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4篇 您的检索式:作者名="Wim Van Paepegem"
    题名 作者 年代 出处 被引量
1The effect of residual stresses on the strain evolution during welding of thin-walled tubes 显示文摘Maarten De Strycker Wim Van Paepegem Luc Schueremans 2011Key Engineering Materials2011,3,:1
2Fatigue damage mode-ling of fibre-reinforced composite materials: Review 显示文摘Joris Degrieck Wim Van Paepegem 2001Appl Meehan Rev2001,54,4:1
3Structural optimization of patient-specific temporomandibular joint replacement implants for additive manufacturing:novel metrics for safety evaluation and biomechanical performance显示文摘Total temporomandibular joint(TMJ)replacement is recommended only when there is irreversible damage to the joint and no conservative treatment can provide functional improvements.Several stock and custom-made TMJ implants have been made available;however,retrospective and comparative studies were unable to find significant differences between the two types of solutions.The introduction of additive manufacturing(AM)techniques in medical practice allows for a greater freedom of design and a higher degree of device customisation.The combination of AM with structural optimisation may streamline development and provide the key for fabricating biomechanic ally enhanced TMJ implants.In this study,structural optimis ation techniques were applied to develop and numerically validate a patient-specific TMJ implant.The biomechanical behaviour of each intermediate TMJ design was assessed under four different nominal and maximum biting tasks using finite element analyses.In addition,a new set of metrics were proposed to compare each design regarding biomechanical performance and implant safety.The results suggest that 55-82%of the natural/intact strain patterns can be recovered with the finally selected TMJ implant.This represents an increase of 15%in biomechanical performance for incisor biting,15%for right molar biting,17%for left molar biting and a decrease of 2%for left group biting compared with the initial design.The results also suggest that load transfer at the proximal ramus reduces the implant’s impact on the mandible’s strain patterns.Finally,structural optimisation allows for a volume reduction of up to 44%with a minimum loss of implant safety and biomechanical performance.Manuel Pinheiro Anouar Krairi Robin Willaert Maria C.Costa Wim Van Paepegem 2022Bio-Design and Manufacturing2022,5,2:0
4基于不同压电材料作动机制的压电层厚度研究显示文摘研究了压电材料复合板的3种作动机制,弯曲作动机制、剪切作动机制、混合作动机制,针对粘贴在纤维板上不同厚度的压电作动层,具体分析了复合板的端部位移,研究结果对噪声和振动的主动控制中的模态控制和智能结构静态形状控制提供了一定的参考。韩国华 靳晓雄 Joris Degrieck Wim Van Paepegem 侯艳芳 2010材料导报2010,24,4:0
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