Built-in waste gas duct of drying room
By incorporating a bent air duct and suspension mechanism within the drying chamber, and utilizing heat-conducting plates and heat dissipation fins to transfer heat from the exhaust gas to the inner cavity of the drying chamber, the problem of heat waste in the exhaust gas duct is solved, achieving efficient heat recovery and utilization, and reducing the energy consumption of the drying chamber.
Patent Information
- Application Number
- CN202520473426.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-18
AI Technical Summary
The existing exhaust duct design of the drying room leads to heat waste, low heat transfer efficiency, increased energy consumption, and failure to maximize the utilization of heat in the exhaust duct.
A built-in exhaust gas duct for drying chamber is designed. By combining a bent duct, a supporting mechanism and a suspension mechanism, heat is transferred from the exhaust gas to the inner cavity of the drying chamber using heat-conducting plates and heat dissipation fins, thereby improving the heat recovery and utilization rate.
It improves the recovery and utilization rate of waste gas heat, reduces the energy consumption of the drying room, and improves the heat transfer efficiency.
Smart Images

Figure CN223954593U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the built -in waste gas air duct technical field of drying room, especially the built -in waste gas air duct of drying room. BACKGROUND
[0002] Textile fabric needs to use the setting machine to carry out setting to the cloth after the setting machine, and then the cloth is put into the drying room to dry, the drying room adopts double air duct hot air circulation design, can guarantee the cloth in the drying room to dry.
[0003] But the existing setting machine after using, hot waste gas is discharged through the waste gas air duct, the traditional waste gas air duct is discharged from the setting machine and passes through from the top of the drying room, is connected to the waste gas treatment mechanism, and the waste gas is directly cooled and purified through the waste gas treatment mechanism, the heat on the waste gas air duct is wasted, and if the waste air duct directly passes through the drying room, the heat transmission efficiency in the drying room is low, the heat on the waste air duct cannot be used most, reduces the use energy consumption of the drying room, and the built -in waste gas air duct of the drying room is provided, and the above problems are solved. UTILITY MODEL CONTENT
[0004] The utility model discloses a built -in waste gas air duct of drying room to solve the problem in the background art.
[0005] To achieve the above object, the utility model provides the following technical scheme: a built -in waste gas air duct of drying room, comprising:
[0006] The drying room is provided with a sealing ring at both ends;
[0007] Further comprising:
[0008] The bending air pipe is fixedly inserted into the middle part of the drying room through the sealing ring;
[0009] The fixed column is fixed to the inner wall of the drying room;
[0010] The bearing mechanism is arranged at the bending part of the bending air pipe;
[0011] The connecting mechanism is fixed to the bottom of the bearing mechanism;
[0012] The suspension mechanism is arranged on the outer wall of the bending air pipe, and the suspension mechanism is used for suspending and heat dissipating the bending air pipe.
[0013] Preferably, the bearing mechanism comprises:
[0014] The bearing seat is connected with the top of the fixed column;
[0015] The clamping groove is opened in the top of the bearing seat.
[0016] Preferably, the outer wall of the bent air pipe is bent at the connecting mechanism and the bottom of the bearing seat.
[0017] Preferably, the connecting mechanism comprises:
[0018] The fixed column is inserted into the fixed frame.
[0019] The roller is inserted into the middle of the fixed frame.
[0020] Preferably, the suspension mechanism comprises:
[0021] The clamping frame is clamped to the outer wall of the bent air pipe, and the top of the clamping frame is fixedly inserted into the top of the drying room.
[0022] The heat-conducting plate is attached to the outer wall of the bent air pipe.
[0023] The heat dissipation fins are fixed to the outer wall of the heat-conducting plate.
[0024] The connecting plate is fixed to one end of the heat-conducting plate.
[0025] The movable slot is provided at one end of the connecting plate.
[0026] The limiting assembly is used for connecting the connecting plate and the clamping frame.
[0027] Preferably, the limiting assembly comprises:
[0028] The limiting slot is provided at the outer wall of the clamping frame.
[0029] The torsional spring is fixed to one end of the limiting slot.
[0030] The clamping hook is rotatably inserted into the inner cavity of the limiting slot, and one end of the torsional spring is fixed to one end of the clamping hook.
[0031] The technical effects and advantages of the present application are as follows:
[0032] The present application is characterized by the cooperation of the bent air pipe, the bearing mechanism and the connecting mechanism, which utilizes the bearing mechanism and the suspension mechanism to stabilize the bent air pipe at the top of the inner cavity of the drying room, and utilizes the heat-conducting plate and the heat dissipation fins on the suspension mechanism to quickly transfer the heat on the bent air pipe to the inner cavity of the drying room, thereby reducing the energy consumption of the drying room and improving the recycling of the heat in the waste gas bent air pipe. BRIEF DESCRIPTION OF DRAWINGS
[0033] Figure 1 The present application is characterized by the cooperation of the bent air pipe, the bearing mechanism and the connecting mechanism, which utilizes the bearing mechanism and the suspension mechanism to stabilize the bent air pipe at the top of the inner cavity of the drying room, and utilizes the heat-conducting plate and the heat dissipation fins on the suspension mechanism to quickly transfer the heat on the bent air pipe to the inner cavity of the drying room, thereby reducing the energy consumption of the drying room and improving the recycling of the heat in the waste gas bent air pipe.
[0034] Figure 2 It is the schematic diagram of the section structure of the lower surface of the drying room of the utility model.
[0035] Figure 3 It is the schematic diagram of the overall structure of the bearing seat of the utility model.
[0036] Figure 4 It is the schematic diagram of the section structure of the side surface of the air pipe of the utility model.
[0037] In the drawing: 1, drying room; 2, bent air pipe; 3, sealing ring; 4, fixed column; 5, bearing mechanism; 51, bearing seat; 52, clamping groove; 6, connecting mechanism; 61, fixed frame; 62, roller; 7, suspension mechanism; 71, clamping frame; 72, heat-conducting plate; 73, heat dissipation fin; 74, connecting plate; 75, movable groove; 76, limiting assembly; 761, limiting groove; 762, torsional spring; 763, clamping hook. DETAILED DESCRIPTION
[0038] 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. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than 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 protection scope of the utility model.
[0039] The utility model provides a kind of built-in exhaust air duct of drying room as Figures 1-4 As shown in the drawing, it includes:
[0040] Drying room 1, the front of drying room 1 is provided with sealing door, it is convenient for cloth to be dried by being set in the inner cavity of drying room 1 through support, and sealing ring 3 is installed at both ends of drying room 1;
[0041] It further includes: bent air pipe 2, fixed column 4, bearing mechanism 5, connecting mechanism 6 and suspension mechanism 7, bent air pipe 2 is fixedly inserted into the middle part of drying room 1 through sealing ring 3, the middle part of bent air pipe 2 is bent structure, through sealing ring 3, it is convenient for reducing the loss of heat in the inner cavity of drying room 1, fixed column 4 is fixed to the inner wall of drying room 1, and fixed column 4 is L-shaped column structure, the inner cavity of drying room 1 is provided with a plurality of fixed columns 4, and the plurality of fixed columns 4 are fixed to the two sides of the inner wall of drying room 1 in staggered structure, bearing mechanism 5 is arranged at the bending part of bent air pipe 2, bearing mechanism 5 is used for the bearing of the bending part of bent air pipe 2, connecting mechanism 6 is fixed to the bottom of bearing mechanism 5, and suspension mechanism 7 is arranged on the outer wall of bent air pipe 2, and suspension mechanism 7 is used for the suspension and heat dissipation of bent air pipe 2.
[0042] Further, the bearing mechanism 5 comprises a bearing seat 51 and a clamping groove 52. The bearing seat 51 is connected with the top of the fixing column 4, so that the bearing seat 51 is stably arranged on the inner wall of the drying room 1 through the fixing column 4. The clamping groove 52 is arranged on the top of the bearing seat 51. The outer wall of the bent air pipe 2 is bent at the clamping groove 52, so that the corner of the bent air pipe 2 can be supported;
[0043] The connecting mechanism 6 is arranged on the bottom of the bearing seat 51. The connecting mechanism 6 comprises a fixing frame 61 and a roller 62. The fixing frame 61 is fixed on the bottom of the bearing seat 51. The fixing frame 61 is connected with one end of the fixing column 4. The roller 62 is arranged on the middle of the fixing frame 61. The fixing frame 61, the roller 62 and the bearing seat 51 are made of heat-conducting materials. The heat on the bent air pipe 2 which is attached to the bearing seat 51 can be transferred to the roller 62 on the fixing frame 61. Through the roller 62, the cloth can be attached to the surface of the roller 62, so that the drying efficiency of the cloth is improved;
[0044] Further, the bearing mechanism 5 comprises a bearing seat 51 and a clamping groove 52. The bearing seat 51 is connected with the top of the fixing column 4, so that the bearing seat 51 is stably arranged on the inner wall of the drying room 1 through the fixing column 4. The clamping groove 52 is arranged on the top of the bearing seat 51. The outer wall of the bent air pipe 2 is bent at the clamping groove 52, so that the corner of the bent air pipe 2 can be supported;
[0045] More specifically, the limiting assembly 76 is used for the connection of the connecting plate 74 and the card holder 71, the limiting assembly 76 comprises: a limiting groove 761, a torsional spring 762 and a hook 763, the limiting groove 761 is opened on the outer wall of the card holder 71, the torsional spring 762 is fixed to one end of the limiting groove 761, the hook 763 is rotatably inserted into the inner cavity of the limiting groove 761, one end of the torsional spring 762 is fixed to one end of the hook 763, one end of the hook 763 is in T-shaped structure, the T-shaped structure of one end of the hook 763 is rotatably inserted into the inner cavity of the limiting groove 761, the other end of the hook 763 is in L-shaped structure, the other end of the hook 763 is connected with the inner cavity of the movable groove 75, so that the L-shaped structure of the other end of the hook 763 can be clamped with the inner wall of the movable groove 75, the hook 763 can limit the position of the connecting plate 74, so that the heat-conducting plate 72 can stably adhere to the outer wall of the bent air pipe 2, the convenience of heat utilization is improved, meanwhile, one end of the hook 763 is inserted with the middle part of the torsional spring 762, through the arrangement of the torsional spring 762, the hook 763 can rotate, and the hook 763 can rotate and reset, the hook 763 can be inserted and clamped with the connecting plate 74 after rotating and resetting, the stability of the position of the bent air pipe 2 is improved, and the recycling of the heat in the waste gas bent air pipe 2 is facilitated.
[0046] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the foregoing detailed description of the present application is made with reference to the foregoing embodiments, for those skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the scope of the present application.
Claims
1. A built-in exhaust air duct for drying room, comprising: a drying room (1), both ends of which are provided with sealing rings (3); characterized in that it further comprises: a bent air pipe (2) fixedly inserted into the middle of the drying room (1) through the sealing rings (3); a fixed column (4) fixed to the inner wall of the drying room (1); a bearing mechanism (5) arranged at the bent part of the bent air pipe (2); a connecting mechanism (6) fixed to the bottom of the bearing mechanism (5); a hanging mechanism (7) arranged on the outer wall of the bent air pipe (2), used for hanging and heat dissipation of the bent air pipe (2).
2. The built-in exhaust air duct for a drying chamber according to claim 1, characterized in that The bearing mechanism (5) comprises: a bearing seat (51) connected with the top of the fixed column (4); a clamping groove (52) opened on the top of the bearing seat (51).
3. The built-in exhaust air duct for a drying chamber according to claim 2, characterized in that The outer wall of the bent air pipe (2) is bent at the clamping groove (52), and the connecting mechanism (6) is arranged at the bottom of the bearing seat (51).
4. The built-in exhaust air duct for a drying chamber according to claim 3, characterized in that The connecting mechanism (6) comprises: a fixed frame (61) fixed to the bottom of the bearing seat (51) and inserted into one end of the fixed column (4); a roller (62) rollingly inserted into the middle of the fixed frame (61).
5. The built-in exhaust air duct for a drying chamber according to claim 2, characterized in that The hanging mechanism (7) comprises: a clamping frame (71) clamped to the outer wall of the bent air pipe (2), the top of which is fixedly inserted into the top of the drying room (1); a heat conduction plate (72) conforming to the outer wall of the bent air pipe (2); a heat dissipation fin (73) fixed to the outer wall of the heat conduction plate (72); a connecting plate (74) fixed to one end of the heat conduction plate (72); a movable groove (75) opened on one end of the connecting plate (74); a limiting assembly (76) used for connecting the connecting plate (74) and the clamping frame (71).
6. A built-in exhaust air duct for a drying chamber according to claim 5, characterized in that The limiting assembly (76) comprises: a limiting groove (761) opened on the outer wall of the clamping frame (71); a torsional spring (762) fixed to one end of the limiting groove (761); a clamping hook (763) rotatably inserted into the inner cavity of the limiting groove (761), one end of the torsional spring (762) being fixed to one end of the clamping hook (763).