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1)  light-cured composite resin
光固化复合树脂
1.
Effects of different adhesives on the shear bonding strength of ceramic brackets against light-cured composite resin;
不同粘接剂对陶瓷托槽与光固化复合树脂修复体粘接效果的实验研究
2.
Study on dental pulp s non-inflammatory necrosis after dental restoration by light-cured composite resin;
光固化复合树脂修复后致牙髓无炎性坏死的初步研究
3.
Effect of glass ionomer cement sandwich technique in restoring wedge-shaped defect with light-cured composite resin;
玻璃离子夹层对光固化复合树脂修复楔形缺损疗效的影响
2)  Light cured composite resin
光固化复合树脂
1.
Methods 585 teeth with wedge-shaped defect were restored by glass ionomer cement ,light cured composite resin and the combination of the two materials.
03%,光固化复合树脂为70。
2.
Objective To compare the dental bonding characters of glass ionomer cement and light cured composite resin.
目的 比较玻璃离子和光固化复合树脂对牙体的黏接性能。
3)  Composite resin
光固化复合树脂
1.
Methods Application of glass ionomer cement, composite resin and sandwich technique were used to restore 398 wedge-shaped defect of the teeth.
方法 :对 3 98颗楔形缺损患牙分别用玻璃离子粘固粉、光固化复合树脂和玻璃离子粘固粉与光固化复合树脂联合修复 (以下简称夹层技术 )。
2.
Methods: To repair120 wedge-shaped defect in same conditions with the light-cured composite resin, two groups with retentive form andnon-retentive form.
目的:探讨固位形在光固化复合树脂修复楔状缺损中的作用。
4)  Light curing composite resins
光敏化复合树脂
5)  the light-cured composite
光固化复合塑脂
6)  photosensitive resin
光固化树脂
1.
This paper firstly studied the bonding mechanism of the photosensitive resin blade,and then introduced the effective measures to improve the quality for photosensitive resin blade by means of the metal-coated diamond abrasive and studied the change of bonding ability of the blade compared with conventional abrasive.
探讨了光固化树脂磨具不同于普通树脂磨具的结合机理,并在该理论的基础上寻找出改善磨具结合性能的措施。
2.
Diamond abrasives(4~8μm girt size)are bonded quickly by photosensitive resin and then exposed under 300~500 nm wavelength ultraviolet ray to fabricate fixed abrasive plate.
采用4~8μm粒径的金刚石微粉作为磨料,以光固化树脂作为结合剂,在300~500 nm波长紫外线照射下,使光固化树脂快速固化,制作固着磨料研磨盘(金刚石浓度100%),以φ5 mm氮化硅陶瓷球为加工对象,在自行设计的实验台上进行了加工实验。
补充资料:高温固化树脂基复合材料
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性质:在高温下固化成型的树脂基复合材料。高温一般指高于150℃的温度。常用的树脂有酚醛和环氧树脂。前者包括两类:热塑性酚醛树脂采用六亚甲基四胺(乌洛托品)固化剂,固化温度为150~170℃;热固性酚醛树脂的固化温度为160℃。酚醛树脂的高温固化需在高压下进行。环氧树脂高温固化剂有芳香胺,如DDM、DDS、MPSA、二元酸酐,如顺丁烯二酸酐、邻苯二酸酐和双腈胺等。这类复合材料基体树脂结构紧密,热稳定性好、强度高、耐化学腐蚀性和耐大气老化性能优良,并且预浸料具有较长的适用期。工艺条件复杂,需高温加热设备,对大型制件难以满足,应在保证性能前提下尽量降低固化温度,靠近中温固化。适用于制造有较高使用温度要求的非大型结构件,广泛用于航空航天、机械制造、能源、化工及其他工业领域。

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