Inclined self-cleaning comprehensive experiment device
Through the design of an inclined self-cleaning comprehensive experimental device, the problems of pipeline storage and oil dripping in hydraulic experiments are solved, the orderly storage of pipelines and oil collection are achieved, and the safety and efficiency of the experiment are improved.
Patent Information
- Application Number
- CN202422235531.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-12
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-09-12
AI Technical Summary
In existing hydraulic experimental devices, it is difficult to solve the problem of oil dripping from the pipes connecting the components during storage and disassembly, which pollutes the experimental table.
An inclined self-cleaning comprehensive experimental device was designed, which included an inclined experimental panel, a pipeline storage cabinet and a clamping groove for orderly storing pipelines and collecting dripping oil through the oil drain port and recovery oil pan.
It realizes the orderly storage of pipelines, avoids entanglement, ensures the cleanliness of pipelines, reduces environmental pollution, and improves the safety and efficiency of experimental operations.
Smart Images

Figure CN223390218U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an experimental device for educational purposes, in particular to an inclined self-cleaning comprehensive experimental device. Background Art
[0002] In teaching practice, experiments involving hydraulic components require disassembly and assembly, as well as the connection of multiple hydraulic components. This can cause oil dripping and contamination of the lab bench. Prior art Chinese patent publication number CN206282520U discloses a lab bench for hydraulic experiments that can recover leaking oil. However, this solution primarily addresses the recovery of oil dripping during assembly and disassembly, leaving disassembled components, particularly the piping connecting components, with the potential for oil dripping and storage issues, difficult to address. Utility Model Content
[0003] The utility model provides an inclined self-cleaning comprehensive experimental device, which solves the problems of storing connecting pipes between experimental elements and recovering dripping waste oil.
[0004] The technical solution of the utility model is as follows: an inclined self-cleaning comprehensive experimental device, comprising an experimental table and an inclined experimental panel, a pipeline storage cabinet is provided on the side of the experimental panel, a plurality of pipeline clamps are provided inside the pipeline storage cabinet, a plurality of clamping grooves for clamping pipelines are provided on the pipeline clamps, a pipeline oil receiving pan is provided at the bottom of the pipeline storage cabinet, the pipeline oil receiving pan is provided with a first oil drain port, and the first oil drain port is connected to the recovery oil pan.
[0005] Furthermore, in order to fully utilize the space of the pipeline storage cabinet, the clamping grooves on different pipeline clamping plates have different depths relative to the opening of the pipeline storage cabinet.
[0006] Furthermore, in order to facilitate the hooking of the connecting pipeline, the hooking groove includes an opening section and a hooking section, and the width of the opening section is greater than that of the hooking section.
[0007] Furthermore, the opening end of the clamping groove is higher than the groove bottom, preventing the clamped pipeline from slipping off.
[0008] Furthermore, the bottom of the experimental panel is an oil leakage groove, and below the oil leakage groove is an oil unloading pan, and the oil unloading pan is provided with a second oil drain port connected to the oil recovery pan.
[0009] Furthermore, the first oil drain port is connected to the oil unloading pan.
[0010] Furthermore, the experimental table is fixed on a bracket, and the bracket is provided with a partition below the experimental table, and the oil recovery pan and a plurality of parts storage trays are provided on the partition.
[0011] The advantages of the technical solution provided by the utility model are:
[0012] The pipe storage cabinet located on the side of the experimental panel provides space for storing connecting pipes. The pipes are stored in a way that pipe clips are hung on connecting pipes. On the one hand, the pipes can be stored in order, which is convenient for taking and will not cause problems such as entanglement. On the other hand, the residual oil in the straight pipes can drip into the pipe oil pan for collection during storage, so as to keep the pipes unobstructed. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 This is a structural diagram of the inclined self-cleaning comprehensive experimental device.
[0014] Figure 2 This is a structural diagram of the pipeline storage cabinet.
[0015] Figure 3 This is a schematic diagram of the pipeline bracket structure.
[0016] Figure 4 This is a schematic diagram of the positional relationship among the first oil drain port, the oil unloading tray, and the second oil drain port. DETAILED DESCRIPTION
[0017] The present invention will be further described below with reference to the embodiments, but they are not intended to limit the present invention.
[0018] Please combine Figure 1 、 Figure 4 As shown, the inclined self-cleaning comprehensive experimental device involved in this embodiment includes a bracket 1, an experimental table 2, an experimental panel 3 and a pipe storage cabinet 4. The bracket 1 is used to support the experimental table 2, the experimental panel 3 and the pipe storage cabinet 4. The experimental table 2 is arranged horizontally, and the experimental panel 3 is arranged at an angle. A plurality of transverse slots 301 are provided on the experimental panel 3 to fix and install various components for hydraulic experiments or pneumatic experiments. The experimental panel 3 forms a certain angle with the experimental table 2 to facilitate students' observation and operation. As a preferred embodiment, the bottom of the experimental panel 3 is an oil leakage groove 5, and below the oil leakage groove 5 is an oil unloading pan 6. The oil unloading pan 6 has a bottom surface inclined to one side, and a second oil drain port 11 is opened at the lowest position of the bottom surface of the oil unloading pan 6.
[0019] Please combine Figure 2 and Figure 3 As shown, a pipe storage cabinet 4 is fixedly mounted on each side edge of the experimental panel 3, perpendicular to the side of the panel 3. The pipe storage cabinet 4 has a closable door 401, and the connecting pipes between experimental components are stored within the pipe storage cabinet 4. The pipe storage cabinet 4 is tightly connected to the experimental panel 3, which not only saves space but also allows the experimenter to quickly access or store pipes during operation.
[0020] In order to ensure that the pipelines can be neatly arranged vertically in the pipeline storage cabinet 4, a plurality of pipeline clamps 8 are provided inside the pipeline storage cabinet 4, and a plurality of clamping grooves 801 are distributed on each pipeline clamp 8. These clamping grooves 801 are used to clamp the pipelines. It is worth noting that in order to maximize the use of the space of the pipeline storage cabinet 4, the clamping grooves 801 on different pipeline clamps 8 have different depth designs relative to the opening of the pipeline storage cabinet 4. In this embodiment, the pipeline clamps 8 are fixed to the back plate of the pipeline storage cabinet 4. The pipeline clamps 8 have the same clamping grooves 801, but the pipeline clamps 8 have different widths, so that the clamping grooves 801 have different depths relative to the opening of the pipeline storage cabinet 4. In this way, when the pipeline is clamped on the pipeline clamp 8, an inner and outer layer arrangement can be formed.
[0021] Furthermore, the clamping groove 801 is divided into two parts: an opening section 801a and a hooking section 801b. The opening section 801a is wider than the hooking section 801b to facilitate the hooking of the pipe. Furthermore, the opening end of the clamping groove 801 is higher than the bottom of the groove. In other words, the front side of the pipe clamping plate 8 (the rear side is connected to the back panel of the pipe storage cabinet 4) is tilted upward to prevent the pipe from slipping out of the clamping groove 801.
[0022] The pipeline clamp is hung on the pipeline clamp plate 8 in a vertical state. A pipeline oil receiving pan 9 is provided at the bottom of the pipeline storage cabinet 4 to receive the oil dripping from the pipeline. Figure 4 As shown, the bottom surface of the pipeline oil receiving pan 9 is tilted to one side, and a first oil drain port 10 is provided at the lowest point of the bottom surface of the pipeline oil receiving pan 9. The first oil drain port 10 is connected to the oil unloading pan 6 under the experimental panel 3.
[0023] A partition 101 is provided on the bracket 1 below the experimental table 2. The partition 101 not only houses an oil recovery pan 12 but also has multiple parts storage trays 7, making it convenient for the experimenter to store small components required for various experiments. The oil recovery pan 12 is located directly below the second oil drain port 11 of the aforementioned oil unloading pan 6, so that the oil recovered from the components and pipelines can enter the oil recovery pan 12 for centralized recovery and processing. In addition, to facilitate the conduct of pneumatic and hydraulic experiments, an air pump 13 and a hydraulic oil pump 14 are also installed on the bracket 1 to provide the corresponding compressed air source and hydraulic oil for the experiments.
[0024] The technical solution of the present invention has obvious advantages: the design of the pipeline storage cabinet 4 not only provides an orderly storage space for the connecting pipelines, avoiding entanglement between pipelines, but also allows residual oil in the pipelines to drip naturally and be collected, ensuring the cleanliness of the pipelines and ease of use. This design not only improves the safety and efficiency of experimental operations, but also reduces environmental pollution.
Claims
1. An inclined self-cleaning comprehensive experimental device, comprising an experimental table and an inclined experimental panel, wherein a pipeline storage cabinet is provided on the side of the experimental panel, a plurality of pipeline clamping plates are provided inside the pipeline storage cabinet, and a plurality of clamping grooves for clamping pipelines are provided on the pipeline clamping plates, and a pipeline oil receiving pan is provided at the bottom of the pipeline storage cabinet, and the pipeline oil receiving pan is provided with a first oil drain port, which is connected to the recovery oil pan.
2. The inclined self-cleaning comprehensive experimental device according to claim 1 is characterized in that: The clamping grooves on different pipeline clamping plates have different depths relative to the opening of the pipeline storage cabinet.
3. The inclined self-cleaning comprehensive experimental device according to claim 1 or 2, characterized in that: The engaging groove includes an opening section and a hooking section, and the width of the opening section is greater than that of the hooking section.
4. The inclined self-cleaning comprehensive experimental device according to claim 1 is characterized in that: The opening end of the clamping groove is higher than the groove bottom.
5. The inclined self-cleaning comprehensive experimental device according to claim 1 is characterized in that: The bottom of the experimental panel is an oil leakage groove, and below the oil leakage groove is an oil discharge pan. The oil discharge pan is provided with a second oil drain port connected to the oil recovery pan.
6. The inclined self-cleaning comprehensive experimental device according to claim 5, characterized in that: The first oil drain port is connected to the oil discharge pan.
7. The inclined self-cleaning comprehensive experimental device according to claim 1 is characterized in that: The experimental table is fixed on a bracket, and a partition is provided below the experimental table. The oil recovery pan and a plurality of parts storage trays are provided on the partition.
Citation Information
Patent Citations
A laboratory bench for hydraulic pressure experiment
CN206282520U