3D printing manufacturing method of dental fluorosis implant
A 3D printing and production method technology, applied in the direction of manufacturing tools, ceramic molding machines, additive processing, etc., can solve the problems of affecting the aesthetics, inaccurate color selection, easy to produce color difference, etc., to achieve high production efficiency, small color difference, The effect of high restoration
Patent Information
- Authority / Receiving Office
- CN · China
- Current Assignee / Owner
- Publication Date
- 2021-03-05
Abstract
Description
Technical field
[0001] The present invention belongs to the field of ceramic implantation tooth, and more particularly to a 3D printing method of a fluoroplane implant.Background technique
[0002] 3D printing (3DP), one of the rapid molding technology, also known as the additive manufacturing, is a bonded material such as a digital model file, using a powder metal or plastic, and is constructed by layers. The technique of objects. Planting teeth uses artificial materials (such as metals, ceramics, etc.) to form an implant (generally similar to root form), implanted in the tissue (usually the upper and lower jaws), and obtain a secure solid support for bone tissue, through special devices And how to connect to the upper dental complex.
[0003] In order to pursue beauty, it is usually ensured that the implant is consistent with the original dental color or with its neighboring color. The traditional coloring method is colored by the camera, or the dentist is colored according to the color car...
Examples
Embodiment 1
[0021]A 3D printing method for a fluoroplava implant, which includes the following steps:
[0022]Step 1: Get the fluoroprotic shape data, use a three-dimensional scanner to scan the unplugged fluoroplane, and transmitted to the computer software to obtain the outer data of its entire teeth as a complete teeth model;
[0023]If the disc is unplugged to break the teeth, the neighboring teeth on the teeth are scanned by the intra-mouth three-dimensional scanner and transmitted the scan results into the computer software, and the shape data of the intensive teeth is used as analog. Whole tooth model;
[0024]Step 2: Get the outer surface color data of the fluoroprotection, and the unplugged fluoroplachoma is divided into 3 layers of colored layers from the gutter to the gutter, and 5 equal points are taken each layer, and the fluorine detector is used to each layer. The colored layer performs fluorine content detection, takes a mean transmission to the computer to obtain color data for each lay...
Embodiment 2
[0032]A 3D printing method for a fluoroplava implant, which includes the following steps:
[0033]Step 1: Get the fluoroprotic shape data, use a three-dimensional scanner to scan the unplugged fluoroplane, and transmitted to the computer software to obtain the outer data of its entire teeth as a complete teeth model;
[0034]If the disc is unplugged to break the teeth, the neighboring teeth on the teeth are scanned by the intra-mouth three-dimensional scanner and transmitted the scan results into the computer software, and the shape data of the intensive teeth is used as analog. Whole tooth model;
[0035]Step 2: Get the surface color data of the fluoroprotection, the unplugged fluoroplachoma is divided into 4 layers of colored layers from the gutter to the guttop, each layer takes 4 orientation, and utilizes the fluorine detector to each layer The colored layer performs fluorine content detection, takes a mean transmission to the computer to obtain color data for each layer of coloring laye...
Embodiment 3
[0043]A 3D printing method for a fluoroplava implant, which includes the following steps:
[0044]Step 1: Get the fluoroprotic shape data, use a three-dimensional scanner to scan the unplugged fluoroplane, and transmitted to the computer software to obtain the outer data of its entire teeth as a complete teeth model;
[0045]If the disc is unplugged to break the teeth, the neighboring teeth on the teeth are scanned by the intra-mouth three-dimensional scanner and transmitted the scan results into the computer software, and the shape data of the intensive teeth is used as analog. Whole tooth model;
[0046]Step 2: Get the fluoroplachoma surface color data, the unplugged fluoroplachoma is divided into 5 layers of colored layers from the gutter to the guttop, each layer is taken, and the fluorine detector is used to each layer The colored layer performs fluorine content detection, takes a mean transmission to the computer to obtain color data for each layer of coloring layer by the control tabl...