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1)  water-borne UV-curing resin
水性光固化树脂
2)  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。
3)  Photocurable Resin
光固化树脂
1.
Radical, cationic and hybrid photocurable resins used for stereolithography(SL) are introduced.
介绍了用于立体光造型技术的自由基型、阳离子型及混杂型树脂体系 ,阐述了它们各自的优缺点 ,展望了立体光造型法用光固化树脂的研究前景和发展趋
2.
A series of photocurable resins used for SL are prepared.
设计了多种用于立体光造型 (SL)法的光固化树脂配方 ,对影响其体收缩和线收缩的几种因素进行了研究 。
4)  photocuring resin
光固化树脂
1.
The principle on stereolithography,laser source,photocuring resin and photo-initiator were reviewed.
简要介绍了快速制造技术 ,阐述了光固化成型原理 ,激光光源及所用光固化树脂。
2.
The photocuring resin for Laser Rapid Prototyping & Manufacture was prepared,the shrinkage reasons of photocuring resin was analyzed,and the effect of the photocuring resin shrinkage on parts curl distortion was studied.
制备了激光快速成型用光固化树脂 ,分析了光固化树脂收缩的原因 ,研究了光固化树脂的收缩行为对成型零件翘曲和变形的影响 ,从树脂本身微观分子结构和引起翘曲的机理方面来解释零件的变形行为 ,并且提出了从树脂和扫描工艺两个方面进行改
5)  light curing composite
光固化树脂
1.
Group A were restored by glass ionomer,the group B by light curing composite.
目的比较玻璃离子和光固化树脂两种材料修复牙体楔状缺损的临床效果。
6)  light-cure resin
光固化树脂
1.
Clinical effect comparison between light-cure resin and metal post and core applied in the restoration for lower remnant incisor;
光固化树脂核及金属桩核在下切牙残冠修复中的比较
补充资料:丙烯酸改性水性自干醇酸树脂
分子式:
CAS号:

性质: 是指用丙烯酸酯单体作改性剂制成的水性白干醇酸树脂。制备方法为:第一步先制分子量非常低的含有羟基、羧基的丙烯酸酯预聚物;第二步用此预聚物代替一部分脂肪酸,按等质量取代,与醇酸树脂及其他原料一起加入反应釜进行酯化,与正常醇酸树脂的制备相同;第三步通过酸碱中和反应使其成盐而溶于水。主要用于制水性漆,可改进漆膜颜色、干率、早期耐水性及长期柔韧性。

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