Electronic grade hydrochloric acid analytical reboiler heat flow distribution structure

CN120550424BActive Publication Date: 2026-09-22FUJIAN TIANFU ELECTRONIC MATERIAL CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202510884934.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2026-09-22
Estimated Expiration
2045-06-30

AI Technical Summary

Technical Problem

[0004]本发明的主要目的是为了解决分配较为不便,并且不能便于调节热气的排气量的问题,而提供一种电子级盐酸解析再沸器热流分配结构

Benefits of technology

1、按照本发明的电子级盐酸解析再沸器热流分配结构,通过设置第一进气管,再沸器产生的热气通过第一进气管输送到第二进气管中,通过第二进气管输送到存储筒中,通过存储筒输送到分配管中通过分配管进行分配,电机启动带动第二转杆转动,进而带动辅皮带轮转动,通过皮带进而带动主皮带轮转动,主皮带轮转动能够带动存储筒转动,进而能够调节存储筒上的排气口的方向,关闭其中一个分配管,并将热气通过另一个分配管进行输送,能够对热气进行分配工作,无需工作人员手动调节分配方向,调节较为方便,通过设置密封板,能够在存储筒转动时对排气口进行密封。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120550424B_ABST
    Figure CN120550424B_ABST
Patent Text Reader

Abstract

The application discloses an electronic-grade hydrochloric acid analytical reboiler heat flow distribution structure and belongs to the technical field of reboiler heat flow distribution. The electronic-grade hydrochloric acid analytical reboiler heat flow distribution structure comprises a supporting assembly, a distribution assembly, and a storage assembly. The supporting assembly is used for supporting the distribution assembly. The distribution assembly is used for distributing hot gas. The storage assembly is used for storing and conveying the hot gas. The first air inlet pipe is arranged. The hot gas generated by the reboiler is conveyed into the second air inlet pipe through the first air inlet pipe, conveyed into the storage cylinder through the second air inlet pipe, conveyed into the distribution pipe through the storage cylinder, and distributed through the distribution pipe. The motor drives the second rotating rod to rotate, drives the auxiliary belt pulley to rotate, drives the main belt pulley to rotate through the belt, drives the storage cylinder to rotate, adjusts the direction of the exhaust port on the storage cylinder, closes one of the distribution pipes, and conveys the hot gas through the other distribution pipe, so that the hot gas can be distributed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to a heat flow distribution structure, and more particularly to a heat flow distribution structure for an electronic-grade hydrochloric acid desorption reboiler, belonging to the field of reboiler heat flow distribution technology. Background Technology

[0002] As the name suggests, a reboiler is used to vaporize liquids again. Its structure is similar to that of a condenser, but one is used to cool down, while a reboiler is used to heat up and vaporize. Electronic-grade hydrochloric acid desorption requires the use of a reboiler in conjunction with a heat flow distribution structure to store and distribute the hot gas.

[0003] The existing heat flow distribution structure of the electronic-grade hydrochloric acid desorption reboiler requires operators to manually close the valve on one pipe and then open the valve on the other pipe to adjust the outlet position and distribute the hot gas. This distribution is inconvenient and does not allow for easy adjustment of the hot gas exhaust volume. Summary of the Invention

[0004] The main objective of this invention is to provide a heat flow distribution structure for an electronic-grade hydrochloric acid desorption reboiler, which addresses the problems of inconvenient distribution and difficulty in adjusting the exhaust volume of hot gas.

[0005] The objective of this invention can be achieved by adopting the following technical solution: A heat flow distribution structure for an electronic-grade hydrochloric acid desorption reboiler, comprising: Support components, used to support the distribution components; Distribution components are used to distribute hot air; Storage components for storing and transporting hot gas; A rotating component is used to drive a moving component to move, thereby moving the exhaust component; A movable component for adjusting the position of the exhaust assembly; The transmission component, in conjunction with the rotating component, drives the storage component to rotate, and in conjunction with the distribution component, distributes the hot air. Exhaust assembly, used to regulate the amount of hot air exhausted; Guide assembly, used to guide and limit the exhaust assembly; The support component is used to support moving components.

[0006] Preferably, the support assembly includes a chassis, side blocks, support legs, and a top plate. The side blocks are mounted on the chassis, the support legs are mounted on the side blocks, and the top plate is mounted on one end of each support leg.

[0007] Preferably, the dispensing assembly includes a dispensing pipe, a support frame, a first connecting rod, a sealing plate, and a base. The base is mounted on the side block, the support frame is mounted on one end of the base, the dispensing pipe is mounted on the support frame, the sealing plate is mounted on the dispensing pipe, and the first connecting rod is mounted on the support frame.

[0008] Preferably, the storage assembly includes a support rod, a storage cylinder, a first rotating rod, a first air inlet pipe, a second air inlet pipe, and a support plate. The storage cylinder is rotatably mounted on the top plate, the first rotating rod is mounted on the storage cylinder, the support rod is mounted on the bottom plate, the support plate is mounted on the support rod, the first air inlet pipe is mounted on the support plate, the first air inlet pipe is rotatably connected to the second air inlet pipe, and the storage cylinder has an exhaust port.

[0009] Preferably, the rotating assembly includes a motor, a connecting frame, a side leg, and a second rotating rod. The side leg is mounted on the top plate, the connecting frame is mounted on the side leg, the motor is mounted on the connecting frame, and the second rotating rod is mounted on the output end of the motor.

[0010] Preferably, the moving component includes a rack, a first gear, a third rotating rod, and a second gear. The first gear is mounted on the second rotating rod. The third rotating rod is rotatably mounted on the lifting component. The second gear, which meshes with the first gear, is mounted on the third rotating rod. The rack, which meshes with the second gear, is mounted on the exhaust component.

[0011] Preferably, the transmission assembly includes a main pulley, a belt, and an auxiliary pulley. The auxiliary pulley is mounted on the second rotating rod, and the main pulley is mounted on the first rotating rod. The main pulley is connected to the auxiliary pulley via a belt.

[0012] Preferably, the exhaust assembly includes a rotating block, a support frame, a rotating column, an exhaust plate, a top rod, a bottom leg, a second connecting rod, a top plate, a main magnet, and an auxiliary magnet. A guide assembly is mounted on the top plate, a support frame is mounted on the guide assembly, a rotating block is rotatably mounted on the support frame, a rotating column is mounted on the rotating block, a bottom leg is mounted on the support frame, a top plate is mounted at one end of the bottom leg, a second connecting rod is mounted on the top plate, one end of the second connecting rod is connected to the rack, a top rod is mounted on the rotating column, an exhaust plate is mounted on the top rod, an auxiliary magnet is mounted on the rotating block, and a main magnet that cooperates with the auxiliary magnet is mounted on the support frame.

[0013] Preferably, the guiding assembly includes a first guide rod, a second guide rod, a guide ring, and a third connecting rod. The second guide rod is mounted on the top plate, and the first guide rod is mounted on the distribution pipe. Guide rings are slidably mounted on both the first and second guide rods. The third connecting rod is mounted on the guide ring, and one end of the third connecting rod is connected to the support frame.

[0014] Preferably, the lifting assembly includes a support ring and a side rod, the side rod is mounted on the chassis, a support ring is mounted on one end of the side rod, and a third rotating rod is rotatably mounted on the support ring.

[0015] Beneficial technical effects of the present invention: 1. According to the heat flow distribution structure of the electronic-grade hydrochloric acid desorption reboiler of the present invention, by setting a first air inlet pipe, the hot gas generated by the reboiler is transported to the second air inlet pipe through the first air inlet pipe, then to the storage cylinder through the second air inlet pipe, and finally to the distribution pipe through the storage cylinder for distribution. The motor starts and drives the second rotating rod to rotate, which in turn drives the auxiliary pulley to rotate, which in turn drives the main pulley to rotate through the belt. The rotation of the main pulley can drive the storage cylinder to rotate, thereby adjusting the direction of the exhaust port on the storage cylinder, closing one of the distribution pipes, and transporting the hot gas through the other distribution pipe. This allows for the distribution of hot gas without the need for manual adjustment of the distribution direction by the operator, making adjustment more convenient. By setting a sealing plate, the exhaust port can be sealed when the storage cylinder rotates.

[0016] 2. When the motor starts, it drives the second rotating rod to rotate. When the second rotating rod rotates, it drives the first gear to rotate, which in turn drives the second gear to rotate. When the second gear rotates, it drives the rack to move, which in turn drives the support frame to slide. This allows the adjusted exhaust plate to slide into the open distribution pipe and the exhaust plate in the closed distribution pipe to slide out. Rotating the exhaust plate causes the rotating block to rotate on the support frame, which in turn drives the rotating column to rotate. This allows for the adjustment of exhaust plates with different outlet sizes. By setting auxiliary magnets and main magnets to cooperate, the rotated exhaust plate can be limited, which facilitates the adjustment of the exhaust volume. The exhaust plate can also be moved while the storage cylinder is rotated, which can shorten working time, improve work efficiency, and reduce production costs by eliminating the need for multiple drive components. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the chassis structure of the present invention; Figure 3 This is a schematic diagram of the first air intake pipe structure of the present invention; Figure 4 This is a schematic diagram of the distribution pipe structure of the present invention; Figure 5 This is a schematic diagram of the rack structure of the present invention; Figure 6 This is a schematic diagram of the block structure of the present invention; Figure 7 This is a schematic diagram of the exhaust plate structure of the present invention; Figure 8 This is a schematic diagram of the second gear structure of the present invention; Figure 9 This is a schematic diagram of the first guide rod structure of the present invention; Figure 10 This is a schematic diagram of the support frame structure of the present invention; Figure 11 This is a schematic diagram of the main magnet structure of the present invention.

[0018] In the diagram: 1. Chassis; 11. Side block; 12. Support leg; 13. Top plate; 2. Distribution pipe; 21. Support frame; 22. First connecting rod; 23. Sealing plate; 24. Foot; 3. Support rod; 31. Storage cylinder; 32. First rotating rod; 33. First air intake pipe; 34. Second air intake pipe; 35. Support plate; 4. Motor; 41. Connecting frame; 42. Side leg; 43. Second rotating rod; 5. Rack; 51. First gear; 52. Third rotating rod; 53. Second gear; 6. Main pulley; 61. Belt; 62. Auxiliary pulley; 7. Rotating block; 71. Support frame; 72. Rotating column; 73. Exhaust plate; 74. Top rod; 75. Bottom leg; 76. Second connecting rod; 77. Top plate; 78. Main magnet; 79. Auxiliary magnet; 8. First guide rod; 81. Second guide rod; 82. Guide ring; 83. Third connecting rod; 9. Support ring; 91. Side rod. Detailed Implementation

[0019] To enable those skilled in the art to understand the technical solution of the present invention more clearly, the present invention will be further described in detail below with reference to the embodiments and accompanying drawings, but the embodiments of the present invention are not limited thereto.

[0020] like Figures 1-11As shown, the heat flow distribution structure of the electronic-grade hydrochloric acid desorption reboiler provided in this embodiment includes a support assembly for supporting the distribution assembly; a distribution assembly for distributing hot gas; a storage assembly for storing and conveying hot gas; a rotating assembly for driving the moving assembly to move, thereby moving the exhaust assembly; a moving assembly for adjusting the position of the exhaust assembly; a transmission assembly that works with the rotating assembly to drive the storage assembly to rotate and cooperate with the distribution assembly to distribute hot gas; an exhaust assembly for adjusting the hot gas exhaust volume; and a guide assembly for guiding and limiting the exhaust assembly.A supporting assembly is used to support the moving assembly. The supporting assembly includes a chassis 1, side blocks 11, support legs 12, and a top plate 13. The side blocks 11 are mounted on the chassis 1, the support legs 12 are mounted on the side blocks 11, and the top plate 13 is mounted on one end of the support legs 12. A distributing assembly includes a distributing pipe 2, a support frame 21, a first connecting rod 22, a sealing plate 23, and a foot 24. The foot 24 is mounted on the side blocks 11, the support frame 21 is mounted on one end of the foot 24, the distributing pipe 2 is mounted on the support frame 21, the sealing plate 23 is mounted on the distributing pipe 2, and the first connecting rod 22 is mounted on the support frame 21. A storage assembly includes a support rod 3, a storage cylinder 31, a first rotating rod 32, a first air inlet pipe 33, a second air inlet pipe 34, and a support plate 35. A storage cylinder 31 is rotatably mounted on a disk 13. A first rotating rod 32 is mounted on the storage cylinder 31. A support rod 3 is mounted on a base 1. A support disk 35 is mounted on the support rod 3. A first air inlet pipe 33 is mounted on the support disk 35. The first air inlet pipe 33 is rotatably connected to a second air inlet pipe 34. An exhaust port is provided on the storage cylinder 31. The rotating assembly includes a motor 4, a connecting frame 41, a side leg 42, and a second rotating rod 43. A side leg 42 is mounted on the top disk 13. A connecting frame 41 is mounted on the side leg 42. A motor 4 is mounted on the connecting frame 41. The output end of the motor 4 is equipped with a second rotating rod 43. The transmission assembly includes a main pulley 6, a belt 61, and an auxiliary pulley 62. The auxiliary pulley 62 is mounted on the second rotating rod 43. The first rotating rod 32 is equipped with... The main pulley 6 is connected to the auxiliary pulley 62 via a belt 61. Hot gas generated by the reboiler is transported through a first air inlet pipe 33 to a second air inlet pipe 34, then to a storage tank 31, and finally to a distribution pipe 2 for distribution. The motor 4 starts, driving the second rotating rod 43 to rotate, which in turn drives the auxiliary pulley 62, which in turn drives the main pulley 6 via the belt 61. The rotation of the main pulley 6 drives the storage tank 31, thereby adjusting the direction of the exhaust port on the storage tank 31, closing one distribution pipe 2, and directing hot gas through the other distribution pipe 2. This allows for the distribution of hot gas without the need for manual intervention. The dispensing direction can be manually adjusted by the operator, which is relatively convenient. A sealing plate 23 seals the exhaust port when the storage cylinder 31 rotates. The base 1, side blocks 11, support legs 12, and top plate 13 work together to support the storage cylinder 31. The base 24, support frame 21, and first connecting rod 22 work together to support the dispensing pipe 2. The support rod 3 and support plate 35 work together to support the first air inlet pipe 33. The first air inlet pipe 33 is rotatably connected to the second air inlet pipe 34 via a bearing. The second rotating rod 43 is rotatably connected to the top plate 13 via a bearing. The side legs 42 and connecting frame 41 work together to support the motor 4.

[0021] In this embodiment, as Figure 1 , Figure 2 , Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 and Figure 11As shown, the moving assembly includes a rack 5, a first gear 51, a third rotating rod 52, and a second gear 53. The first gear 51 is mounted on the second rotating rod 43. The third rotating rod 52 is rotatably mounted on the lifting assembly. The second gear 53, which meshes with the first gear 51, is mounted on the third rotating rod 52. The rack 5, which meshes with the second gear 53, is mounted on the exhaust assembly. The exhaust assembly includes a rotating block 7, a support frame 71, a rotating column 72, an exhaust plate 73, a top rod 74, a bottom leg 75, a second connecting rod 76, a top plate 77, a main magnet 78, and an auxiliary magnet 79. A guide assembly is mounted on the top plate 13. The support frame 71 is mounted on the guide assembly. The rotating block 7 is rotatably mounted on the support frame 71. The rotating column 72 is mounted on the rotating block 7. The support frame 71 is equipped with... The base leg 75 has a top plate 77 mounted on one end, and a second connecting rod 76 mounted on the top plate 77. One end of the second connecting rod 76 is connected to the rack 5. A top rod 74 is mounted on the rotating column 72, and an exhaust plate 73 is mounted on the top rod 74. An auxiliary magnet 79 is mounted on the rotating block 7, and a main magnet 78 that cooperates with the auxiliary magnet 79 is mounted on the support frame 71. The guide assembly includes a first guide rod 8, a second guide rod 81, a guide ring 82, and a third connecting rod 83. The second guide rod 81 is mounted on the top plate 13, and the first guide rod 8 is mounted on the distribution pipe 2. Guide rings 82 are slidably mounted on both the first guide rod 8 and the second guide rod 81, and a third connecting rod 83 is mounted on the guide ring 82. One end of the third connecting rod 83 is connected to the support frame 71. Next, the lifting assembly includes a support ring 9 and a side rod 91. The side rod 91 is mounted on the chassis 1, and the support ring 9 is mounted on one end of the side rod 91. A third rotating rod 52 is rotatably mounted on the support ring 9. When the motor 4 starts, it can drive the second rotating rod 43 to rotate. When the second rotating rod 43 rotates, it can drive the first gear 51 to rotate, which in turn can drive the second gear 53 to rotate. When the second gear 53 rotates, it can drive the rack 5 to move, which in turn can drive the support frame 71 to slide. This allows the adjusted exhaust plate 73 to slide into the open distribution pipe 2, and the exhaust plate 73 to slide out of the closed distribution pipe 2. Rotating the exhaust plate 73 causes the rotating block 7 to rotate on the support frame 71, which in turn drives the rotating column 72 to rotate, allowing for adjustment of different air outlet sizes. The exhaust plate 73, with an inch in diameter, can be limited after rotation by the cooperation of the auxiliary magnet 79 and the main magnet 78, thus facilitating the adjustment of the exhaust volume. It can also move the exhaust plate 73 while rotating the storage cylinder 31, shortening working time, improving work efficiency, and reducing production costs by eliminating the need for multiple drive components. The top plate 77, bottom leg 75, and support frame 71 cooperate to support the rotating column 72. The second connecting rod 76 supports the rack 5, and the top rod 74 supports the exhaust plate 73. The guide ring 82 slides on the first guide rod 8 and the second guide rod 81, guiding and limiting the support frame 71.By configuring the side rod 91 and the support ring 9 to cooperate with each other, the third rotating rod 52 can be supported. The third rotating rod 52 is rotatably connected to the support ring 9 via a bearing.

[0022] In this embodiment, as Figures 1-6 As shown in the figure, the working process of the heat flow distribution structure of the electronic-grade hydrochloric acid desorption reboiler provided in this embodiment is as follows: Step 1: The hot gas generated by the reboiler is transported through the first air inlet pipe 33 to the second air inlet pipe 34, then through the second air inlet pipe 34 to the storage cylinder 31, and finally through the storage cylinder 31 to the distribution pipe 2 for distribution. Step 2: When it is necessary to adjust the exhaust position and exhaust volume, the motor 4 starts and drives the second rotating rod 43 to rotate, which in turn drives the auxiliary pulley 62 to rotate. Through the belt 61, the main pulley 6 rotates, which in turn drives the storage cylinder 31 to rotate, thereby adjusting the direction of the exhaust port on the storage cylinder 31, closing one of the distribution pipes 2, and delivering the hot air through the other distribution pipe 2 to distribute the hot air. When the motor 4 starts, it drives the second rotating rod 43 to rotate. When the second rotating rod 43 rotates, it drives the first gear 51 to rotate, which in turn drives the second gear 53 to rotate. When the second gear 53 rotates, it drives the rack 5 to move, which in turn drives the support frame 71 to slide. The exhaust plate 73 after adjustment is slid into the open distribution pipe 2, and the exhaust plate 73 in the closed distribution pipe 2 is slid out. Rotating the exhaust plate 73 causes the rotating block 7 to rotate on the support frame 71, which in turn drives the rotating column 72 to rotate, thereby adjusting the exhaust plate 73 with different exhaust port sizes, and thus adjusting the exhaust volume.

[0023] In summary, in this embodiment, according to the heat flow distribution structure of the electronic-grade hydrochloric acid desorption reboiler, by setting the first inlet pipe 33, the hot gas generated by the reboiler is transported to the second inlet pipe 34 through the first inlet pipe 33, then to the storage cylinder 31 through the second inlet pipe 34, and finally to the distribution pipe 2 through the storage cylinder 31 for distribution. The motor 4 starts and drives the second rotating rod 43 to rotate, which in turn drives the auxiliary pulley 62 to rotate. The belt 61 then drives the main pulley 6 to rotate. The rotation of the main pulley 6 drives the storage cylinder 31 to rotate, thereby adjusting the direction of the exhaust port on the storage cylinder 31, closing one of the distribution pipes 2, and transporting the hot gas through the other distribution pipe 2, thus enabling the distribution of the hot gas. The system operates automatically without requiring manual adjustment of the distribution direction, making adjustment convenient. A sealing plate 23 seals the exhaust port when the storage cylinder 31 rotates. The base 1, side blocks 11, support legs 12, and top plate 13 work together to support the storage cylinder 31. The base feet 24, support frame 21, and first connecting rod 22 work together to support the distribution pipe 2. The support rod 3 and support plate 35 work together to support the first air inlet pipe 33. The first air inlet pipe 33 is rotatably connected to the second air inlet pipe 34 via bearings. The second rotating rod 43 is rotatably connected to the top plate 13 via bearings. The side legs 42 and connecting frame 41 work together to facilitate motor operation. 4 provides support. When motor 4 starts, it drives the second rotating rod 43 to rotate. When the second rotating rod 43 rotates, it drives the first gear 51 to rotate, which in turn drives the second gear 53 to rotate. When the second gear 53 rotates, it drives the rack 5 to move, which in turn drives the support frame 71 to slide. This allows the adjusted exhaust plate 73 to slide into the open distribution pipe 2, and the exhaust plate 73 to slide out of the closed distribution pipe 2. Rotating the exhaust plate 73 causes the rotating block 7 to rotate on the support frame 71, which in turn drives the rotating column 72 to rotate. This allows for the adjustment of the exhaust plate 73 with different outlet sizes. By setting the auxiliary magnet 79 to cooperate with the main magnet 78, the rotated exhaust plate 73 can be limited, thus facilitating adjustment. The large exhaust volume, and the ability to move the exhaust plate 73 while rotating the storage cylinder 31, can shorten working time, improve work efficiency, and reduce production costs by eliminating the need for multiple drive components. The top plate 77, bottom leg 75, and support frame 71 work together to facilitate support for the rotating column 72. The second connecting rod 76 facilitates support for the rack 5. The top rod 74 supports the exhaust plate 73. The guide ring 82 slides on the first guide rod 8 and the second guide rod 81 to guide and limit the support frame 71. The side rod 91 and the support ring 9 work together to support the third rotating rod 52, which is rotatably connected to the support ring 9 via a bearing.

[0024] If certain terms are used in the specification and claims to refer to specific components, those skilled in the art will understand that hardware manufacturers may use different names to refer to the same component. This specification and claims do not distinguish components based on differences in name, but rather on differences in function. The term "comprising" as used throughout the specification and claims is an open-ended term and should be interpreted as "comprising but not limited to." "Approximately" means that within an acceptable margin of error, those skilled in the art can solve the technical problem and substantially achieve the technical effect within a certain margin of error.

[0025] It should be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a product or system comprising a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a product or system. Without further limitation, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the product or system that includes that element.

[0026] The foregoing description illustrates and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the inventive concept described herein through the foregoing teachings or techniques or knowledge in related fields. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention should be within the protection scope of the appended claims.

Claims

1. A heat flow distribution structure for an electronic-grade hydrochloric acid desorption reboiler, characterized in that, include Support components, used to support the distribution components; Distribution components are used to distribute hot air; Storage components for storing and transporting hot gas; A rotating component is used to drive a moving component to move, thereby moving the exhaust component; A movable component for adjusting the position of the exhaust assembly; The transmission component, in conjunction with the rotating component, drives the storage component to rotate, and in conjunction with the distribution component, distributes the hot air. Exhaust assembly, used to regulate the amount of hot air exhausted; Guide assembly, used to guide and limit the exhaust assembly; A supporting assembly for supporting a moving component; the supporting assembly includes a chassis, side blocks, support legs, and a top plate. The side blocks are mounted on the chassis, and the support legs are mounted on the side blocks. The top plate is mounted at one end of each support leg. A distributing assembly includes a distributing pipe, a support frame, a first connecting rod, a sealing plate, and a base. The base is mounted on the side blocks, and the support frame is mounted at one end of each base. The distributing pipe is mounted on the support frame, and the sealing plate is mounted on the distributing pipe. The first connecting rod is mounted on the support frame. The storage component... The system includes a support rod, a storage cylinder, a first rotating rod, a first air inlet pipe, a second air inlet pipe, and a support plate. The storage cylinder is rotatably mounted on the top plate, and the first rotating rod is mounted on the storage cylinder. The support rod is mounted on the bottom plate, and the support plate is mounted on the support rod. The first air inlet pipe is rotatably connected to the second air inlet pipe. An exhaust port is provided on the storage cylinder. The rotating assembly includes a motor, a connecting frame, side legs, and a second rotating rod. The side legs are mounted on the top plate, and a connecting frame is mounted on the side legs. The frame includes a motor mounted on the connecting frame, a second rotating rod mounted on the output end of the motor, a moving component including a rack, a first gear, a third rotating rod, and a second gear, with the first gear mounted on the second rotating rod. A third rotating rod is rotatably mounted on the lifting component, with a second gear meshing with the first gear on the third rotating rod. A rack meshing with the second gear is mounted on the exhaust component. The exhaust component includes a rotating block, a support frame, a rotating column, an exhaust plate, a top rod, a bottom leg, a second connecting rod, a top plate, a main magnet, and an auxiliary magnet. A guide component is mounted on the top plate, a support frame is mounted on the guide component, a rotating block is rotatably mounted on the support frame, a rotating column is mounted on the rotating block, a bottom leg is mounted on the support frame, a top plate is mounted at one end of the bottom leg, a second connecting rod is mounted on the top plate, one end of the second connecting rod is connected to the rack, a top rod is mounted on the rotating column, an exhaust plate is mounted on the top rod, an auxiliary magnet is mounted on the rotating block, and a main magnet that cooperates with the auxiliary magnet is mounted on the support frame.

2. The heat flow distribution structure of an electronic-grade hydrochloric acid desorption reboiler according to claim 1, characterized in that, The transmission assembly includes a main pulley, a belt, and an auxiliary pulley. The auxiliary pulley is mounted on the second rotating rod, and the main pulley is mounted on the first rotating rod. The main pulley is connected to the auxiliary pulley via a belt.

3. The heat flow distribution structure of an electronic-grade hydrochloric acid desorption reboiler according to claim 2, characterized in that, The guiding assembly includes a first guide rod, a second guide rod, a guide ring, and a third connecting rod. The second guide rod is mounted on the top plate, and the first guide rod is mounted on the distribution pipe. Guide rings are slidably mounted on both the first and second guide rods. The third connecting rod is mounted on the guide ring, and one end of the third connecting rod is connected to the support frame.

4. The heat flow distribution structure of an electronic-grade hydrochloric acid desorption reboiler according to claim 3, characterized in that, The lifting assembly includes a support ring and a side rod. The side rod is mounted on the chassis, and the support ring is mounted on one end of the side rod. A third rotating rod is rotatably mounted on the support ring.

Citation Information

Patent Citations

  • Water treatment tubular mixer

    CN119186301A

  • Pressurized fluid dispenser

    CN85108663A