A fire extinguishing capsule, its preparation method, and its distilled water washing equipment

By designing the composition of the extinguishing capsule core and shell, and the distilled water washing equipment, the applicability of the fire extinguishing capsule cleaning equipment in a wide range of fire extinguishing areas has been solved, realizing efficient fire extinguishing capsule cleaning and assembly line production.

CN118001672BActive Publication Date: 2026-05-26LIANJIE (ANHUI) INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
LIANJIE (ANHUI) INTELLIGENT TECH CO LTD
Filing Date
2024-03-12
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing fire extinguishing capsule cleaning equipment is difficult to apply to large-scale fire extinguishing areas, and traditional ultrasonic and agitation cleaning methods are not suitable for large-scale assembly line production.

Method used

By using distilled water washing equipment, and by designing the composition and preparation methods of the capsule core and shell, combined with agitation and water spraying components, efficient cleaning of the fire extinguishing capsule can be achieved.

Benefits of technology

The prepared fire extinguishing capsules are of a suitable size for large-scale fire extinguishing areas, have good cleaning effects, are suitable for assembly line production, and avoid material jamming.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a fire extinguishing capsule, its preparation method, and a distilled water washing device, belonging to the technical field of fire extinguishing capsules. It includes a housing, a protective cover, a drain pipe, and a water spray assembly. The discharge end of the housing is fixedly equipped with a discharge assembly for discharging the washed fire extinguishing capsule and for guiding fire extinguishing capsules stuck in a perforated drive assembly. Inside the housing is a perforated drive assembly for conveying the fire extinguishing capsule to the bottom of the water spray assembly. The protective cover is equipped with a turning assembly for turning the fire extinguishing capsule. Through the above methods, the fire extinguishing capsule prepared by this invention has a larger volume and can be better applied to some large-area fire extinguishing areas. This invention provides a good washing effect for the fire extinguishing capsule, and the turning assembly further improves the washing effect. This invention can push fire extinguishing capsules stuck in gaps, achieving a guiding effect and preventing fire extinguishing capsules from getting stuck in the perforated drive assembly and unable to be discharged.
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Description

Technical Field

[0001] This invention relates to the field of fire extinguishing capsule technology, specifically to a fire extinguishing capsule, its preparation method, and its distilled water washing equipment. Background Technology

[0002] Fire extinguishing capsules are fire extinguishing substances that encapsulate fire extinguishing agents within capsules. By evenly distributing these capsules over fire-prone areas, they can effectively extinguish fires.

[0003] During the production of fire extinguishing capsules, the formed capsules typically need to be cleaned using water washing equipment. Currently, fire extinguishing capsules are generally small in size, making them unsuitable for large-scale fire suppression areas.

[0004] Currently, there are many devices on the market for cleaning capsule products. For example, invention patent CN110976400A discloses a soft capsule cleaning device that combines ultrasonic and stirring functions to clean capsule products.

[0005] However, the above-mentioned device has the following problems: it uses ultrasonic and stirring cleaning methods, and the product still needs to be separated from water after cleaning, which is not conducive to cleaning large-scale production line products.

[0006] Based on this, the present invention designs a fire extinguishing capsule, its preparation method, and a distilled water washing device to solve the above problems. Summary of the Invention

[0007] In view of the above-mentioned shortcomings of the existing technology, the present invention provides a fire extinguishing capsule, a method for preparing the same, and a distilled water washing device.

[0008] To achieve the above objectives, the present invention provides the following technical solution:

[0009] A fire extinguishing capsule comprises the following raw materials in weight percentages: 70.6-85.3% capsule core, with the remainder being capsule shell;

[0010] The core comprises the following raw materials by weight percentage: 38-43% dodecafluoro-2-methyl-3-pentanone, 21.2-24.9% methyl acrylate, 9-10.8% silicone resin, 18-21.4% cyclodextrin, and the balance being nano-sized silica.

[0011] The shell comprises the following raw materials by weight percentage: 63-72% high-density polyethylene, 2-7% silicone oil, 8-11% ceramic powder, 5-8% talc powder, and the balance being additives.

[0012] A method for preparing the aforementioned fire extinguishing capsule includes the following steps:

[0013] I. Preparation of the capsule core;

[0014] Dodecyl-2-methyl-3-pentanone, methyl acrylate, silicone resin and nano-sized silica are mixed. Cyclodextrin is added to the mixture in multiple portions while stirring. The mixture is stirred at 35-44°C for 1-4 hours, then cooled to below 5°C and stirred for another 25-30 minutes.

[0015] II. Preparation of capsule shell fluid;

[0016] Mix high-density polyethylene, silicone oil, ceramic powder, talc powder and additives, and stir at 120-132°C for 20-35 minutes.

[0017] III. Core encapsulation of capsule shell fluid;

[0018] The capsule core prepared in step one is placed in the capsule shell liquid to cover the capsule shell liquid, and then placed at 20-25℃ to cool and solidify.

[0019] Fourth, the preliminarily formed fire extinguishing capsules are transported to a distilled water washing device for further cooling and rinsing to remove impurities adhering to the surface.

[0020] Furthermore, in step one, the temperature is lowered to below 4°C using ice water.

[0021] A distilled water washing device for producing fire extinguishing capsules, comprising a housing;

[0022] A protective cover is fixedly installed on the upper end of the box;

[0023] The discharge end of the box is fixedly equipped with a discharge component for discharging the cleaned fire extinguishing capsules and for guiding the fire extinguishing capsules stuck on the hollow drive assembly.

[0024] A drain pipe for discharging cleaning wastewater is fixedly installed on the box body;

[0025] The interior of the housing is equipped with a hollow drive assembly for conveying the fire extinguishing capsule to the bottom of the water spray assembly;

[0026] The protective cover is equipped with a water spray assembly for cleaning the fire extinguishing capsule.

[0027] The protective cover is equipped with a turning component for turning the fire extinguishing capsule.

[0028] The flipping assembly includes a drive assembly, a synchronous rotation assembly, and a toggle assembly; the drive assembly is mounted on a protective cover and is connected to the synchronous rotation assembly, which is equipped with multiple toggle assemblies.

[0029] Furthermore, the drive assembly includes a second motor and a synchronous belt assembly; the second motor is fixedly mounted on the outer wall of the protective cover, and the drive end of the second motor is fixedly connected to a synchronous pulley A of the synchronous belt assembly.

[0030] Furthermore, the synchronous rotation assembly includes a straight shaft and synchronous pulleys; two sets of side plates are fixedly connected to the front and rear inner walls of the protective cover, and a straight shaft is rotatably installed between the side plates on the same side. The synchronous belt assembly is rotatably installed on one side plate, and multiple sets of synchronous pulleys are fixedly installed on the front and rear straight shafts respectively, and the front and rear sets of synchronous pulleys are connected by a toggle assembly.

[0031] Furthermore, the actuation assembly includes paddles and a timing belt; the front and rear sets of timing pulleys are connected by a timing belt drive, and several sets of paddles are fixedly connected at equal intervals on the outer wall of the timing belt.

[0032] Furthermore, it also includes support rollers; multiple sets of support rollers are rotatably connected inside the protective cover, and the support rollers are located inside the hollowing drive assembly and are in contact with the inner top of the hollowing drive assembly.

[0033] Furthermore, the hollow drive assembly includes a rotating disk, a groove, a first motor, a first horizontal shaft, a connecting block, and a second horizontal shaft. The first motor is fixedly installed on the outer wall of the housing. The second horizontal shaft is rotatably installed on both the left and right ends inside the housing. Two sets of corresponding rotating disks are fixedly connected to each second horizontal shaft. Multiple sets of grooves that fit into the first horizontal shaft are evenly opened on the circumference of the rotating disk. The drive end of the first motor is fixedly connected to one of the sets of second horizontal shafts. Several sets of first horizontal shafts are connected to each other by several sets of connecting blocks. The two ends of the connecting blocks are rotatably connected to the adjacent first horizontal shafts. Several sets of first horizontal shafts and several sets of connecting blocks form a ring structure. The front and rear ends of several sets of first horizontal shafts located on the left and right sides are movably embedded into the grooves of the rotating disks.

[0034] Furthermore, the discharge assembly includes an inclined guide chute, a discharge port, a support frame, a spiral spring, a third horizontal shaft, and a push block; the discharge end of the box is provided with a discharge port, and an inclined guide chute is fixedly connected to one end of the box near the discharge port. A support frame is fixedly connected to the inner wall of the box, and a third horizontal shaft is rotatably connected to the support frame. A spiral spring is installed on the third horizontal shaft, and the inner and outer ends of the spiral spring are fixedly connected to the third horizontal shaft and the support frame, respectively. Multiple sets of push blocks are fixedly connected at equal intervals on the third horizontal shaft, and the push blocks are located in the gaps between adjacent connecting blocks.

[0035] Beneficial effects

[0036] The fire extinguishing capsule prepared by this invention has a larger volume (about 1.3 cm in diameter and about 2.5 cm in length), which makes it more suitable for some large-scale fire extinguishing areas.

[0037] The second motor of this invention drives the synchronous belt assembly to rotate, which in turn drives a straight shaft to rotate. The straight shaft drives a synchronous pulley to rotate, and the synchronous pulley drives another synchronous pulley to rotate through a toggle assembly. This allows the toggle assembly to rotate and flip the fire extinguishing capsule, thus cleaning the surface of other parts of the fire extinguishing capsule. The upper part of the hollow drive assembly is moved and supported by a support roller to prevent large deformation of the upper part of the hollow drive assembly when the fire extinguishing capsule is heavy, which would affect the cleaning effect.

[0038] In this invention, several sets of first horizontal shafts are connected by several sets of connecting blocks, and the two ends of the connecting blocks are rotatably connected to the adjacent first horizontal shafts respectively; the several sets of first horizontal shafts and the several sets of connecting blocks form a ring structure, and the front and rear ends of the several sets of first horizontal shafts located on the left and right sides are movably embedded and connected to the grooves of the rotating disk respectively; the fire extinguishing capsule is placed on the upper part of the gap formed by the combination of the first horizontal shaft and the connecting blocks; the first motor drives the second horizontal shaft to rotate, the second horizontal shaft drives the rotating disk to rotate, the rotating disk drives the first horizontal shaft to move through the groove, the first horizontal shaft drives the connecting blocks to move, and thus drives the fire extinguishing capsule to move.

[0039] In this invention, distilled water enters through the inlet pipe, passes through the horizontal pipe, and is sprayed from the nozzle onto the fire extinguishing capsule on the upper part of the hollow drive assembly to rinse the fire extinguishing capsule. The cleaning effect is good, and the rinsing effect is further improved by the flipping assembly that flips the fire extinguishing capsule.

[0040] In the initial state of this invention, the push block is located in the gap between the adjacent connecting blocks. When the first horizontal axis rotates to contact the push block, it pushes the push block to rotate inward. After the first horizontal axis passes the push block, under the elastic restoring force of the spiral spring, the spiral spring quickly pops outward and inserts into the gap between the adjacent connecting blocks at the top, pushing the fire extinguishing capsule stuck in the gap to achieve the effect of discharging, thus preventing the fire extinguishing capsule from getting stuck in the hollow drive assembly and being unable to be discharged. Attached Figure Description

[0041] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are merely some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without any creative effort.

[0042] Figure 1 The three-dimensional distilled water washing device of the present invention Figure 1 ;

[0043] Figure 2 This is a front view of the distilled water washing device of the present invention;

[0044] Figure 3This is a left view of the distilled water washing device of the present invention;

[0045] Figure 4 The three-dimensional distilled water washing device of the present invention Figure 2 ;

[0046] Figure 5 For along Figure 3 A sectional view along the AA direction;

[0047] Figure 6 For along Figure 3 BB direction sectional view;

[0048] Figure 7 for Figure 5 Enlarged view of point C in the middle;

[0049] Figure 8 for Figure 5 Enlarged view of point D in the middle.

[0050] The labels in the diagram represent:

[0051] 1. Housing; 2. Drain pipe; 3. Hollow drive assembly; 31. Rotating disc; 32. Groove; 33. First motor; 34. First horizontal shaft; 35. Connecting block; 36. Second horizontal shaft; 4. Tilting assembly; 41. Second motor; 42. Synchronous belt assembly; 43. Straight shaft; 44. Side plate; 45. Paddle; 46. Synchronous pulley; 47. Synchronous belt; 48. Support roller; 5. Protective cover; 6. Water spray assembly; 61. Inlet pipe; 62. Horizontal pipe; 63. Nozzle; 7. Discharge assembly; 71. Inclined guide chute; 72. Discharge port; 73. Support frame; 74. Scroll spring; 75. Third horizontal shaft; 76. Push block. Detailed Implementation

[0052] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0053] The present invention will be further described below with reference to embodiments.

[0054] The terms "left," "right," "front," "back," "up," and "down" used in the following description refer to the orientation from the perspective of the front view.

[0055] Example 1

[0056] A method for preparing a fire extinguishing capsule includes the following steps:

[0057] 1. Weigh the following raw materials by weight percentage: 70.6% for the core and the remainder for the shell;

[0058] The core comprises the following raw materials in weight percentages: 38% dodecafluoro-2-methyl-3-pentanone, 24.9% methyl acrylate, 9% silicone resin, 21.4% cyclodextrin, and the balance being nano-sized silica.

[0059] The shell comprises the following raw materials by weight percentage: 63% high-density polyethylene, 7% silicone oil, 11% ceramic powder, 8% talc powder, and the remainder being additives.

[0060] II. Preparation of the capsule core;

[0061] Dodecyl-2-methyl-3-pentanone, methyl acrylate, silicone resin and nano-sized silica were mixed. Cyclodextrin was added to the mixture in multiple portions while stirring. The mixture was stirred at 35°C for 4 hours, then cooled to 2°C with ice water and stirred for another 25 minutes.

[0062] III. Preparation of capsule shell fluid;

[0063] Mix high-density polyethylene, silicone oil, ceramic powder, talc powder and additives, and stir at 120°C for 35 minutes.

[0064] IV. Core encapsulation of capsule shell fluid;

[0065] The prepared capsule core is placed in the capsule shell liquid to coat the capsule shell liquid, and then placed at 20℃ to cool and solidify.

[0066] 5. The preliminarily formed fire extinguishing capsule is transported to a distilled water washing device for further cooling and rinsing to remove impurities adhering to the surface.

[0067] The fire extinguishing capsule prepared by this invention has a larger volume (about 1.3 cm in diameter and about 2.5 cm in length), which makes it more suitable for some large-scale fire extinguishing areas.

[0068] Example 2

[0069] A method for preparing a fire extinguishing capsule includes the following steps:

[0070] 1. Weigh the following raw materials by weight percentage: 85.3% for the core and the remainder for the shell;

[0071] The core comprises the following raw materials by weight percentage: 43% dodecafluoro-2-methyl-3-pentanone, 21.2% methyl acrylate, 10.8% silicone resin, 18% cyclodextrin, and the balance being nano-sized silica.

[0072] The shell comprises the following raw materials by weight percentage: 65% high-density polyethylene, 2% silicone oil, 8% ceramic powder, 5% talc powder, and the remainder being additives.

[0073] II. Preparation of the capsule core;

[0074] Dodecyl-2-methyl-3-pentanone, methyl acrylate, silicone resin and nano-sized silica were mixed. Cyclodextrin was added to the mixture in multiple portions while stirring. The mixture was stirred at 44°C for 1 hour, then cooled to 1°C with ice water and stirred for another 30 minutes.

[0075] III. Preparation of capsule shell fluid;

[0076] High-density polyethylene, silicone oil, ceramic powder, talc powder and additives are mixed and stirred at 132°C for 20 minutes.

[0077] IV. Core encapsulation of capsule shell fluid;

[0078] The prepared capsule core is placed in the capsule shell liquid to coat the capsule shell liquid, and then placed at 25℃ to cool and solidify.

[0079] 5. The preliminarily formed fire extinguishing capsule is transported to a distilled water washing device for further cooling and rinsing to remove impurities adhering to the surface.

[0080] Example 3

[0081] A method for preparing a fire extinguishing capsule includes the following steps:

[0082] I. Weigh the following raw materials by weight percentage: 81.3% for the core and the remainder for the shell;

[0083] The core comprises the following raw materials by weight percentage: 40% dodecafluoro-2-methyl-3-pentanone, 22.5% methyl acrylate, 9.6% silicone resin, 19.3% cyclodextrin, and the balance being nano-sized silica.

[0084] The shell comprises the following raw materials by weight percentage: 72% high-density polyethylene, 3% silicone oil, 9% ceramic powder, 7% talc powder, and the remainder being additives.

[0085] II. Preparation of the capsule core;

[0086] Dodecyl-2-methyl-3-pentanone, methyl acrylate, silicone resin and nano-sized silica were mixed. Cyclodextrin was added to the mixture in multiple portions while stirring. The mixture was stirred at 40°C for 2.4 h, then cooled to 3°C with ice water and stirred for another 28 min.

[0087] III. Preparation of capsule shell fluid;

[0088] High-density polyethylene, silicone oil, ceramic powder, talc powder and additives are mixed and stirred at 128°C for 28 minutes.

[0089] IV. Core encapsulation of capsule shell fluid;

[0090] The prepared capsule core is placed in the capsule shell liquid to coat the capsule shell liquid, and then placed at 24℃ to cool and solidify.

[0091] 5. The preliminarily formed fire extinguishing capsule is transported to a distilled water washing device for further cooling and rinsing to remove impurities adhering to the surface.

[0092] Example 4

[0093] Please refer to the instruction manual appendix. Figure 1-8 Distilled water washing equipment for the production of fire extinguishing capsules, including housing 1;

[0094] A protective cover 5 is fixedly installed on the upper end of the housing 1;

[0095] The discharge end of the housing 1 is fixedly equipped with a discharge component 7 for discharging the cleaned fire extinguishing capsules and for guiding the fire extinguishing capsules stuck on the hollow drive component 3.

[0096] A drain pipe 2 for discharging cleaning wastewater is fixedly installed on the box 1;

[0097] The interior of the housing 1 is equipped with a hollow drive assembly 3 for driving the fire extinguishing capsule to the bottom of the water spray assembly 6;

[0098] The protective cover 5 is equipped with a water spray assembly 6 for spraying water to clean the fire extinguishing capsule.

[0099] The protective cover 5 is equipped with a turning component 4 for turning the fire extinguishing capsule.

[0100] The flipping component 4 includes a driving component, a synchronous rotation component, and a toggle component; the driving component is mounted on the protective cover 5 and is connected to the synchronous rotation component; multiple toggle components are mounted on the synchronous rotation component.

[0101] The drive assembly includes a second motor 41 and a synchronous belt assembly 42; the second motor 41 is fixedly mounted on the outer wall of the protective cover 5, and the drive end of the second motor 41 is fixedly connected to a synchronous pulley A of the synchronous belt assembly 42.

[0102] Synchronous belt assembly 42 adopts the existing mature pulley and belt structure, and the specific structure will not be described in detail;

[0103] The second motor 41 drives the synchronous belt assembly 42 to rotate, and the synchronous belt assembly 42 drives the synchronous rotation assembly to rotate.

[0104] The synchronous rotation assembly includes a straight shaft 43 and a synchronous pulley 46; two sets of side plates 44 are fixedly connected to the front and rear inner walls of the protective cover 5, and a straight shaft 43 is rotatably installed between the side plates 44 on the same side. The synchronous belt assembly 42 is rotatably installed on the side plate 44 on one side. Multiple sets of synchronous pulleys 46 are fixedly installed on the front and rear straight shafts 43 respectively, and the front and rear sets of synchronous pulleys 46 are connected by a toggle assembly.

[0105] The synchronous belt assembly 42 drives a straight shaft 43 to rotate, the straight shaft 43 drives a synchronous pulley 46 to rotate, and the synchronous pulley 46 drives another synchronous pulley 46 to rotate through a turning assembly. This enables the turning assembly to rotate and flip the fire extinguishing capsule, thereby cleaning the surface of other parts of the fire extinguishing capsule.

[0106] The actuating assembly includes a paddle 45 and a timing belt 47; the two sets of timing pulleys 46 are connected by the timing belt 47, and several sets of paddles 45 are fixedly connected at equal intervals on the outer wall of the timing belt 47.

[0107] Synchronous pulley 46 drives synchronous belt 47 to rotate, synchronous belt 47 drives paddle 45 to rotate, and paddle 45 flips the fire extinguishing capsule.

[0108] Preferably, it also includes a support roller 48;

[0109] Multiple sets of support rollers 48 are rotatably connected inside the protective cover 5. The support rollers 48 are located inside the hollow drive assembly 3 and are in contact with the inner top of the hollow drive assembly 3.

[0110] The upper part of the hollow drive assembly 3 is moved and supported by the support roller 48 to avoid large deformation of the upper part of the hollow drive assembly 3 when the fire extinguishing capsule is heavy, which would affect the cleaning effect.

[0111] The hollow drive assembly 3 includes a rotating disk 31, a groove 32, a first motor 33, a first horizontal shaft 34, a connecting block 35, and a second horizontal shaft 36. The first motor 33 is fixedly installed on the outer wall of the housing 1. The second horizontal shaft 36 is rotatably installed on both the left and right ends inside the housing 1. Two sets of rotating disks 31 corresponding to each other are fixedly connected to the second horizontal shaft 36. Multiple sets of grooves 32 that cooperate with and are embedded in the first horizontal shaft 34 are evenly opened in the circumference of the rotating disk 31. The drive end of the first motor 33 is fixedly connected to one of the sets of second horizontal shafts 36.

[0112] Several sets of first horizontal shafts 34 are connected by several sets of connecting blocks 35, and the two ends of the connecting blocks 35 are rotatably connected to the adjacent first horizontal shafts 34 respectively; the several sets of first horizontal shafts 34 and the several sets of connecting blocks 35 form a ring structure, and the support roller 48 is in contact with the inner top of the ring structure.

[0113] The front and rear ends of several sets of first horizontal shafts 34 located on the left and right sides are respectively movably embedded and connected to the grooves 32 of the rotating disk 31;

[0114] The fire extinguishing capsule is placed on the upper part of the gap of the annular structure formed by the combination of the first horizontal shaft 34 and the connecting block 35; the first motor 33 drives the second horizontal shaft 36 to rotate, the second horizontal shaft 36 drives the rotating disk 31 to rotate, the rotating disk 31 drives the first horizontal shaft 34 to move through the groove 32, the first horizontal shaft 34 drives the connecting block 35 to move, and thus drives the fire extinguishing capsule to move.

[0115] The water spray assembly 6 includes an inlet pipe 61, a horizontal pipe 62, and a nozzle 63; the upper part of the inlet pipe 61 is fixedly connected to several groups of equally spaced horizontal pipes 62, the horizontal pipes 62 are fixedly installed on the protective cover 5, and several groups of nozzles 63 are fixedly connected to the horizontal pipes 62 at equal intervals, the nozzles 63 are located inside the protective cover 5 and above the hollow drive assembly 3.

[0116] Distilled water enters through the inlet pipe 61, passes through the horizontal pipe 62, and is sprayed from the nozzle 63 onto the fire extinguishing capsule on the upper part of the hollow drive assembly 3 to rinse the fire extinguishing capsule. The cleaning effect is good, and the rinsing effect is further improved by turning the fire extinguishing capsule with the turning assembly 4.

[0117] The discharge assembly 7 includes an inclined guide trough 71, a discharge port 72, a support frame 73, a spiral spring 74, a third horizontal shaft 75, and a pusher block 76. The discharge end of the box 1 is provided with a discharge port 72. An inclined guide trough 71 is fixedly connected to one end of the box 1 near the discharge port 72. A support frame 73 is fixedly connected to the inner wall of the box 1. A third horizontal shaft 75 is rotatably connected to the support frame 73. A spiral spring 74 is installed on the third horizontal shaft 75. The inner and outer ends of the spiral spring 74 are fixedly connected to the third horizontal shaft 75 and the support frame 73, respectively. Multiple sets of pushers 76 are fixedly connected at equal intervals on the third horizontal shaft 75. The pushers 76 are located in the gaps between adjacent connecting blocks 35.

[0118] Preferably, in the initial state, the height of the left side of the push block 76 is lower than the height of the center of the rotating disk 31;

[0119] In the initial state, the push block 76 is located in the gap between the adjacent connecting blocks 35. When the first horizontal axis 34 rotates to contact the push block 76, it pushes the push block 76 to rotate inward. After the first horizontal axis 34 rotates past the push block 76, under the elastic restoring force of the spiral spring 74, the spiral spring 74 quickly pops outward and inserts into the gap between the adjacent connecting blocks 35, pushing the fire extinguishing capsule stuck in the gap, thus achieving the effect of discharging and preventing the fire extinguishing capsule from getting stuck in the hollow drive assembly 3 and being unable to be discharged.

[0120] The above embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions will not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A distilled water washing device for the production of fire extinguishing capsules, characterized in that, Includes the housing (1); A protective cover (5) is fixedly installed on the upper end of the box (1); The discharge end of the box (1) is fixedly equipped with a discharge component (7) for discharging the cleaned fire extinguishing capsule and for discharging the fire extinguishing capsule stuck on the hollow drive component (3). The box (1) is fixedly installed with a drain pipe (2) for discharging cleaning wastewater; The interior of the housing (1) is equipped with a hollow drive assembly (3) for driving the fire extinguishing capsule to the bottom of the water spray assembly (6). The protective cover (5) is equipped with a water spray assembly (6) for spraying water to clean the fire extinguishing capsule. The protective cover (5) is equipped with a turning component (4) for turning the fire extinguishing capsule. The flipping assembly (4) includes a drive assembly, a synchronous rotation assembly, and a toggle assembly; the drive assembly is mounted on the protective cover (5), the drive assembly is connected to the synchronous rotation assembly, and multiple toggle assemblies are mounted on the synchronous rotation assembly; The synchronous rotation assembly includes a straight shaft (43) and a synchronous pulley (46); two sets of side plates (44) are fixedly connected to the front and rear inner walls of the protective cover (5), and a straight shaft (43) is rotatably installed between the side plates (44) on the same side. The synchronous belt assembly (42) is rotatably installed on the side plate (44) on one side. Multiple sets of synchronous pulleys (46) are fixedly installed on the front and rear straight shafts (43) respectively, and the front and rear sets of synchronous pulleys (46) are connected by a toggle assembly. The actuation assembly includes a paddle (45) and a timing belt (47); the two sets of timing pulleys (46) are connected by a timing belt (47) for transmission, and several sets of paddles (45) are fixedly connected at equal intervals on the outer wall of the timing belt (47). It also includes support rollers (48); multiple sets of support rollers (48) are rotatably connected inside the protective cover (5), and the support rollers (48) are located inside the hollow drive assembly (3) and are in contact with the inner top of the hollow drive assembly (3); The hollow drive assembly (3) includes a rotating disk (31), a groove (32), a first motor (33), a first horizontal shaft (34), a connecting block (35), and a second horizontal shaft (36). The first motor (33) is fixedly installed on the outer wall of the housing (1). The second horizontal shaft (36) is rotatably installed on both the left and right ends inside the housing (1). Two sets of rotating disks (31) corresponding to each other are fixedly connected to the second horizontal shaft (36). Multiple sets of rotating disks (31) that cooperate with the first horizontal shaft (34) are evenly opened on the circumference of the rotating disk (31). The drive end of the first motor (33) is fixedly connected to one of the second horizontal shafts (36) in the groove (32); the first horizontal shafts (34) are connected to each other by a number of connecting blocks (35), and the two ends of the connecting blocks (35) are rotatably connected to the adjacent first horizontal shafts (34); the first horizontal shafts (34) and the connecting blocks (35) form a ring structure, and the front and rear ends of the first horizontal shafts (34) located on the left and right sides are movably embedded in the groove (32) of the rotating disk (31); The discharge assembly (7) includes an inclined guide trough (71), a discharge port (72), a support frame (73), a spiral spring (74), a third horizontal shaft (75), and a push block (76). The discharge end of the box (1) is provided with a discharge port (72). An inclined guide trough (71) is fixedly connected to one end of the box (1) near the discharge port (72). A support frame (73) is fixedly connected to the inner wall of the box (1). A third horizontal shaft (75) is rotatably connected to the support frame (73). A spiral spring (74) is installed on the third horizontal shaft (75). The inner and outer ends of the spiral spring (74) are fixedly connected to the third horizontal shaft (75) and the support frame (73) respectively. Multiple sets of push blocks (76) are fixedly connected at equal intervals on the third horizontal shaft (75). The push blocks (76) are located in the gap between adjacent connecting blocks (35).

2. The distilled water washing equipment according to claim 1, characterized in that, The drive assembly includes a second motor (41) and a synchronous belt assembly (42); the second motor (41) is fixedly mounted on the outer wall of the protective cover (5), and the drive end of the second motor (41) is fixedly connected to a synchronous pulley A of the synchronous belt assembly (42).