Overflow hydraulic pressure regulating valve and remote regulating structure
By introducing a remote adjustment structure and solenoid valve control into the overflow hydraulic pressure regulating valve, the problems of cumbersome operation and inaccurate pressure control in the existing technology are solved, realizing fast and accurate pressure regulation and safe remote control of the hydraulic system.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-05
- Publication Date
- 2026-04-14
AI Technical Summary
Existing overflow hydraulic pressure regulating valves lack remote adjustment mechanisms, resulting in cumbersome and time-consuming operation in complex environments, as well as safety risks. Furthermore, the pressure control accuracy is easily affected by environmental factors, making it difficult to achieve stable and precise pressure control.
Design an overflow hydraulic pressure regulating valve that includes a valve assembly and a regulating assembly. The regulating assembly is installed on the outside of the valve assembly and is remotely controlled. It uses a solenoid valve and control components to connect to a mobile device via wireless technology to achieve precise control of the oil circuit opening and closing and the flow rate.
It enables rapid and accurate adjustment of hydraulic system pressure in complex environments, meets the precise requirements under different working conditions, improves operational efficiency and safety, and reduces reliance on manual labor and the risk of missed malfunctions.
Smart Images

Figure CN224120459U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of valve equipment, and specifically relates to an overflow hydraulic pressure regulating valve and a remote adjustment structure. Background Technology
[0002] The relief hydraulic pressure regulating valve is an important component in hydraulic systems, primarily used to regulate and stabilize system pressure and prevent system overload. Currently, relief hydraulic pressure regulating valves lack remote adjustment mechanisms, limiting their pressure regulation capabilities. When the system's operating environment is complex or the valve's installation location is inaccessible, operators must manually adjust it on-site, a cumbersome and time-consuming process that impacts work efficiency. This is especially problematic in large equipment or hazardous areas, where operation is inconvenient and poses safety risks. Regarding pressure control accuracy, the pressure setting is easily affected by environmental factors, such as changes in oil temperature altering oil viscosity and causing system pressure fluctuations. Because remote real-time fine-tuning is impossible, maintaining stable and precise pressure control is difficult. Conventional solutions involve periodic on-site inspections and maintenance, but this method cannot provide real-time monitoring of equipment status and relies on manual labor, making it prone to overlooking potential faults due to negligence. Therefore, a new structure is needed to address these technical problems. Utility Model Content
[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide an overflow hydraulic pressure regulating valve and a remote adjustment structure to solve the problems mentioned in the background technology.
[0004] This utility model is achieved through the following technical solution: an overflow hydraulic pressure regulating valve and a remote adjustment structure, comprising: a valve assembly and an adjustment assembly, wherein an adjustment assembly for remote control is installed on the outer surface of the valve assembly, the valve assembly includes a valve body for overflow hydraulic pressure regulation, a valve one is installed on the front surface of the valve body, a valve two is installed on the rear surface of the valve body, and a mounting component for mounting the valve assembly is installed on the side of the valve assembly, and the adjustment assembly includes a solenoid valve and a control component for control.
[0005] In a preferred embodiment, hydraulic component two and hydraulic component three are respectively installed on the lower and upper surfaces of the valve body, and valve openings are provided on the front and rear surfaces of the valve body. Valve one is installed in the opening on the front surface of the valve body.
[0006] In a preferred embodiment, a hydraulic component is mounted on the lower surface of the first valve, the front surface of the first valve is designed to be open, the opening of the front surface of the first valve is aligned with the opening of the front surface of the valve body, and a second valve is mounted on the opening of the rear surface of the valve body.
[0007] In a preferred embodiment, the rear surface of the second valve is designed with an opening, and the opening of the rear surface of the second valve is aligned with the opening of the valve body. The mounting component includes a mounting bracket and a mounting plate. Two mounting brackets are integrally formed symmetrically on the side of the valve body. In use, the mounting component helps to better install the valve assembly into the entire hydraulic system, facilitates connection and layout with other hydraulic components, and makes it convenient for users.
[0008] In a preferred embodiment, a mounting plate is installed on the side of the mounting bracket away from the valve body. The mounting plate is fixed to the surface of the wall by bolts, and the valve assembly is fixed to the surface of the wall by the mounting bracket and the mounting plate.
[0009] In a preferred embodiment, a control component is mounted on the side of the valve body away from the mounting bracket. The control component is wirelessly connected to a mobile device via wireless technology, and two cable components are symmetrically mounted on the outer surface of the control component.
[0010] In a preferred embodiment, a solenoid valve is installed at the opening on the front surface of valve one and the opening on the rear surface of valve two via connecting flanges. The two solenoid valves have the same structure. The end of the cable component away from the control component is electrically connected to the solenoid valve. In use, the solenoid valve can accurately control the on / off state and flow rate of the oil circuit according to the electrical signal, thereby achieving precise adjustment of the pressure regulating valve. The control component can accurately set and operate the solenoid valve, so that the pressure regulating valve can quickly and accurately reach and stabilize at the required pressure value, meeting the precise pressure requirements of the hydraulic system under different working conditions.
[0011] After adopting the above technical solution, the beneficial effects of this utility model are as follows: 1. By setting an adjustment component, an adjustment component for remote control is installed on the outer surface of the valve assembly. The adjustment component includes a solenoid valve and a control component for control. When in use, the solenoid valve can accurately control the opening and closing of the oil circuit and the flow rate according to the electrical signal, thereby realizing the precise adjustment of the pressure regulating valve. The control component can accurately set and operate the parameters of the solenoid valve, so that the pressure regulating valve can quickly and accurately reach and stabilize at the required pressure value, meeting the precise requirements of hydraulic system pressure under different working conditions.
[0012] 2. By setting up a valve assembly, the valve assembly includes a valve body for overflow hydraulic pressure regulation. A valve is installed on the front surface of the valve body, and a valve is installed on the rear surface of the valve body. Mounting parts for mounting the valve assembly are installed on the side of the valve assembly. In use, the mounting parts help to better install the valve assembly into the entire hydraulic system, facilitate connection and layout with other hydraulic components, and make it convenient for users. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0014] Figure 1 This is a schematic diagram of the overall structure of an overflow hydraulic pressure regulating valve and a remote adjustment structure according to the present invention.
[0015] Figure 2 This is a schematic diagram of the mounting plate of an overflow hydraulic pressure regulating valve and a remote adjustment structure according to the present invention.
[0016] Figure 3 This is a schematic diagram of a valve 2 with an overflow hydraulic pressure regulating valve and a remote adjustment structure according to the present invention.
[0017] Figure 4 This is a schematic diagram of the regulating component of an overflow hydraulic pressure regulating valve and a remote regulating structure according to the present invention.
[0018] In the diagram, 100 - Valve 1, 110 - Hydraulic Component 1, 120 - Valve Body, 130 - Hydraulic Component 2, 140 - Hydraulic Component 2, 150 - Valve 2;
[0019] 200 - Mounting bracket, 210 - Mounting plate;
[0020] 300 - Control components, 310 - Connecting flanges, 320 - Solenoid valves, 330 - Cable components. Detailed Implementation
[0021] 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.
[0022] Please see Figures 1 to 4This utility model provides a technical solution: an overflow hydraulic pressure regulating valve and a remote adjustment structure, including: a valve assembly and an adjustment assembly. The outer surface of the valve assembly is equipped with an adjustment assembly for remote control. The valve assembly includes a valve body 120 for overflow hydraulic pressure regulation. A valve 100 is installed on the front surface of the valve body 120, and a valve 2 150 is installed on the rear surface of the valve body 120. A mounting component for mounting the valve assembly is installed on the side of the valve assembly. The adjustment assembly includes a solenoid valve 320 for control and a control component 300.
[0023] Please see Figures 1 to 4 As the first embodiment of this utility model: hydraulic component 2 130 and hydraulic component 3 140 are respectively installed on the lower and upper surfaces of the valve body 120, valve openings are provided on the front and rear surfaces of the valve body 120, and valve 100 is installed in the opening on the front surface of the valve body 120.
[0024] Hydraulic component 110 is mounted on the lower surface of valve 100. The front surface of valve 100 is designed to be open. The opening on the front surface of valve 100 is aligned with the opening on the front surface of valve body 120. Valve 2 150 is mounted on the opening on the rear surface of valve body 120.
[0025] The rear surface of valve 2 150 is designed with an opening, and the opening of the rear surface of valve 2 150 is aligned with the opening of valve body 120. The mounting components include mounting bracket 200 and mounting plate 210. Two mounting brackets 200 are integrally formed symmetrically on the side of valve body 120.
[0026] When using the valve assembly, the user first installs it inside the pipeline network. During installation, the user first connects the opening on the front surface of the valve 100 inside the valve assembly to the pipeline network, and then connects the opening on the rear surface of the valve assembly to the pipeline network. After connecting the valve assembly, the user then uses the mounting bracket 200 and mounting plate 210 to fix the valve assembly in place, preventing it from shaking due to fluid flow when used inside the pipeline network (the specific structure and working principle of the valve assembly are existing technologies, and its specific workflow is not described here). The mounting components help to better install the valve assembly into the entire hydraulic system, facilitating connection and layout with other hydraulic components, and making it convenient for the user.
[0027] Please see Figures 1 to 4 As a second embodiment of this utility model: a mounting plate 210 is installed on the side surface of the mounting bracket 200 away from the valve body 120. The mounting plate 210 is fixed to the surface of the wall by bolts. The valve assembly is fixed to the surface of the wall by the mounting bracket 200 and the mounting plate 210.
[0028] A control component 300 is mounted on the side of the valve body 120 away from the mounting bracket 200. The control component 300 is wirelessly connected to the mobile device via wireless technology. Two cable components 330 are symmetrically mounted on the outer surface of the control component 300.
[0029] A solenoid valve 320 is installed at the opening on the front surface of valve 100 and the opening on the rear surface of valve 2150 respectively via a connecting flange 310. The two solenoid valves 320 have the same structure, and the end of the cable component 330 away from the control component 300 is electrically connected to the solenoid valve 320.
[0030] In use, users can connect the controller 300 to a mobile device using wireless technology, or connect the controller 300 to a user-defined PLC control program via a wire. This allows the controller 300 to be controlled according to the user's required steps. (Both the controller 300 and the solenoid valve 320 are existing technologies, and any available models can be selected, as long as they meet the equipment's usage requirements. The specific working principles and structures are not detailed here.) Users can precisely control the on / off state and flow rate of the oil circuit through the solenoid valve 320 based on electrical signals, thereby achieving precise adjustment of the pressure regulating valve. The controller 300 can precisely set and operate the parameters of the solenoid valve 320, enabling the pressure regulating valve to quickly and accurately reach and stabilize at the required pressure value, meeting the precise pressure requirements of the hydraulic system under different working conditions. This allows for remote control via mobile devices.
[0031] 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, improvements, etc., 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 relief hydraulic pressure regulating valve and a remote regulating structure, comprising: A valve assembly and a regulating assembly, characterized in that a regulating assembly for remote control is mounted on the outer surface of the valve assembly, the valve assembly includes a valve body for overflow hydraulic pressure regulation, a valve one (100) is mounted on the front surface of the valve body, a valve two (150) is mounted on the rear surface of the valve body, a mounting component for mounting the valve assembly is mounted on the side of the valve assembly, and the regulating assembly includes a solenoid valve (320) and a control component (300) for control.
2. The overflow hydraulic pressure regulating valve and remote adjustment structure as described in claim 1, characterized in that: Hydraulic component two (1320) and hydraulic component three (140) are respectively installed on the lower and upper surfaces of the valve body. Valve openings are provided on the front and rear surfaces of the valve body. Valve one (100) is installed in the opening on the front surface of the valve body.
3. The overflow hydraulic pressure regulating valve and remote adjustment structure as described in claim 2, characterized in that: Hydraulic component 1 (110) is mounted on the lower surface of valve 1 (100). The front surface of valve 1 (100) is designed to be open. The opening on the front surface of valve 1 (100) is aligned with the opening on the front surface of valve body. Valve 2 (150) is mounted on the opening on the rear surface of valve body.
4. The overflow hydraulic pressure regulating valve and remote adjustment structure as described in claim 3, characterized in that: The rear surface of the second valve (150) is designed with an opening, and the opening of the rear surface of the second valve (150) is aligned with the opening of the valve body. The mounting component includes a mounting bracket (200) and a mounting plate (210). Two mounting brackets (200) are integrally formed symmetrically on the side of the valve body.
5. The overflow hydraulic pressure regulating valve and remote adjustment structure as described in claim 4, characterized in that: The mounting bracket (200) has a mounting plate (210) installed on the side surface away from the valve body. The mounting plate (210) is fixed to the surface of the wall by bolts. The valve assembly is fixed to the surface of the wall by the mounting bracket (200) and the mounting plate (210).
6. The overflow hydraulic pressure regulating valve and remote adjustment structure as described in claim 5, characterized in that: A control component (300) is mounted on the side of the valve body away from the mounting bracket (200). The control component (300) is wirelessly connected to a mobile device via wireless technology. Two cable components (330) are symmetrically mounted on the outer surface of the control component (300).
7. The overflow hydraulic pressure regulating valve and remote adjustment structure as described in claim 6, characterized in that: A solenoid valve (320) is installed at the opening on the front surface of valve one (100) and the opening on the rear surface of valve two (150) respectively via a connecting flange (310). The two solenoid valves (320) have the same structure. The end of the cable component (330) away from the control component (300) is electrically connected to the solenoid valve (320).