稀有金属材料与工程
稀有金屬材料與工程
희유금속재료여공정
RARE METAL MATERIALS AND ENGINEERNG
2009年
z2期
1277-1280
,共4页
陈斌%袁权%彭向和%范镜泓
陳斌%袁權%彭嚮和%範鏡泓
진빈%원권%팽향화%범경홍
胫骨%羟基磷灰石片%微结构%最大拔出能
脛骨%羥基燐灰石片%微結構%最大拔齣能
경골%간기린회석편%미결구%최대발출능
shankbone%hydroxyapatite sheet%microstructure%maximal pullout energy
扫描电镜观察显示胫骨是一种由羟基磷灰石和胶原蛋白组成的自然生物陶瓷复合材料.羟基磷灰石具有层状的微结构并且平行于骨的表面排列.观察也显示这些羟基磷灰石层又是由许多羟基磷灰石片所组成,这些羟基磷灰石片具有长而薄的形状,也以平行的方式整齐排列.基于在胫骨中观察到的羟基磷灰石片的微结构特征,通过微结构模型分析及实验,研究了羟基磷灰石片平行排列微结构的最大拔出能.结果表明,羟基磷灰石片长而薄的形状以及平行排列方式增加了其最大拔出能,进而提高了骨的断裂韧性.
掃描電鏡觀察顯示脛骨是一種由羥基燐灰石和膠原蛋白組成的自然生物陶瓷複閤材料.羥基燐灰石具有層狀的微結構併且平行于骨的錶麵排列.觀察也顯示這些羥基燐灰石層又是由許多羥基燐灰石片所組成,這些羥基燐灰石片具有長而薄的形狀,也以平行的方式整齊排列.基于在脛骨中觀察到的羥基燐灰石片的微結構特徵,通過微結構模型分析及實驗,研究瞭羥基燐灰石片平行排列微結構的最大拔齣能.結果錶明,羥基燐灰石片長而薄的形狀以及平行排列方式增加瞭其最大拔齣能,進而提高瞭骨的斷裂韌性.
소묘전경관찰현시경골시일충유간기린회석화효원단백조성적자연생물도자복합재료.간기린회석구유층상적미결구병차평행우골적표면배렬.관찰야현시저사간기린회석층우시유허다간기린회석편소조성,저사간기린회석편구유장이박적형상,야이평행적방식정제배렬.기우재경골중관찰도적간기린회석편적미결구특정,통과미결구모형분석급실험,연구료간기린회석편평행배렬미결구적최대발출능.결과표명,간기린회석편장이박적형상이급평행배렬방식증가료기최대발출능,진이제고료골적단렬인성.
The observation of Scanning Electronic Microscope (SEM) on a shankbone shows that the bone is a kind of natural bioceramic composite consisting of hydroxyapatite and collagen protein. The hydroxyapatite is of laminated microstructure and distributed parallel to the surface of the bone. The observation also shows that the hydroxyapatite layers are further composed of many hydroxyapatite sheets. The hydroxyapatite sheets possess long and thin shape as well as parallel distribution. The maximal pullout energy of the parallel microstructure of the hydroxyapatite sheets were investigated with its representative model and a pullout-energy experiment. The results show that the long and thin shape as well as the parallel distribution of the hydroxyapatite sheets increase the maximal pullout energy of the sheets and enhance the fracture toughness of the bone.