Water injection device for disinfectant processing

By designing a water injection device for disinfectant processing that includes a machine base, a clamping mechanism, and a water injection device, the problems of unstable fixation of disinfectant bottles and control of water volume during water injection were solved, achieving stable clamping and precise water injection, and improving water injection efficiency.

CN224393031UActive Publication Date: 2026-06-23能臣日化(河南)有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
能臣日化(河南)有限公司
Filing Date
2025-06-12
Publication Date
2026-06-23

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    Figure CN224393031U_ABST
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Abstract

The utility model discloses a kind of water injection devices for disinfectant processing, including machine table, holding mechanism and water injection device;Machine table: its lower end four corners are respectively provided with supporting leg, the inside of machine table is equipped with cam separator, the output shaft upper end of cam separator is fixedly connected with carousel, and the upper surface rear end of machine table is equipped with prop;Holding mechanism: it is respectively set in the upper end of carousel;Water injection device: it includes slide, bucket, check valve and water injection pipe, the inside of prop is connected in the rear end of slide, and the upper surface front end of slide is equipped with bucket, and the water outlet of bucket lower end is equipped with water injection pipe, and check valve is connected in succession in the outside of water injection pipe, and the upper surface rear end of machine table is equipped with single-chip microcomputer, the water injection device for disinfectant processing, it is more firm to realize the fixation of disinfectant bottle when water injection, not easy to pour, simultaneously, it is convenient to control water injection quantity, make water injection effect better, greatly improve water injection work efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of disinfectant processing technology, specifically a water injection device for disinfectant processing. Background Technology

[0002] Disinfectants are liquid disinfectants characterized by strong bactericidal ability and rapid action. Their bactericidal mechanism involves releasing nascent atomic oxygen to oxidize the active groups in bacterial cells. They are characterized by their rapid and strong action, capable of killing all microorganisms, including bacterial spores and viruses. They are primarily used for surface disinfection, such as chlorine dioxide, hydrogen peroxide, ozone, and sodium hypochlorite; these disinfectants are sterilizing agents.

[0003] The existing disinfectant processing water injection device: the disinfectant bottle is placed on the conveyor belt, and then water is injected into the bottle manually using the water injection pipe;

[0004] Traditional water injection devices for disinfectant processing have the following problems: the disinfectant bottle is not easily fixed during water injection, making it prone to tipping over; the water injection volume cannot be controlled, which greatly reduces the efficiency of water injection work. To address this, we propose a water injection device for disinfectant processing. Utility Model Content

[0005] The technical problem to be solved by this utility model is to overcome the existing defects and provide a water injection device for disinfectant processing, which can make the disinfectant bottle more secure during water injection, making it less likely to tip over, while making it easier to control the water injection volume, so as to make the water injection effect better and greatly improve the efficiency of water injection work. It can effectively solve the problems in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a water injection device for disinfectant processing, comprising a machine base, a holding mechanism, and a water injection device;

[0007] Machine base: It is equipped with support legs at the four corners of its lower end. The machine base is equipped with a cam divider inside. The upper end of the output shaft of the cam divider is fixedly connected to a turntable. The upper surface of the machine base is equipped with a support column at the rear end.

[0008] The blessing mechanism is located at the top of the turntable;

[0009] Water injection device: It includes a slide plate, a bucket, a one-way valve and a water injection pipe. The rear end of the slide plate is connected to the inside of the support column. The bucket is located at the front end of the upper surface of the slide plate. The water injection pipe is located at the outlet at the lower end of the bucket. The one-way valve is connected in series with the outside of the water injection pipe, so as to make the disinfectant bottle more secure during water injection, making it less likely to tip over. At the same time, it is easy to control the water injection volume, making the water injection effect better and greatly improving the efficiency of water injection work.

[0010] Furthermore, a microcontroller is provided at the rear end of the upper surface of the machine tool. The input terminal of the microcontroller is electrically connected to an external power source. The cam separator is bidirectionally electrically connected to the microcontroller, providing electrical connections for various electrical components.

[0011] Furthermore, the clamping mechanism includes a fixed plate, a clamping plate one, a slide rail, and a clamping plate two. The upper surface of the turntable is provided with evenly distributed fixed plates, and the rear end of the fixed plate is provided with clamping plate one. The upper surface of the fixed plate is provided with left and right symmetrical slide rails, and the upper ends of two adjacent slide rails are slidably connected to clamping plate two to achieve clamping.

[0012] Furthermore, the clamping mechanism includes a vertical plate and an electric push rod. The front end of the fixed plate is provided with a vertical plate, and the front end of the vertical plate is provided with an electric push rod. The telescopic ends of the electric push rods are fixedly connected to the middle of the rear ends of the adjacent clamping plates. The input ends of the electric push rods are electrically connected to the output end of the microcontroller to provide clamping drive.

[0013] Furthermore, the water injection device also includes a motor and a lead screw. The lead screw is rotatably connected inside the support column and is threadedly connected to the threaded hole at the rear end of the slide plate. The motor is located at the upper end of the support column, and the lower end of the motor's output shaft is fixedly connected to the upper end of the lead screw. The input end of the motor is electrically connected to the output end of the microcontroller to provide lifting drive.

[0014] Furthermore, the water injection device also includes a bracket, a hydraulic cylinder, a push rod, and a piston. The bracket is located at the upper end of the slide plate, and the upper end of the bracket is equipped with a hydraulic cylinder. The extension end of the hydraulic cylinder is fixedly connected to a push rod, and the lower end of the push rod is fixedly connected to a piston. The piston is slidably connected inside the water bucket for easy water injection.

[0015] Furthermore, the water injection device also includes an electric one-way valve. A water inlet pipe is provided at the water inlet on the outer wall of the water tank. An electric one-way valve is connected in series with the outside of the water inlet pipe. The electric one-way valve is bidirectionally electrically connected to the microcontroller to facilitate water intake.

[0016] Compared with the prior art, the beneficial effects of this utility model are as follows: This water injection device for disinfectant processing has the following advantages:

[0017] 1. During disinfectant processing, when filling the disinfectant bottle with water, first place the bottle on a fixed plate. Then, control the microcontroller to operate the electric push rods. The telescopic ends of the electric push rods push the second clamping plate inward on the slide rail. This causes the first and second clamping plates to fix and hold the disinfectant bottle. Next, control the microcontroller to operate the cam separator. The upper end of the output shaft of the cam separator drives the turntable to rotate. The rotation of the turntable moves the disinfectant bottle to the lower end of the water injection pipe, thus making the disinfectant bottle more securely fixed during water injection and less prone to tipping over.

[0018] 2. Next, the microcontroller controls the motor to operate. The motor's output shaft drives the lead screw to rotate, which in turn moves the threaded slide plate up and down. This movement of the slide plate lowers the water injection pipe above the disinfectant bottle. Then, the microcontroller controls the external hydraulic pump to pressurize the hydraulic cylinder. The hydraulic cylinder drives the push rod to move up and down, which in turn drives the piston to move up and down. At this time, the one-way valve only allows water to flow in but not out, while the electric one-way valve only allows water to flow out but not in. When the piston slides down the inner wall of the water tank, the electric one-way valve opens, allowing water from the bottom of the piston to be injected into the disinfectant bottle through the water injection pipe. When water needs to be injected again, the electric one-way valve opens, the piston moves up, and the volume of the water tank at the bottom of the piston increases while the pressure decreases until the piston is higher than the inlet. Water then enters the water tank through the inlet pipe, making it easier to control the amount of water injected and improving the water injection effect, thus greatly improving the efficiency of the water injection process. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of this utility model;

[0020] Figure 2 This is a cross-sectional structural diagram of the present invention;

[0021] Figure 3 This is a schematic diagram of the front side structure of this utility model;

[0022] Figure 4 This is an enlarged structural diagram of point A in this utility model.

[0023] In the diagram: 1. Machine base, 2. Support leg, 3. Cam divider, 4. Turntable, 5. Support column, 6. Holding mechanism, 61. Fixing plate, 62. Clamping plate one, 63. Slide rail, 64. Clamping plate two, 65. Vertical plate, 66. Electric push rod, 7. Water injection device, 701. Motor, 702. Lead screw, 703. Slide plate, 704. Water bucket, 705. Bracket, 706. Hydraulic cylinder, 707. Push rod, 708. Piston, 709. Electric check valve, 710. Check valve, 711. Water injection pipe, 8. Microcontroller. Detailed Implementation

[0024] 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.

[0025] Please see Figure 1-4 This embodiment provides a technical solution: a water injection device for disinfectant processing, including a machine base 1, a holding mechanism 6 and a water injection device 7;

[0026] Machine base 1: It is equipped with four support legs 2 at its lower end. The machine base 1 is equipped with a cam divider 3 inside. The upper end of the output shaft of the cam divider 3 is fixedly connected to a turntable 4. The upper rear end of the machine base 1 is equipped with a support column 5. The upper rear end of the machine base 1 is equipped with a microcontroller 8. The input end of the microcontroller 8 is electrically connected to an external power supply. The cam divider 3 and the microcontroller 8 are bidirectionally electrically connected.

[0027] The clamping mechanism 6 is located on the upper end of the turntable 4. The clamping mechanism 6 includes a fixed plate 61, a first clamping plate 62, a slide rail 63, and a second clamping plate 64. The upper surface of the turntable 4 is provided with evenly distributed fixed plates 61. The rear ends of the fixed plates 61 are respectively provided with the first clamping plate 62. The upper surface of the fixed plates 61 is provided with symmetrically arranged slide rails 63. The upper ends of two adjacent slide rails 63 are slidably connected to the second clamping plate 64. The clamping mechanism 6 includes a vertical plate 65 and an electric push rod 66. The front ends of the fixed plates 61 are respectively provided with the vertical plate 65, and the front ends of the vertical plates 65 are respectively provided with the electric push rod 66. The telescopic ends of the electric push rods 66 are connected to the adjacent second clamping plates 64. The middle of the rear end is fixedly connected, and the input end of the electric push rod 66 is electrically connected to the output end of the microcontroller 8. When the disinfectant is being processed and water is being added to the disinfectant bottle, the disinfectant bottle is first placed on the fixed plate 61. Then, the microcontroller 8 is controlled, and the electric push rod 66 is operated. The telescopic end of the electric push rod 66 pushes the clamping plate 64 to move inward on the slide rail 63. Then, the clamping plate 62 and the clamping plate 64 fix and hold the disinfectant bottle. Then, the cam separator 3 is operated by controlling the microcontroller 8. The upper end of the output shaft of the cam separator 3 drives the turntable 4 to rotate. The rotation of the turntable 4 will move the disinfectant bottle to the lower end of the water injection pipe 711.

[0028] Water injection device 7: It includes a slide plate 703, a water tank 704, a one-way valve 710, and a water injection pipe 711. The rear end of the slide plate 703 is connected to the interior of the support column 5. The water tank 704 is located at the front end of the upper surface of the slide plate 703. The water injection pipe 711 is located at the outlet at the lower end of the water tank 704. The one-way valve 710 is connected in series with the outside of the water injection pipe 711. The water injection device 7 also includes a motor 701 and a lead screw 702. The lead screw 702 is rotatably connected to the interior of the support column 5. The lead screw 702 is threadedly connected to the threaded hole at the rear end of the slide plate 703. The motor 701 is located on the support column 5. At the upper end, the lower end of the output shaft of motor 701 is fixedly connected to the upper end of lead screw 702. The input end of motor 701 is electrically connected to the output end of microcontroller 8. The water injection device 7 also includes a bracket 705, a hydraulic cylinder 706, a push rod 707, and a piston 708. The bracket 705 is located at the upper end of the slide plate 703. The upper end of the bracket 705 is equipped with a hydraulic cylinder 706. The extension end of the hydraulic cylinder 706 is fixedly connected to the push rod 707. The lower end of the push rod 707 is fixedly connected to the piston 708. The piston 708 is slidably connected inside the water tank 704. The water injection device 7 also includes an electric... A one-way valve 709 is installed at the water inlet on the outer wall of the water tank 704. An electric one-way valve 709 is connected in series with the outside of the water inlet pipe. The electric one-way valve 709 is bidirectionally electrically connected to the microcontroller 8. Then, by controlling the microcontroller 8, the motor 701 operates. The output shaft of the motor 701 drives the lead screw 702 to rotate. The lead screw 702 drives the threaded sliding plate 703 to move up and down. The movement of the sliding plate 703 moves the water injection pipe 711 down to above the disinfectant bottle. Then, by controlling the microcontroller 8, the external hydraulic pump pressurizes the hydraulic cylinder 706. The hydraulic cylinder 706 drives the push rod 707 upward. As the piston moves downward, the push rod 707 drives the piston 708 to move up and down. At this time, the one-way valve 710 only allows water to enter but not exit, and the electric one-way valve 709 only allows water to exit but not enter. When the piston 708 slides down the inner wall of the water bucket 704, the electric one-way valve 709 opens, allowing water at the bottom of the piston 708 to be injected into the disinfectant bottle through the water injection pipe 711. When water needs to be injected again, the electric one-way valve 709 opens, the piston 708 moves upward, and the volume of the water bucket 704 at the bottom of the piston 708 increases while the pressure decreases until the piston 708 is higher than the water inlet, and water enters the water bucket 704 through the water inlet pipe.

[0029] The working principle of the water injection device for disinfectant processing provided by this utility model is as follows: When injecting water into the disinfectant bottle during disinfectant processing, the disinfectant bottle is first placed on the fixed plate 61. Then, the microcontroller 8 is controlled, and the electric push rod 66 operates. The telescopic end of the electric push rod 66 pushes the clamping plate 64 to move inward on the slide rail 63. Then, the clamping plate 62 and the clamping plate 64 fix and hold the disinfectant bottle. Next, the microcontroller 8 is controlled, and the cam separator 3 operates. The upper end of the output shaft of the cam separator 3 drives the turntable 4 to rotate. The rotation of the turntable 4 will move the disinfectant bottle to the lower end of the water injection pipe 711. Then, the microcontroller 8 is controlled, and the motor 701 operates. The output shaft of the motor 701 drives the lead screw 702 to rotate. The lead screw 702 drives the threaded sliding plate 703 to move up and down. The movement of the sliding plate 703 moves the water injection pipe 711 downward. Moved above the disinfectant bottle, the microcontroller 8 is then controlled, and the external hydraulic pump pressurizes the hydraulic cylinder 706. The hydraulic cylinder 706 drives the push rod 707 to move up and down, and the push rod 707 drives the piston 708 to move up and down. At this time, the one-way valve 710 only allows water to enter but not exit, and the electric one-way valve 709 only allows water to exit but not enter. When the piston 708 slides down the inner wall of the water tank 704, the electric one-way valve 709 is opened by controlling the microcontroller 8, and the water at the bottom of the piston 708 is injected into the disinfectant bottle through the water injection pipe 711. The water pressed down by the piston 708 is a certain amount of water. When water needs to be injected again, the microcontroller 8 controls the electric one-way valve 709 to open, and the piston 708 moves up. The volume of the water tank 704 at the bottom of the piston 708 increases and the pressure decreases until the piston 708 is higher than the water inlet. Water enters the water tank 704 through the water inlet pipe, and water injection continues.

[0030] It is worth noting that the cam divider 3, electric push rod 66 and motor 701 disclosed in the above embodiments are all of the following: the cam divider 3 can be ER-RU190DA, the electric push rod 66 can be S-188N, the motor 701 can be WDD-D35-SA, and the single-chip microcomputer 8 controls the operation of the cam divider 3, electric push rod 66, motor 701 and electric one-way valve 709 using methods commonly used in the prior art.

[0031] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A water injection device for processing disinfectant, characterized in that: It includes a machine base (1), a holding mechanism (6), and a water injection device (7); Machine base (1): It is provided with four legs (2) at the lower end of the machine base (1). The machine base (1) is provided with a cam divider (3). The upper end of the output shaft of the cam divider (3) is fixedly connected to a turntable (4). The upper surface of the machine base (1) is provided with a support column (5). The blessing mechanism (6) is located at the top of the turntable (4); Water injection device (7): It includes a slide plate (703), a water bucket (704), a one-way valve (710) and a water injection pipe (711). The rear end of the slide plate (703) is connected to the inside of the support column (5). The front end of the upper surface of the slide plate (703) is provided with a water bucket (704). The water outlet at the lower end of the water bucket (704) is provided with a water injection pipe (711). A one-way valve (710) is connected in series with the outside of the water injection pipe (711).

2. The water injection device for disinfectant processing according to claim 1, characterized in that: The upper surface of the machine tool (1) is provided with a microcontroller (8) at the rear end. The input end of the microcontroller (8) is electrically connected to an external power source. The cam separator (3) is bidirectionally electrically connected to the microcontroller (8).

3. The water injection device for disinfectant processing according to claim 2, characterized in that: The holding mechanism (6) includes a fixed plate (61), a clamping plate one (62), a slide rail (63) and a clamping plate two (64). The upper surface of the turntable (4) is provided with evenly distributed fixed plates (61). The rear end of the fixed plate (61) is provided with clamping plate one (62). The upper surface of the fixed plate (61) is provided with left and right symmetrical slide rails (63). The upper ends of two adjacent slide rails (63) are slidably connected with clamping plate two (64).

4. The water injection device for disinfectant processing according to claim 3, characterized in that: The clamping mechanism (6) includes a vertical plate (65) and an electric push rod (66). The front end of the fixed plate (61) is provided with a vertical plate (65), and the front end of the vertical plate (65) is provided with an electric push rod (66). The telescopic ends of the electric push rod (66) are fixedly connected to the middle of the rear end of the adjacent clamping plate (64). The input ends of the electric push rod (66) are electrically connected to the output end of the microcontroller (8).

5. The water injection device for disinfectant processing according to claim 2, characterized in that: The water injection device (7) also includes a motor (701) and a lead screw (702). The lead screw (702) is rotatably connected to the inside of the support column (5). The lead screw (702) is threadedly connected to the threaded hole at the rear end of the slide plate (703). The motor (701) is located at the upper end of the support column (5). The lower end of the output shaft of the motor (701) is fixedly connected to the upper end of the lead screw (702). The input end of the motor (701) is electrically connected to the output end of the microcontroller (8).

6. The water injection device for disinfectant processing according to claim 5, characterized in that: The water injection device (7) also includes a bracket (705), a hydraulic cylinder (706), a push rod (707), and a piston (708). The bracket (705) is located at the upper end of the slide plate (703). The upper end of the bracket (705) is provided with a hydraulic cylinder (706). The extension end of the hydraulic cylinder (706) is fixedly connected to the push rod (707). The lower end of the push rod (707) is fixedly connected to the piston (708). The piston (708) is slidably connected inside the water bucket (704).

7. A water injection device for disinfectant processing according to claim 6, characterized in that: The water injection device (7) also includes an electric one-way valve (709). The water inlet on the outer wall of the water tank (704) is provided with a water inlet pipe. An electric one-way valve (709) is connected in series with the outside of the water inlet pipe. The electric one-way valve (709) is bidirectionally electrically connected to the microcontroller (8).