Washing liquid preparation machine

By designing a water washing liquid dispensing machine including a water tank, agitator, heating system and control system, the problem of high labor intensity, low efficiency and prone to manual errors in the fabric washing color fastness test is solved, and the effect of automatic liquid dispensing, reducing manual labor intensity and improving test accuracy is achieved.

CN222901001UActive Publication Date: 2025-05-27CHIUVENTION INSTR LTD
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Patent Information

Application Number
CN202421847335.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-05-27
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

In the prior art fabric washing color fastness test, the manual proportioning solution method has problems such as high labor intensity, low efficiency and prone to manual errors.

Method used

A water washing and liquid dispensing machine is designed, including a base, shell, water tank, agitator, heating system, water inlet system, water outlet system, electronic scale and control system, which can automatically configure solutions of different concentrations, simplify operation and reduce the intensity of manual labor.

Benefits of technology

Through the automatic liquid dispensing machine, the labor intensity of manual work is significantly reduced, the sample preparation efficiency is improved, manual errors are avoided, and the accuracy of the washing color fastness test is improved.

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Abstract

The utility model discloses a washing liquid preparation machine which comprises a base, a shell, a water tank, a stirring mechanism, a heating system, a water inlet system, a water outlet system, an electronic scale and a control system, the shell is arranged on the base, the water tank, the stirring mechanism, the water inlet system and the water outlet system are all arranged in the shell, the stirring mechanism is located at the bottom of the water tank, the heating system is arranged in the water tank, and the electronic scale is arranged in the water tank. The water tank is provided with a second water inlet and a first water outlet, the water inlet system is connected with the second water inlet of the water tank, the water outlet system is connected with the first water outlet of the water tank, the electronic scale and the control system are arranged on one side of the shell, and the stirring mechanism, the heating system, the water inlet system, the water outlet system and the electronic scale are in signal connection with the control system. According to the utility model, a manual proportioning mode can be replaced, the labor intensity can be reduced, the sample preparation efficiency can be improved, manual errors can be avoided, the operation is simple, solutions with different concentrations can be automatically prepared according to requirements, the use is convenient, the occupied space is smaller, and the movement is more convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of fabric washing color fastness testing, and particularly relates to a washing liquid preparation machine. Background Art

[0002] In the fabric production process, fabrics usually need to go through the printing and dyeing process to be dyed with various colors. After the fabric printing and dyeing is completed, it is necessary to conduct a washing color fastness test on the fabric to observe the fading degree of the printed color of the fabric. The washing color fastness test includes soaping fastness. Before the soaping fastness test, it is necessary to prepare the solution. Currently, the solution is prepared manually by weighing the water and soap flakes according to the required solution concentration, and then heating the water and soap flakes to completely dissolve the soap flakes to obtain the solution with the required concentration. This process requires various tools, occupies a large area, has a complex moving process, and has a large manual labor intensity, low efficiency, and there are also a certain proportion of human errors. Content of the Utility Model

[0003] The purpose of the utility model is to overcome the deficiencies of the prior art and provide a washing liquid preparation machine, which can replace the manual solution preparation method, helps to reduce the labor intensity, improve the sample preparation efficiency, avoid human errors, and has simple operation. It can automatically configure solutions with different concentrations according to needs, is very convenient to use, and at the same time occupies less space and is more convenient to move.

[0004] The technical solution of the utility model is as follows:

[0005] A washing liquid preparation machine includes a base, a housing, a water tank, a stirring mechanism, a heating system, a water inlet system, a water outlet system, an electronic scale and a control system. The housing is arranged on the base. The water tank, the stirring mechanism, the water inlet system and the water outlet system are all arranged in the housing. The stirring mechanism is located at the bottom of the water tank. The heating system is arranged in the water tank. The water tank is provided with a second water inlet and a first water outlet. The water inlet system is connected to the second water inlet of the water tank. The water outlet system is connected to the first water outlet of the water tank. The electronic scale and the control system are arranged on one side of the housing. The stirring mechanism, the heating system, the water inlet system, the water outlet system and the electronic scale are respectively connected to the control system in signal.

[0006] Further, a plurality of water tanks are provided.

[0007] Further, a water level sensor is arranged on one side of each water tank, and the water level sensor is connected to the signal input end of the control system.

[0008] Further, the stirring mechanism includes a stirring motor, a plurality of stirring drive wheels, a transmission strip, and a plurality of stirring blades. A stirring drive wheel is rotatably provided at the bottom of each water tank. The drive wheel shaft of the stirring drive wheel extends into the water tank and is connected to a stirring blade. Adjacent two stirring drive wheels are connected by the transmission strip in a transmission manner. The stirring motor is arranged at the bottom of one of the water tanks. The motor shaft of the stirring motor is in transmission connection with the stirring drive wheel at the bottom of this water tank. The signal output end of the control system is connected to the stirring motor.

[0009] Further, the heating system includes a plurality of heating tubes and a plurality of temperature sensors. A heating tube and a temperature sensor are arranged in each water tank. The signal output ends of the control system are respectively connected to the plurality of heating tubes. The plurality of temperature sensors are respectively connected to the signal input end of the control system.

[0010] Further, the water inlet system includes a plurality of water inlet pumps and a plurality of first water inlets. One end of the plurality of first water inlets extends out from one side of the housing. The other ends of the plurality of first water inlets are connected to the second water inlets of each water tank through the water inlet pumps. The signal output ends of the control system are respectively connected to the plurality of water inlet pumps.

[0011] Further, the water outlet system includes a plurality of peristaltic water outlet pumps and a plurality of second water outlets. One end of the plurality of second water outlets extends downward from one side of the housing. The other ends of the plurality of second water outlets are connected to the first water outlets of each water tank through the peristaltic water outlet pumps. The signal output ends of the control system are respectively connected to the plurality of peristaltic water outlet pumps.

[0012] Further, a water leakage tray is also arranged on the base and is located below the plurality of second water outlets. A water receiving cup can be placed on the water leakage tray.

[0013] Further, a plurality of cup sensors are arranged on one side of the housing corresponding to the placement position of the water receiving cup. The plurality of cup sensors are respectively connected to the signal input end of the control system.

[0014] Further, this water washing and liquid preparation machine further includes a steel ball automatic configuration device arranged in the housing. The signal output end of the control system is connected to the steel ball automatic configuration device. A steel ball inlet corresponding to the steel ball automatic configuration device is provided on the housing. A downward steel ball outlet is arranged at the bottom of the steel ball automatic configuration device. The steel ball outlet is located on one side of one of the second water outlets.

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows: The present utility model provides a water-washing solution preparation machine, which can replace the manual solution preparation method. When in use, select the concentration of the solution on the control system according to the standard. The solution in the water tank can be automatically prepared into solutions with different concentrations through the stirring mechanism and the heating system. Then, weigh the weight of the test fabric by an electronic scale, and according to the relevant standard conversion, the required solution volume can be obtained, and the solution can be automatically discharged. Or, the weight of the soap flakes can also be weighed by the electronic scale, and the water can be automatically discharged. Its operation is simple, easy to use, occupies a small space, and is convenient to move. The appearance of this water-washing solution preparation machine can greatly reduce the labor intensity of workers, improve the sample preparation efficiency, avoid human errors, and greatly improve the accuracy of the water-washing color fastness test. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0017] Figure 1 is the external view of the present utility model Figure 1 ;

[0018] Figure 2 is the external view of the present utility model Figure 2 ;

[0019] Figure 3 is the internal structure of the present utility model Figure 1 ;

[0020] Figure 4 is the internal structure of the present utility model Figure 2 。 DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the following will further describe the present utility model in detail with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model, and are not used to limit the present utility model.

[0022] In order to illustrate the technical solutions described in the present utility model, the following will be illustrated through specific embodiments.

[0023] Embodiment

[0024] Please refer to Figures 1 to 4The present embodiment provides a water washing liquid dispensing machine, including a base 10, a shell 20, a water tank 30, a stirring mechanism 40, a heating system 50, a water inlet system, a water outlet system, an electronic scale 80, a steel ball automatic configuration device 90 and a control system 100. The shell 20 is arranged on the base 10, and a plurality of supporting feet 11 are arranged in a matrix at the bottom of the base 10, and an opening cover 21 is pivotally connected to the top of the shell 20. An electronic scale 80 and a control system 100 are arranged on one side of the shell 20. The electronic scale 80 can be used to weigh the weight of the sample fabric or the weight of the soap flakes. The electronic scale 80 is connected to the signal input end of the control system 100, and the weight information can be transmitted to the control system 100; the control system 100 includes an operation screen, and the solution concentration is selected and various information is displayed through the operation screen 100; a water leakage receiving tray 110 is also arranged on the base 10, and a water receiving cup can be placed on the water leakage receiving tray 110, and a plurality of cup sensors 120 are arranged on one side of the shell 20 corresponding to the water receiving cup placement position, and the plurality of cup sensors 120 are respectively connected to the signal input end of the control system 100, and are used to sense whether there is a water receiving cup on the water cup placement position.

[0025] The water tank 30, the stirring mechanism 40, the water inlet system, the water outlet system, and the steel ball automatic configuration device 90 are all arranged in the shell 20. In this embodiment, three water tanks 30 are provided. A water level sensor 130 is provided on one side of each water tank 30 for measuring the water level of the solution in the water tank 30. The water level sensor 130 is connected to the signal input end of the control system 100 to transmit the water level information to the control system 100.

[0026] The stirring mechanism 40 is located at the bottom of the water tank 30, and includes a stirring motor 41, a plurality of stirring transmission wheels 42, a transmission bar 43 and a plurality of stirring blades 44. A stirring transmission wheel 42 is rotatably arranged at the bottom of each water tank 30, and the transmission wheel shaft of the stirring transmission wheel 42 extends into the water tank 30 and is connected with the stirring blade 44. Two adjacent stirring transmission wheels 42 are connected by the transmission bar 43. The stirring motor 41 is arranged at the bottom of one of the water tanks 30, and the motor shaft of the stirring motor 41 is connected to the stirring transmission wheel 42 at the bottom of the water tank 30. During stirring, the stirring transmission wheel 42 is driven to rotate by the stirring motor 41, thereby driving the stirring blade 44 in the water tank 30 to operate. The signal output end of the control system 100 is connected to the stirring motor 41, and the stirring motor 41 is controlled by the control system 100.

[0027] The heating system 50 is disposed within the water tank 30 and includes a plurality of heating tubes 51 and a plurality of temperature sensors 52. Each water tank 30 is provided with a heating tube 51 and a temperature sensor 52. The solution in the water tank 30 is heated by the heating tube 51, and the temperature sensor 52 can detect the temperature of the solution in the water tank 30 in real time. The signal output end of the control system 100 is respectively connected to a plurality of heating tubes 51, and the heating tubes 51 are controlled to start heating through the control system 100. The plurality of temperature sensors 52 are respectively connected to the signal input end of the control system 100, and the water temperature information can be transmitted to the control system 100.

[0028] The water tank 30 is provided with a second water inlet 31 and a first water outlet 32. The water inlet system is connected to the second water inlet 31 of the water tank 30, and the water outlet system is connected to the first water outlet 32 of the water tank 30. The water inlet system includes a plurality of inlet water pumps 61 and a plurality of first water inlets 62. One end of the plurality of first water inlets 62 extends out from one side of the housing 20, and the other end of the plurality of first water inlets 62 is connected to the second water inlet 31 of each water tank 30 through the inlet water pumps 61. The signal output end of the control system 100 is respectively connected to the plurality of inlet water pumps 61, and the inlet water pumps 61 are controlled to start water inlet through the control system 100. The water outlet system includes a plurality of outlet peristaltic pumps 71 and a plurality of second water outlets 72. One end of the plurality of second water outlets 72 extends downward from one side of the housing 20. The water leakage tray 110 is located below the plurality of second water outlets 72. The other end of the plurality of second water outlets 72 is connected to the first water outlet 32 of each water tank 30 through the outlet peristaltic pumps 71. The signal output end of the control system 100 is respectively connected to the plurality of outlet peristaltic pumps 71, and the outlet peristaltic pumps 71 are controlled to start water outlet through the control system 100.

[0029] The housing 20 is provided with a steel ball adding port 91 corresponding to the steel ball automatic configuration device 90, and steel balls can be added into the steel ball automatic configuration device 90 from the steel ball adding port 91. The bottom of the steel ball automatic configuration device 90 is provided with a downward steel ball output port 92, and the steel ball output port 92 is located on one side of one of the second water outlets 72. The signal output end of the control system 100 is connected to the steel ball automatic configuration device 90. The required number of steel balls can be set through the control system 100, and the set number of steel balls can be automatically output through the steel ball output port 92.

[0030] During use, select the concentration of the solution on the control system 100 according to the standard. The solution in the water tank 30 can be automatically configured into solutions with different concentrations through the stirring mechanism 40 and the heating system 50. The three water tanks 30 can meet different concentration requirements. During configuration, the heating system 50 needs to be heated to 60 degrees and stirred evenly to completely dissolve the soap flakes. Then, weigh the weight of the test fabric with the electronic scale 80. According to relevant standards for conversion, the required solution volume can be obtained, and the solution can be automatically discharged through the second water outlet 72. Or, the weight of the soap flakes can also be weighed with the electronic scale 80 to automatically discharge water. Some standards also require adding steel balls. After setting the number of steel balls through the control system 100, the set number of steel balls can be automatically discharged through the steel ball outlet 92. It has simple operation, convenient use, small occupied space, and convenient movement. The appearance of this washing solution preparation machine can greatly reduce the labor intensity of workers, improve the sample preparation efficiency, avoid human errors, and greatly improve the accuracy of the washing color fastness test.

[0031] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A water-washing liquid dispensing machine, characterized in that: It includes a base, a shell, a water tank, a stirring mechanism, a heating system, a water inlet system, a water outlet system, an electronic scale and a control system. The shell is arranged on the base, and the water tank, the stirring mechanism, the water inlet system and the water outlet system are all arranged in the shell. The stirring mechanism is located at the bottom of the water tank. The heating system is arranged in the water tank. The water tank is provided with a second water inlet and a first water outlet. The water inlet system is connected to the second water inlet of the water tank, and the water outlet system is connected to the first water outlet of the water tank. The electronic scale and the control system are arranged on one side of the shell. The stirring mechanism, the heating system, the water inlet system, the water outlet system and the electronic scale are respectively connected to the control system signal.

2. The water-washing liquid dispensing machine according to claim 1, characterized in that: The water tanks are provided with a plurality of them.

3. The water-washing liquid dispensing machine according to claim 2, characterized in that: A water level sensor is arranged on one side of each water tank, and the water level sensor is connected to the signal input end of the control system.

4. The water-washing liquid dispensing machine according to claim 2, characterized in that: The stirring mechanism includes a stirring motor, a plurality of stirring transmission wheels, a transmission bar and a plurality of stirring blades. A stirring transmission wheel is rotatably arranged at the bottom of each water tank. The transmission wheel shaft of the stirring transmission wheel extends into the water tank and is connected to the stirring blades. Two adjacent stirring transmission wheels are connected by transmission bars. The stirring motor is arranged at the bottom of one of the water tanks. The motor shaft of the stirring motor is connected to the stirring transmission wheel at the bottom of the water tank. The signal output end of the control system is connected to the stirring motor.

5. The water-washing liquid dispensing machine according to claim 2, characterized in that: The heating system includes a plurality of heating tubes and a plurality of temperature sensors. A heating tube and a temperature sensor are arranged in each water tank. The signal output end of the control system is respectively connected to the plurality of heating tubes, and the plurality of temperature sensors are respectively connected to the signal input end of the control system.

6. The water-washing liquid dispensing machine according to claim 2, characterized in that: The water inlet system includes a plurality of water inlet pumps and a plurality of first water inlets, one end of the plurality of first water inlets extends from one side of the shell, and the other end of the plurality of first water inlets is connected to the second water inlet of each water tank through the water inlet pump, and the signal output end of the control system is respectively connected to the plurality of water inlet pumps.

7. The water-washing liquid dispensing machine according to claim 2, characterized in that: The water outlet system includes a plurality of water outlet peristaltic pumps and a plurality of second water outlets, one end of the plurality of second water outlets extends downward from one side of the shell, and the other end of the plurality of second water outlets is connected to the first water outlet of each water tank through the water outlet peristaltic pump, and the signal output end of the control system is respectively connected to the plurality of water outlet peristaltic pumps.

8. The water-washing liquid dispensing machine according to claim 7, characterized in that: The base is also provided with a water leakage receiving tray located below the plurality of second water outlets, and a water receiving cup can be placed on the water leakage receiving tray.

9. The water-washing liquid dispensing machine according to claim 8, characterized in that: A plurality of cup sensors are arranged on one side of the shell corresponding to the water cup placement position, and the plurality of cup sensors are respectively connected to the signal input ends of the control system.

10. The water-washing liquid dispensing machine according to claim 7, characterized in that: The water washing liquid dispensing machine also includes a steel ball automatic configuration device arranged in a shell, the signal output end of the control system is connected to the steel ball automatic configuration device, the shell is provided with a steel ball addition port corresponding to the steel ball automatic configuration device, and the bottom of the steel ball automatic configuration device is provided with a downward steel ball output port, and the steel ball output port is located on one side of one of the second water outlets.