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The finite element analysis of cemented long and short stem prosthetic replacement in aged patients with comminuted intertrochanteric fracture
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作者 王韶进 《外科研究与新技术》 2011年第2期112-112,共1页
Objective To investigate the stress distribution of the femur after cemented prosthetic replacement in aged patients with comminuted intertrochanteric fracture and to analyze the difference of stress distribution betw... Objective To investigate the stress distribution of the femur after cemented prosthetic replacement in aged patients with comminuted intertrochanteric fracture and to analyze the difference of stress distribution between cemented long 展开更多
关键词 stem The finite element analysis of cemented long and short stem prosthetic replacement in aged patients with comminuted intertrochanteric fracture
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Fracture of Extensively Porous-Coated Cylindrical Femoral Stem Following Revision Total Hip Arthroplasty 被引量:1
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作者 Chao-Fan Zhang Chun Hoi Yan +2 位作者 Fu Yuen Ng Ping Keung Chan Kwong Yuen Chiu 《Chinese Medical Journal》 SCIE CAS CSCD 2016年第11期1374-1376,共3页
Total hip arthroplasty (THA) is one of the most clinically successful surgeries. Despite the prevalence of THA, the number of revisions for septic or aseptic reasons continues to increase.
关键词 Extensively Porous-coated stem Femoral stem fracture Revision Total Hip Arthroplasty
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Fracture mechanism and separation conditions of pineapple fruit-stem and calibration of physical characteristic parameters 被引量:1
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作者 Mutong Li Lin He +2 位作者 Dandan Yue Binbin Wang Junlue Li 《International Journal of Agricultural and Biological Engineering》 SCIE 2023年第5期248-259,共12页
At present,the research on the physical composition and properties of pineapple plants is scarce,and the uncertainty of fruit picking method is the key bottleneck factor hindering the research and development of pinea... At present,the research on the physical composition and properties of pineapple plants is scarce,and the uncertainty of fruit picking method is the key bottleneck factor hindering the research and development of pineapple harvesting machinery.Based on the statistics of survey data from many places,this paper analyzes the fruit-stem fracture mechanism and the theoretical conditions for optimal separation through structural modeling,mechanical behavior analysis and function judgment.On this basis,the“pineapple plant fixation bench”and“fruit-stem bending separation torque test equipment”were developed,and large-size,small-size tests and random optimization tests were carried out successively.The test results showed that the larger of the stem-stalk fixation distance,the more torque and fracture starting angle required for fruit fracture would increase,and the change range was small when the stem-stalk fixation distance was within 50 mm,and the probability of brittle fracture and complete separation was very high.When the space between the fracture section and the fruit-stem connecting point is about 5mm,the range of bending moment value required for the fruit-stem fracture is 1.88 to 2.77 N·m,the range of fracture starting angle is 12.2°to 18.1°,and the angular travel range during the separation process is 82.9°to 87.5°.When the stem-stalk fixation distance is about 15 mm,it is the best fruit-stem separation condition and the breaking torque measured in the verification test is about 2.76 N·m.The fracture starting angle is about 13.8°,the maximum prediction error is 13.1%,and the elastic modulus near the fruit-stem joint ranges from 16.1 to 23.9 MPa.This conclusion can provide an important design basis for the research and development of pineapple field picking robot and harvesting equipment. 展开更多
关键词 pineapple harvesting fracture mechanism of fruit and stem separation conditions experiment design reverse calibration
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