[1] 徐迎秋. 少片钢板弹簧轻量化优化设计方法研究[D]. 长春: 吉林大学, 2015. [2] 李玉平, 肖志远. 某轻型车复合材料板簧结构设计分析[J]. 科技与创新, 2018(15): 122-123, 125. [3] BAUCOM J N, THOMAS J P, POGUE W R, et al. Tiled composite laminates[J]. Journal of Composite Materials, 2010, 44(26): 3115- 3132. [4] NEVES N M, MANO J F. Structure/mechanical behavior relationships in crossed-lamellar sea shells[J]. Materials Science & Engineering C, 2005, 25(2): 113-118. [5] CHEN B, PENG X, WANG J G, et al. Laminated microstructure of Bivalvashell and research of biomimetic ceramic/polymercomposite[J]. Ceramics International, 2004, 30(7): 2011-2014. [6] 罗永安, 楚世辰, 陈蓉娜. 中国北方珍珠的特征研究[J]. 湖北农业科学, 2017, 56(2): 301-305. [7] 陈科. 高强度高韧性仿珍珠母层状GO/SA复合材料取得重要进展[J]. 中国表面工程, 2015, 28(6): 154. [8] GAO H. Application of fracture mechanics concepts to hierarchical biomechanics of bone and bone-like materials[J]. International Journal of Fracture, 2006, 138(1): 101-137. [9] CURREY J D. Mechanical properties of mother of pearl in tension[J]. Proceedings of the Royal Society of London, 1977, 196(1125): 443-463. [10] 袁权. 珍珠母多级微纳米结构的强韧机理[D]. 重庆: 重庆大学, 2013. [11] MALKIN R, YASAEE M, TRASKR S, et al. Bio-inspired laminate design exhibiting pseudo-ductile (graceful) failure during flexural loading[J]. Composites Part A Applied Science & Manufacturing, 2013, 54: 107-116. [12] XIN Z, ZHANG X, DUAN Y, et al. Nacre-inspired design of CFRP composite for improved energy absorption properties[J]. Composite Structures, 2018, 184: 102-109. [13] 柯俊, 史文库, 钱琛, 等. 复合材料板簧刚度的预测及匹配设计方法[J]. 浙江大学学报(工学版), 2015, 49(11): 2103-2110. [14] 肖剑. 板簧刚性的试验方法及试验机选型[J]. 新疆钢铁, 2003(2): 19-22. [15] 周站福, 潘超, 宋恩章. 复合材料板簧设计与开发[J]. 汽车文摘, 2020(2): 47-50. |