Amber Mill Direct
为什么选择 Amber Mill Direct
核心优势 01
功能性透光度与抗折强度
核心优势 02
快速简便的操作流程
核心优势 03
卓越的边缘稳定性
核心优势 01
功能性透光度与抗折强度
Amber® Mill Direct 通过应用渐变的微结构,实现了从颈部到切端及咬合区域的自然透光性,无需额外的个性化处理。
Amber® Mill Direct 制作的修复体在颈部和切端区域具有不同的微结构,从而在不同部位产生不同的强度,有效降低了对颌牙的磨损。


核心优势 02
快速简便的操作流程
Amber® Mill Direct 是一种预晶化的二硅酸锂基可铣削玻璃陶瓷块,帮助牙科专业人士在 1 小时内完成椅旁修复,因为铣削后只需抛光即可。
该块材的透光性可以通过对上釉修复体进行烧结轻松调节。
这些块材配备了 CEREC 夹头,使得 CEREC 以及行业内的通用夹头湿式铣削机能够快速加工修复体。

核心优势 03
卓越的边缘稳定性
实现卓越的边缘密合度与颈部轮廓。



[1] https://doi.org/10.14815/kjdm.2021.48.1.1, Byeol Hwang, Tae Sung Bae*, Color comparison of glaze-treated multi-coloured lithium disilicate and zirconia. Korean Journal of Dental Materials, 2021.03.03.
[2] https://doi.org/10.14815/kjdm.2023.50.2.81, Min-Soo Bae, Jung-Jin Lee*, Aesthetic restoration of maxillary central incisor with discoloration using lithium disilicate treated with liner: A case report. Korean Journal of Dental Materials, 2023.06.28.
[3] https://doi.org/10.1016/j.jds.2024.11.031, Hsuan Chen, Yuan-Min Lin*, Accuracy of single ceramic crowns milled on a mobile digital dental laboratory after transportation over varying distances. Journal of Dental Sciences, 2024.12.07.
[4] https://doi.org/10.1007/s10266-024-00998-y, Ji-Hyun Kim, Min-Ho Lee*, Impact of liner treatment on the translucency of CAD/CAM multi-colored lithium disilicate and multi-layered zirconia implant-supported crowns, and evaluation of fracture strength of ceramic crowns. Odontology, 2024.10.08.
[5] https://doi.org/10.1111/jopr.14017, Ki-Un Lee, Lee-Ra Cho*, Effect of crystallization and finish line curvature on the marginal integrity of lithium disilicate crowns. Journal of Prosthodontics, 2025.01.07.
[6] https://doi.org/10.1111/jerd.13489, Anvita Maharishi, Shane N. White*, Characterization of Lithia-Based Machinable Glass-Ceramic Materials. Journal of Esthetic and Restorative Dentistry, 2025.05.19.
[7] https://doi.org/10.1016/j.jmbbm.2025.107106, Carola Irlinger*, Impact of polishing, glazing and firing, restoration thickness, point of loading and aging on the edge chipping resistance of lithium silicate ceramics. Journal of the Mechanical Behavior of Biomedical Materials, 2025.06.20.
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