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Dental Resin Cements—The Influence of Water Sorption on Contraction Stress Changes and Hydroscopic Expansion

机译:牙科树脂水泥—吸水率对收缩应力变化和吸水膨胀的影响

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摘要

Resin matrix dental materials undergo contraction and expansion changes due to polymerization and water absorption. Both phenomena deform resin-dentin bonding and influence the stress state in restored tooth structure in two opposite directions. The study tested three composite resin cements (Cement-It, NX3, Variolink Esthetic DC), three adhesive resin cements (Estecem, Multilink Automix, Panavia 2.0), and seven self-adhesive resin cements (Breeze, Calibra Universal, MaxCem Elite Chroma, Panavia SA Cement Plus, RelyX U200, SmartCem 2, and SpeedCEM Plus). The stress generated at the restoration-tooth interface during water immersion was evaluated. The shrinkage stress was measured immediately after curing and after 0.5 h, 24 h, 72 h, 96 h, 168 h, 240 h, 336 h, 504 h, 672 h, and 1344 h by means of photoelastic study. Water sorption and solubility were also studied. All tested materials during polymerization generated shrinkage stress ranging from 4.8 MPa up to 15.1 MPa. The decrease in shrinkage strain (not less than 57%) was observed after water storage (56 days). Self-adhesive cements, i.e., MaxCem Elite Chroma, SpeedCem Plus, Panavia SA Plus, and Breeze exhibited high values of water expansion stress (from 0 up to almost 7 MPa). Among other tested materials only composite resin cement Cement It and adhesive resin cement Panavia 2.0 showed water expansion stress (1.6 and 4.8, respectively). The changes in stress value (decrease in contraction stress or built up of hydroscopic expansion) in time were material-dependent.
机译:树脂基牙科材料由于聚合和吸水而发生收缩和膨胀变化。两种现象都会使树脂和牙本质的结合变形,并在两个相反的方向上影响牙齿修复结构中的应力状态。该研究测试了三种复合树脂水泥(Cement-It,NX3,Variolink Esthetic DC),三种粘性树脂水泥(Estecem,Multilink Automix,Panavia 2.0)和七种自粘性树脂水泥(Breeze,Calibra Universal,MaxCem Elite Chroma, Panavia SA Cement Plus,RelyX U200,SmartCem 2和SpeedCEM Plus)。评估了浸入水中在修复齿界面产生的应力。通过光弹性研究,在固化后立即以及在0.5h,24h,72h,96h,168h,240h,336h,504h,672h和1344h之后测量收缩应力。还研究了水的吸附性和溶解性。在聚合过程中,所有测试材料均产生4.8 MPa至15.1 MPa的收缩应力。储水(56天)后观察到收缩应变的降低(不少于57%)。自粘水泥即MaxCem Elite Chroma,SpeedCem Plus,Panavia SA Plus和Breeze表现出高的水膨胀应力值(从0到几乎7 MPa)。在其他测试材料中,仅复合树脂水泥Cement It和粘合树脂水泥Panavia 2.0表现出水膨胀应力(分别为1.6和4.8)。应力值的变化(收缩应力的减小或吸水扩张的建立)随时间的变化取决于材料。

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