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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Advanced Biomaterials Used for a New Telescopic Retainer for Removable Dentures: Ceramic vs. Electroplated Gold Copings: Part I. In Vitro Tribology Effects
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Advanced Biomaterials Used for a New Telescopic Retainer for Removable Dentures: Ceramic vs. Electroplated Gold Copings: Part I. In Vitro Tribology Effects

机译:用于可移动义齿的新型伸缩式固定器的先进生物材料:陶瓷与电镀金盖:第一部分。体外摩擦学效应

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Removable dentures supported by cast-metal telescopic crowns often exhibit an unpredictable increase or decrease in retentive force after being in clinical use for some time. The objective of the present in vitro study was to develop a new retainer for removable dentures and to evaluate its tribological properties. The new retainer is based on a tapered crown design and consists of a conical all-ceramic abutment crown and a coping made of electroplated gold. It was compared with conventional telescopic retainers made of cast metal. There were 30 specimens in groups of equal size by material used (abutment crown/coping): Group 1, gold/gold; Group 2, titanium/titanium; Group 3, ceramic/electroplated gold. Each specimen consisted of 2 conical-shaped abutment crowns (#alpha# valence 4 deg; h valence 6 mm; ?_(base) valence 4,5 mm); their copings were rigidly connected at 25 mm intervals. Retentive forces were measured with a universal testing machine following axial loading to 5-400 N. Wear was simulated by 500-100,000 joining and separating cycles in the presence of artificial saliva. Metallographic cross-sections were made to evaluate the specimens' fit and surfaces with a SEM. Retentive forces in Groups 1 and 2 increased with load, exhibiting nondirectional changes after induced wear. Sometimes the alloys' functional surfaces showed considerable tracks of wear. Neither load nor wear had any effect on Group 3 retentive forces (mean_(force) valence 5.03 N). The functional ceramic and gold surfaces showed no traces of wear and the best fit (median_(gap) valence 4.9 #mu#m). Replacing cast metals by ceramics and electroplated gold results in retainers with clinically advantageous tribological effects, implying, in particular, high wear resistance.
机译:在临床使用一段时间后,由铸金属伸缩式牙冠支撑的可摘义齿在固定力方面经常表现出不可预测的增加或减少。本体外研究的目的是为可移动义齿开发一种新的固位体,并评估其摩擦学特性。新的固定器基于锥形冠状设计,包括一个锥形全陶瓷基台冠和一个由电镀金制成的顶盖。它与传统的铸铁伸缩式保持架进行了比较。按所用材料(基台冠/顶盖)大小相同的组有30个标本:第1组,金/金;第2组,钛/钛;第3组,陶瓷/电镀金。每个标本由2个圆锥形基台冠组成(α价为4度; h价为6毫米;β(基价)为4.5毫米)。它们的顶盖以25 mm的间隔牢固地连接。在轴向载荷达到5-400 N之后,使用万能试验机测量保持力。在存在人工唾液的情况下,通过500-100,000的接合和分离循环来模拟磨损。制作了金相横截面,以通过SEM评估样品的配合和表面。第1组和第2组中的保持力随着载荷的增加而增加,在引起磨损后表现出无方向性变化。有时,合金的功能表面会显示出明显的磨损痕迹。载荷和磨损均对第3组保持力(均价(力)价5.03 N)没有任何影响。功能性陶瓷和金表面未显示出任何磨损痕迹和最佳贴合度(中位数(价)为4.9#mu#m)。用陶瓷和电镀金代替铸造金属导致保持架具有临床上有利的摩擦学效果,这尤其意味着高耐磨性。

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