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作 者:李洁银 廖隽琨[1] 叶剑涛[1] 张翠翠[2] 李博华[1] 张艺萍[1]
机构地区:[1]中山大学孙逸仙纪念医院口腔科,广东广州510120 [2]成都市第三人民医院口腔科,四川成都610031
出 处:《临床口腔医学杂志》2014年第1期15-18,共4页Journal of Clinical Stomatology
基 金:广东省科技计划项目(2006B36006016)
摘 要:目的:比较镍铬合金、含钛的镍铬合金、钴铬合金、钯银合金和纯钛的金瓷结合强度。方法:执行ISO9693标准,采用三点弯曲试验分别测定镍铬合金、含钛的镍铬合金、钴铬合金、钯银合金、纯钛在常规热处理条件下的金瓷结合强度。结果:金瓷结合强度分别为:镍铬合金(37.82±2.72)Mpa;含钛的镍铬合金(39.23±2.45)Mpa;钴铬合金(39.06±3.41)Mpa;钯银合金(47.98±3.74)Mpa;纯钛(32.61±5.62)Mpa。镍铬合金、含钛的镍铬合金、钴铬合金组间差异无统计学意义(P>0.05),这3种合金与纯钛、钯银合金组间差异都有统计学意义(P<0.05),纯钛与钯银合金组间差异也有统计学意义(P<0.05)。结论:①镍铬合金、含钛的镍铬合金、钴铬合金金瓷结合强度相近,都大于纯钛且小于钯银合金的金瓷结合强度。②镍铬合金、含钛的镍铬合金、钴铬合金、钯银合金和纯钛的金瓷结合强度都大于25 Mpa,按ISO9693标准均可应用于临床。Objective: To investigate and compare the metal-ceramic bonding strength of Ni-Cr alloy, Ni-Cr-Ti alloy, Co-Cr alloy, Pd-Ag alloy and pure Titanium. Method: Fifty wax patterns having dimensions 25 mm X 3.0 mm X 0.5 mm were prepared by a metal mold. Metal-ceramic specimens were fabricated with five types of metal-ceramic alloys,10 for each type of alloy. All samples were prepared by the clinical empirical heat treatment. Ceramco 111 porcelain cement was fused and adhered to Ni-Cr alloy, Ni-Cr-Ti alloy, Co-Cr alloy and Pd-Ag alloy while Willi Geller porcelain cement to pure Titanium.The metal-ceramic bonding strengths were evaluated using a three-point bending test according to IS09693. The bonding strength data was analyzed using ANOVA and Bonferroni's test by SPSS16.0. Result: The mean value of bonding strength of five alloys were (37.82+2.72)Mpa(Ni-Cr alloy),(39.23+2.45)Mpa(Ni-Cr-Ti alloy),(39.06+3.41)Mpa(Co-Cr alloy), (47.98-+3.74) Mpa(Pd-Ag alloy)and (32.61-+5.62)Mpa(pure Titanium).Ni-Cr alloy, Ni-Cr-Ti alloy and Co-Cr alloy groups (P 〉0.05), the first three groups have significant difference with both pure Titanium group and Pd-Ag alloy group (P 〈0.05),and Pd-Ag alloy group have significant difference with pure Titanium group too (P 〈0.05). Conclusion: According to the test result, the metal-ceramic bonding strengths of Ni-Cr alloy, Ni-Cr-Ti alloy and Co-Cr alloy are closed,which are greater than that of pure Titanium and lower than that of Pd-Ag alloy. The bonding strengths of all metal-porcelain systems are within the acceptable levels by ISO9693 standard (〉25 Mpa).
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