Detergent homogenizer

By introducing a locking mechanism into the homogenizer, the tank and motor gears are separated and locked, solving the rotation problem when the homogenizer is extracting detergent and improving the safety and stability of operation.

CN223570626UActive Publication Date: 2025-11-21SHAOXING FUGUIHUA DAILY NECESSITIES CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423103873.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-21
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

When a homogenizer extracts detergent, the gear meshing connection between the tank and the motor can easily cause rotation, affecting the stability and safety of the extraction operation.

Method used

A locking mechanism is adopted, including a positioning sleeve, a moving part, a locking part and a cylinder. The cylinder drives the tank to move upward, so that the driving gear and the driven gear are separated. The locking mechanism automatically restricts the position of the driven gear to avoid meshing.

Benefits of technology

When drawing detergent, ensure the tank is stable and avoid rotation to improve operational safety and stability and prevent accidents.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223570626U_ABST
    Figure CN223570626U_ABST
Patent Text Reader

Abstract

The utility model discloses a detergent homogenizer which comprises a support and a tank body installed on the support, the support is composed of a base and an installation seat, one end of the tank body is provided with a rotating shaft, the rotating shaft is arranged in the middle of the installation seat, the middle of the installation seat is provided with a motor, and the motor is provided with a driving gear. And a driven gear matched with the driving gear is arranged in the locking mechanism. The cylinder is started to drive the tank body to move upwards, the driving gear is separated from the driven gear, and the position of the driven gear is automatically limited through the locking mechanism. When the detergent homogenizer works, the air cylinder cannot be started, the driving gear and the driven gear are kept in meshed connection, and the motor drives the tank body to rotate. And after rotation is completed, the air cylinder can be started, the tank body is lifted, the driving gear and the driven gear are kept to be separated, the driven gear is automatically locked through the locking mechanism, the tank body is prevented from rotating when the detergent in the tank body is poured out, and it is guaranteed that the tank body is in a stable state.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to homogenizer technology especially relates to a detergent homogenizer. BACKGROUND

[0002] Detergent is through washing process for cleaning and specially prepared product. Main component usually is composed of surfactant, builder and additive etc. Detergent production process needs to use homogenizer, and the homogenizer is mainly used in the organization dispersion of biotechnology field, sample preparation of medical field, enzyme treatment of food industry, pesticide residue and veterinary drug residue detection in food and in pharmaceutical industry, cosmetic industry, paint industry and petrochemical industry etc.

[0003] The homogenizer needs to extract the detergent inside the tank body after completing the homogenization work, but the tank body is connected with the motor through gear engagement, which is easy to rotate when extracting the detergent, affecting the extraction operation. UTILITY MODEL CONTENT

[0004] In order to solve the defects existing in the prior art, the utility model provides a detergent homogenizer.

[0005] The technical scheme of the utility model is realized as follows:

[0006] A detergent homogenizer, comprising a support and a tank body installed on the support,

[0007] The support is composed of a base and a mounting seat, one end of the tank body is provided with a rotating shaft, the rotating shaft is arranged in the middle of the mounting seat, a motor is arranged in the middle of the mounting seat, and a driving gear is arranged on the motor,

[0008] A locking mechanism is arranged on the rotating shaft, and a driven gear matched with the driving gear is arranged in the locking mechanism,

[0009] Symmetrical cylinders are arranged on the base, bearing seats are arranged on the cylinders, and the bearing seats are sleeved on the tank body,

[0010] The cylinder is started to drive the tank body to move upwards, the driving gear is separated from the driven gear, and the position of the driven gear is automatically limited by the locking mechanism.

[0011] In the detergent homogenizer, the mounting seat is provided with a supporting rod, and the supporting rod is provided with a supporting block.

[0012] In the detergent homogenizer, the locking mechanism is further provided with a positioning sleeve, a movable piece and symmetrical locking pieces, the positioning sleeve is installed on the supporting block, the movable piece is installed on the rotating shaft, the lower end of the movable piece extends to the middle of the positioning sleeve, and the locking pieces are installed on the two sides of the movable piece and the driven gear.

[0013] In this detergent homogenizer of the present invention, the positioning sleeve is provided with a positioning hole in the middle, the positioning sleeve is provided with a symmetrical first hinge seat, the locking member is provided with a second hinge seat that cooperates with the first hinge seat, the positioning sleeve and the locking member are hingedly connected by a hinge rod, one end of the hinge rod is hingedly connected to the first hinge seat, and the other end is hingedly connected to the second hinge seat.

[0014] In this detergent homogenizer of the present invention, the movable part consists of a mounting block, a first movable rod and symmetrically arranged second movable rods. The first movable rod is disposed in a positioning hole and a spring is sleeved on the first movable rod. The mounting block has a mounting hole in the middle that cooperates with the rotating shaft.

[0015] In this detergent homogenizer of the present invention, the locking component consists of locking arc teeth and a connecting rod, and the connecting rod has a movable hole in the middle that cooperates with the second movable rod.

[0016] The detergent homogenizer of this invention has the following advantages: During operation, the cylinder remains stationary, maintaining the meshing connection between the drive gear and driven gear, allowing the motor to rotate the tank. After rotation, the cylinder can be activated to lift the tank, separating the drive gear and driven gear, and automatically locking the driven gear with a locking mechanism. This prevents the tank from rotating when the detergent is poured out, ensuring the tank remains stable. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the detergent homogenizer of this utility model;

[0018] Figure 2 for Figure 1 The left view;

[0019] Figure 3 for Figure 1 A schematic diagram of the mounting base, locking mechanism, motor, and drive gear structure.

[0020] Figure 4 for Figure 3 Exploded view of the locking mechanism. Detailed Implementation

[0021] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0022] like Figures 1 to 4As shown, the utility model discloses a kind of detergent homogenizer, including support 1 and tank 2 installed on support 1, tank 2 is equipped with mouth 3. Locking mechanism 4 can limit the position of tank 2, so as to adjust the position of mouth 3, avoid when extracting or pouring out the detergent inside tank 2, cause tank 2 to rotate due to accident, cause accident.

[0023] Support 1 is composed of base 5 and mounting seat 6, base 5 is vertically arranged with mounting seat 6, and mounting seat 6 is vertically arranged. One end of tank 2 is provided with rotating shaft 7, rotating shaft 7 is arranged in the middle of mounting seat 6, and mounting seat 6 is provided with strip hole 8 for accommodating rotating shaft 7, so that rotating shaft 7 can move up and down in strip hole 8.

[0024] Motor 9 is arranged in the middle of mounting seat 6, and drive gear 10 is arranged on motor 9.

[0025] Base 5 is provided with symmetrically arranged air cylinder 11, bearing seat 12 is arranged on air cylinder 11, bearing seat 12 is sleeved on tank 2, tank 2 can rotate in the middle of bearing seat 12, and when air cylinder 11 is started, tank 2 can be driven to move upwards, drive gear 10 is separated from driven gear 13, and the position of driven gear 13 is automatically limited by locking mechanism 4. Support rod 14 is arranged on mounting seat 6, and support block 15 is arranged on support rod 14.

[0026] Locking mechanism 4 includes driven gear 13, positioning sleeve 17, movable part 18 and symmetrically arranged locking part 19, positioning sleeve 17 is installed on support block 15, positioning sleeve 17 remains stationary, and movable part 18 moves up and down in the middle of positioning sleeve 17. Movable part 18 is installed on rotating shaft 7, and the lower end of movable part 18 extends to the middle of positioning sleeve 17, and locking part 19 is installed on both sides of movable part 18 and driven gear 13.

[0027] Locking mechanism 4 is installed on rotating shaft 7, and driven gear 13 is arranged in locking mechanism 4 and matched with drive gear 10. When drive gear 10 is rotated by motor 9, if drive gear 10 is engaged with driven gear 13 at this time, driven gear 13 can be rotated, but if drive gear 10 is not engaged with driven gear 13 at this time, driven gear 13 will not be rotated, so that tank 2 is prevented from rotating due to improper operation.

[0028] Positioning hole 20 is arranged in the middle of positioning sleeve 17, and symmetrically arranged first hinged seat 21 is further arranged on positioning sleeve 17. Second hinged seat 22 matched with first hinged seat 21 is arranged on locking part 19. Positioning sleeve 17 and locking part 19 are connected by hinged rod 23, one end of hinged rod 23 is connected with first hinged seat 21, and the other end is connected with second hinged seat 22.

[0029] When the movable part 18 moves down with the rotating shaft 7, it can compress the spring 24 and cause the first movable rod 25 to gradually enter the positioning hole 20, so that the hinge rod 23 pushes the locking parts 19 at both ends to both ends, so that the locking parts 19 are separated from the driven gear 13, and the drive gear 10 is kept engaged with the driven gear 13.

[0030] The movable component 18 consists of a mounting block 26, a first movable rod 25, and symmetrically arranged second movable rods 27. The first movable rod 25 is disposed in the positioning hole 20, and a spring 24 is sleeved on the first movable rod 25. The upper end of the spring 24 contacts the mounting block 26, and the lower end contacts the positioning sleeve 17. The mounting block 26 has a mounting hole 28 in the middle that mates with the rotating shaft 7.

[0031] The locking component 19 consists of a locking arc tooth 29 and a connecting rod 30. The connecting rod 30 has a movable hole 31 in the middle that mates with the second movable rod 27.

[0032] like Figure 2 As shown, the drive gear 10 is engaged with the driven gear 13 at this time. When the motor 9 starts, it can drive the driven gear 13 to rotate, thereby driving the rotating shaft 7 to rotate. The rotating shaft 7 drives the tank 2 on the cylinder 11 to rotate, and causes the rotating shaft 7 to rotate within the mounting hole 28 in the middle of the mounting block 26. At this time, the locking arc tooth 29 is disengaged from the driven gear 13.

[0033] When cylinder 11 is activated, it pushes tank 2 upward, causing rotating shaft 7 to move upward within slot 8. This also causes movable part 18 and driven gear 13 to move upward along with rotating shaft 7, separating driven gear 13 from drive gear 10. Even if drive gear 10 is still rotating, driven gear 13 will stop rotating. During the upward movement of movable part 18, hinge rod 23 pulls locking parts 19 at both ends towards the center, causing second movable rod 27 to slide within movable hole 31. This engages locking arc teeth 29 with driven gear 13, locking and limiting driven gear 13, preventing tank 2 from rotating during operation.

[0034] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A detergent homogenizer, comprising a support and a tank body mounted on the support, characterized in that the support is composed of a base and a mounting seat, one end of the tank body is provided with a rotating shaft, the rotating shaft is arranged in the middle of the mounting seat, a motor is arranged in the middle of the mounting seat, a driving gear is arranged on the motor, a locking mechanism is arranged on the rotating shaft, a driven gear is arranged in the locking mechanism and cooperates with the driving gear, a cylinder is arranged on the base in a symmetrical manner, a bearing seat is arranged on the cylinder, and the bearing seat is sleeved on the tank body, the cylinder is started to drive the tank body to move upward, the driving gear is separated from the driven gear, and the position of the driven gear is automatically limited by the locking mechanism. a supporting rod is arranged on the mounting seat, and a supporting block is arranged on the supporting rod.

2. The detergent homogenizer of claim 1, wherein, the locking mechanism is further provided with a positioning sleeve, a movable piece and symmetrical locking pieces, the positioning sleeve is mounted on the supporting block, the movable piece is mounted on the rotating shaft, the lower end of the movable piece extends to the middle of the positioning sleeve, and the locking pieces are mounted on both sides of the movable piece and the driven gear.

3. The detergent homogenizer of claim 2, wherein, the middle of the positioning sleeve is provided with a positioning hole, the positioning sleeve is provided with symmetrical first hinged seats, the locking pieces are provided with second hinged seats matched with the first hinged seats, the positioning sleeve and the locking pieces are hingedly connected through a hinged rod, one end of the hinged rod is hingedly connected with the first hinged seat, and the other end is hingedly connected with the second hinged seat.

4. The detergent homogenizer of claim 3, wherein, the movable piece is composed of a mounting block, a first movable rod and symmetrical second movable rods, the first movable rod is arranged in the positioning hole, a spring is sleeved on the first movable rod, and the middle of the mounting block is provided with a mounting hole matched with the rotating shaft.

5. The detergent homogenizer of claim 4, wherein, the locking piece is composed of a locking arc tooth and a connecting rod, and the middle of the connecting rod is provided with a movable hole matched with the second movable rod.

6. The detergent homogenizer of claim 5, wherein, ​