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非贵金属缎造卡环弹性极限及其相应卡抱力 被引量:1

The Elastic Limit and the Relevant Enclasp Force of Non-Precious Metal Wrought Wire Clasp
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摘要 目的研究非贵金属锻丝卡环的弹性极限及其相应卡抱力。方法成品锻丝卡环直径分别为0.8,0.9和1.0 mm制作试件。应用万能材料试验机测试采集试件加载变形及其卸载回复全过程的电信号,通过A/D转换器将电信号转换成数字信号并贮存于计算机中;应用基于MATLAB平台开发的计算机绘图软件处理分析、计算锻丝卡环弹性极限及其相应卡抱力。结果直径为0.8,0.9和1.0 mm的锻丝卡环弹性极限分别是0.639,0.608和0.482 mm,其相应卡抱力是0.167,0.196和0.335 N。结论在临床工作中,应根据不同倒凹长度、坡度及卡环粗细选择进入倒凹的深度,以获得较理想的固位效果。 Objective To investigate the elastic limit and relevant enclasp force of the non-precious metal wrought wire clasp. Methods 30 wrought wire clasp samples were made and divided into three groups,diameter were 0.8, 0.9 and 1.0 mm, respectively. The process of clasp samples deflected by loading and returned by unloading was tested and electric signals were collected by an omnipotent material machine. The analogous electric signal was converted to digital signal by digital converter and stored in a computer. The elastic limit and the relevant enclasp force were analyzed using a relative software. Results The elastic limit of the non-precious metal wrought wire clasp made from 0.8, 0.9 and 1.0 mm diameter were 0. 639, 0. 608 and 0. 482 mm, respectively, the relevant enclasp force were 0. 167, 0. 196, 0. 335 N. Conclusion In clinic, the suitable undercut deepness must according to different diameter, length and slope.
出处 《福建医科大学学报》 2007年第1期78-80,共3页 Journal of Fujian Medical University
基金 福建省自然科学基金资助项目(X0650050) 福建省科技三项费资助项目(K03021)
关键词 义齿 局部 可摘 牙科卡环 义齿修复术 denture, artial, removable dental clasps prosthodontics
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参考文献5

  • 1徐君伍.口腔修复学[M] 4版[M].北京:人民卫生出版社,2000.240.
  • 2Vallitfu P K,Alakuijala P,Lassila V P,et al.In vitro fatigue fracture of an acrylic resin-based partial denture:an exploratory study[J].J Prosthet Dent,1994,72(3):289-295.
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  • 4程辉,郑明,吴唯青,黄宗阳,李秀容,程祥荣.非贵金属铸造卡环弹性极限及其相应卡抱力的研究[J].中华口腔医学杂志,2004,39(3):227-229. 被引量:7
  • 5Miller E L.Removable partial prosthodontics[M].Baltimore:Williams and Wilkins Co,1972:158-160.

二级参考文献6

  • 1徐君伍.口腔修复学(第4版)[M].北京:人民卫生出版社,2000.209.
  • 2陈治清.口腔材料学(第2版)[M].北京:人民卫生出版社,2001.127-136.
  • 3Vallitfu PK, Lassila VP, Lappalainen R. Transeverse strength and fatigue of denture acrylic-glass fiber composite. Dent Mater,1994,10:116-121.
  • 4Miller EL. Removable partial prosthodontics. Baltimore:Williams and Wilkins Co,1972.158.
  • 5Vallitfu PK, Alakuijala P, Lassila VP, et al. In vitro fatigue fracture of an acrylic resin-based partial denture:an exploratory study. J Prosthet Dent,1994,72:289-295.
  • 6GlenPM AlanBC 杨亚东 姜婷 译.McCracken 可摘局部义齿修复学[M].北京:科学出版社,2003.66-72.

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