Tempering heat treatment device with uniform heating function

By designing a tempered heat treatment device with installation mechanism and bearing components, the problem that existing heating devices cannot adapt to glass of different sizes is solved, efficient and uniform glass heating is achieved, and processing efficiency and versatility are improved.

CN120504485AInactive Publication Date: 2025-08-19TANCHENG JINDING GLASS CO LTD
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Patent Information

Application Number
CN202510775194.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-11
Publication Date
2025-08-19
Estimated Expiration
Not applicable · inactive patent

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Abstract

The present invention provides a uniform heating tempering heat treatment apparatus, and relates to the technical field of tempered glass processing, the uniform heating tempering heat treatment apparatus comprises: a mounting mechanism, when facing the challenge of processing large-sized tempered glass, an operator only needs to slide a movable body to promote the movable body to smoothly extend out from the side end of a shell so as to adjust the effective working range of heat processing in the apparatus, and the working efficiency is improved; the tempered glass hot working device is flexible and adaptive to tempered glass products of different sizes, the breakthrough design breaks through the strict limitation of traditional processing equipment on the glass size, the universality of the tempered glass hot working device is improved, and the problems that the size of an existing heating device is generally fixed, and due to the characteristic, the existing heating device has large limitation in use, and the service life of the tempered glass hot working device is influenced are solved. The problems that when tempered glass with large sizes needs to be heated, the heating device cannot meet the requirement, the application range of the heating device is greatly narrowed, and the requirement for machining tempered glass with different sizes and specifications cannot be met are solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of tempered glass processing, in particular to a tempered glass heat treatment device with uniform heating. Background Art

[0002] Tempered glass is a high-strength, high-safety glass product that is widely used in many fields such as construction, automobiles, electronic equipment, and home appliances. When processing tempered glass, a flamethrower is required to heat it to a temperature close to its softening temperature, and then the glass surface is rapidly cooled by air cooling or other methods, forming compressive stress on the glass surface and tensile stress inside, thereby improving the strength and impact resistance of the glass.

[0003] However, there are some deficiencies in the current design of tempered glass such as processing devices: First, after the glass is heated by the heating device, it is necessary to pull the glass out of the heating device to replace the glass to be processed. However, in the process of replacing the glass, there is a problem of waste of resources. At the same time, this process is not reasonably and effectively utilized, which seriously affects the efficiency of the entire processing flow and is not conducive to improving production efficiency. Second, the size of existing heating devices is usually fixed, which leads to great limitations in their use. When some larger tempered glass needs to be heated, the heating device cannot meet the requirements, which greatly narrows the scope of application of the heating device and cannot meet the needs of processing tempered glass of different sizes and specifications. To a certain extent, it limits its wide application in the tempered glass processing industry. Summary of the Invention

[0004] In response to the above problems, one purpose of the present application is to remedy these shortcomings, and more specifically to provide a uniformly heated tempered heat treatment device that can improve the efficiency of tempered glass processing and can adapt to different models of tempered glass.

[0005] In a first aspect of the present disclosure, a uniformly heated tempering heat treatment device is provided, specifically comprising: a mounting mechanism; the mounting mechanism comprises a shell, a flap A, a movable body and a flap B, the shell being a rectangular structure; the flap A is mounted on both ends of the front side of the shell by a hinge; the movable body is slidably mounted on the inner side of the shell; the flap B is mounted on both sides of the outer end of the movable body by a hinge, and the flap B is located on the inner side of the flap A; two sets of fixing components are provided on the mounting mechanism, and the fixing rods of the two sets of fixing components are respectively fixed to the middle position of the mounting shell and the inner side of the movable body, and the rotating rod on the fixing rod is penetrated The rotating rods on the two sets of fixed rods are arranged in an staggered manner, passing through the shell and the movable body; the mounting mechanism is provided with two sets of bearing components, the two sets of bearing components are located on both sides of the fixed component, and the two sets of bearing components are alternately arranged front to back, and the movable rods on both sides of the bearing components are respectively located in the shell and the movable body, the movable rods slide with the guide rails in the shell and the movable body, and the docking blocks in the movable rods are slidably connected with the guide grooves in the guide rails, the movable rods at the upper end are respectively connected to the transmission gears on the shell and the movable body, and the fixed gear on the fixed rod, and the movable rods at the lower end are only connected to the transmission gears on the shell and the movable body.

[0006] Preferably, the mounting mechanism includes: a fixed tube and a nozzle A; the fixed tube is symmetrically arranged at the upper and lower ends of the shell and the movable body; and the nozzle A is equidistantly arranged on the fixed tube.

[0007] Preferably, the mounting mechanism comprises: a guide rail and a guide groove; the guide rail is symmetrically arranged on both sides of the housing and the movable body; and the guide groove is opened at both ends of the guide rail.

[0008] Preferably, the mounting mechanism includes: a transmission gear, a connecting block and a slide groove; the transmission gear is rotatably mounted on the outer front end of the shell and the movable body; the connecting block is arranged on both sides of the outside of the movable body; the slide groove is opened on both sides of the inside of the shell, and the connecting block and the slide groove are slidably matched.

[0009] Preferably, the fixing assembly includes: a fixing rod and an inner groove; the fixing rod is a rectangular structure; and the inner groove is opened at the inner end of the fixing rod.

[0010] Preferably, the fixed assembly includes: a rotating rod and a nozzle B; the rotating rod is equidistantly rotatably mounted on the fixed rod; and the nozzle B is equidistantly arranged on the rotating rod.

[0011] Preferably, the fixed assembly includes: a transmission wheel and a fixed gear; the transmission wheel is fixedly mounted on the rotating rod, and the transmission wheel is located in the inner groove; the fixed gear is fixedly mounted on the rotating rod close to the inner side of the shell and the movable body, and the fixed gear is located in the inner groove, and the fixed gear is connected to each transmission wheel through a belt drive.

[0012] Preferably, the supporting assembly includes: a movable rod and a docking block; the movable rod is symmetrically arranged, the bottom of the upper movable rod is provided with teeth, the top two sides of the lower movable rod are provided with teeth, and a rectangular groove is opened inside the movable rod; the docking block is symmetrically arranged in the rectangular groove inside the movable rod.

[0013] Preferably, the bearing assembly includes: a connecting rod and a connecting tube; the connecting rod is equidistantly arranged at the outer end of the movable rod; the connecting tube is equidistantly arranged at the outer end of the movable rod, and the connecting tube is slidably matched with the connecting rod on the opposite movable rod.

[0014] The present invention provides a uniformly heated tempering heat treatment device, which has the following beneficial effects: 1. The present invention is provided with an installation mechanism and a bearing assembly, and two sets of bearing assemblies are slidably installed inside the shell, and the movable rod is transmission-connected with the transmission gear at the front end of the shell and the movable body, and the movable rod at the upper end is transmission-connected with the fixed gear that controls the rotation of the rotating rod. When one set of tempered glass successfully completes the predetermined processing process, the operator can place another set of tempered glass to be heated on the connecting tube in advance. At the moment of taking out the heated tempered glass, the tempered glass to be heated is simultaneously and accurately pushed into the inside of the device, and the heating process is started. Through the transmission action of the fixed gear, the rotating rod can adjust the angle according to the displacement dynamics of the movable rod, and always accurately orient the tempered glass in the device, ensuring uniform and efficient heat transfer, realizing seamless connection of the tempered glass heating process, fundamentally breaking through the efficiency bottleneck of the traditional processing mode, greatly improving the efficiency of tempered glass heat processing, and effectively promoting the efficient development of the glass processing industry.

[0015] 2. The present invention provides a mounting mechanism and a fixing assembly to slidably connect the shell and the movable body. Fixed tubes with nozzles A are provided on both sides of the shell and the movable body, respectively. Two sets of fixing rods are fixedly installed in the shell and the movable body, respectively, and the rotating rods on the fixed rods on both sides are staggered. When faced with the challenge of processing larger tempered glass, the operator only needs to slide the movable body to cause it to smoothly extend from the side end of the shell to adjust the effective working range of the thermal processing in the device, flexibly adapting to tempered glass products of different sizes and specifications. This groundbreaking design breaks the strict restrictions of traditional processing equipment on glass size and improves the versatility of tempered glass thermal processing equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The following drawings will provide a better understanding of the present disclosure and more clearly demonstrate the advantages of the present disclosure. The drawings described herein are for illustrative purposes only of selected embodiments, not all possible implementations, and are not intended to limit the scope of the present disclosure.

[0017] In the attached figure: Figure 1 A schematic diagram of a three-dimensional structure according to an embodiment of the present invention is shown.

[0018] Figure 2 A schematic diagram of a decomposed structure according to an embodiment of the present invention is shown.

[0019] Figure 3 A schematic diagram of the internal structure according to an embodiment of the present invention is shown.

[0020] Figure 4 A diagram showing the internal structure of a housing according to an embodiment of the present invention is shown.

[0021] Figure 5 A diagram showing the internal structure of a moving body according to an embodiment of the present invention is shown.

[0022] Figure 6 A schematic diagram of the partial connection between the mounting mechanism and the bearing assembly according to an embodiment of the present invention is shown.

[0023] Figure 7 A schematic diagram of the connection structure between the fixing assembly and the bearing assembly according to an embodiment of the present invention is shown.

[0024] Figure 8 A schematic diagram of the telescopic effect of a bearing assembly according to an embodiment of the present invention is shown.

[0025] Reference Signs List 1. Installation mechanism; 101. Shell; 1011. Flap A; 102. Movable body; 1021. Flip board B; 103, fixed pipe; 1031, nozzle A; 104, guide rail; 1041, guide groove; 105, transmission gear; 106, connecting block; 107, slide; 2. Fix the components; 201, fixed rod; 2011, inner groove; 202, rotating rod; 2021, nozzle B; 203, transmission wheel; 204, fixed gear; 3. Load-bearing components; 301, movable rod; 3011, docking block; 302. Connecting rod; 303. Connecting pipe. DETAILED DESCRIPTION

[0026] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0027] Example 1: Please refer to Figures 1 to 8 As shown: The present invention provides a uniformly heated tempering heat treatment device, comprising: an installation mechanism 1; the installation mechanism 1 comprises a shell 101, a flap A1011, a movable body 102 and a flap B1021, the shell 101 is a rectangular structure; the flap A1011 is mounted on both ends of the front side of the shell 101 through a hinge; the movable body 102 is slidably mounted on the inner side of the shell 101; the flap B1021 is mounted on both sides of the outer end of the movable body 102 through a hinge, and the flap B1021 is located on the inner side of the flap A1011; two groups of fixing components 2 are provided on the installation mechanism 1, and the fixing rods 201 of the two groups of fixing components 2 are respectively fixed to the middle position of the inner side of the shell 101 and the movable body 102, and the rotating rod 202 on the fixing rod 201 passes through the shell 101 and the movable body 102, and the two groups of fixing components 2 are respectively fixed to the middle position of the inner side of the shell 101 and the movable body 102, and the rotating rod 202 on the fixing rod 201 passes through the shell 101 and the movable body 102. The rotating rods 202 on the rod 201 are arranged in an staggered manner; two groups of bearing components 3 are provided on the installation mechanism 1, and the two groups of bearing components 3 are located on both sides of the fixed component 2, and the two groups of bearing components 3 are alternately arranged front to back, and the movable rods 301 on both sides of the bearing components 3 are respectively located in the shell 101 and the movable body 102, and the movable rods 301 slide with the guide rails 104 in the shell 101 and the movable body 102, and the docking block 3011 in the movable rod 301 is slidably connected with the guide groove 1041 in the guide rail 104, the upper end movable rod 301 is respectively connected to the transmission gears 105 on the shell 101 and the movable body 102, and the fixed gear 204 on the fixed rod 201, and the lower end movable rod 301 is only connected to the transmission gear 105 on the shell 101 and the movable body 102.

[0028] As the second embodiment of the present application, based on the first embodiment, Figures 3 to 5As shown, the mounting mechanism 1 includes: a fixed tube 103 and a nozzle A1031; the fixed tube 103 is symmetrically arranged at the upper and lower ends of the shell 101 and the movable body 102 respectively; the nozzle A1031 is equidistantly opened on the fixed tube 103; a guide rail 104 and a guide groove 1041; the guide rail 104 is symmetrically arranged on both sides of the interior of the shell 101 and the movable body 102; the guide groove 1041 is opened at both ends of the guide rail 104; a transmission gear 105, a connecting block 106 and a slide groove 107; the transmission gear 105 is rotatably mounted on the front outer end of the shell 101 and the movable body 102; the connecting block 106 is arranged on both sides of the exterior of the movable body 102; the slide groove 107 is opened on both sides of the interior of the shell 101, and the connecting block 106 slides in cooperation with the slide groove 107.

[0029] The present application provides a shell 101, and a fixed tube 103 can be installed inside the shell 101; a rectangular flap A1011 is provided, and the flap A1011 can be fastened to the front end of the shell 101 to seal the inside of the shell 101; a rectangular movable body 102 is provided, and the internal space of the shell 101 can be adjusted by moving the movable body 102 in the shell 101; a flap B1021 is provided, and the interior of the movable body 102 can be sealed by closing the flap B1021 on the movable body 102; a fixed tube 103 is provided, and a nozzle A1031 can be installed on the fixed tube 103; a nozzle A1031 is provided, and the nozzle A1031 can be opened by the nozzle A1031 To achieve the spray heating of tempered glass; a guide rail 104 is provided, through which the movable rod 301 can be slidably installed on the shell 101; a guide groove 1041 is provided, and the movable rod 301 can be slidably installed on the guide rail 104 by slidingly matching the guide groove 1041 with the docking block 3011; a transmission gear 105 is provided, and the upper and lower groups of bearing components 3 can be transmission-connected through the transmission gear 105; a rectangular connecting block 106 is provided, and the movable body 102 can be slidably matched with the shell 101 through the connecting block 106; a slide groove 107 is provided, and the movable body 102 can be slidably connected to the shell 101 by slidingly matching the slide groove 107 with the connecting block 106.

[0030] As the third embodiment of the present application, based on the first embodiment, Figure 7As shown, the fixed component 2 includes: a fixed rod 201 and an inner groove 2011; the fixed rod 201 is a rectangular structure; the inner groove 2011 is opened at the inner end of the fixed rod 201; a rotating rod 202 and a nozzle B2021; the rotating rod 202 is equidistantly mounted on the fixed rod 201; the nozzle B2021 is equidistantly arranged on the rotating rod 202; a transmission wheel 203 and a fixed gear 204; the transmission wheel 203 is fixedly mounted on the rotating rod 202, and the transmission wheel 203 is in the inner groove 2011; the fixed gear 204 is fixedly mounted on the rotating rod 202 deep inside the shell 101 and the movable body 102, and the fixed gear 204 is in the inner groove 2011, and the fixed gear 204 is connected to each transmission wheel 203 through a belt drive.

[0031] The present application sets a fixed rod 201, so that the rotating rod 202 can be rotatably installed on the fixed rod 201, and sets a rectangular inner groove 2011, so that the transmission wheel 203 and the fixed gear 204 on the rotating rod 202 can be located at the inner end of the fixed rod 201; the rotating rod 202 is set, and a nozzle B2021 can be set on the rotating rod 202; the rotating rod 202 is set, and the nozzle B2021 can be set on the rotating rod 202; the nozzle B2021 is set, and the tempered glass can be sprayed and heated by the nozzle B2021 and the nozzle A1031; the transmission wheel 203 is set, and each group of rotating rods 202 can be transmission connected by the transmission wheel 203; the fixed gear 204 is set, and the rotating rod 202 can be transmission connected with the movable rod 301 at the upper end, and when the fixed gear 204 rotates, it can drive the rotating rod 202 on the same side to rotate synchronously.

[0032] As the fourth embodiment of this application, based on the first embodiment, Figure 8 As shown, the bearing assembly 3 includes: a movable rod 301 and a docking block 3011; the movable rod 301 is symmetrically arranged, the bottom of the upper movable rod 301 is provided with teeth, and the top two sides of the lower movable rod 301 are provided with teeth, and a rectangular groove is opened inside the movable rod 301; the docking block 301 is symmetrically arranged in the rectangular groove inside the movable rod 301; a connecting rod 302 and a connecting tube 303; the connecting rod 302 is equidistantly arranged at the outer end of the movable rod 301; the connecting tube 303 is equidistantly arranged at the outer end of the movable rod 301, and the connecting tube 303 slides with the connecting rod 302 on the opposite movable rod 301.

[0033] In this application, a rectangular movable rod 301 is provided, and a connecting rod 302 and a connecting tube 303 are provided on the movable rod 301; a long strip docking block 3011 is provided, and the movable rod 301 can be slid on the guide rail 104 by sliding the docking block 3011 with the guide groove 1041; the connecting rod 302 and the connecting tube 303 are used in combination to hold tempered glass, and the distance between the two sets of movable rods 301 can be adjusted by sliding the connecting rod 302 in the non-connecting tube 303.

[0034] The specific usage and function of this embodiment are as follows: In the present invention, Figures 1 to 8 As shown, a movable body 102 is slidably installed on the shell 101, and a fixed tube 103 with a nozzle A1031 is set at the inner end of the movable body 102 of the shell 101, and the fixed rod 201 with the rotating rod 202 is fixed to the shell 101 and the movable body 102 respectively, and the transmission wheel 203 and the fixed gear 204 on the rotating rod 202 are connected by a belt, and the rotating rods 202 on the two groups of fixed rods 201 are staggered. A bearing assembly 3 is set on both sides of the fixed assembly 2, and the movable rod 301 is slidably matched with the guide rails 104 in the shell 101 and the movable body 102, and the movable rods 301 on both sides are movably connected to the connecting tube 303 through the connecting rod 302. After the tempered glass is placed on the upper supporting component 3, it is sent to the interior of the device and heated by spraying through nozzles A1031 and B2021. During the heating process, another group of glass that needs heat treatment is placed on the lower supporting component 3. When the heat treatment of the upper tempered glass is completed, it is pulled out from the inside of the device. When the upper movable rod 301 moves, it will drive the fixed gear 204 to rotate and rotate 180°, so that the nozzle B2021 on the rotating rod 202 faces downward. Through the transmission action of the front transmission gear 105, the tempered glass at the lower end can be pulled out while the upper tempered glass is extended into the interior of the device, and the heat treatment is completed in cooperation with the nozzles A1031 and B2021.

[0035] In this article, there are several points to note: 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.

[0036] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.

[0037] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.

Claims

1. A uniformly heated tempering heat treatment device comprising: Mounting mechanism (1); the mounting mechanism (1) comprises a housing (101), a flap A (1011), a movable body (102), and a flap B (1021); the housing (101) is a rectangular structure; the flap A (1011) is mounted on both ends of the front side of the housing (101) via hinges; the movable body (102) is slidably mounted on the inner side of the housing (101); the flap B (1021) is mounted on the movable body (102) via hinges. The outer ends of the housing (101) and the flap B (1021) are located on the inner side of the flap A (1011); the mounting mechanism (1) is characterized in that two sets of fixing components (2) are provided on the mounting mechanism (1), the fixing rods (201) of the two sets of fixing components (2) are respectively fixed to the middle position of the inner side of the mounting housing (101) and the movable body (102), and the rotating rods (202) on the fixing rods (201) pass through the housing (101) and the movable body (102), and the two sets of fixing rods (201) are provided on the inner side of the flap A (1011); The rotating rods (202) are arranged in a staggered manner; the mounting mechanism (1) is provided with two groups of bearing components (3), the two groups of bearing components (3) are located on both sides of the fixed component (2), and the two groups of bearing components (3) are arranged alternately front and back, and the movable rods (301) on both sides of the bearing components (3) are respectively located in the shell (101) and the movable body (102), and the movable rods (301) are slidably matched with the guide rails (104) in the shell (101) and the movable body (102). The docking block (3011) in the movable rod (301) is slidably connected to the guide groove (1041) in the guide rail (104); the upper end of the movable rod (301) is respectively connected to the transmission gears (105) on the housing (101) and the movable body (102), and the fixed gear (204) on the fixed rod (201); and the lower end of the movable rod (301) is only connected to the transmission gears (105) on the housing (101) and the movable body (102).

2. The uniformly heated tempering heat treatment device according to claim 1, characterized in that: The mounting mechanism (1) comprises: a fixed tube (103) and a nozzle A (1031); the fixed tube (103) is symmetrically arranged at the upper and lower ends of the shell (101) and the movable body (102); and the nozzle A (1031) is equidistantly arranged on the fixed tube (103).

3. The uniformly heated tempering heat treatment device according to claim 2, characterized in that: The mounting mechanism (1) comprises: a guide rail (104) and a guide groove (1041); the guide rail (104) is symmetrically arranged on both sides of the interior of the housing (101) and the movable body (102); and the guide groove (1041) is opened at both ends of the guide rail (104).

4. The uniformly heated tempering heat treatment device according to claim 3, characterized in that: The mounting mechanism (1) comprises: a transmission gear (105), a connecting block (106) and a slide groove (107); the transmission gear (105) is rotatably mounted on the housing (101) and the front outer end of the movable body (102); the connecting block (106) is arranged on both sides of the exterior of the movable body (102); the slide groove (107) is opened on both sides of the interior of the housing (101), and the connecting block (106) and the slide groove (107) are slidably matched.

5. The uniformly heated tempering heat treatment device according to claim 1, characterized in that: The fixing assembly (2) comprises: a fixing rod (201) and an inner groove (2011); the fixing rod (201) is a rectangular structure; and the inner groove (2011) is opened at the inner end of the fixing rod (201).

6. The uniformly heated tempering heat treatment device according to claim 5, characterized in that: The fixed assembly (2) comprises: a rotating rod (202) and a nozzle B (2021); the rotating rod (202) is equidistantly rotatably mounted on the fixed rod (201); and the nozzle B (2021) is equidistantly arranged on the rotating rod (202).

7. The uniformly heated tempering heat treatment device according to claim 6, characterized in that: The fixed assembly (2) comprises: a transmission wheel (203) and a fixed gear (204); the transmission wheel (203) is fixedly mounted on the rotating rod (202), and the transmission wheel (203) is located in the inner groove (2011); the fixed gear (204) is fixedly mounted on the rotating rod (202) close to the housing (101) and the inner depth of the movable body (102), and the fixed gear (204) is located in the inner groove (2011), and the fixed gear (204) is connected to each transmission wheel (203) via a belt transmission.

8. The uniformly heated tempering heat treatment device according to claim 1, characterized in that: The bearing assembly (3) comprises: a movable rod (301) and a docking block (3011); the movable rod (301) is symmetrically arranged, the bottom of the upper movable rod (301) is provided with teeth, and the top two sides of the lower movable rod (301) are provided with teeth, and a rectangular groove is opened inside the movable rod (301); the docking block (3011) is symmetrically arranged in the rectangular groove inside the movable rod (301).

9. The uniformly heated tempering heat treatment device according to claim 8, characterized in that: The bearing assembly (3) comprises: a connecting rod (302) and a connecting tube (303); the connecting rod (302) is equidistantly arranged at the outer end of the movable rod (301); the connecting tube (303) is equidistantly arranged at the outer end of the movable rod (301), and the connecting tube (303) is slidably matched with the connecting rod (302) on the opposite movable rod (301).