Tsuchiyama T, Yatani H, Kondo Y, Fujita E, Yamashita A
Nihon Hotetsu Shika Gakkai Zasshi. 1989 Dec;33(6):1408-18. doi: 10.2186/jjps.33.1408.
In this study we examined the shearing adhesive strength between a calcium metaphosphate glass-ceramic (CMP) and various luting materials. Two usual luting cement-zinc phosphate cement (Elite Cement 100), glass-ionomer cement (Fuji ionomer cement Type I) and three adhesive luting resin-Super Bond C & B, Panavia EX and a tentative luting resin were used as the material. We also examined the effect of three adherent surface treatments--50 microns Almina blasting, hydrofluoride etching, and sodium hydroxide etching--on the adhesive strength of the two adhesive resin, Panavia EX and the tentative luting resin, to CMP. The following conclusion were drawn: 1. The adhesive strength to CMP surface polished with #600 emery paper was higher in order of Super Bond C & B, a tentative luting resin, Panavia EX, Fuji ionomer cement Type I and Elite Cement 100. 2. Sodium hydroxide etching was the most effective for the adhesion between the adhesive luting resin and CMP among the above four adherent surface treatments. 3. Irrespective of the etching time, the stimulation of sodium hydroxide bath by supersonic waves gave an additional increase to the adhesive strength. 4. Under the stimulation by supersonic waves, increasing sodium hydroxide concentration tends to increase the adhesive strength, whereas it is little affected by the etching time within three minutes. The maximum was obtained with concentration in four or five normal (4 or 5 N) sodium hydroxide.
在本研究中,我们检测了偏磷酸钙微晶玻璃(CMP)与各种粘结材料之间的剪切粘结强度。选用了两种常用的粘结水门汀——磷酸锌水门汀(Elite Cement 100)、玻璃离子水门汀(富士I型玻璃离子水门汀),以及三种粘结性树脂粘结剂——Super Bond C & B、Panavia EX和一种试验性粘结树脂作为材料。我们还检测了三种粘结表面处理——50微米氧化铝喷砂、氢氟酸蚀刻和氢氧化钠蚀刻——对两种粘结树脂Panavia EX和试验性粘结树脂与CMP粘结强度的影响。得出以下结论:1. 对于用#600砂纸抛光的CMP表面,粘结强度从高到低依次为Super Bond C & B、一种试验性粘结树脂、Panavia EX、富士I型玻璃离子水门汀和Elite Cement 100。2. 在上述四种粘结表面处理中,氢氧化钠蚀刻对粘结性树脂与CMP之间的粘结最为有效。3. 无论蚀刻时间如何,超声波刺激氢氧化钠浴都会使粘结强度进一步提高。4. 在超声波刺激下,增加氢氧化钠浓度往往会提高粘结强度,而在三分钟内蚀刻时间对其影响不大。在4或5当量(4或5 N)的氢氧化钠浓度下可获得最大粘结强度。