Rotatable header for factory production of fluids

CN224767503UActive Publication Date: 2026-09-18HARBIN MODERN SOOT BLOWING TECH CO LTD
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Patent Information

Application Number
CN202520904548.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2026-09-18
Estimated Expiration
2035-05-08

AI Technical Summary

Technical Problem

[0003]现有集箱在实际使用时,如集箱处于工业环境中,火灾是一种潜在的重大安全隐患,一旦发生火灾,周围的高温和火焰极易对集箱造成损害,导致集箱内的流体温度异常升高,进而可能引发流体泄漏、爆炸等严重的安全事故,给工业生产和人员安全带来巨大威胁,因此需要提供一种基于工厂生产流体用可旋转集箱,能够有效阻止火焰蔓延,减少外界高温对箱体内流体的影响,提高集箱的安全性

Benefits of technology

本实用新型,通过在箱体的外部设有阻燃板,立板插入插槽一的内部,插块插入插槽二的内部,通过导向环在导向杆的外部进行上下移动,将压框移动至下部,使得内槽压至在立板外表面的上部,对安装后的阻燃板进行加固,而阻燃板包覆在箱体的外表面,采用阻燃材料制成,能够有效阻止火焰蔓延,防止箱体直接接触火源,而隔热层设置在阻燃板的外侧,采用隔热材料制成,能够减少外界高温对箱体内流体的影响,有效阻止火焰蔓延,减少外界高温对箱体内流体的影响,提高集箱的安全性。

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Abstract

The utility model discloses a rotatable collecting tank based on factory production fluid, include: support part, support part includes box and base, and the base sets up at the bottom of box, fire -retardant part, fire -retardant part includes fire -retardant board, upper support frame, riser, pressure frame, slot no.
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Description

Technical Field

[0001] This utility model relates to the field of header technology, specifically to a rotatable header for fluid production in a factory. Background Technology

[0002] A header, as a key component in industrial production and energy systems, is a container specifically designed to collect and distribute various fluids. In chemical production processes, headers can collect and redistribute fluids generated at different reaction stages, ensuring the continuity and stability of production.

[0003] In practical use, if the existing header is located in an industrial environment, fire is a potentially major safety hazard. Once a fire occurs, the surrounding high temperature and flames can easily damage the header, causing the fluid temperature inside the header to rise abnormally. This can lead to serious safety accidents such as fluid leakage and explosion, posing a huge threat to industrial production and personnel safety. Therefore, there is a need to provide a rotatable header for factory production fluids that can effectively prevent the spread of flames, reduce the impact of external high temperatures on the fluid inside the header, and improve the safety of the header. Utility Model Content

[0004] The purpose of this invention is to provide a rotatable header for fluid production in a factory, thereby solving the problems mentioned in the background section. To solve these technical problems, this invention is achieved through the following technical solution: This utility model is a rotatable header for fluid production in a factory, comprising: A support component, comprising a housing and a base, wherein the base is disposed at the bottom of the housing; The flame-retardant component includes a flame-retardant plate, an upper support frame, a vertical plate, a pressure frame, a slot 1, and an inner groove. The upper support frame is welded to the upper part of the outer surface of the box. The slot 1 is opened inside the support frame. The flame-retardant plate surrounds the outer surface of the box. The vertical plate is fixed to the top of the flame-retardant plate and inserted into the slot 1. The pressure frame is set on the upper surface of the box. The inner groove is opened inside the pressure frame and pressed against the upper part of the outer surface of the vertical plate.

[0005] Furthermore, the flame-retardant component also includes a guide rod, a limiting disc, and a guide ring. The guide rod is fixed to the top of the upper support frame, the guide ring is fixed to the top of the pressure frame and is movably connected to the outer surface of the guide rod, and the limiting disc is fixed to the top of the guide rod.

[0006] Furthermore, it also includes a fixing component, which includes an insert block, a lower support frame, and a second slot. The insert block is fixed to the bottom of the flame-retardant plate, the lower support frame is welded to the lower part of the outer surface of the box, and the second slot is opened inside the lower support frame. The insert block is inserted and connected inside the second slot.

[0007] Furthermore, a side plate is fixedly connected to one end of the outer surface of the pressure frame, an internal threaded ring is fixed to the top of the side plate, a threaded rod is threadedly connected to the middle of the internal threaded ring, and a handle is rotatably connected to the top of the threaded rod.

[0008] Furthermore, it includes a rotating component, which includes a gear ring, a gear disk one, a gear groove, a gear disk two, and a gear block. The gear ring and the gear disk one are both disposed on the inner surface of the base. The gear groove is formed on the inner wall of the gear ring and the outer wall of the gear disk one. The gear disk two is installed between the gear ring and the gear disk one. The gear block is fixed on the outer wall of the gear disk two and is engaged with the inside of the gear groove.

[0009] Furthermore, the rotating component also includes a turntable one and a turntable two, with the turntable one being driven and connected to the bottom of the geared disc one, and the turntable two being driven and connected to the bottom of the geared disc two.

[0010] Furthermore, a support frame is rotatably connected to the bottom of the second turntable, and the support frame is rotatably connected between the bottom of the box and the second turntable, while the column is fixed to the bottom of the first turntable.

[0011] This utility model has the following beneficial effects: This invention features a flame-retardant plate on the outside of the container. A vertical plate is inserted into slot one, and a plug is inserted into slot two. A guide ring moves up and down outside the guide rod, moving the pressure frame to the lower part, causing the inner groove to press against the upper part of the outer surface of the vertical plate, thus reinforcing the installed flame-retardant plate. The flame-retardant plate, made of flame-retardant material, covers the outer surface of the container and effectively prevents the spread of flames, preventing the container from directly contacting a fire source. A heat insulation layer, made of heat-insulating material, is placed on the outside of the flame-retardant plate, reducing the impact of high external temperatures on the fluid inside the container, effectively preventing the spread of flames, reducing the impact of high external temperatures on the fluid inside the container, and improving the safety of the container.

[0012] Based on the aforementioned beneficial effects, by having a toothed ring, a toothed disc one, and a toothed disc two respectively installed inside the base, the motor drives the first and second discs to rotate. The first and second discs rotate simultaneously, and the toothed blocks correspond to the inside of the toothed grooves in sequence, causing the second disc to rotate between the toothed ring and the first disc. The top box rotates at the same time, allowing the box to rotate 360 ​​degrees. The direction of fluid distribution and collection can be adjusted at any time according to production needs, adapting to various complex working conditions and greatly improving the flexibility of production. Attached Figure Description

[0013] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0014] Figure 1 This is a schematic diagram of the overall housing of this utility model; Figure 2 This is a side view of the box body after the pressure frame of this utility model has been extended; Figure 3 This is a schematic diagram of the pressure plate of this utility model; Figure 4 This is a schematic diagram of the bottom of the box body of this utility model.

[0015] The attached diagram lists the components represented by each number as follows: 100. Box body; 101. Base; 200. Flame-retardant board; 201. Upper support frame; 202. Vertical plate; 203. Pressure frame; 204. Guide rod; 205. Slot 1; 206. Inner groove; 207. Limiting plate; 208. Guide ring; 300. Insert block; 301. Lower support frame; 302. Slot 2; 303. Handle; 304. Side plate; 305. Internal threaded ring; 306. Threaded rod; 400. Gear ring; 401. Gear disc one; 402. Gear groove; 403. Column; 404. Support frame; 405. Turntable one; 406. Gear disc two; 407. Gear block; 407. Turntable two. Detailed Implementation

[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0017] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.

[0018] Please see Figure 1-3 As shown, this utility model is a rotatable header for fluid production in a factory, comprising: A support component, the support component including a housing 100 and a base 101, the base 101 being disposed at the bottom of the housing 100; The flame-retardant component includes a flame-retardant plate 200, an upper support frame 201, a vertical plate 202, a pressure frame 203, a slot 205, and an inner groove 206. The upper support frame 201 is welded to the upper part of the outer surface of the box 100. The slot 205 is opened inside the support frame. The flame-retardant plate 200 surrounds the outer surface of the box 100. The vertical plate 202 is fixed to the top of the flame-retardant plate 200 and inserted into the slot 205. The pressure frame 203 is set on the upper surface of the box 100. The inner groove 206 is opened inside the pressure frame 203 and presses against the upper part of the outer surface of the vertical plate 202. The flame-retardant board 200 is wrapped around the outer surface of the box 100 and is made of flame-retardant material. It can effectively prevent the spread of flames and prevent the box 100 from directly contacting the fire source. The heat insulation layer is set on the outside of the flame-retardant board 200 and is made of heat insulation material. It can reduce the impact of external high temperature on the fluid inside the box 100 and effectively prevent the spread of flames and reduce the impact of external high temperature on the fluid inside the box 100.

[0019] The flame-retardant component also includes a guide rod 204, a limiting disc 207, and a guide ring 208. The guide rod 204 is fixed to the top of the upper support frame 201, the guide ring 208 is fixed to the top of the pressure frame 203 and is movably connected to the outer surface of the guide rod 204, and the limiting disc 207 is fixed to the top of the guide rod 204. The guide ring 208 moves up and down outside the guide rod 204, moving the pressure frame 203 to the lower part, so that the inner groove 206 is pressed onto the upper part of the outer surface of the upright plate 202, thus reinforcing the installed flame retardant plate 200.

[0020] It also includes a fixing component, which includes a plug 300, a lower support frame 301 and a second slot 302. The plug 300 is fixed to the bottom of the flame-retardant plate 200, the lower support frame 301 is welded to the lower part of the outer surface of the box 100, and the second slot 302 is opened inside the lower support frame 301. The plug 300 is inserted and connected to the inside of the second slot 302. After the upright plate 202 is fixed inside the slot 1 205, its insert block 300 is simultaneously inserted into the slot 2 302 for fixation.

[0021] A side plate 304 is fixedly connected to one end of the outer surface of the pressure frame 203. An internal threaded ring 305 is fixed to the top of the side plate 304. A threaded rod 306 is threadedly connected to the middle of the internal threaded ring 305. A handle 303 is rotatably connected to the top of the threaded rod 306. Turning the handle 303 drives the threaded rod 306 to rotate, causing the threaded rod 306 to clamp onto the top of the housing 100, further reinforcing the pressure frame 203.

[0022] The working principle is as follows: During installation, the insert block 300 is precisely inserted into the slot 302. At the same time, the guide ring 208 moves smoothly up and down along the outside of the guide rod 204. With the help of this guide structure, the pressure frame 203 can move accurately and smoothly to the lower position. When the pressure frame 203 reaches the designated position, its inner groove 206 will be tightly pressed against the upper part of the outer surface of the upright plate 202, achieving initial positioning and fixation. To further reinforce the installed flame-retardant plate 200, the operator turns the handle 303. The handle 303 is connected to the threaded rod 306. The rotation of the handle 303 will drive the threaded rod 306 to rotate synchronously. As the threaded rod 306 rotates, it will gradually move downward and tightly clamp onto the top of the box 100. In this way, reliable pressure is applied to the flame-retardant plate 200, thereby ensuring that the flame-retardant plate 200 remains stable during the operation of the container and will not be displaced due to external forces or vibrations. The flame-retardant plate 200 tightly covers the outer surface of the container 100. The flame-retardant plate 200 is made of special flame-retardant material. When dangerous situations such as fire occur in the surrounding environment, this flame-retardant material can exert its unique performance to effectively prevent the spread of flames and prevent the container 100 from directly contacting the fire source, thereby reducing the threat of fire to the container 100 from the source. The heat insulation layer is set on the outside of the flame-retardant plate 200 and uses high-efficiency heat insulation material. During the transmission of high temperatures in the external environment, the heat insulation layer can play its heat insulation role, greatly reducing the conduction of heat into the container 100.

[0023] Please see Figure 1 , Figure 4 As shown, this embodiment, based on the above embodiment, further includes: A rotating component, comprising a gear ring 400, a first gear disc 401, a gear groove 402, a second gear disc 406, and a gear block 407. The gear ring 400 and the first gear disc 401 are both disposed on the inner surface of the base 101. The gear groove 402 is formed on the inner wall of the gear ring 400 and the outer wall of the first gear disc 401. The second gear disc 406 is installed between the gear ring 400 and the first gear disc 401. The gear block 407 is fixed on the outer wall of the second gear disc 406 and is engaged with the inside of the gear groove 402. When the motor runs, it drives turntable 405 and turntable 408 to rotate. Gear 401 and gear 406 rotate simultaneously. Through the tooth blocks 407 corresponding to the inside of the tooth grooves 402, the gear 406 is driven to rotate between the tooth ring 400 and gear 401. The top housing 100 rotates at the same time, so that the housing 100 can rotate 360 ​​degrees.

[0024] The rotating component also includes turntable 405 and turntable 408, with turntable 405 being driven to the bottom of gear disc 401 and turntable 408 being driven to the bottom of gear disc 406.

[0025] A support frame 404 is rotatably connected to the bottom of turntable 2 408. The support frame 404 is rotatably connected between the bottom of the box 100 and turntable 2 408. The column 403 is fixed to the bottom of turntable 1 405. The support frame 404 is positioned between the bottom of the housing 100 and the turntable 408, providing support.

[0026] Working principle: After the first motor is turned on, its output shaft drives the connected turntable 405 to rotate. Since turntable 405 and turntable 408 are connected by a specific mechanical connection structure, the rotation of turntable 405 is synchronously transmitted to turntable 408, causing turntable 408 to rotate as well. During the rotation of turntable 405 and turntable 408, they respectively drive the coaxially mounted gear discs 401 and 406 to rotate synchronously. Gear disc 406 has evenly distributed tooth blocks 407, which are sequentially embedded in the tooth grooves 402 of gear disc 406. This precise meshing of tooth blocks 407 and tooth grooves 402 forms a stable transmission relationship, enabling the housing 100 to rotate 360 ​​degrees in all directions. The rotation angle of the housing 100 can be adjusted at any time according to production needs, greatly improving the flexibility of the production process.

[0027] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.

Claims

1. A rotatable header for use in the production of a fluid by a factory, characterised in that, include: A support component, the support component including a housing (100) and a base (101), the base (101) being disposed at the bottom of the housing (100); The flame-retardant component includes a flame-retardant plate (200), an upper support frame (201), a vertical plate (202), a pressure frame (203), a slot one (205), and an inner groove (206). The upper support frame (201) is welded to the upper part of the outer surface of the box (100). The slot one (205) is opened inside the support frame. The flame-retardant plate (200) surrounds the outer surface of the box (100). The vertical plate (202) is fixed to the top of the flame-retardant plate (200) and inserted into the inside of the slot one (205). The pressure frame (203) is set on the upper surface of the box (100). The inner groove (206) is opened inside the pressure frame (203) and pressed onto the upper part of the outer surface of the vertical plate (202).

2. The rotatable header for factory production fluids according to claim 1, characterized in that: The flame-retardant component also includes a guide rod (204), a limiting plate (207), and a guide ring (208). The guide rod (204) is fixed to the top of the upper support frame (201), the guide ring (208) is fixed to the top of the pressure frame (203) and is movably connected to the outer surface of the guide rod (204), and the limiting plate (207) is fixed to the top of the guide rod (204).

3. The rotatable header for use in connection with a plant production fluid in accordance with claim 1, wherein: It also includes a fixing component, which includes a plug (300), a lower support frame (301) and a second slot (302). The plug (300) is fixed to the bottom of the flame-retardant plate (200), the lower support frame (301) is welded to the lower part of the outer surface of the box (100), and the second slot (302) is opened inside the lower support frame (301). The plug (300) is inserted and connected to the inside of the second slot (302).

4. The rotatable header for use in connection with a plant produced fluid as defined in claim 3, wherein: One end of the outer surface of the pressure frame (203) is fixedly connected to a side plate (304), and an internal threaded ring (305) is fixed to the top of the side plate (304). A threaded rod (306) is threadedly connected to the middle of the internal threaded ring (305), and a handle (303) is rotatably connected to the top of the threaded rod (306).

5. The rotatable header for use in connection with a plant production fluid in accordance with claim 1, wherein: It also includes a rotating component, which includes a toothed ring (400), a toothed disc one (401), a toothed groove (402), a toothed disc two (406), and a toothed block (407). The toothed ring (400) and the toothed disc one (401) are both disposed on the inner surface of the base (101). The toothed groove (402) is formed on the inner wall of the toothed ring (400) and the outer wall of the toothed disc one (401). The toothed disc two (406) is installed between the toothed ring (400) and the toothed disc one (401). The toothed block (407) is fixed on the outer wall of the toothed disc two (406) and is engaged with the inside of the toothed groove (402).

6. The rotatable header for use in factory produced fluids of claim 5, wherein: The rotating component also includes a turntable one (405) and a turntable two (408), the turntable one (405) being driven to the bottom of the gear disc one (401), and the turntable two (408) being driven to the bottom of the gear disc two (406).

7. The rotatable header for use in connection with a plant produced fluid as defined in claim 6, wherein: The bottom of the second turntable (408) is rotatably connected to a support frame (404), which is rotatably connected between the bottom of the box (100) and the second turntable (408). The column (403) is fixed to the bottom of the first turntable (405).