· Product · CAD/CAM system · Zirconia Disk

Zirtooth

为什么选择 Zirtooth

产品系列 1

Zirtooth Multi NEO

产品系列 2

Zirtooth Multi Luster

产品系列 3

Zirtooth Ultra Luster

产品系列 1

Zirtooth Multi NEO

高美学

- 表现出与天然牙切端层相似的高透光性

- 基于 Vita 色板的多种色阶组合

- Multi strength & multi translucency

 

产品系列 2

Zirtooth Multi Luster

美学与强度

- 自然的色阶渐变

- 优异的强度,可抵抗边缘崩裂与断裂

- 从颈部到切端保持一致强度的渐变块

 

产品系列 3

Zirtooth Ultra Luster

高强度

- 优异的强度与透光性(1100 MPa)

- 适用于多种类型的修复体

 

Zirtooth Multi Neo A2 - 色泽 (Shade) A2(35), A3(36), A3.5(37)
Zirtooth UltraLuster A1 - 色泽 (Shade) A2(15), A3(16), A3.5(17)
Zirtooth MultiLuster A2 - 色泽 (Shade) A2(24-25), A3(26), A3.5(27)

 

 

 

 

[1] https://doi.org/10.11607/ijp.4602, So-Yeun Kim, Jung-Bo Huh*, Fracture Strength After Fatigue Loading of Lithium Disilicate Pressed Zirconia Crowns. International Journal of Prosthodontics, 2016.11.04.

[2] https://doi.org/10.4047/jap.2017.9.4.244, Jae-Won Choi, Jung-Bo Huh*, In vitro study of the fracture resistance of monolithic lithium disilicate, monolithic zirconia, and lithium disilicate pressed on zirconia for three-unit fixed dental prostheses. Journal of Advanced Prosthodontics, 2017.08.16.

[3] https://doi.org/10.3390/ma11010077, Yong-Seok Jang, Myung-Jin Lim*, Effect of Lithium Disilicate Reinforced Liner Treatment on Bond and Fracture Strengths of Bilayered Zirconia All-Ceramic Crown. Materials, 2018.01.05.

[4] https://doi.org/10.4012/dmj.2018-321, Yong-Seok Jang, Seung-Geun Ahn*, Debonding/crack initiation and flexural strengths of bilayered zirconia core and veneering ceramic composites. Dental Materials Journal, 2019.11.06.

[5] https://doi.org/10.3390/ma12172798, Yong-Seok Jang, Tae-Sung Bae*, Effects of Liner-Bonding of Implant-Supported Glass-Ceramic Crown to Zirconia Abutment on Bond Strength and Fracture Resistance. Materials, 2019.08.30.

[6] https://doi.org/10.1111/jopr.13136, Jong-Hoi Kim, Lee-Ra Cho*, Effects of the Thickness Ratio of Zirconia-Lithium Disilicate Bilayered Ceramics on the Translucency and Flexural Strength. Journal of Prosthodontics, 2020.01.05.

[7] https://doi.org/10.14815/kjdm.2020.47.4.211, Tae-Yeon Kim, Tae Sung Bae*, Effect of investment materials on 3-point flexural strength of heat pressed zirconia core. Korean Journal of Dental Materials, 2020.12.17.

[8] https://doi.org/10.4047/jap.2020.12.4.181, Kyung-Ho Ko, Yoon-Hyuk Huh*, Effect of core design on fracture resistance of zirconia-lithium disilicate anterior bilayered crowns. Journal of Advanced Prosthodontics, 2020.08.20.

[9] https://doi.org/10.1111/jopr.13889, Han-Sol Song, Kyung-Ho Ko*, Evaluation of shear bond strength based on substructure materials and ceramic veneering techniques. Journal of Prosthodontics, 2024.05.31.

[10] https://doi.org/10.1111/jerd.13391, Min-Gyu Song, Lee-Ra Cho*, Edge Chipping Resistance and Flexural Strength of CAD-CAM Ceramics Before and After Thermomechanical Aging. Journal of Esthetic and Restorative Dentistry, 2024.12.22.

[11] https://doi.org/10.5856/JKDS.2025.18.1.1, Sung-Hoon Kim, Yoon-Hyuk Huh*, Effect of Occlusal and Margin Design on the Fracture Load of Zirconia-Lithium Disilicate Bi-layered Posterior Crowns: An in Vitro Study. Journal of Korean Dental Science, 2025.03.31.

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