Anti-impact Low-E glass reinforcing device
By introducing components such as drive rollers, coating conveyor belts, liquid pumps, and air pumps into the Low-E glass strengthening device, simultaneous strengthening and cooling of both sides of Low-E glass can be achieved, solving the problem of low efficiency in the existing technology and improving processing efficiency and practicality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2026-03-20
AI Technical Summary
Existing LOW-E glass strengthening devices can only strengthen one side, which is inefficient. They need to be flipped over before processing the other side, resulting in low efficiency.
An impact-resistant Low-E glass strengthening device was designed, which uses components such as drive rollers, coating conveyor belts, liquid pumps, air pumps, distribution pipes and coolers in the strengthening and cooling boxes to achieve simultaneous strengthening and cooling of both sides of the Low-E glass. The strengthening liquid is applied by the coating conveyor belt and brushes, and the air pumps and distribution pipes are used for cooling, thereby improving the processing efficiency.
It achieves simultaneous strengthening and cooling on both sides of Low-E glass, significantly improving processing efficiency, simplifying the structure, and making it more practical.
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Figure CN224015505U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to LOW E glass processing technical field especially relates to a kind of impact-resistant Low-E glass reinforcing device. BACKGROUND
[0002] Low-E glass is also called low-emissivity glass, which is a film-coated product composed of multiple layers of metal or other compounds on the surface of glass. The film-coated layer has the characteristics of high transmission of visible light and high reflection of mid-infrared light, making it have excellent heat insulation effect and good light transmission compared with ordinary glass and traditional building film-coated glass.
[0003] In the prior art, when selecting glass doors and windows for buildings, people not only consider their aesthetic and appearance characteristics, but also pay more attention to heat control, refrigeration cost and internal sunlight projection comfort balance. To solve the above problems, the document with application number 202120215665.X discloses a LOW-E glass tempering device, which includes a bottom plate, a first support frame fixedly installed on the top of the bottom plate, a rotating sleeve rotatably installed on the first support frame through a bearing, a first conveying roller sleeved on the rotating sleeve, a second support frame fixedly installed on the top of the bottom plate, a rotating sleeve rotatably installed on the second support frame through a bearing, a second conveying roller and a first belt pulley sleeved on the rotating sleeve, respectively, and a gear fixedly installed on the first and second conveying rollers. Put the glass on the track, turn on the switch, control the output shaft of the motor to rotate and drive the first belt pulley to rotate, the first belt pulley drives the second belt pulley to rotate, the second belt pulley drives the second conveying roller to rotate, and the second conveying roller drives the track to move, the track brings the glass into the heating bin, the glass is heated by the heating wire, and the liquid metal in the liquid tank is sprayed onto the surface of the hot glass by the water pump.
[0004] The above-mentioned patent has the following problems in use: in use, only one side of the LOW-E glass can be strengthened, and then the LOW-E glass needs to be turned over for strengthening the other side, which has the disadvantage of low efficiency and needs to be improved.
[0005] The above information disclosed in the background art is only used to increase the understanding of the background art of the present application, and therefore, it can include prior art known by those skilled in the art. UTILITY MODEL CONTENT
[0006] The utility model aims at solving the shortcomings in the prior art and provides an impact-resistant Low-E glass reinforcing device.
[0007] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:
[0008] The utility model provides an anti -impact low -E glass reinforcing device, including reinforcing box, cooling box and low -E glass,
[0009] Four transmission rollers are rotatably connected in the reinforcing box, two same film conveying belts are connected on the four transmission rollers, the low -E glass is arranged between the two film conveying belts, a control panel is fixedly installed on the reinforcing box, a cooling box is arranged on one side of the reinforcing box, a cooling mechanism is arranged in the cooling box, and the cooling mechanism corresponds to the low -E glass.
[0010] The cooling mechanism comprises a refrigerator, a gas pump, a shunt pipe two and a circular pipe two, two shunt pipe two are fixedly installed in the cooling box and are located on the two sides of the low -E glass, the reinforcing box, the cooling box, the cooling mechanism, the motor, the two film conveying belts, the liquid pump, the two shunt pipe one and the control panel are matched, the film and cooling effect of the two sides of the low -E glass can be achieved, the processing efficiency is greatly improved, and the structure is simple, practical and higher.
[0011] Preferably, a liquid metal tank is fixedly installed in the reinforcing box, a liquid pump is fixedly installed at the bottom of the liquid metal tank, one end of the liquid pump is sealingly connected with the liquid metal tank, the other end of the liquid pump is sealingly connected with a conveying pipe, the liquid pump is connected with the control panel, the reinforcing liquid in the liquid metal tank is conveyed into the two shunt pipe one through the driving of the liquid pump and the cooperation of the conveying pipe and the circular pipe one, and is discharged through the plurality of discharge ports on the two shunt pipe one.
[0012] Preferably, two shunt pipe one are fixedly installed in the reinforcing box, two shunt pipe one correspond to two film conveying belts, a discharge hole is formed in one side of two shunt pipe one and a brush is fixedly installed, two brushes are respectively connected with two film conveying belts, and the reinforcing liquid is applied on the two sides of the low -E glass under the driving of the motor when the two film conveying belts are respectively in contact with the two sides of the low -E glass, thereby achieving the effect of synchronously applying the reinforcing liquid on the two sides of the low -E glass.
[0013] Preferably, one end of two shunt pipe one is sealingly connected with a same circular pipe one, and one of two shunt pipe one is sealingly connected with the conveying pipe for conveying the reinforcing liquid.
[0014] Preferably, one side of the reinforcing box is fixedly provided with a motor, an output end of the motor is fixedly connected with one of the four transmission rollers, one end of two of the transmission rollers is fixedly connected with a gear, the two gears are meshedly connected, the motor is connected with the control panel, slow driving of the motor drives the corresponding transmission roller to rotate on the reinforcing box, and the cooperation of the four transmission rollers, the two film conveying belts and the two gears drives the two film conveying belts to rotate slowly and oppositely, so that the two film conveying belts act on the two sides of the Low-E glass respectively, and the Low-E glass is conveyed.
[0015] Preferably, the cooling box is provided with a cavity, a refrigerating device is fixedly arranged in the cavity, an air pump is fixedly arranged on the cooling box, one end of the air pump is sealingly connected with a circular tube two, one end of the circular tube two is sealingly connected with the cavity, and the refrigerating device and the air pump are connected with the control panel.
[0016] Preferably, two circular tube threes are sealingly connected with the air pump, one end of the two circular tube threes is sealingly connected with two shunt pipes two respectively, the two shunt pipes two are provided with air outlet holes on one side and correspond to the Low-E glass, air is discharged from the air outlet holes on the two shunt pipes two and acts on the two sides of the Low-E glass, and the two sides of the Low-E glass are cooled and shaped synchronously.
[0017] Preferably, the cooling box and the reinforcing box are provided with through holes and correspond to the Low-E glass, the Low-E glass passes through the reinforcing box and the cooling box, a conveying mechanism is arranged on one side of the cooling box and corresponds to the through hole, the reinforced Low-E glass is conveyed to the next processing procedure through the conveying mechanism, and the bottom of the reinforcing box is provided with a collecting box which corresponds to the two film conveying belts and is used for collecting and recycling the reinforcing liquid.
[0018] Compared with the prior art, the utility model has the advantages that:
[0019] (1) The utility model discloses a kind of anti-impact Low-E glass reinforcing devices, by the drive of the liquid pump and the cooperation of the delivery pipe and pipe one, the reinforcing liquid in the liquid metal box is transported to two the shunt pipe one, and is discharged through multiple the discharge ports on two the shunt pipe one, at this time, cooperation between two The brush and two The film conveying belt, reinforcing liquid is applied to the surface of two The film conveying belt, then, when two The film conveying belt respectively with the two sides of the Low-E glass contact under the drive of the motor, reinforcing liquid is applied to the two sides of the Low-E glass, to reach the effect that the two sides of the Low-E glass are synchronously applied, improve the Low-E glass processing efficiency.
[0020] (2) The utility model discloses a kind of anti-impact Low-E glass reinforcing devices, by the effect of the refrigerator, the cavity in the cooling box can be cooled, simultaneously, by the drive of the air pump and the effect of the pipe two, the cold air in the cavity can be extracted and transported to two The shunt pipe two, then, through multiple The air vent on two The shunt pipe two, discharge and act on the two sides of the Low-E glass, to reach the effect that the two sides of the Low-E glass are synchronously cooled and shaped, further improve the Low-E glass processing efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are only exemplary, and the structure, proportion, size and the like shown in the description are only used to cooperate with the content disclosed in the description, so as to be understood and read by those skilled in the art, and not to limit the implementation conditions of the utility model, so it has no technical substantive meaning, any modification of structure, change of proportion relationship or adjustment of size.
[0022] Figure 1 A three-dimensional structure schematic diagram of the anti-impact Low-E glass reinforcing device is provided for the utility model;
[0023] Figure 2 A rear view structure schematic diagram of the anti-impact Low-E glass reinforcing device is provided for the utility model;
[0024] Figure 3 An anatomical schematic diagram of the anti-impact Low-E glass reinforcing device is provided for the utility model;
[0025] Figure 4The utility model provides a kind of anti-impact Low-E glass reinforcing device's reinforcing box internal structure schematic view;
[0026] Figure 5 It is the structure schematic view of shunt pipe one and brush.
[0027] Mark explanation: 1, reinforcing box;2, cooling box;3, control panel;4, transmission roller;5, film conveying belt;6, Low-E glass;7, motor;8, gear;9, liquid metal box;10, liquid pump;11, shunt pipe one;12, brush;13, round pipe one;14, refrigerator;15, air pump;16, shunt pipe two;17, round pipe two;18, collection box. DETAILED DESCRIPTION
[0028] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0029] The utility model provides a kind of anti-impact Low-E glass reinforcing device, refer to Figures 1-5 A kind of anti-impact Low-E glass reinforcing device, including reinforcing box 1, cooling box 2 and Low-E glass 6;
[0030] Four transmission rollers 4 are rotationally connected in reinforcing box 1, and the same two film conveying belts 5 are connected on four transmission rollers 4, Low-E glass 6 is arranged between two film conveying belts 5, control panel 3 is fixedly installed on reinforcing box 1, cooling box 2 is arranged on the side of reinforcing box 1, cooling mechanism is arranged in cooling box 2, and cooling mechanism corresponds with Low-E glass 6;
[0031] Cooling mechanism includes refrigerator 14, air pump 15, shunt pipe two 16 and round pipe two 17, two shunt pipe two 16 are fixedly installed in cooling box 2 and are located at the two sides of Low-E glass 6 respectively, and the cooperation design between reinforcing box 1, cooling box 2, cooling mechanism, motor 7, two film conveying belts 5, liquid pump 10, two shunt pipe one 11 and control panel 3 can reach the effect that the two sides of Low-E glass 6 are laminated and cooled simultaneously, greatly improve processing efficiency, and the structure is simple, and practicality is higher.
[0032] In the embodiment, the reinforcing tank 1 is fixedly provided with a liquid metal tank 9, the bottom of the liquid metal tank 9 is fixedly provided with a liquid pump 10, one end of the liquid pump 10 is sealingly connected with the liquid metal tank 9, the other end of the liquid pump 10 is sealingly connected with a conveying pipe, the liquid pump 10 is connected with the control panel 3, and the reinforcing liquid in the liquid metal tank 9 is conveyed into the two shunt pipes 11 through the driving of the liquid pump 10 and the cooperation of the conveying pipe and the circular pipe 13, and is discharged through the plurality of discharge ports on the two shunt pipes 11.
[0033] In the embodiment, the reinforcing tank 1 is fixedly provided with two shunt pipes 11, the two shunt pipes 11 correspond to the two film-coated conveying belts 5 respectively, one side of each of the two shunt pipes 11 is provided with a discharge hole and fixedly provided with a brush 12, the two brushes 12 are connected with the two film-coated conveying belts 5 respectively, and the reinforcing liquid is applied to the two sides of the Low-E glass 6 under the driving of the motor 7 when the two film-coated conveying belts 5 contact the two sides of the Low-E glass 6 respectively, so that the effect of synchronously applying the reinforcing liquid to the two sides of the Low-E glass 6 is achieved.
[0034] In the embodiment, one end of each of the two shunt pipes 11 is sealingly connected with the same circular pipe 13, and one of the two shunt pipes 11 is sealingly connected with the conveying pipe for conveying the reinforcing liquid.
[0035] In the embodiment, one side of the reinforcing tank 1 is fixedly provided with a motor 7, the output end of the motor 7 is fixedly connected with one of the four transmission rollers 4, one end of each of two of the four transmission rollers 4 is fixedly connected with a gear 8, the two gears 8 are meshingly connected, the motor 7 is connected with the control panel 3, the corresponding transmission roller 4 is rotated on the reinforcing tank 1 through the slow driving of the motor 7, and the two film-coated conveying belts 5 are simultaneously and slowly rotated in opposite directions through the cooperation of the four transmission rollers 4, the two film-coated conveying belts 5 and the two gears 8, so that the two film-coated conveying belts 5 act on the two sides of the Low-E glass 6 respectively, thereby achieving the effect of conveying the Low-E glass 6.
[0036] In the embodiment, the cooling tank 2 is provided with a cavity, a refrigerating device 14 is fixedly provided in the cavity, the cooling tank 2 is fixedly provided with an air pump 15, one end of the air pump 15 is sealingly connected with a circular pipe 17, one end of the circular pipe 17 is sealingly connected with the cavity, the refrigerating device 14 and the air pump 15 are connected with the control panel 3, the cavity in the cavity of the cooling tank 2 is refrigerated through the action of the refrigerating device 14, and the cold air in the cavity is extracted and conveyed into the two shunt pipes 16 through the driving of the air pump 15 and the action of the circular pipe 17.
[0037] In this embodiment, the upper sealing connection of the air pump 15 is provided with two circular tubes three, one end of the two circular tubes three is respectively sealed with two shunt pipes two 16, one side of the two shunt pipes two 16 is provided with an exhaust hole and corresponds to the Low-E glass 6, the liquid metal in the liquid metal tank 9 is discharged through the multiple exhaust holes on the two shunt pipes two 16 and acts on both sides of the Low-E glass 6, thereby achieving the effect of synchronous cooling and shaping of both sides of the Low-E glass 6.
[0038] In this embodiment, the cooling box 2 and the strengthening box 1 are both provided with through holes and correspond to the Low-E glass 6, which is convenient for the Low-E glass 6 to pass through the strengthening box 1 and the cooling box 2. One side of the cooling box 2 is provided with a conveying mechanism and corresponds to the through hole. Through the action of the conveying mechanism, it is convenient to convey the Low-E glass 6 after strengthening to the next processing procedure. The conveying mechanism is a common conveyor in daily life, which can be realized by the skilled person in the art and belongs to the prior art, so it will not be described in detail. The bottom of the strengthening box 1 is provided with a collection box 18, which corresponds to the two film conveying belts 5 and is used to collect and recycle the falling strengthening liquid.
[0039] Working principle: when in use, the motor 7, the liquid pump 10, the refrigeration device 14 and the air pump 15 are driven and controlled through the control panel 3.
[0040] Firstly, the Low-E glass 6 is conveyed from the through hole on one side of the strengthening box 1 to between the two film conveying belts 5. In this process, the corresponding transmission roller 4 is rotated on the strengthening box 1 through the slow driving of the motor 7, and at the same time, the two film conveying belts 5 are simultaneously and slowly rotated in opposite directions through the cooperation between the four transmission rollers 4, the two film conveying belts 5 and the two gears 8, so that the two film conveying belts 5 respectively act on both sides of the Low-E glass 6, thereby achieving the effect of conveying the Low-E glass 6.
[0041] At the same time, the liquid metal in the liquid metal tank 9 is conveyed into the two shunt pipes one 11 through the driving of the liquid pump 10 and the cooperation of the conveying pipe and the circular tube one 13, and is discharged through the multiple discharge ports on the two shunt pipes one 11. At this time, the strengthening liquid is applied to the surface of the two film conveying belts 5 through the cooperation between the two brushes 12 and the two film conveying belts 5, and then the strengthening liquid is applied to both sides of the Low-E glass 6 when the two film conveying belts 5 contact both sides of the Low-E glass 6, thereby achieving the effect of synchronous material application on both sides of the Low-E glass 6.
[0042] Afterwards, through the drive of the motor 7 and the transmission of the two film conveying belts 5, the Low-E glass 6 is slowly conveyed into the cooling box 2, and in the process, through the action of the refrigerator 14, the cavity in the cooling box 2 can be cooled, at the same time, through the drive of the air pump 15 and the action of the circular pipe two 17, the cold air in the cavity can be extracted and conveyed into the two branch pipes two 16, and then through the multiple exhaust holes on the two branch pipes two 16, the cold air is discharged and acts on the two sides of the Low-E glass 6, thereby achieving the effect of synchronously cooling and shaping the two sides of the Low-E glass 6.
[0043] The technical progress obtained by the utility model relative to the prior art is that: through the cooperation of various components, the effect of synchronously coating and cooling the two sides of the Low-E glass 6 can be achieved, the processing efficiency is greatly improved, and the structure is simple and convenient, and the practicality is higher.
[0044] The above is only a preferred specific embodiment of the utility model, but the protection scope of the utility model is not limited to this, any person skilled in the art in the technical range disclosed by the utility model, according to the technical scheme and the utility model concept of the utility model, carries out equivalent replacement or change, should be covered in the protection scope of the utility model.
Claims
1. An impact-resistant Low-E glass strengthening device, characterized in that, Includes a hardening chamber (1), a cooling chamber (2), and Low-E glass (6); The strengthening box (1) is rotatably connected to four transmission rollers (4), and two identical film-coating conveyor belts (5) are connected to the four transmission rollers (4). The Low-E glass (6) is placed between the two film-coating conveyor belts (5). A control panel (3) is fixedly installed on the strengthening box (1). A cooling box (2) is provided on one side of the strengthening box (1). A cooling mechanism is provided inside the cooling box (2), and the cooling mechanism corresponds to the Low-E glass (6). The cooling mechanism includes a cooler (14), an air pump (15), a second branch pipe (16), and a second round pipe (17). Two second branch pipes (16) are fixedly installed inside the cooling box (2) and are located on both sides of the Low-E glass (6).
2. The impact-resistant Low-E glass strengthening device according to claim 1, characterized in that, A liquid metal tank (9) is fixedly installed inside the strengthening box (1). A liquid pump (10) is fixedly installed at the bottom of the liquid metal tank (9). One end of the liquid pump (10) is sealed to the liquid metal tank (9), and the other end of the liquid pump (10) is sealed to a delivery pipe. The liquid pump (10) is connected to the control panel (3).
3. The impact-resistant Low-E glass strengthening device according to claim 2, characterized in that, Two diversion pipes (11) are fixedly installed inside the strengthening box (1). The two diversion pipes (11) correspond to the two film-coated conveyor belts (5) respectively. Each of the two diversion pipes (11) has a discharge hole on one side and a brush (12) is fixedly installed thereon. The two brushes (12) are respectively in contact with the two film-coated conveyor belts (5).
4. The impact-resistant Low-E glass strengthening device according to claim 3, characterized in that, One end of each of the two diversion pipes (11) is sealed to the same round pipe (13), and one of the two diversion pipes (11) is sealed to the conveying pipe.
5. The impact-resistant Low-E glass strengthening device according to claim 1, characterized in that, A motor (7) is fixedly installed on one side of the reinforcing box (1). The output end of the motor (7) is fixedly connected to one of the four transmission rollers (4). One end of two of the four transmission rollers (4) is fixedly connected to a gear (8). The two gears (8) are meshed together. The motor (7) is connected to the control panel (3).
6. The impact-resistant Low-E glass strengthening device according to claim 1, characterized in that, The cooling box (2) has a cavity, in which a cooler (14) is fixedly installed. An air pump (15) is fixedly installed on the cooling box (2). One end of the air pump (15) is sealed and connected to a round tube (17). One end of the round tube (17) is sealed and connected to the cavity. The cooler (14) and the air pump (15) are both connected to the control panel (3).
7. The impact-resistant Low-E glass strengthening device according to claim 6, characterized in that, The air pump (15) has two round pipes three connected to its upper seal. One end of each of the two round pipes three is sealed to the two diverter pipes two (16). Each of the two diverter pipes two (16) has an exhaust hole on one side, which corresponds to the Low-E glass (6).
8. The impact-resistant Low-E glass strengthening device according to claim 1, characterized in that, Both the cooling box (2) and the strengthening box (1) have through holes that correspond to the Low-E glass (6). The cooling box (2) has a conveying mechanism on one side that corresponds to the through hole. The strengthening box (1) has a collection box (18) at the bottom that corresponds to the two film-coating conveyor belts (5).
Citation Information
Patent Citations
LOW-E glass toughening device
CN218620621U