Plate type evaporative condenser for chemical industry
By introducing a drying and removing foreign matter device into the evaporation condenser, the motor drives the drying plate to move and jet blow away foreign matter, the influence of condensation water and foreign matter on the condensation effect is solved, and an efficient drying and condensation process is achieved.
Patent Information
- Application Number
- CN202510690806.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-27
- Publication Date
- 2025-07-25
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When the existing evaporation condenser is working, the adhesion of the condensed water affects the condensation effect, resulting in a decrease in heat transfer efficiency.
A plate-type evaporation condenser for chemical industry is designed, including a drying device and a foreign matter removal device. The drying plate is driven by a dual-axis motor and the arc-shaped block pushing the support frame to avoid blockage of the drying plate at the same position. The foreign matter is removed by extrusion of the water-absorbing sponge and the jet frame. The water-spray device removes the internal foreign matter and improves the drying and condensing efficiency.
It effectively avoids the influence of condensate water and foreign matter on the condenser, improves the drying effect and condensation efficiency, and ensures the stability of heat transfer.
Smart Images

Figure CN120368611A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of condensers, and particularly to a plate-type evaporative condenser for chemical industry. Background Art
[0002] An evaporative condenser is a heat exchange device, commonly used in air-conditioning systems, refrigeration equipment, and industrial cooling processes, for cooling high-temperature and high-pressure steam or gas and converting it into a liquid state.
[0003] The patent with the patent publication number CN101639332B relates to a plate heat exchange element for evaporative condensation, belonging to the technical field of engineering thermophysics and energy utilization. Its feature is that a specially designed heat transfer enhancement structure is arranged on the heat exchange area of the element. The structure protruding towards the condensation side plays a role in fixing and disturbing the flow. The structure protruding towards the evaporation side has an inner concave configuration, which can form more nucleation points. There is a slit with a micro-scale effect designed for the working liquid between the structure and the plate. The height of the structure is an optimized value calculated according to the detachment diameter and capillary length characteristic values of the working liquid, so that the generated bubbles continue to absorb heat and grow while slipping between the plates after detaching from the nucleation points, thereby taking away more heat, and renewing the surface passed through, accelerating the convection of the liquid. The effects and benefits of this patent are that the evaporative condenser composed of the provided elements is a direct immersion type, with the advantages of high heat transfer coefficient, convenient disassembly and cleaning, not easily corroded, and low energy consumption.
[0004] In the above patent, the evaporative condenser composed of the provided elements is a direct immersion type, with the advantages of high heat transfer coefficient, convenient disassembly and cleaning, not easily corroded, and low energy consumption. When the condenser is working, it will condense the water on the surface of the air, and the condensed water adhering to the surface will affect the heat transfer of the condenser, thereby affecting the condensation efficiency and effect of the condenser.
[0005] Therefore, it is very necessary to design a plate-type evaporative condenser for chemical industry that can avoid the internal attachment of condensed water in the device body from affecting the internal condensation effect of the device body. Summary of the Invention
[0006] The purpose of the present invention is to provide a plate-type evaporative condenser for chemical industry to solve the problems raised in the above background art.
[0007] To solve the above technical problems, the present invention provides the following technical solutions: A plate-type evaporation condenser for chemical industry, including a device body, further including a drying device and a foreign object removing device. Among them, a suction fan is fixedly installed at the top of the device body, and a feed pipe is fixedly installed at the bottom of the device body; Among them, the drying device includes a drying frame and a moving component. The moving component includes a double-shaft motor, a support frame, a drying plate, and an arc-shaped block. The double-shaft motor is fixedly installed at the top of the device body. The support frame is slidably installed inside the drying frame. The drying plate is arranged inside the support frame. The arc-shaped block is fixedly installed at the left output end of the double-shaft motor. Among them, the foreign object removing device includes a sealing frame and an extrusion component. The extrusion component is arranged on the surface of the sealing frame. The recycling device includes a storage frame and a separation component. The separation component is arranged on the surface of the storage frame. When the arc-shaped block rotates, the arc surface of the arc-shaped block will push the support frame to move. When the support frame moves, it will drive the drying plate to move, so that the position of the drying plate can be switched, avoiding the use of the same position of the drying plate for drying, which will affect the drying effect. At the same time, foreign objects will block the drying plate, thereby improving the drying effect inside the device body.
[0008] According to the above technical solution, a hollow frame is fixedly installed on the surface of the device body. A water-absorbing sponge is fixedly installed inside the hollow frame. An extrusion plate is slidably installed inside the hollow frame. An inclined rod is fixedly installed on the surface of the extrusion plate. A pushing block is fixedly installed at the right output end of the double-shaft motor. A sliding rod is slidably installed on the surface of the device body. When the extrusion plate moves, it will squeeze the water-absorbing sponge, avoiding that the excessive water content inside the water-absorbing sponge will affect the subsequent water absorption effect. Absorbing water through the arc surface can avoid the increase in humidity around the device body, which will affect the device body.
[0009] According to the above technical solution, a first spring is arranged between the support frame and the drying frame, and a second spring is arranged between the sliding rod and the device body. The side of the inclined rod close to the sliding rod is set as an inclined surface. The first spring can drive the support frame to reset.
[0010] According to the above technical solution, the sealing frame is fixedly installed at the bottom of the device body. The extrusion assembly includes a sealing plate, a connecting rod, a circular rod, a bending rod, a jet frame, a cover plate, a swing plate and a limiting block. The sealing plate is slidably installed inside the sealing frame. The connecting rod is fixedly installed at the bottom of the sealing plate. The circular rod is fixedly installed on the surface of the connecting rod. The bending rod is fixedly installed at the bottom of the circular rod. The jet frame fixedly penetrates the bottom of the sealing frame. The cover plate is rotatably installed on the top of the jet frame. The swing plate is rotatably installed on the surface of the connecting rod. The limiting block is fixedly installed on the surface of the connecting rod. The limiting block performs one-way limiting on the swing plate, so that when the swing plate moves upward, it will push the cover plate to rotate upward to open the jet frame, so that the jet frame will instantly discharge the gas inside the sealing frame. The gas ejected by the jet frame will blow away the foreign matter between the feed pipe and the external pipeline, avoiding that the foreign matter entering the inside of the feed pipe will affect the operation of the device body.
[0011] According to the above technical solution, the circular rod and the bending rod are elastic, and there is a torsion spring between the swing plate and the connecting rod, so that the circular rod and the bending rod can be deformed when being squeezed. A volute spring is arranged between the cover plate and the jet frame.
[0012] According to the above technical solution, it further includes a protection device and a recovery device. The recovery device includes a storage frame and a separation component. The separation component is arranged on the surface of the storage frame. A protection device is arranged on the surface of the feed pipe. The protection device includes a slider and a clamping component. The slider is slidably installed on the surface of the feed pipe. The clamping component includes a circular sleeve, a linkage plate, a trapezoidal block and a fixing rod. The circular sleeve is slidably sleeved on the surface of the feed pipe. The linkage plate is slidably installed on the surface of the feed pipe. The trapezoidal block slidably penetrates the linkage plate. The linkage plate is fixed to the circular sleeve through the fixing rod. When the slider contacts the inclined surface at the bottom of the circular sleeve, the slider will push the circular sleeve to move upward. When the circular sleeve moves upward, it will drive the linkage plate to move upward through the fixing rod. When the linkage plate moves upward, it will drive the trapezoidal block to squeeze the external pipeline to closely fit on the feed pipe, avoiding the external pipeline separating from the feed pipe when being impacted.
[0013] According to the above technical solution, the bottom of the circular sleeve is set as an inclined surface. A third spring is arranged between the circular sleeve and the feed pipe. A fourth spring is arranged between the trapezoidal block and the linkage plate. The fourth spring can drive the trapezoidal block to reset.
[0014] According to the above technical solution, a stress plate is slidably installed on the surface of the linkage plate. A first elastic sheet is arranged between the stress plate and the linkage plate. The stress plate and the first elastic sheet can be used to push the linkage plate and the trapezoidal block to move upward, thereby improving the tightness between the external pipeline and the feed pipe.
[0015] According to the above technical solution, the storage box is fixedly installed in the hollow box. The separation component includes a filter plate, a pressing plate, an insertion plate, a transmission rod, and a bolt. The filter plate is fixedly installed inside the storage box. The pressing plate is slidably installed at the bottom of the filter plate. The insertion plate is fixedly installed inside the storage box. The transmission rod is fixedly installed on the surface of the pressing plate. The bolt is threadedly installed on the surface of the inclined rod. Through holes are formed on the surface of the pressing plate. A water spraying device is fixedly installed on the surface of the device body. The water spraying device is communicated with the inside of the storage box through a pipeline. The water inside the storage box will flow to the right side of the pressing plate through the through holes. When the fifth spring drives the pressing plate to reset, the pressing plate will squeeze the water and spray it out from the water spraying device through the pipeline. The water sprayed by the water spraying device can remove the foreign matters attached inside the device body, and the water sprayed by the water spraying device can remove the foreign matters adhered inside the device body, avoiding the influence of the foreign matters adhered inside the device body on the heat transfer of the device body. According to the above technical solution, a fifth spring is arranged between the pressing plate and the storage box. An elastic plate is fixedly installed on the surface of the extrusion plate. A convex block is fixedly installed on the top of the filter plate. When the elastic plate moves, it will hit the convex block and the filter plate, causing the filter plate to vibrate and having a dredging effect on the filter plate, preventing the filter plate from being blocked by foreign matters.
[0016] Compared with the prior art, the beneficial effects achieved by the present invention are as follows: (1) For this chemical industrial plate-type evaporation condenser, the inside air of the drying box can be dried through the drying plate. The arc-shaped block can be driven to rotate by the double-shaft motor. When the arc-shaped block rotates, it will push the support frame and the drying plate to move, avoiding the influence on the drying effect caused by using the same position of the drying plate for drying, and at the same time, foreign matters will block the drying plate. Thus, the drying effect inside the device body can be improved, avoiding the influence on the condensation effect inside the device body due to the attachment of condensed water inside the device body. At the same time, the extrusion plate will squeeze the water-absorbing sponge, thereby collecting the water and avoiding the increase in humidity around the device body.
[0017] (2) For this chemical industrial plate-type evaporation condenser, when the external pipeline is connected to the feed pipe, it will push the bending rod and the circular rod to move upward, causing the sealing plate to squeeze the gas inside the sealing frame, and the gas inside the sealing frame will be ejected from the jet frame. The gas ejected from the jet frame will blow away the foreign matters between the feed pipe and the external pipeline, avoiding the influence on the operation of the device body caused by foreign matters entering the inside of the feed pipe. The air pressure of the ejected gas can be increased through the cover plate and the swing plate, thereby improving the blowing effect.
[0018] (3) When the feed pipe and the external pipeline of this plate - type evaporation condenser for chemical industry are impacted, it will push the bending rod to move and cause the circular rod to deform. The circular rod will then push the slider to move. The push rod will push the circular sleeve, the fixed rod, and the linkage plate upward. As a result, the trapezoidal block will push the external pipeline to fit more tightly on the feed pipe, preventing the external pipeline from detaching from the feed pipe when impacted. At the same time, the trapezoidal block will restrict the external pipeline on the feed pipe.
[0019] (4) For this plate - type evaporation condenser for chemical industry, the water discharged by the water - absorbing sponge can be collected through the storage box. When the bolt rotates downward, the bolt will push the transmission rod and the extrusion plate to move. The extrusion plate will squeeze the water inside the storage box to spray out through the spraying device. The water sprayed by the spraying device can remove the foreign matters adhered inside the device body, preventing the foreign matters adhered inside the device body from affecting the heat transfer of the device body. At the same time, the filter plate can separate the impurities in the water. Brief Description of the Drawings
[0020] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention. In the drawings: Figure 1 is the schematic diagram of the overall structure of the present invention; Figure 2 is the schematic diagram of the inside of the drying box of the present invention; Figure 3 is the schematic diagram of the position of the sliding rod and the device body of the present invention; Figure 4 is the schematic diagram of the position of the slider and the feed pipe of the present invention; Figure 5 is the schematic diagram of the inside of the sealing box of the present invention; Figure 6 is the schematic diagram of the position of the linkage plate and the fixed rod of the present invention; Figure 7 is the schematic diagram of the inside of the hollow box of the present invention; Figure 8 is the schematic diagram of the inside of the storage box of the present invention.
[0021] In the figure: 1. Device body; 2. Exhaust fan; 3. Moving component; 31. Drying frame; 32. Biaxial motor; 33. Support frame; 34. Drying plate; 35. Arc-shaped block; 36. Hollow frame; 37. Slide bar; 38. Pushing block; 39. Tilted bar; 310. Extrusion plate; 311. Water-absorbing sponge; 4. Feed pipe; 5. Extrusion component; 51. Sealing frame; 52. Sealing plate; 53. Connecting rod; 54. Circular rod; 55. Bent rod; 56. Jetting frame; 57. Cover plate; 58. Swing plate; 59. Limiting block; 6. Clamping component; 61. Slide block; 62. Circular sleeve; 63. Linkage plate; 64. Trapezoidal block; 65. Stress plate; 66. Fixed rod; 7. Separation component; 71. Storage frame; 72. Filter plate; 73. Pressing plate; 74. Insertion plate; 75. Transmission rod; 76. Bolt; 77. Water spraying device; 81. Elastic plate; 82. Protruding block. Detailed implementation manners
[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention. Embodiment 1:
[0023] Please refer to Figures 1-6 , the present invention provides a technical solution: a plate-type evaporation condenser for chemical industry, including a device body 1, and further including a drying device and a foreign object removing device. Among them, an exhaust fan 2 is fixedly installed on the top of the device body 1, and a feed pipe 4 is fixedly installed on the bottom of the device body 1; among them, the drying device includes a drying frame 31 and a moving component 3, and the moving component 3 includes a biaxial motor 32, a support frame 33, a drying plate 34 and an arc-shaped block 35. The biaxial motor 32 is fixedly installed on the top of the device body 1, the support frame 33 is slidably installed inside the drying frame 31, the drying plate 34 is arranged inside the support frame 33, and the arc-shaped block 35 is fixedly installed on the left output end of the biaxial motor 32. Among them, the foreign object removing device includes a sealing frame 51 and an extrusion component 5, and the extrusion component 5 is arranged on the surface of the sealing frame 51. The recycling device includes a storage frame 71 and a separation component 7, and the separation component 7 is arranged on the surface of the storage frame 71. When the arc-shaped block 35 rotates, the arc-shaped block 35 will push the support frame 33 to move through the arc surface. When the support frame 33 moves, it will drive the drying plate 34 to move, so that the position of the drying plate 34 can be switched, avoiding affecting the drying effect by using the same position of the drying plate 34 for drying. At the same time, foreign objects will block the drying plate 34, thereby improving the drying effect inside the device body 1.
[0024] A hollow frame 36 is fixedly installed on the surface of the device body 1. A water-absorbing sponge 311 is fixedly installed inside the hollow frame 36. A pressing plate 310 is slidably installed inside the hollow frame 36. An inclined rod 39 is fixedly installed on the surface of the pressing plate 310. A pushing block 38 is fixedly installed on the right output end of the bi-axial motor 32. A sliding rod 37 is slidably installed on the surface of the device body 1. When the pushing block 38 rotates, it will push the sliding rod 37 to move. When the sliding rod 37 moves, it will contact the inclined surface of the inclined rod 39, so that when the sliding rod 37 moves, it will push the inclined rod 39 to move. When the inclined rod 39 moves, it will drive the pressing plate 310 to perform extrusion. When the pressing plate 310 moves, it will extrude the water-absorbing sponge 311, avoiding that the excessive water content inside the water-absorbing sponge 311 will affect the subsequent water absorption effect. Absorbing water through the arc surface can prevent the humidity around the device body 1 from increasing and affecting the device body 1.
[0025] A first spring is arranged between the support frame 33 and the drying frame 31. A second spring is arranged between the sliding rod 37 and the device body 1. The side of the inclined rod 39 close to the sliding rod 37 is set as an inclined surface. The first spring can drive the support frame 33 to reset.
[0026] A sealing frame 51 is fixedly installed at the bottom of the device body 1. The extrusion assembly 5 includes a sealing plate 52, a connecting rod 53, a circular rod 54, a bent rod 55, a jet frame 56, a cover plate 57, a swing plate 58 and a limiting block 59. The sealing plate 52 is slidably installed inside the sealing frame 51. The connecting rod 53 is fixedly installed at the bottom of the sealing plate 52. The circular rod 54 is fixedly installed on the surface of the connecting rod 53. The bent rod 55 is fixedly installed at the bottom of the circular rod 54. The jet frame 56 is fixedly penetrated through the bottom of the sealing frame 51. The cover plate 57 is rotatably installed on the top of the jet frame 56. The swing plate 58 is rotatably installed on the surface of the connecting rod 53. The limiting block 59 is fixedly installed on the surface of the connecting rod 53. When the connecting rod 53 moves upward, it will drive the sealing plate 52 to move upward. When the sealing plate 52 moves upward, it will extrude the gas inside the sealing frame 51, so that the air pressure inside the sealing frame 51 will increase. When the connecting rod 53 moves upward, it will drive the swing plate 58 and the limiting block 59 to move upward. The limiting block 59 will perform one-way limiting on the swing plate 58, so that when the swing plate 58 moves upward, it will push the cover plate 57 to rotate upward to open the jet frame 56, so that the jet frame 56 will instantly discharge the gas inside the sealing frame 51. The gas ejected by the jet frame 56 will blow away the foreign matters between the feeding pipe 4 and the external pipeline, avoiding that the foreign matters entering the inside of the feeding pipe 4 will affect the operation of the device body 1.
[0027] The circular rod 54 and the bent rod 55 are elastic. There is a torsion spring between the swing plate 58 and the connecting rod 53, so that the circular rod 54 and the bent rod 55 can be deformed when being extruded. A volute spring is arranged between the cover plate 57 and the jet frame 56.
[0028] When the device body 1 needs to dry the inside of the device body 1 during the operation of the first embodiment, the biaxial motor 32 is started. When the biaxial motor 32 operates, it drives the arc-shaped block 35 to rotate. When the arc-shaped block 35 rotates, the arc-shaped block 35 pushes the support frame 33 to move through the arc surface. When the support frame 33 moves, it drives the drying plate 34 to move, so that the position of the drying plate 34 can be switched. At the same time, when the biaxial motor 32 operates, it drives the push block 38 to rotate. When the push block 38 rotates, it pushes the sliding rod 37 to move. When the sliding rod 37 moves, it contacts the inclined surface of the inclined rod 39, so that when the sliding rod 37 moves, it pushes the inclined rod 39 to move. When the inclined rod 39 moves, it drives the extrusion plate 310 to extrude. When the extrusion plate 310 moves, it extrudes the water-absorbing sponge 311, so that the excessive water inside the water-absorbing sponge 311 can be discharged; When connecting the external pipeline to the feed pipe 4, when the external pipeline moves upward, it contacts the bending rod 55. When the external pipeline moves upward, it pushes the bending rod 55 and the circular rod 54 to move upward. When the circular rod 54 moves upward, it drives the connecting rod 53 to move upward. When the connecting rod 53 moves upward, it drives the sealing plate 52 to move upward. When the sealing plate 52 moves upward, it squeezes the gas inside the sealing frame 51, so that the air pressure inside the sealing frame 51 increases. When the connecting rod 53 moves upward, it drives the swing plate 58 and the limit block 59 to move upward. The limit block 59 performs one-way limiting on the swing plate 58, so that when the swing plate 58 moves upward, it pushes the cover plate 57 to rotate upward to open the air jet frame 56, so that the air jet frame 56 instantly discharges the gas inside the sealing frame 51. The gas ejected from the air jet frame 56 can remove foreign objects between the external pipeline and the feed pipe 4. When the external pipeline and the feed pipe 4 are further close, the external pipeline pushes the bending rod 55 to deform, avoiding the bending rod 55 from affecting the connection between the external pipeline and the feed pipe 4. Embodiment 2:
[0029] Please refer to Figures 1-8, on the basis of the first embodiment, in this embodiment, a protection device and a recovery device are further included. The recovery device includes a storage box 71 and a separation component 7. The separation component 7 is arranged on the surface of the storage box 71. A protection device is arranged on the surface of the feed pipe 4. The protection device includes a slider 61 and a clamping component 6. The slider 61 is slidably installed on the surface of the feed pipe 4. The clamping component 6 includes a circular sleeve 62, a linkage plate 63, a trapezoidal block 64 and a fixing rod 66. The circular sleeve 62 is slidably sleeved on the surface of the feed pipe 4. The linkage plate 63 is slidably installed on the surface of the feed pipe 4. The trapezoidal block 64 slidably penetrates through the linkage plate 63. The linkage plate 63 is fixed to the circular sleeve 62 through the fixing rod 66. When the slider 61 contacts the inclined surface at the bottom of the circular sleeve 62, the slider 61 will push the circular sleeve 62 to move upward. When the circular sleeve 62 moves upward, it will drive the linkage plate 63 to move upward through the fixing rod 66. When the linkage plate 63 moves upward, it will drive the trapezoidal block 64 to squeeze the external pipeline to closely fit on the feed pipe 4, so as to prevent the external pipeline from detaching from the feed pipe 4 when being impacted.
[0030] The bottom of the circular sleeve 62 is provided with an inclined surface. A third spring is arranged between the circular sleeve 62 and the feed pipe 4. A fourth spring is arranged between the trapezoidal block 64 and the linkage plate 63. The fourth spring can drive the trapezoidal block 64 to reset.
[0031] A force-bearing plate 65 is slidably installed on the surface of the linkage plate 63. A first elastic sheet is arranged between the force-bearing plate 65 and the linkage plate 63. By means of the force-bearing plate 65 and the first elastic sheet, the linkage plate 63 and the trapezoidal block 64 can be pushed to move upward, thereby improving the tightness between the external pipeline and the feed pipe 4.
[0032] The storage box 71 is fixedly installed on the hollow frame 36. The separation component 7 includes a filter plate 72, a pressing plate 73, an insertion plate 74, a transmission rod 75, and a bolt 76. The filter plate 72 is fixedly installed inside the storage box 71. The pressing plate 73 is slidably installed at the bottom of the filter plate 72. The insertion plate 74 is fixedly installed inside the storage box 71. The transmission rod 75 is fixedly installed on the surface of the pressing plate 73. The bolt 76 is threadedly installed on the surface of the inclined rod 39. Through holes are formed on the surface of the pressing plate 73. A water spraying device 77 is fixedly installed on the surface of the device body 1. The water spraying device 77 is communicated with the inside of the storage box 71 through a pipeline. The bolt 76 will push the transmission rod 75 and the pressing plate 73 to move to the left. When the pressing plate 73 moves to the left, the insertion plate 74 will be separated from the through holes, so that the water inside the storage box 71 will flow to the right side of the pressing plate 73 through the through holes. When the fifth spring drives the pressing plate 73 to reset, the pressing plate 73 will squeeze the water to spray out from the water spraying device 77 through the pipeline. The water sprayed by the water spraying device 77 can remove the foreign matters attached inside the device body 1. The water sprayed by the water spraying device 77 can remove the foreign matters adhered inside the device body 1, avoiding the influence of the foreign matters adhered inside the device body 1 on the heat transfer of the device body 1. A fifth spring is arranged between the pressing plate 73 and the storage frame 71. An elastic plate 81 is fixedly installed on the surface of the extrusion plate 310. A bump 82 is fixedly installed on the top of the filter plate 72. When the elastic plate 81 moves, it will hit the bump 82 and the filter plate 72, causing the filter plate 72 to vibrate, which can dredge the filter plate 72 and prevent the filter plate 72 from being blocked by foreign objects.
[0033] When the external pipeline moves upward during the operation of the second embodiment, it will contact the inclined surface of the trapezoidal block 64 and push the trapezoidal block 64 to move. When the external pipeline moves to the top of the trapezoidal block 64, the fourth spring will drive the trapezoidal block 64 to reset and limit the external pipeline. When the position where the external pipeline is connected to the feed pipe 4 is impacted, the bending rod 55 and the circular rod 54 will deform. When the circular rod 54 deforms, it will push the slider 61 to move. When the slider 61 contacts the inclined surface at the bottom of the circular sleeve 62, the slider 61 will push the circular sleeve 62 to move upward. When the circular sleeve 62 moves upward, it will drive the linkage plate 63 to move upward through the fixed rod 66. When the linkage plate 63 moves upward, it will drive the trapezoidal block 64 to squeeze the external pipeline to closely fit on the feed pipe 4; The water extruded from the water-absorbing sponge 311 will enter the interior of the storage frame 71, and the water will be filtered through the filter plate 72. When it is necessary to clean the interior of the device body 1, rotate the bolt 76 downward so that the bolt 76 can contact the transmission rod 75. When the inclined rod 39 moves to the left, it will drive the bolt 76 to move to the left, so that the bolt 76 will push the transmission rod 75 and the pressing plate 73 to move to the left. When the pressing plate 73 moves to the left, the insertion plate 74 will disengage from the through hole, so that the water inside the storage frame 71 will flow to the right side of the pressing plate 73 through the through hole. When the fifth spring drives the pressing plate 73 to reset, the pressing plate 73 will squeeze the water to spray out through the pipeline from the spraying device 77. The water sprayed by the spraying device 77 can remove the foreign objects attached to the interior of the device body 1. When the extrusion plate 310 moves, it will drive the elastic plate 81 to move. When the elastic plate 81 moves, it will hit the bump 82 and the filter plate 72, causing the filter plate 72 to vibrate, which can dredge the filter plate 72.
[0034] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variation thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0035] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A plate-type evaporation condenser for chemical industry, comprising a device body (1), characterized in that: It further includes a drying device, a foreign object removing device and a recycling device; Among them, a suction fan (2) is fixedly installed at the top of the device body (1), and a feed pipe (4) is fixedly installed at the bottom of the device body (1); Among them, the drying device includes a drying frame (31) and a moving component (3). The moving component (3) includes a double-shaft motor (32), a support frame (33), a drying plate (34) and an arc-shaped block (35). The double-shaft motor (32) is fixedly installed at the top of the device body (1), the support frame (33) is slidably installed inside the drying frame (31), the drying plate (34) is arranged inside the support frame (33), and the arc-shaped block (35) is fixedly installed at the left output end of the double-shaft motor (32); Among them, the foreign object removing device includes a sealing frame (51) and an extrusion component (5). The extrusion component (5) is arranged on the surface of the sealing frame (51), and the recycling device includes a storage frame (71) and a separation component (7). The separation component (7) is arranged on the surface of the storage frame (71).
2. The plate evaporative condenser for chemical industry according to claim 1, wherein: A hollow frame (36) is fixedly installed on the surface of the device body (1). A water-absorbing sponge (311) is fixedly installed inside the hollow frame (36). An extrusion plate (310) is slidably installed inside the hollow frame (36). An inclined rod (39) is fixedly installed on the surface of the extrusion plate (310). A pushing block (38) is fixedly installed at the right output end of the double-shaft motor (32). A sliding rod (37) is slidably installed on the surface of the device body (1).
3. The plate evaporation condenser for chemical industry according to claim 2, characterized in that: A first spring is arranged between the support frame (33) and the drying frame (31). A second spring is arranged between the sliding rod (37) and the device body (1). One side of the inclined rod (39) close to the sliding rod (37) is an inclined surface.
4. The plate evaporative condenser for chemical industry according to claim 3, wherein: The sealing frame (51) is fixedly installed at the bottom of the device body (1). The extrusion component (5) includes a sealing plate (52), a connecting rod (53), a circular rod (54), a bending rod (55), a jet frame (56), a cover plate (57), a swing plate (58) and a limiting block (59). The sealing plate (52) is slidably installed inside the sealing frame (51). The connecting rod (53) is fixedly installed at the bottom of the sealing plate (52). The circular rod (54) is fixedly installed on the surface of the connecting rod (53). The bending rod (55) is fixedly installed at the bottom of the circular rod (54). The jet frame (56) fixedly penetrates the bottom of the sealing frame (51). The cover plate (57) is rotatably installed at the top of the jet frame (56). The swing plate (58) is rotatably installed on the surface of the connecting rod (53). The limiting block (59) is fixedly installed on the surface of the connecting rod (53).
5. The plate evaporative condenser for chemical industry according to claim 4, wherein: The circular rod (54) and the bending rod (55) are elastic. There is a torsion spring between the swing plate (58) and the connecting rod (53).
6. The plate evaporation condenser for chemical industry according to claim 5, characterized in that: A protective device is provided on the surface of the feed pipe (4). The protective device includes a slider (61) and a clamping assembly (6). The slider (61) is slidably mounted on the surface of the feed pipe (4). The clamping assembly (6) includes a circular sleeve (62), a linkage plate (63), a trapezoidal block (64), and a fixed rod (66). The circular sleeve (62) is slidably sleeved on the surface of the feed pipe (4). The linkage plate (63) is slidably mounted on the surface of the feed pipe (4). The trapezoidal block (64) slidably penetrates through the linkage plate (63). The linkage plate (63) is fixed to the circular sleeve (62) through the fixed rod (66).
7. The plate evaporation condenser for chemical industry according to claim 6, characterized in that: The bottom of the circular sleeve (62) is provided with an inclined surface. A third spring is provided between the circular sleeve (62) and the feed pipe (4). A fourth spring is provided between the trapezoidal block (64) and the linkage plate (63).
8. A plate evaporation condenser for chemical industry according to claim 7, characterized in that: A force-receiving plate (65) is slidably mounted on the surface of the linkage plate (63). A first elastic sheet is provided between the force-receiving plate (65) and the linkage plate (63).
9. The plate evaporation condenser for chemical industry according to claim 8, wherein: The storage frame (71) is fixedly mounted on the hollow frame (36). The separation assembly (7) includes a filter plate (72), a pressing plate (73), an insertion plate (74), a transmission rod (75), and a bolt (76). The filter plate (72) is fixedly mounted inside the storage frame (71). The pressing plate (73) is slidably mounted at the bottom of the filter plate (72). The insertion plate (74) is fixedly mounted inside the storage frame (71). The transmission rod (75) is fixedly mounted on the surface of the pressing plate (73). The bolt (76) is threadedly mounted on the surface of the inclined rod (39). A through hole is provided on the surface of the pressing plate (73). A water spraying device (77) is fixedly mounted on the surface of the device body (1). The water spraying device (77) is communicated with the inside of the storage frame (71) through a pipeline.
10. A plate evaporative condenser for chemical industry according to claim 9, characterized in that: A fifth spring is provided between the pressing plate (73) and the storage frame (71). An elastic plate (81) is fixedly mounted on the surface of the extrusion plate (310). A convex block (82) is fixedly mounted on the top of the filter plate (72).
Citation Information
Patent Citations
Plate type heat exchanging element for evaporation and condensation
CN101639332B