimate high temperature tensile strengths were 772,658,392 and 182 MPa,and the elongations were 9.1%,12.5%,28.6%and 35.3%at 400,500,600 and 700℃,respectively.In addition,fractured morphology analysis indicated the excellent strengthening effect of TiBw at a temperature below 600℃.However,the strengthening effect was significantly reduced due to the debonding of matrix and TiBw at 700℃ and caused the cracks to propagate along the grain boundary. 展开更多
关键词 titanium matrix composites(TMCs) heat treatment mechanical properties microstructure evolution
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Mechanical properties of polyvinyl alcohol-basalt hybrid fiber engineered cementitious composites with impact of elevated temperatures 被引量:5
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作者 WANG Zhen-bo HAN Shuo +2 位作者 SUN Peng LIU Wei-kang WANG Qing 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1459-1475,共17页
In the present study,the mechanical properties of polyvinyl alcohol(PVA)-basalt hybrid fiber reinforced engineered cementitious composites(ECC)after exposure to elevated temperatures were experimentally investigated.F... In the present study,the mechanical properties of polyvinyl alcohol(PVA)-basalt hybrid fiber reinforced engineered cementitious composites(ECC)after exposure to elevated temperatures were experimentally investigated.Five temperatures of 20,50,100,200 and 400℃ were set to evaluate the residual compressive,tensile and flexural behaviors of hybrid and mono fiber ECC.It was shown that partial replacement of PVA fibers with basalt fibers endowed ECC with improved residual compressive toughness,compared to brittle failure of mono fiber ECC heated to 400℃.The tension tests indicated that the presence of basalt fibers benefited the tensile strength up to 200℃,and delayed the sharp reduction of strength to 400℃.Under flexural load,the peak deflections corresponding to flexural strengths of hybrid fiber ECC were found to be less vulnerable ranging from 20 to 100℃.Further,the scanning electron microscopy(SEM)results uncovered that the rupture of basalt fiber at moderate temperature and its pullout mechanism at high temperature was responsible for the mechanical evolution of hybrid fiber ECC.This work develops a better understanding of elevated temperature and basalt fiber impact on the residual mechanical properties and further provides guideline for tailoring ECC for improved fire resistance. 展开更多
关键词 engineered cementitious composites hybrid fiber basalt fiber mechanical properties elevated temperature
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