Leveling device for electromechanical equipment installation
Patent Information
- Application Number
- CN202522481272.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-24
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-11-24
AI Technical Summary
[0004]上述的一种化工设备安装调平机构,其上设置有液压升降柱和液压减震柱,通过两种液压柱的配合实现对设备进行调平,但是调平进行时通过该装置无法判断设备是否已经平衡的问题;以及,装置本体上方对称设置有四个减震机构,减震机构与设备的底侧壁接触,装置在使用时需要插入到设备的底部,且还需要保证装置的中轴线与设备的中轴线重合,如若发生偏移,则会造成抬起设备时发生错位倾斜的问题,而该装置插入到设备底部以后,无法判断装置是否与设备同轴心线的问题
本实用新型通过设置底座和检测组件,底座的前侧壁上开设有前槽一和前槽二,检测组件包括固定在前槽一内的控制器,以及固定在前槽二内的卡环,卡环内卡接设置有电子水平仪,电子水平仪通过弹性数据线与控制器连接,电子水平仪的后侧壁上还镶嵌安装有磁吸圈,在使用时,从前槽二内拔出电子水平仪,而后将电子水平仪的贴合在机电设备的外壁上,此时磁吸圈即可将电子水平仪吸附在机电设备的外壁上,而后启动装置,电子水平仪即可对机电设备进行水平数据测量,并且将测量所获得的水平数据通过弹性数据线传输至控制器中。
Smart Images

Figure CN224814720U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of equipment installation technology, and in particular relates to a balancing device for the installation of electromechanical equipment. Background Technology
[0002] The installation of electromechanical equipment requires the assistance of various devices, including leveling devices. A leveling device for electromechanical equipment installation is a tool used to adjust the balance of electromechanical equipment during installation. It mainly uses hydraulic systems, universal joints, support rods and other structures to achieve rapid posture adjustment of electromechanical equipment and improve installation efficiency.
[0003] Chinese patent application CN221121584U discloses a chemical equipment installation and leveling mechanism, including a device body and further comprising: several hydraulic lifting columns, the upper ends of which are fixedly connected to the lower surface of the device body around the perimeter; several shock-absorbing mechanisms, each disposed around the upper surface of the device body; and a lower slot, located in the middle of the lower surface of the device body. This invention, through the hydraulic lifting columns, automatically moves the device to the installation position before equipment installation. The hydraulic lifting columns then rise to lift the device, allowing the chemical equipment to be placed on top, providing effective support and ensuring rapid adjustment and installation. This effectively improves the efficiency and safety of chemical equipment installation, thereby enhancing the practicality of the device.
[0004] The aforementioned chemical equipment installation and leveling mechanism includes hydraulic lifting columns and hydraulic shock-absorbing columns. Leveling is achieved through the cooperation of these two types of hydraulic columns. However, this device cannot determine whether the equipment is balanced during leveling. Furthermore, four shock-absorbing mechanisms are symmetrically arranged above the device body, contacting the bottom side wall of the equipment. During use, the device needs to be inserted into the bottom of the equipment, and its central axis must coincide with the central axis of the equipment. If misalignment occurs, it will cause misalignment and tilting when the equipment is lifted. Moreover, once inserted into the bottom of the equipment, it is impossible to determine whether the device is coaxial with the equipment. Therefore, we provide a balancing device for electromechanical equipment installation to solve the above-mentioned problems. Utility Model Content
[0005] The purpose of this utility model is to provide a balancing device for the installation of electromechanical equipment. The detection component can detect the horizontal data of the electromechanical equipment, and the measuring component can measure the distance between the electromechanical equipment and the side of the device. This solves the problems of the above-mentioned leveling mechanism for the installation of chemical equipment.
[0006] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution: This utility model relates to a balancing device for installing electromechanical equipment, comprising a base; a support assembly and a traveling assembly are installed on the bottom side wall of the base; the support assembly includes a hydraulic push rod fixed to the bottom side wall of the base and a hardwood sleeve fitted onto the bottom side wall of the hydraulic push rod; the traveling assembly includes a wheel frame fixed to the bottom side wall of the base, and the wheel frame is connected to a traveling wheel via a wheel axle; a detection assembly is installed on the front side wall of the base, and the detection assembly includes a controller and an electronic level embedded in the front side wall of the base; a lifting assembly is also installed on the upper side wall of the base, and the lifting assembly includes a hydraulic push rod fixed to the upper side wall of the base and a lifting plate fixed to the upper side wall of the hydraulic push rod; a measuring assembly is also installed on the outer wall of the base, and the measuring assembly includes a rotating plate rotatably mounted on the base, and an infrared rangefinder is embedded in the outer wall of the rotating plate; abutment members are also installed on both sides of the infrared rangefinder and on the rotating plate.
[0007] The present invention is further configured such that a bottom hole is provided on the bottom side wall of the base, and a total of four bottom holes are provided, which are respectively located at the four corners of the bottom side wall of the base. A mounting bracket is fixedly installed on the upper end of the hydraulic push rod, and the hydraulic push rod is connected to the bottom hole through the mounting bracket.
[0008] The present invention is further configured such that bottom grooves are provided at both ends of the bottom side wall of the base, the wheel frame is fixedly installed in the bottom groove, and the wheel axle is rotatably inserted into the wheel frame, and multiple traveling wheels are equally spaced on the wheel frame.
[0009] The present invention is further configured such that a front groove 1 and a front groove 2 are provided on the front side wall of the base, the controller is embedded in the front groove 1, a magnetic ring is embedded in the rear side wall of the electronic level, and the two ends of the electronic level are snapped with retaining rings, the retaining rings being fixedly disposed inside the front groove 2.
[0010] The present invention is further configured such that a top groove is provided on the upper side wall of the base, and a top hole is provided at each of the four corners of the bottom side wall of the top groove. There are a total of four top grooves, and the four top grooves are distributed in a matrix structure.
[0011] The present invention is further configured such that the lifting component is disposed inside the top groove, a mounting bracket is fixedly installed on the bottom side wall of the hydraulic push rod two, and the hydraulic push rod two is connected to the top hole through the mounting bracket two, and the gap between the outer peripheral side wall of the lifting plate and the inner wall of the top groove is set.
[0012] The present invention is further configured such that a side groove is provided at the center of the four outer walls of the base, and a total of four measuring components are provided, which are respectively arranged in the side grooves on the four sides of the base. A plate groove 1 is provided on the outer wall of the rotating plate facing the center of the base, and plate groove 2 is provided on both sides of the plate groove 1. A plate hole is also provided at the bottom of the rotating plate.
[0013] The present invention is further configured such that a fixing frame is installed on the rear side wall of the infrared rangefinder, and the infrared rangefinder is fixedly installed in the plate groove through the fixing frame. A rotating rod is inserted into the plate hole of the rotating plate, and the end of the rotating rod is connected to the rod sleeve through a return spring.
[0014] The present invention is further configured such that the abutting member includes a rotating shaft slidably disposed in the second plate groove, and the rotating shaft is also inserted into the upper side wall of the sliding sleeve. The sliding sleeve is hollow inside, and a traction spring is also disposed inside the sliding sleeve. The sliding sleeve is slidably connected to the sliding plate through the traction spring.
[0015] This utility model has the following beneficial effects: This utility model features a base and a detection component. The base has two grooves on its front sidewall. The detection component includes a controller fixed in the first groove and a retaining ring fixed in the second groove. An electronic level is held in place within the retaining ring and connected to the controller via a flexible data cable. A magnetic ring is also embedded in the rear sidewall of the electronic level. In use, the electronic level is pulled out from the second groove and then placed against the outer wall of the equipment. The magnetic ring then attracts the electronic level to the outer wall of the equipment. After activation, the electronic level measures the level of the equipment and transmits the measured level data to the controller via the flexible data cable.
[0016] This utility model incorporates a measuring assembly, comprising four measuring components. The upper ends of the four side walls of the base are provided with side grooves. Each measuring assembly includes a rotating plate rotatably mounted within a side groove. A rotating rod is inserted into the bottom of the rotating plate, and rod sleeves are fitted at both ends of the rotating rod. A return spring is installed within each rod sleeve, connecting the rod sleeve to the rotating rod via the return spring. An infrared rangefinder is embedded in the outer wall of the rotating plate. Abutment members are provided on both sides of the infrared rangefinder. A second plate groove is provided on the outer wall of the rotating plate where the abutment members are located. The abutment plate includes a rotating shaft slidably connected to the second plate groove, and the rotating shaft is also inserted into the upper end of a sliding sleeve. The sliding sleeve is hollow and contains a... The device includes a traction spring and a sliding plate that is slidably inserted into the sliding sleeve. During use, pulling the rotating plate and applying force outwards compresses the return spring until the rotating plate is vertical. At this point, the infrared rangefinder is also aligned with the electromechanical equipment on the base. The abutment is then rotated out of the second slot, freeing the sliding plate from its constraint. Under the action of the traction spring, the sliding plate is pushed out of the sliding sleeve. The end of the sliding plate is then aligned with the corner of the side slot to support the rotating plate, ensuring it remains vertical. The device is then activated, and the infrared rangefinder measures the distance between itself and the electromechanical equipment, transmitting the measured data to the controller. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below.
[0018] Figure 1 A schematic diagram of the structure of a balancing device for installing electromechanical equipment. Figure 1 .
[0019] Figure 2 A schematic diagram of the structure of a balancing device for installing electromechanical equipment. Figure 2 .
[0020] Figure 3 This is a structural diagram of the base and detection components.
[0021] Figure 4 This is a structural disassembly diagram of the base and detection components.
[0022] Figure 5 This is a schematic diagram of the lifting component.
[0023] Figure 6 This is a schematic diagram of the measuring component.
[0024] Figure 7 This is a structural disassembly diagram of the measuring component.
[0025] The attached diagram lists the components represented by each number as follows: 1-Base, 101-Bottom Hole, 102-Bottom Groove, 103-Top Groove, 103a-Top Hole, 104-Side Groove, 105-Front Groove One, 106-Front Groove Two, 2-Support Assembly, 201-Hydraulic Push Rod One, 202-Mounting Bracket One, 203-Hardwood Sleeve, 3-Walking Assembly, 301-Wheel Frame, 302-Wheel Axle, 303-Walking Wheel, 4-Detection Assembly, 401-Controller, 402-Electronic Level, 402a-Magnetic Ring, 402b-Snap Ring, 403-Spring 5-Data cable, 5-Lifting assembly, 501-Lifting plate, 502-Hydraulic push rod II, 503-Mounting bracket II, 6-Measuring assembly, 601-Rotating plate, 601a-Plate slot I, 601b-Plate hole, 601c-Plate slot II, 602-Infrared rangefinder, 602a-Fixing bracket, 603-Rotating rod, 603a-Rod sleeve, 603b-Reset spring, 604-Abutting part, 604a-Sliding sleeve, 604b-Rotating shaft, 604c-Traction spring, 604d-Slide plate. Detailed Implementation
[0026] 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. Example 1
[0027] Please see Figure 1-3 This utility model is a balancing device for installing electromechanical equipment, including a base 1, a support component 2 and a walking component 3. The support component 2 includes a hydraulic push rod 201 fixed on the bottom side wall of the base 1. The base 1 can be lifted by the hydraulic push rod 201, and the walking component 3 can be lifted off the ground, thereby achieving the effect of positioning the base 1. When the support component 2 is retracted, the base 1 can be pushed to move.
[0028] Specifically, four bottom holes 101 are provided on the bottom side wall of the base 1, and they are respectively located at the four corners of the base 1. Bottom grooves 102 are provided on both the left and right ends of the bottom side wall of the base 1. The bottom holes 101 are used for the installation of the support component 2, and the bottom grooves 102 are used for the installation of the walking component 3.
[0029] Furthermore, the support assembly 2 includes a mounting bracket 202 fixed in the bottom hole 101. A hydraulic push rod 201 is also fixedly installed in the mounting bracket 202. A hardwood sleeve 203 is also fixedly installed on the side wall of the telescopic end of the hydraulic push rod 201. That is, when the hydraulic push rod 201 extends, it contacts the ground through the hardwood sleeve 203, which increases the friction between it and the ground and also protects the telescopic end of the hydraulic push rod 201. The walking assembly 3 includes a wheel frame 301 fixed in the bottom groove 102, a wheel axle 302 inserted into the wheel frame 301, and multiple walking wheels 303 rotatably mounted on the wheel axle 302 at equal intervals. Example 2
[0030] Please see Figure 4-5 Based on embodiment 1, a detection component 4 and a lifting component 5 are also provided. The electronic level 402 in the detection component 4 can measure the level data of the electromechanical equipment. The lifting plate 501 and the hydraulic rod 502 in the lifting component 5 can lift the four corners of the electromechanical equipment respectively, thereby achieving the effect of leveling the electromechanical equipment.
[0031] Specifically, the upper side wall of the base 1 is provided with a top groove 103. There are four top grooves 103 in total. The four top grooves 103 are distributed in a matrix structure. The four corners of the bottom side wall of the top groove 103 are provided with top holes 103a. The top grooves 103 are used to lift the installation of the component 5. The front side wall of the base 1 is also provided with front groove 105 and front groove 2 106, which are used for the installation of the detection component 4.
[0032] Furthermore, the detection component 4 includes a controller 401 embedded in the front slot 105 and an electronic level 402 disposed in the front slot 2 106. The electronic level 402 and the controller 401 are connected by a flexible data cable 403. Both ends of the electronic level 402 are also snapped with retaining rings 402b, and the retaining rings 402b are fixedly installed in the front slot 2 106. A magnetic ring 402a is also embedded in the rear side wall of the electronic level 402, and the electronic level 402 is attracted to the outer wall of the electromechanical equipment through the magnetic ring 402a. The lifting assembly 5 includes a mounting bracket 503 fixedly installed in the top hole 103a, and a hydraulic push rod 502 is installed in the mounting bracket 503. A lifting plate 501 is also fixedly installed on the telescopic end side wall of the upper part of the hydraulic push rod 502. The outer peripheral side wall of the lifting plate 501 is separated from the inner wall of the top groove 103.
[0033] The operation process of this embodiment is as follows: When in use, the electronic level 402 is pulled out from the front slot 2 106, and then the electronic level 401 is attached to the outer wall of the electromechanical equipment. At this time, the magnetic ring 402a can attract the electronic level 402 to the outer wall of the electromechanical equipment. Then, the device is started, and the electronic level 402 can measure the level data of the electromechanical equipment and transmit the obtained level data to the controller 401 through the elastic data line 403. Example 3
[0034] Please see Figure 6-7Based on Embodiments 1 and 2, a measuring component 6 is also provided. Through the cooperation of the rotating rod 603 and the abutment 604 in the measuring component 6, the rotating plate 601 can be kept in a vertical state in the working state. The rotating plate 601 is used for the storage and installation of the infrared rangefinder 602. The infrared rangefinder 602 measures the distance between it and the electromechanical equipment and transmits the measured data to the controller 401.
[0035] Specifically, a side groove 104 is provided at the center of the four outer walls of the base 1, and four measuring components 6 are provided in total, which are respectively installed in the side grooves 104 on the four sides of the base 1.
[0036] Furthermore, the measuring component 6 includes a rotating plate 601 rotatably disposed in the side groove 104. The outer wall of the rotating plate 601 facing the center of the base 1 has a plate groove 601a. An infrared rangefinder 602 is disposed in the plate groove 601a. A fixing bracket 602a is fixedly disposed on the rear side wall of the infrared rangefinder 602, and the infrared rangefinder 602 is fixedly installed in the plate groove 601a through the fixing bracket 602a. Plate groove 601a has two plate grooves 601c on both sides. Plate groove 601c is used for the installation of abutment 604. Abutment 604 includes a rotating shaft 604b slidably disposed in plate groove 601c. The rotating shaft 604b is also inserted into the upper side wall of sliding sleeve 604a. The sliding sleeve 604a is hollow inside. A traction spring 604c is also disposed inside the sliding sleeve 604a. The sliding sleeve 604a is slidably connected to the sliding plate 604d through the traction spring 604c. The bottom of the rotating plate 601 is also provided with a plate hole 601b, a rotating rod 603 is inserted into the plate hole 601b, and rod sleeves 603a are sleeved at both ends of the rotating rod 603. A return spring 603b is also provided in the rod sleeve 603a. The rod sleeve 603a is connected to the end of the rotating rod 603 through the return spring 603b.
[0037] The operation process of this embodiment is as follows: When in use, pull the rotating plate 601 and apply force to the outside, so that the return spring 603b is compressed in the opposite direction until the rotating plate 601 is in a vertical state. At this time, the infrared rangefinder 602 is also facing the electromechanical equipment located on the base 1. Then, rotate the abutment 604 out of the second plate groove 601c. At this time, the slide plate 604d loses the constraint of the second plate groove 601c, and is pushed out of the sliding sleeve 604a under the action of the traction spring 604c. Then, align the end of the slide plate 604d with the corner of the side groove 104 to support the rotating plate 601 and ensure that the rotating plate 601 is in a vertical state. Then, start the device, and the infrared rangefinder 602 works to measure the distance between it and the electromechanical equipment, and transmit the measured data to the controller 401.
[0038] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
Claims
1. A balancing device for installing electromechanical equipment, comprising a base (1); characterized in that: A support assembly (2) and a walking assembly (3) are installed on the bottom side wall of the base (1). The support assembly (2) includes a hydraulic push rod (201) fixed on the bottom side wall of the base (1) and a hardwood sleeve (203) fitted onto the bottom side wall of the hydraulic push rod (201). The walking assembly (3) includes a wheel frame (301) fixed on the bottom side wall of the base (1), and the wheel frame (301) is connected to the walking wheel (303) through a wheel axle (302). A detection assembly (4) is installed on the front side wall of the base (1). The detection assembly (4) includes a controller (401) and an electronic water meter embedded in the front side wall of the base (1). The base (1) is equipped with a lifting assembly (5) on its upper side wall. The lifting assembly (5) includes a hydraulic push rod (502) fixed to the upper side wall of the base (1) and a lifting plate (501) fixed to the upper side wall of the hydraulic push rod (502). The base (1) is also equipped with a measuring assembly (6) on its outer wall. The measuring assembly (6) includes a rotating plate (601) rotatably mounted on the base (1). An infrared rangefinder (602) is also embedded in the outer wall of the rotating plate (601). Abutment pieces (604) are also installed on both sides of the infrared rangefinder (602) and on the rotating plate (601).
2. The balancing device for installing electromechanical equipment according to claim 1, characterized in that, The base (1) has four bottom holes (101) on its bottom side wall. The four bottom holes (101) are located at the four corners of the bottom side wall of the base (1). The upper end of the hydraulic push rod (201) is fixedly mounted with a mounting bracket (202), and the hydraulic push rod (201) is connected to the bottom hole (101) through the mounting bracket (202).
3. The balancing device for installing electromechanical equipment according to claim 1, characterized in that, The bottom sidewall of the base (1) has bottom grooves (102) at both ends. The wheel frame (301) is fixedly installed in the bottom groove (102), and the wheel axle (302) is rotatably inserted into the wheel frame (301). Multiple walking wheels (303) are evenly spaced on the wheel frame (301).
4. The balancing device for installing electromechanical equipment according to claim 1, characterized in that, The base (1) has a front groove 1 (105) and a front groove 2 (106) on its front side wall. The controller (401) is embedded in the front groove 1 (105). The electronic level (402) has a magnetic ring (402a) embedded in its rear side wall. The two ends of the electronic level (402) are snapped with retaining rings (402b). The retaining rings (402b) are fixedly installed inside the front groove 2 (106).
5. A balancing device for installing electromechanical equipment according to claim 1, characterized in that, The upper sidewall of the base (1) is provided with a top groove (103), and the four corners of the bottom sidewall of the top groove (103) are provided with top holes (103a). There are four top grooves (103) in total, and the four top grooves (103) are distributed in a matrix structure.
6. A balancing device for installing electromechanical equipment according to claim 5, characterized in that, The lifting assembly (5) is located inside the top groove (103). The second hydraulic push rod (502) is fixedly mounted on the bottom side wall of the second hydraulic push rod (502), and the second hydraulic push rod (502) is connected to the top hole (103a) through the second hydraulic push rod (503). The outer peripheral side wall of the lifting plate (501) is separated from the inner wall of the top groove (103).
7. A balancing device for installing electromechanical equipment according to claim 1, characterized in that, The base (1) has a side groove (104) at the center of the four outer walls. There are four measuring components (6). The four measuring components (6) are respectively set in the side grooves (104) on the four sides of the base (1). The rotating plate (601) has a plate groove (601a) on the outer wall facing the center of the base (1), and plate grooves (601c) are opened on both sides of the plate groove (601a). The bottom of the rotating plate (601) also has a plate hole (601b).
8. A balancing device for installing electromechanical equipment according to claim 7, characterized in that, A mounting bracket (602a) is installed on the rear side wall of the infrared rangefinder (602), and the infrared rangefinder (602) is fixedly installed in the plate groove (601a) through the mounting bracket (602a). A rotating rod (603) is inserted into the plate hole (601b) of the rotating plate (601), and the end of the rotating rod (603) is connected to the rod sleeve (603a) through a return spring (603b).
9. A balancing device for installing electromechanical equipment according to claim 7, characterized in that, The abutment (604) includes a rotating shaft (604b) slidably disposed in the second plate groove (601c), and the rotating shaft (604b) is also inserted into the upper side wall of the sliding sleeve (604a). The sliding sleeve (604a) is hollow inside, and a traction spring (604c) is also disposed inside the sliding sleeve (604a). The sliding sleeve (604a) is slidably connected to the sliding plate (604d) through the traction spring (604c).
Citation Information
Patent Citations
Leveling mechanism for installation of chemical equipment
CN221121584U