Energy-saving and environment-friendly aluminum profile annealing device
By introducing a temperature barrier component and a waste heat transfer system into the aluminum profile annealing device, the problem of heat loss between the heating chamber and the insulation cooling chamber is solved, achieving efficient energy utilization and improving the quality of aluminum profiles.
Patent Information
- Application Number
- CN202422624646.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-10-30
AI Technical Summary
In existing energy-saving and environmentally friendly aluminum profile annealing devices, there is a lack of effective barrier between the insulation cooling chamber and the heating chamber, resulting in the high temperature of the heating chamber flowing into the insulation cooling chamber, affecting the cooling effect of the aluminum profile and increasing energy consumption.
A temperature barrier component is used, including a fixed bracket, a sliding guide groove, a sliding rod and a barrier plate. The barrier plate is moved by hydraulic drive to isolate the heating chamber from the heat preservation cooling chamber. The waste heat in the heating process is recovered and utilized in combination with the waste heat transport component.
It effectively prevents heat from being transferred from the heating chamber to the insulation cooling chamber, reduces energy consumption, improves the energy efficiency of the annealing process, enhances the mechanical properties and surface quality of the aluminum profile, and reduces energy waste.
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Figure CN223445583U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to packaging equipment technical field, concretely is a kind of energy-saving and environment-friendly aluminium profile annealing device. BACKGROUND
[0002] With the application of new materials and new technology, energy-saving and environment-friendly aluminium profile annealing device is expected to be more widely applied in the field of aerospace, automobile manufacturing, etc., to further improve thermal efficiency and reduce manufacturing cost, realize the equipment of energy-saving and environmental protection purpose, annealing is a kind of metal heat treatment process, refers to the metal is heated to a certain temperature slowly, keep enough time, then with suitable speed cooling.
[0003] In prior art, an energy-saving and environment-friendly aluminium profile annealing device is disclosed, which comprises a bottom plate, an annealing furnace, a heat preservation cooling cavity, a heating cavity, a placing plate, a moving assembly, a waste heat utilization assembly and a cavity changing adjusting assembly. The annealing furnace is arranged on the bottom plate, the heat preservation cooling cavity is arranged in one side of the annealing furnace, the heating cavity is arranged in the other side of the annealing furnace, the moving assembly is arranged in the annealing furnace, the placing plate is arranged on the moving adjusting assembly, the profile is moved, the cavity changing adjusting assembly is arranged on the annealing furnace, which is convenient for transferring the profile in space, and the waste heat utilization assembly is arranged on the annealing furnace, which is convenient for utilizing the waste heat.
[0004] In the scheme, the heated aluminum material is moved to the heat preservation cooling cavity by the moving assembly to reduce the temperature. However, since there is no barrier between the heat preservation cooling cavity and the heating cavity, the temperature of the heating cavity may flow into the heat preservation cooling cavity. Since there is no barrier, the high temperature in the heating cavity may flow into the heat preservation cooling cavity, which may increase the temperature in the cooling cavity and affect the cooling effect of the aluminum profile, so that a longer time is needed to achieve the ideal annealing effect. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing an energy-saving and environment-friendly aluminium profile annealing device to solve the problems in the above background technology.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: an energy-saving and environment-friendly aluminium profile annealing device, comprising an energy-saving and environment-friendly aluminium profile annealing mechanism and a temperature barrier assembly, characterized in that: the temperature barrier assembly comprises: a fixed support, the fixed support is connected and fixed in the inside of the furnace box body through a fixed bolt, sliding guide grooves are opened in the inside of both sides of the fixed support, first sliding rods and second sliding rods are connected in the inside of the sliding guide grooves through sliding, blocking plates are fixedly installed at one end of the first sliding rods and the second sliding rods, the blocking plates block the middle end of the heating cavity and the heat preservation cooling cavity, and the blocking plates are opened in the inside of the furnace box body.
[0007] As a further preferred of the technical solution, the upper end of the blocking plate is fixedly installed with a fixed block, the upper end of the fixed block is fixedly installed with a telescopic guide column, and the upper end of the telescopic guide column penetrates into the inside of a telescopic cylinder.
[0008] As a further preferred of the technical solution, the upper end of the telescopic guide column is installed at the lower end of a telescopic hydraulic cylinder, the lower end of the telescopic hydraulic cylinder is connected to the upper end of a top plate through bolts, and the lower end of the top plate is fixedly installed at the upper end of a fixed support.
[0009] As a further preferred of the technical solution, the upper end of the firebox is installed with a cover plate, the inside lower end of the firebox is installed with a moving assembly, and the two side ends of the firebox are installed with a waste heat conveying assembly, which comprises a waste heat inlet valve.
[0010] As a further preferred of the technical solution, the waste heat inlet valve is fixedly installed at one side of the heating cavity of the firebox, and the heating cavity is installed with a heat conduction pipeline at one end.
[0011] As a further preferred of the technical solution, the heat conduction pipeline is installed with a waste heat outlet valve at one end, and the waste heat outlet valve is installed at one end of a heat preservation cooling cavity.
[0012] As a further preferred of the technical solution, the upper end of the waste heat outlet valve is fixedly installed with a hot air blower, and the lower end of the firebox is installed with a supporting leg.
[0013] The energy-saving and environment-friendly aluminum profile annealing device has the following beneficial effects:
[0014] (1) The telescopic hydraulic cylinder is driven, the telescopic guide column is driven to move up and down, the blocking plate is driven to move, the blocking plate moves in the inside of the sliding guide groove on the two sides of the fixed support through the first sliding rod and the second sliding rod, then the heating cavity and the heat preservation cooling cavity in the inside of the firebox are isolated by the blocking plate, the temperature loss in the heating cavity can be effectively reduced, heat transfer from the heating cavity to the heat preservation cooling cavity can be effectively prevented, energy consumption is reduced, the energy efficiency of the annealing process is improved, the mechanical properties and surface quality of the aluminum profile can be improved, and the overall quality of the product is improved.
[0015] (2) The waste heat generated in the aluminum material cooling annealing process is generated in the heat preservation cooling cavity, the waste heat in the heat preservation cooling cavity is absorbed and conveyed into the inside of the heat conduction pipeline through the start of the hot air blower, and is further flowed into the inside of the heating cavity, the waste heat generated in the heating process can be effectively recovered and utilized through the setting of the waste heat conveying assembly, energy waste is reduced, and the overall energy efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a schematic view of the whole structure of the utility model;
[0017] Figure 2 It is a schematic view of the structure of the waste heat conveying assembly of the utility model;
[0018] Figure 3 It is a schematic view of the split structure of the temperature blocking assembly of the utility model;
[0019] Figure 4 It is a schematic view of the split structure of the temperature blocking assembly of the utility model;
[0020] In the figure: 100, energy-saving and environment-friendly aluminum profile annealing mechanism; 101, furnace box body; 102, supporting leg; 103, cover plate; 104, heating cavity; 105, heat preservation cooling cavity; 200, temperature blocking assembly; 201, fixed support; 202, telescopic cylinder; 203, telescopic hydraulic cylinder; 204, top plate; 205, sliding guide groove; 206, fixed bolt; 207, first sliding rod; 208, second sliding rod; 209, blocking plate; 210, fixed block; 211, telescopic guide column; 300, waste heat conveying assembly; 301, waste heat inlet valve; 302, waste heat outlet valve; 303, hot air blower; 304, heat conduction pipeline; 400, moving assembly. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model.
[0022] The utility model provides technical scheme: as Figures 1-4 The utility model discloses an energy-saving and environment-friendly aluminum profile annealing device, which comprises an energy-saving and environment-friendly aluminum profile annealing mechanism 100 and a temperature blocking assembly 200, and is characterized in that: the temperature blocking assembly 200 comprises a fixed support 201, the fixed support 201 is connected and fixed in the inside of the furnace box body 101 through a fixed bolt 206, sliding guide grooves 205 are formed in the inside of the two side ends of the fixed support 201, first sliding rods 207 and second sliding rods 208 are slidably connected in the inside of the sliding guide grooves 205, a blocking plate 209 is fixedly installed at one end of the first sliding rod 207 and the second sliding rod 208, the blocking plate 209 blocks the middle end of the heating cavity 104 and the heat preservation cooling cavity 105, and the heating cavity 104 and the heat preservation cooling cavity 105 are formed in the inside of the furnace box body 101.
[0023] As Figure 1 , Figures 3-4As shown, the upper end of the blocking plate 209 is fixedly installed with a fixed block 210, the upper end of the fixed block 210 is fixedly installed with a telescopic guide column 211, the upper end of the telescopic guide column 211 penetrates into the inside of the telescopic cylinder 202, the upper end of the telescopic guide column 211 is installed at the lower end of the telescopic hydraulic cylinder 203, the lower end of the telescopic hydraulic cylinder 203 is connected to the upper end of the top plate 204 through bolts, and the lower end of the top plate 204 is fixedly installed at the upper end of the fixed support 201.
[0024] When the mobile assembly 400 cools the aluminum material after annealing, the aluminum material is moved from the heating cavity inside the furnace box body to the heat preservation cooling cavity, further driven by driving the telescopic hydraulic cylinder 203, driving the telescopic guide column 211 to move up and down, and further driving the blocking plate 209 to move, the blocking plate 209 moves in the sliding guide rail groove 205 on both sides of the fixed support through the first sliding rod 207 and the second sliding rod 208, and then the heating cavity inside the furnace box body is isolated from the heat preservation cooling cavity by blocking, which can effectively reduce the temperature loss in the heating cavity, effectively prevent heat from being transferred from the heating cavity 104 to the heat preservation cooling cavity 105, thereby reducing energy consumption, improving the energy efficiency of the annealing process, and improving the mechanical properties and surface quality of the aluminum profile, thereby improving the overall quality of the product.
[0025] As shown in Figures 1-2 The upper end of the furnace box body 101 is installed with a cover plate 103, the inside lower end of the furnace box body 101 is installed with a mobile assembly 400, and the two side ends of the furnace box body 101 are installed with a waste heat conveying assembly 300. The waste heat conveying assembly 300 comprises a waste heat inlet valve 301, the waste heat inlet valve 301 is fixedly installed on one side of the heating cavity 104 of the furnace box body 101, a heat conduction pipe 304 is installed at one end of the heating cavity 104, a waste heat outlet valve 302 is installed at one end of the heat preservation cooling cavity 105, the upper end of the waste heat outlet valve 302 is fixedly installed with a hot air blower 303, and the lower end of the furnace box body 101 is installed with a supporting leg 102.
[0026] By comprising the waste heat inlet valve 301, the heat conduction pipe 304, the waste heat outlet valve 302 and the hot air blower 303, the waste heat generated in the heating process can be recycled and utilized. The waste heat generated in the annealing process of the aluminum material is absorbed by the hot air blower 303 and conveyed to the inside of the heat conduction pipe 304, and further flows into the heating cavity. Through the arrangement of the waste heat conveying assembly 300, the waste heat generated in the heating process can be effectively recycled and utilized, energy waste is reduced, and overall energy efficiency is improved.
[0027] The utility model provides an energy -conserving environmental protection aluminium alloy annealing equipment, concrete working principle is as follows: when the mobile assembly 400 carries out annealing cooling to aluminium material, when the aluminium material is moved from the heating cavity inside the furnace box body to the heat preservation cooling cavity, further through the drive telescopic hydraulic cylinder 203 drive, and drive telescopic guide column 211 to move up and down, and then drive the baffle 209 to move, the baffle 209 moves in the fixed support both sides sliding guide rail groove 205 through the first sliding rod 207 and the second sliding rod 208, then through the isolation of the heating cavity and the heat preservation cooling cavity inside the furnace box body, can effectively reduce the temperature loss condition in the heating cavity, effectively prevent heat from the heating cavity 104 transmission to the heat preservation cooling cavity 105, thereby reduce the energy consumption, through including the waste heat import valve 301, the heat conduction pipeline 304, the waste heat export valve 302 and the hot air blower 303, can recycle and utilize the waste heat produced in the heating process, through the heat preservation cooling cavity 105 carries out the waste heat in the aluminium material cooling annealing treatment process, through the hot air blower 303 starts up and absorbs the heat preservation cooling cavity 105 waste heat and transports to the inside of heat conduction pipeline 304, further flows to the inside of heating cavity, through the setting of waste heat delivery assembly 300, can effectively recycle and utilize the waste heat produced in the heating process, reduce energy waste, improve overall energy efficiency.
[0028] Although the embodiments of the utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made thereto without departing from the principles and spirit of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. An energy-saving and environmentally friendly aluminum profile annealing device, comprising an energy-saving and environmentally friendly aluminum profile annealing mechanism (100) and a temperature barrier component (200), characterized in that: The temperature barrier assembly (200) comprises: a fixed bracket (201), the fixed bracket (201) is connected and fixed inside the fire box (101) through a fixing bolt (206), a sliding guide groove (205) is provided inside the two side ends of the fixed bracket (201), a first sliding rod (207) and a second sliding rod (208) are slidably connected inside the sliding guide groove (205), a blocking plate (209) is fixedly installed at one end of the first sliding rod (207) and the second sliding rod (208), the blocking plate (209) blocks the middle end of the heating chamber (104) and the heat preservation and cooling chamber (105), and the blocking plate (209) is provided inside the fire box (101) to block the heating chamber (104) and the heat preservation and cooling chamber (105).
2. The energy-saving and environmentally friendly aluminum profile annealing device according to claim 1, characterized in that: A fixing block (210) is fixedly mounted on the upper end of the blocking plate (209), a telescopic guide column (211) is fixedly mounted on the upper end of the fixing block (210), and the upper end of the telescopic guide column (211) passes through the interior of the telescopic cylinder (202).
3. The energy-saving and environmentally friendly aluminum profile annealing device according to claim 2, characterized in that: The upper end of the telescopic guide column (211) is mounted on the lower end of the telescopic hydraulic cylinder (203), the lower end of the telescopic hydraulic cylinder (203) is connected to the upper end of the top plate (204) by bolts, and the lower end of the top plate (204) is fixedly mounted on the upper end of the fixed bracket (201).
4. The energy-saving and environmentally friendly aluminum profile annealing device according to claim 1, characterized in that: A cover plate (103) is installed at the upper end of the fire box (101), a moving assembly (400) is installed at the lower end of the interior of the fire box (101), and waste heat transport assemblies (300) are installed at both side ends of the fire box (101). The waste heat transport assembly (300) includes a waste heat inlet valve (301).
5. The energy-saving and environmentally friendly aluminum profile annealing device according to claim 4, characterized in that: A waste heat inlet valve (301) is fixedly installed on one side of the heating chamber (104) of the fire box (101), and a heat conduction pipe (304) is installed at one end of the heating chamber (104).
6. The energy-saving and environmentally friendly aluminum profile annealing device according to claim 5, characterized in that: One end of the heat-conducting pipe (304) is installed with a waste heat outlet valve (302), and one end of the waste heat outlet valve (302) is installed at one end of the heat-insulating cooling chamber (105).
7. The energy-saving and environmentally friendly aluminum profile annealing device according to claim 6, characterized in that: A hot air blower (303) is fixedly mounted on the upper end of the waste heat outlet valve (302), and a supporting leg (102) is mounted on the lower end of the fire box (101).