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闸门受蚀构件的力学性能衰减特性
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作者 郭建斌 孙鹏 +2 位作者 陈吉丰 胡坚柯 姚家晖 《腐蚀与防护》 CAS CSCD 北大核心 2023年第4期113-118,共6页
通过LBP算法的图像识别技术,明确辨识单元、LBP162值等几何形貌信息,定量辨识水工闸门构件的腐蚀病害程度,结合受蚀构件力学性能试验:受蚀构件力学性能随腐蚀病害程度增加呈现二次抛物衰减的特性,其中腐蚀病害严重区域的力学性能指标最... 通过LBP算法的图像识别技术,明确辨识单元、LBP162值等几何形貌信息,定量辨识水工闸门构件的腐蚀病害程度,结合受蚀构件力学性能试验:受蚀构件力学性能随腐蚀病害程度增加呈现二次抛物衰减的特性,其中腐蚀病害严重区域的力学性能指标最大衰减超过44.41%,并且呈现明显的离散性与不确定性;加强闸门受力构件的腐蚀病害辨识,特别是严重腐蚀病害区域的处置或报废更新,是防范工程灾害的有效技术措施。 展开更多
关键词 水工闸门 受蚀构件 腐蚀病害程度 力学性能衰减 有限元分析
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Process−microstructure−properties relationship in Al−CNTs−Al2O3 nanocomposites manufactured by hybrid powder metallurgy and microwave sintering process 被引量:6
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作者 Meysam TOOZANDEHJANI Farhad OSTOVAN +3 位作者 Khairur Rijal JAMALUDIN Astuty AMRIN Khamirul Amin MATORI Ehsan SHAFIEI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第9期2339-2354,共16页
Al−2CNTs−xAl2O3 nanocomposites were manufactured by a hybrid powder metallurgy and microwave sintering process.The correlation between process-induced microstructural features and the material properties including phy... Al−2CNTs−xAl2O3 nanocomposites were manufactured by a hybrid powder metallurgy and microwave sintering process.The correlation between process-induced microstructural features and the material properties including physical and mechanical properties as well as ultrasonic parameters was measured.It was found that physical properties including densification and physical dimensional changes were closely associated with the morphology and particle size of nanocomposite powders.The maximum density was obtained by extensive particle refinement at milling time longer than 8 h and Al2O3 content of 10 wt.%.Mechanical properties were controlled by Al2O3 content,dispersion of nano reinforcements and grain size.The optimum hardness and strength properties were achieved through incorporation of 10 wt.%Al2O3 and homogenous dispersion of CNTs and Al2O3 nanoparticles(NPs)at 12 h of milling which resulted in the formation of high density of dislocations and extensive grain size refinement.Also both longitudinal and shear velocities and attenuation increase linearly by increasing Al2O3 content and milling time.The variation of ultrasonic velocity and attenuation was attributed to the degree of dispersion of CNTs and Al2O3 and also less inter-particle spacing in the matrix.The larger Al2O3 content and more homogenous dispersion of CNTs and Al2O3 NPs at longer milling time exerted higher velocity and attenuation of ultrasonic wave. 展开更多
关键词 hybrid composite aluminum composites powder metallurgy microwave sintering MICROSTRUCTURE mechanical properties ultrasonic velocity ultrasonic attenuation
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