Sealing device for slot-type vacuum glass

09751145 ยท 2017-09-05

Assignee

Inventors

Cpc classification

International classification

Abstract

A sealing device for slot-type vacuum glass is provided with a slot (11) through which a glass sheet to be sealed passes, inductive heating coils (14) are arranged around the slot, and the circumference of the glass sheet to be sealed is gradually hermetically sealed through metal brazing process as the glass sheet to be sealed passes through the slot via conveyor rollers (13). The device is further provided with a casing (10-1) and press wheels or rollers (15), and the slot extends through the casing, the inductive heating coils are arranged inside the casing around the slot, the press wheels or rollers (15) are set in the casing. The device is only required to be arranged in the middle of conveyor rollers in order to ensure that the glass sheet can pass through the slot, thereby simplifying equipment and sealing process, enhancing sealing efficiency.

Claims

1. A slot-type vacuum glass sealing device comprising: an inductive heating device; conveyor rollers; and wherein the inductive heating device is arranged between the conveyor rollers and wherein a glass sheet to be sealed is conveyed by the conveyor rollers and passes through the inductive heating device; and wherein the inductive heating device comprises an elongated casing having a rectangular slot extending from a front side of the casing to a back side of the casing, and inductive heating coils arranged around the slot inside the casing, and wherein the glass sheet to be sealed enters the front side of the casing, passes through the slot and exits from the back side of the casing and the entire circumference of the entire glass sheet is gradually hermetically sealed through a metal brazing process in one pass as the glass sheet passes through the slot without changing travel direction; wherein the position of the slot is matched with a supporting face of the conveyor rollers and wherein conveyor rollers at the front side of the casing and the back side of the casing are arranged close to the slot; wherein the glass sheet to be sealed comprises two or a plurality of glass sheets, and the circumference of the glass sheet is provided with a metal layer which is fixedly bonded therewith; wherein the hermetical sealing means that the metal layers, corresponding to each other, at the circumferences of two adjacent glass sheets are directly interconnected in a manner of hermetical welding, or a metal sealing piece is arranged between the metal layers, corresponding to each other, at the circumferences of two adjacent glass sheets, and the metal sealing piece is respectively connected with the metal layers on the two glass sheets in a manner of hermetical welding.

2. The slot-type vacuum glass sealing device according to claim 1, wherein press rollers or press wheels are further arranged inside the casing between the inductive heating coils, and by taking advantage of the press rollers or press wheels, the glass sheets pass through the slot under the state of mutual compression in order to guarantee that the circumferences of the glass sheets are in reliable welding connection.

3. The slot-type vacuum glass sealing device according to claim 1, wherein press rollers or press wheels are further arranged inside the casing at one side of the inductive heating coils.

4. The slot-type vacuum glass sealing device according to claim 1, wherein press rollers or press wheels are further arranged inside the casing at both sides of the inductive heating coils.

Description

BRIEF DESCRIPTION OF DRAWINGS

(1) FIG. 1 is a schematic diagram of the vacuum glass in the first structural form;

(2) FIG. 2 is a schematic diagram of the vacuum glass in the second structural form;

(3) FIG. 3 is a schematic diagram of the vacuum glass in the third structural form;

(4) FIG. 4 is a schematic diagram of the previous sealing process of the circumference of vacuum glass;

(5) FIG. 5 is a schematic diagram of the structure of the sealing device according to the present invention;

(6) FIG. 6 is a schematic diagram of the usage state of the sealing device according to the present invention;

(7) FIG. 7 is a schematic diagram of the layout of the high frequency inductive coil in the sealing device according to the present invention;

(8) FIG. 8(a) is a schematic diagram of the sealing device according to the present invention with the slot thereof being provided with the press rollers or press wheels;

(9) FIG. 8(b) is a schematic diagram of the press rollers or press wheels in the second arrangement form according to the present invention;

(10) FIG. 8(c) is a schematic diagram of the press rollers or press wheels in the third arrangement form according to the present invention.

DETAILED DESCRIPTION

(11) Shown as FIG. 5, the slot-type vacuum glass sealing device 10 according to the invention is an inductive heating device, which is in a shape of elongated strip on the whole and is provided with a casing, at the middle part of the casing along its height is provided with a slot 11 extending along the length of the casing, inductive heating coils are arranged around the slot 11 inside the casing in a conventional manner, and joints of the inductive heating coil are arranged at one end of the casing.

(12) Shown as FIG. 6, the sealing device 10 according to the invention, when used, is arranged between glass conveyor rollers 13, and the position of the slot 11 thereon is matched with a supporting face of the rollers 13 in order to guarantee that the glass sheets conveyed on the rollers pass through the slot. In order to guarantee that the roller table at the upstream and downstream of the slot 11 can convey the glass sheets reliably and successively, the rollers at both sides of the slot 11 should be arrayed close to the slot 11 as much as possible as the glass sheets are supported on the rollers 13.

(13) In case that the slot-type vacuum glass sealing device 10 according to the invention is used for processing vacuum glass, first of all, glass sheets, which are fixedly bonded with two or a plurality of metal layers 4 at the circumferences thereof, are compounded according to the states shown as FIG. 1 or 2, and metal brazing material is arranged between the metal layers 4, corresponding to each other, on the two adjacent glass sheets, or between the metal layers 4 and a metal sealing piece 5; afterwards, the sealing device 10 is started up, and shown as the FIG. 6, the compounded glass sheet to be sealed is conveyed via the conveyor rollers 13 to pass through the slot 11; and as the glass sheet to be sealed passes through the slot 11, the metal brazing material arranged at the portion to be sealed, at the circumference of the glass sheet is molten by means of heating via the inductive heating coil, and two metal layers 4, corresponding to each other, are connected with each other in a manner of hermetical welding, or the metal layers 4 are connected with the metal sealing piece 5 in a manner of hermetical welding, thus the hermetical sealing of the circumference of the glass sheet is completed.

(14) Since being used for sealing the circumference of the glass sheet only, the sealing device according to the present invention is required to be arranged in a vacuum chamber in case of processing the vacuum glass shown as FIG. 1 or 2; and the sealing device according to the present invention is arranged in an open space in case of processing the vacuum glass shown as the FIG. 3.

(15) The high frequency inductive heating coil, the layout of which is shown as FIG. 7, is adopted in the sealing device.

(16) In addition, in order to guarantee that the portion to be sealed at the circumference of the glass sheet is in reliable welding connection as the glass sheet passes through the slot 11, the press rollers or press wheels for the glass sheet can be arranged inside the slot 11 without having an influence on the normal heating of the inductive heating coil to the portion to be sealed on the glass sheet.

(17) FIG. 8(a) is the schematic diagram showing the first arrangement manner of the press rollers or press wheels 15 inside the slot 11, 10-1 in the figure represents the casing of the sealing device, 14 represents the high frequency inductive heating coils arranged around the slot 11, 15 represents the press rollers or press wheels, and 16 represents jack-pressing springs.

(18) Shown as the Figure, the press rollers or press wheels 15 are arranged between the high frequency inductive heating coils. During the operation, the press rollers or press wheels enter the slot 11 along with the upper and lower layer glass sheets compounded mutually, and the two glass sheets simultaneously enter the space between the upper and lower press rollers or press wheels and are mutually compressed so as to be in welding connection with each other under the compression state, thereby guaranteeing that the circumferences of the two glass sheets are reliably and hermetically interconnected.

(19) Besides the position between the inductive heating coils, shown as FIG. 8(a), the press rollers or press wheels can also be arranged at one side of the inductive heating coils, shown as FIG. 8(b), and both sides of the inductive heating coils, shown as FIG. 8(c).

(20) The examples described above are merely description of the present invention. Embodiments of the invention shall not be limited to the examples described here, and various embodiments, conforming to the concept of the invention, from the skilled in this art, shall all fall in the protection scope of the invention.