Textile fabric sample cup assembly
The textile sample cup assembly addresses the challenge of simulating everyday washing conditions by using a wash pump and three-way valve to mimic water flow directions, along with a heating mechanism and impeller for thorough mixing, improving fabric formulation testing reliability.
Patent Information
- Application Number
- CN202422380792.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-28
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-28
AI Technical Summary
The existing textile sample test cups cannot effectively simulate the washing environment of daily users during washing, resulting in inaccurate test results.
A textile fabric sample cup assembly is designed, equipped with a washing pump and a reversing three-way valve, which rotates the water clockwise or counterclockwise in the cup body through the forward and reverse communication states. Combined with a heater and an impeller, simulates the daily washing environment and is equipped with a filter to prevent clogging.
It realizes efficient washing of textile fabrics, simulates the washing environment of daily users, and ensures the accuracy and reliability of test results.
Smart Images

Figure CN223103277U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of textile fabric testing, and particularly relates to a sample cup assembly for textile fabrics. Background Art
[0002] In the textile industry, when it is necessary to determine the formula of a fabric, a series of small-batch sample experiments are usually carried out to find a better formula combination, ensure the performance of the fabric, and provide a reliable basis for mass production.
[0003] When testing a fabric, it is necessary to wash the sample textile fabric. In the existing textile sample test cups, ultrasonic devices are usually used for washing when washing the samples, and the daily washing environment of users cannot be well simulated. Summary of the Utility Model
[0004] The utility model aims to improve at least one technical problem in the background art.
[0005] The utility model provides a sample cup assembly for textile fabrics, including:
[0006] A cup body, with a bottom water port provided at the bottom end of the cup body, a forward water port and a reverse water port provided on the bottom side of the cup body, and the forward water port and the reverse water port are respectively located on both sides of the bottom water port;
[0007] A washing pump, the washing pump includes a water suction port and a water supply port, and the water suction port is communicated with the bottom water port;
[0008] A reversing three-way valve, the three ports of the reversing three-way valve are respectively communicated with the water supply port, the forward water port, and the reverse water port. The reversing three-way valve includes a forward connection state and a reverse connection state. In the forward connection state, the water supply port is communicated with the forward water port, and in the reverse connection state, the water supply port is communicated with the reverse water port.
[0009] The beneficial effect of the utility model: This sample cup assembly is equipped with a washing pump and a reversing three-way valve. In the forward connection state and the reverse connection state, the water in the cup body can be supplied to the forward water port or the reverse water port through the washing pump, stimulating the water in the cup body to flow clockwise or counterclockwise, realizing the washing of the textile fabric, and better simulating the daily washing environment of users.
[0010] As some sub-schemes of the above technical solution, the sample cup assembly further includes a first valve body, the first valve body includes a first through port, a second through port, and a third through port. The first through port is communicated with the bottom water port, the second through port is communicated with the water inlet pipe, and a water inlet valve is provided on the water inlet pipe. The third through port is communicated with the water supply port of the washing pump.
[0011] As some sub - solutions of the above - mentioned technical solution, the first valve body further includes a fourth through - port, and the fourth through - port communicates with the outside.
[0012] As some sub - solutions of the above - mentioned technical solution, the sample cup assembly further includes a heater, and the heater is fixedly connected to the cup body.
[0013] As some sub - solutions of the above - mentioned technical solution, the heater is in a ring shape, and the heater is clamped on the outer wall of the cup body.
[0014] As some sub - solutions of the above - mentioned technical solution, the sample cup assembly further includes an impeller, the impeller is rotatably arranged in the cup body, and the forward water inlet and the reverse water inlet are both located above the cup body.
[0015] As some sub - solutions of the above - mentioned technical solution, the sample cup assembly further includes a filter screen, a shaft block and a bolt. The filter screen is arranged in the cup body. There is a shaft hole in the middle of the impeller. The shaft block includes a shaft plate and a shaft column. The shaft column passes through the shaft hole and extends towards the shaft plate. The shaft plate is located on the side of the impeller facing away from the filter screen, and the shaft hole is sleeved outside the shaft column. The bolt passes through the shaft column, the shaft plate and the filter screen to lock the shaft block on the filter screen. Description of the Drawings
[0016] The above - mentioned and / or additional aspects and advantages of the present utility model will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, where:
[0017] Figure 1 is an axonometric view of the present utility model Figure 1 ;
[0018] Figure 2 is an axonometric view of the present utility model Figure 2 ;
[0019] Figure 3 is a cross - sectional view of the present utility model;
[0020] Figure 4 is Figure 2 a partial enlarged view at A in
[0021] In the drawings:
[0022] 1 - cup body; 11 - bottom water inlet; 12 - forward water inlet; 13 - reverse water inlet;
[0023] 2 - washing pump; 21 - water absorption port; 22 - water supply port;
[0024] 3 - reversing three - way valve;
[0025] 4 - first valve body; 41 - first through - port;
[0026] 42 - Second through - port; 43 - Third through - port; 44 - Fourth through - port; 45 - Water inlet pipe; 46 - Water inlet valve;
[0027] 5 - Heater;
[0028] 6 - Impeller;
[0029] 7 - Filter screen;
[0030] 8 - Shaft block; 81 - Shaft plate; 82 - Shaft column. Specific implementation mode
[0031] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals denote the same or similar elements or elements with the same or similar functions from beginning to end. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation of the present utility model.
[0032] In the description of the present utility model, it should be understood that the orientation descriptions, such as up, down, front, back, left, right, etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present utility model.
[0033] In the description of the present utility model, unless otherwise clearly defined, words such as setting, installation, connection, etc. should be understood in a broad sense. Those skilled in the art can reasonably determine the specific meanings of the above words in the present utility model in combination with the specific content of the technical solution.
[0034] The following will be combined with Figures 1 to 4 to illustrate the embodiments of the present utility model.
[0035] This embodiment relates to a sample cup assembly for textile fabrics, which realizes the simulated washing of textile fabrics through a simple structure.
[0036] A sample cup assembly for textile fabrics in this embodiment includes:
[0037] A cup body 1, the bottom end of the cup body 1 is provided with a bottom end water port 11, the bottom side of the cup body 1 is provided with a forward water port 12 and a reverse water port 13, and the forward water port 12 and the reverse water port 13 are respectively located on both sides of the bottom end water port 11;
[0038] A washing pump 2, the washing pump 2 includes a water absorption port 21 and a water supply port 22, and the water absorption port 21 is communicated with the bottom end water port 11;
[0039] A reversing three-way valve 3, with three ports of the reversing three-way valve 3 respectively connected to the water supply port 22, the forward water port 12, and the reverse water port 13. The reversing three-way valve 3 includes a forward connection state and a reverse connection state. In the forward connection state, the water supply port 22 is connected to the forward water port 12, and in the reverse connection state, the water supply port 22 is connected to the reverse water port 13.
[0040] The sample cup assembly is equipped with a washing pump 2 and a reversing three-way valve 3. In the forward connection state and the reverse connection state, the water in the cup body 1 can be supplied to the forward water port 12 or the reverse water port 13 through the washing pump 2, stimulating the water in the cup body 1 to flow clockwise or counterclockwise, realizing the washing of the textile fabric and better simulating the washing environment of daily users.
[0041] The sample cup assembly further includes a first valve body 4. The first valve body 4 includes a first through port 41, a second through port 42, and a third through port 43. The first through port 41 is connected to the bottom water port 11, the second through port 42 is connected to the water inlet pipe 45, and an inlet valve 46 is provided on the water inlet pipe 45. The third through port 43 is connected to the water supply port 22 of the washing pump 2. The bottom water port 11 of the cup body 1 is connected to the water inlet and the suction port 21 of the washing pump 2 through the first valve body 4, enabling the cup body 1 to achieve automatic water inlet and outlet.
[0042] The first valve body 4 further includes a fourth through port 44, and the fourth through port 44 is connected to the outside. The fourth through port 44 is connected to the outside, so that the bottom water port 11 can also be connected to the outside through the fourth through port 44 of the first valve body 4 for drainage.
[0043] The sample cup assembly further includes a heater 5, and the heater 5 is fixedly connected to the cup body 1. The heater 5 can be an electric heating wire, a heating film or other types of heating elements, which are designed to be able to uniformly heat the cup body 1, thereby ensuring uniform temperature distribution of the sample during the heating process. The power of the heater 5 can be adjusted as needed to adapt to different types of tests and heating requirements.
[0044] To improve the heating efficiency and the accuracy of temperature control, the heater 5 can be used in cooperation with a temperature sensor. The temperature sensor can be a thermocouple, a thermistor or other types of temperature detection devices, which are configured inside the cup body 1 or near the cup body 1 to monitor the temperature of the sample in real time.
[0045] In addition, the cup body 1 can also be equipped with a control unit, which can receive signals from the temperature sensor and control the power output of the heater 5 according to a preset temperature program or parameters input by the user. The control unit can be a microprocessor, a digital controller or other types of electronic control devices, which can achieve precise control of the heating process, including setting parameters such as temperature, heating rate, and heat preservation time, and adjusting them.
[0046] Through the above design, the cup body 1 can provide a stable and controllable heating environment, which is suitable for various chemical, biological and material tests that require precise temperature control.
[0047] Specifically, the heater 5 is in a ring shape and is clamped on the outer wall of the cup body 1. This design enables the heater 5 to evenly surround the cup body 1, thereby ensuring a more uniform heat distribution during the heating process. This uniform heating method helps to quickly and effectively heat the liquid in the cup to the required temperature, while avoiding liquid burning or container damage caused by local overheating. In addition, the structure of the ring-shaped heater 5 is simple, facilitating installation and maintenance, and has good stability during use, and is not prone to displacement or detachment. Due to the tight fit between the heater 5 and the cup body 1, the thermal efficiency is high and the energy consumption is relatively low, which is both economical and environmentally friendly.
[0048] The sample cup assembly further includes an impeller 6, which is rotatably arranged in the cup body 1, and the forward water inlet 12 and the reverse water inlet 13 are both located above the cup body 1. The rotation of the impeller 6 can effectively promote the liquid mixing in the cup body 1, ensuring that the sample reaches a uniform state before analysis. Through the stirring action of the impeller 6, the washing effect can be fully simulated.
[0049] Specifically, the sample cup assembly further includes a filter net 7, a shaft block 8 and a bolt (not shown in the figure). The filter net 7 is arranged in the cup body 1. There is a shaft hole in the middle of the impeller 6. The shaft block 8 includes a shaft plate 81 and a shaft column 82. The shaft column 82 passes through the shaft hole and extends towards the shaft plate 81. The shaft plate 81 is located on the side of the impeller 6 facing away from the filter net 7, and the shaft hole is sleeved outside the shaft column 82. The bolt passes through the shaft column 82, the shaft plate 81 and the filter net 7 to lock the shaft block 8 on the filter net 7, and the impeller 6 is rotatably connected to the shaft block 8. The filter net 7 is rotatably connected to the filter net through the bolt and the shaft block 8, and the rotation connection of the impeller 6 is realized by means of the holes originally included in the filter net structure, and the structure is concise and efficient. Among them, the shaft column 82 serves as the rotating shaft of the impeller 6, and the shaft plate 81 serves to limit the filter net 7 from detaching along the axis direction of the shaft column 82.
[0050] In summary, in addition to being able to simulate washing, the sample cup assembly is also equipped with a heater 5, enabling it to heat the solution and sample in the cup body 1 as needed. During washing, the reversing three-way valve 3 switches to the forward connection state or the reverse connection state, allowing water to be fed into the cup body 1 from the side wall of the cup body 1 in two different directions, stimulating the liquid in the cup body 1 to rotate clockwise or counterclockwise. The impeller 6 provided therein plays a role in increasing the liquid flow disturbance, while the filter screen 7 can prevent the sample from clogging the bottom water inlet 11, ensuring the normal circulation of water.
[0051] The above has specifically described the preferred embodiments of the present invention, but the present disclosure is not limited to the described embodiments. Those skilled in the art can also make various equivalent variations or substitutions without departing from the spirit of the present invention, and these equivalent variations or substitutions are all included within the scope defined by the claims of the present disclosure.
Claims
1. A sample cup assembly for a textile fabric, characterized in that: Comprising: A cup body (1), a bottom water port (11) is provided at the bottom end of the cup body (1), a forward water port (12) and a reverse water port (13) are provided on the bottom side of the cup body (1), and the forward water port (12) and the reverse water port (13) are respectively located on both sides of the bottom water port (11); A washing pump (2), the washing pump (2) includes a water suction port (21) and a water supply port (22), and the water suction port (21) is communicated with the bottom water port (11); A reversing three-way valve (3), three ports of the reversing three-way valve (3) are respectively communicated with the water supply port (22), the forward water port (12), and the reverse water port (13), and the reversing three-way valve (3) includes a forward communication state and a reverse communication state. In the forward communication state, the water supply port (22) is communicated with the forward water port (12), and in the reverse communication state, the water supply port (22) is communicated with the reverse water port (13).
2. The sample cup assembly of a textile fabric according to claim 1, characterized in that: The sample cup assembly further includes a first valve body (4), the first valve body (4) includes a first through port (41), a second through port (42), and a third through port (43), the first through port (41) is communicated with the bottom water port (11), the second through port (42) is communicated with a water inlet pipe (45), a water inlet valve (46) is provided on the water inlet pipe (45), and the third through port (43) is communicated with the water supply port (22) of the washing pump (2).
3. The sample cup assembly for a textile fabric according to claim 2, characterized in that: The first valve body (4) further includes a fourth through port (44), and the fourth through port (44) is communicated with the outside.
4. A sample cup assembly for a textile fabric according to claim 1, characterized in that: The sample cup assembly further includes a heater (5), and the heater (5) is fixedly connected to the cup body (1).
5. The sample cup assembly for a textile fabric according to claim 4, characterized in that: The heater (5) is annular, and the heater (5) is clamped on the outer wall of the cup body (1).
6. The sample cup assembly of a textile fabric according to claim 1, characterized in that: The sample cup assembly further includes an impeller (6), the impeller (6) is rotatably arranged in the cup body (1), and both the forward water port (12) and the reverse water port (13) are located above the cup body (1).
7. The sample cup assembly of a textile fabric according to claim 6, characterized in that: The sample cup assembly further includes a filter screen (7), a shaft block (8) and a bolt. The filter screen (7) is arranged in the cup body (1). A shaft hole is provided in the middle of the impeller (6). The shaft block (8) includes a shaft plate (81) and a shaft column (82). The shaft column (82) passes through the shaft hole and extends towards the shaft plate (81). The shaft plate (81) is located on the side of the impeller (6) facing away from the filter screen (7). The shaft hole is sleeved outside the shaft column (82). The bolt passes through the shaft column (82), the shaft plate (81) and the filter screen (7) to lock the shaft block (8) on the filter screen (7).