Mechanical and electrical equipment installation and debugging platform

By setting components such as rotating shafts, limiting grooves, and sliding blocks on the electromechanical equipment installation and debugging platform, the height and tilt of the loading plate can be adjusted, solving the problem that the existing platform cannot adapt to equipment of different sizes and non-horizontal surfaces, and improving the applicability of the debugging platform.

CN223604345UActive Publication Date: 2025-11-28ZHEJIANG YUANCHANG CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202422246950.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-11-28
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

Existing electromechanical equipment installation and commissioning platforms cannot adapt to equipment of different sizes and cannot accurately commission electromechanical equipment on non-horizontal surfaces, resulting in significant limitations in their use.

Method used

By setting components such as a rotating shaft, limiting groove, fixed shaft, sliding block, connecting shaft, sleeve and drive mechanism on the mounting plate, the height and tilt of the carrying plate can be adjusted. Combined with the sliding groove and cylinder of the support mechanism, the height of the mounting plate can be adjusted to adapt to the debugging of equipment on non-horizontal surfaces.

Benefits of technology

It enables flexible debugging of electromechanical equipment of different sizes and non-horizontal surfaces, improving the applicability and flexibility of the debugging platform.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to electric power equipment technical field discloses electromechanical equipment installation debugging platform, include: installation bottom plate, mounting plate, installation frame, the top of mounting plate is configured, and the fixed column is fixedly arranged on the installation frame, the top of fixed column is configured with U type post, the inside of U type post is configured with rotating shaft, the inside of rotating shaft is configured with rotating seat, and rotating seat is sleeved on rotating shaft, the top of installation frame is configured with limiting post, limiting groove is opened in the limiting post, the inside of limiting groove is slid with fixed shaft, the outside of fixed shaft is sleeved with sliding block, the both ends of connecting shaft are fixed on rotating seat and sliding block respectively, the outside of connecting shaft is sleeved with sleeve, and connecting block is connected on the sleeve, driving mechanism is configured on mounting plate, and the object plate is configured on two connecting shafts.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of power equipment, especially relates to electromechanical device installation and debugging platform. BACKGROUND

[0002] Electromechanical device generally refers to mechanical, electrical and electrical automation equipment, and in the building, it is collectively referred to as the mechanical, pipeline equipment except soil, carpentry, reinforcing bar, mud water. It is different from hardware, and it is more referred to as finished product that can realize a certain function. Electromechanical equipment can be divided into three categories according to use, namely industrial electromechanical equipment, information electromechanical equipment and people's livelihood electromechanical equipment. In the process of daily use, electromechanical equipment needs to be debugged frequently, and electromechanical equipment is generally debugged on the installation and debugging platform. At present, the clamping device on the existing electromechanical equipment installation and debugging platform is fixed, and cannot be adjusted according to the equipment of different size, in order to meet the needs of actual operation, only the debugging platform is replaced, so that the resources are wasted.

[0003] The utility model discloses a kind of electromechanical equipment installation and debugging platform, by setting clamping component, counterclockwise rotation placing plate, it can make bending rod pull mobile block and clamping plate along long hole and close electromechanical equipment, to clamping and fixing electromechanical equipment;Clockwise rotation placing plate, it can make clamping plate move away from electromechanical equipment, this clamping component can be suitable for a variety of different size specifications electromechanical equipment, to improve the practicality of debugging platform. However, the device still has some other problems, for example, the device can only adapt to different size several point equipment and the effect of free adjustment of operation table height, but it cannot accurately debug electromechanical equipment with non-horizontal installation position, leading to the use of debugging platform has great limitation. UTILITY MODEL CONTENTS

[0004] The utility model aims at providing a kind of electromechanical equipment installation and debugging platform to solve the problems presented in the above background.

[0005] To achieve the above object, the following technical scheme is provided: electromechanical equipment installation and debugging platform, comprising:

[0006] Mounting bottom plate;

[0007] Supporting mechanism, configured with the mounting bottom plate;

[0008] Mounting plate, configured on the supporting mechanism;

[0009] Mounting frame, configured above the mounting plate, two fixed columns are fixedly arranged on the two corners of the mounting frame;

[0010] U-shaped column, configured above the fixed column;

[0011] a rotating shaft configured with the interior of the U-shaped column;

[0012] a rotating seat sleeved on the rotating shaft;

[0013] a limiting column configured on the other two corners of the mounting frame;

[0014] a limiting slot formed on the limiting column;

[0015] a fixing shaft sliding with the interior of the limiting slot;

[0016] a sliding block sleeved on the fixing shaft;

[0017] a connecting shaft with two ends fixed on the rotating seat and the sliding block, respectively;

[0018] a sleeve sleeved on the outside of the connecting shaft;

[0019] a connecting block movably connected to two sleeves;

[0020] a driving mechanism configured on the mounting plate, and the connecting block is configured on the driving mechanism;

[0021] a loading plate configured on the two connecting shafts.

[0022] In the above technical solution, further, the driving mechanism comprises:

[0023] a worm configured with the interior of the mounting frame;

[0024] a screw rod configured above the mounting plate and fixedly configured below the connecting block;

[0025] a worm gear configured below the screw rod, and the worm gear is engaged with the worm.

[0026] In any of the above technical solutions, further, the limiting slot is arc-shaped, and the limiting slot is formed in a circular arc shape with the rotating shaft as the center.

[0027] In any of the above technical solutions, further, the supporting mechanism comprises:

[0028] a side plate configured on the front and rear sides of the upper surface of the mounting bottom plate, and also set on the front and rear sides of the lower surface of the mounting plate;

[0029] a sliding slot formed through the side plate on the front and rear sides;

[0030] a sliding shaft configured with the interior of the two sliding slots;

[0031] Limiting shafts are arranged between the two side plates in the same horizontal plane;

[0032] Rotary plates are arranged between the limiting shafts and the sliding shafts on the upper and lower sides respectively, and the two rotary plates are arranged in an X shape;

[0033] Rotary shafts are arranged in positions overlapping the two X-shaped rotary plates;

[0034] A cylinder is fixedly arranged on the upper surface of the mounting base plate, and the output shaft of the cylinder is fixedly connected to the sliding shaft.

[0035] In any of the above technical solutions, further, the two sides of the object plate are provided with downwardly curved fixed plates for clamping the object plate on the two connecting shafts.

[0036] In any of the above technical solutions, further, the object plate is provided with a baffle plate on the side close to the U-shaped column.

[0037] In any of the above technical solutions, further, one end of the worm penetrates through the mounting frame and is fixedly connected with a hand wheel.

[0038] The utility model discloses the beneficial effects are:

[0039] 1. The mounting frame is arranged above the mounting plate, two fixed columns are arranged at the left two corners of the mounting frame, U-shaped columns are fixedly arranged above the two fixed columns, a rotary shaft is arranged between the U-shaped columns, a rotary seat is sleeved on the rotary shaft, limiting columns are fixedly arranged above the right two corners of the mounting frame, limiting grooves are formed in the limiting columns in the front and back directions, fixed shafts are arranged in the limiting grooves, sliding blocks are sleeved on the fixed shafts, connecting shafts are fixedly arranged between the sliding blocks and the rotary seat on the same side, sleeves are sleeved on the connecting shafts, a connecting block is movably connected between the two sleeves, a driving mechanism is arranged on the connecting block, and an object plate is arranged on the two connecting shafts.

[0040] 2、Through setting up the support mechanism between the installation plate and the installation bottom plate, the side plate of the support mechanism is arranged on the front and back of the upper surface of the installation bottom plate and the front and back of the lower surface of the installation plate, the sliding groove is arranged on the two side plates in the same horizontal position, the sliding shaft is arranged in the sliding groove, the limiting shaft is fixedly arranged on the side of the side plate away from the sliding groove, the rotating plate is sleeved on the sliding shaft and the limiting shaft between the upper and lower two pairs of side plates, the two rotating plates arranged on the same side form a group and are arranged in the "X" shape, the rotating shaft is arranged at the overlapping position of the two groups of "X" type rotating plates, the air cylinder is fixedly arranged on the installation bottom plate, and the output shaft of the air cylinder is fixedly connected to the sliding shaft, so that the position of the sliding shaft in the sliding groove can be changed through the output shaft of the air cylinder, and therefore the height of the installation plate can be changed, so that the device can meet the needs of different heights. BRIEF DESCRIPTION OF DRAWINGS

[0041] Fig. 1 It is a structural schematic diagram of the utility model;

[0042] Fig. 2 It is a structural schematic diagram of the utility model;

[0043] Fig. 3 It is a structural section schematic diagram of the utility model;

[0044] Mark explanation: 100, installation bottom plate; 200, support mechanism; 210, side plate; 220, sliding groove; 230, sliding shaft; 240, limiting shaft; 250, rotating plate; 260, rotating shaft; 270, air cylinder; 300, installation plate; 310, installation frame; 320, fixed column; 330, U-shaped column; 340, rotating shaft; 350, rotating seat; 360, limiting column; 370, limiting groove; 380, fixed shaft; 390, sliding block; 400, connecting shaft; 410, sleeve; 420, connecting block; 430, driving mechanism; 431, worm; 432, screw; 433, worm gear; 434, hand wheel; 440, object plate; 441, fixed plate; 442, baffle. DETAILED DESCRIPTION

[0045] The technical solutions in the embodiments of the present application will be clearly described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art belong to the scope of protection of the present application.

[0046] In the description of the present application, it should be noted that the terms used herein are only intended to describe specific embodiments and are not intended to limit the exemplary embodiments according to the present application. For ease of description, the sizes of the various parts shown in the drawings are not drawn in proportion to the actual proportions. The techniques, methods and devices known to those skilled in the relevant art can not be discussed in detail, but should be considered as part of the authorized description. In all examples shown and discussed herein, any specific value should be interpreted as merely exemplary and not as a limitation. Therefore, other examples of exemplary embodiments can have different values. It should be noted that similar reference numerals and letters represent similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further discussed in subsequent drawings.

[0047] As Figs. 1-3 shown, the present embodiment provides an electromechanical device installation and debugging platform, comprising:

[0048] an installation base plate 100;

[0049] a support mechanism 200 configured on the installation base plate 100;

[0050] an installation plate 300 configured on the support mechanism 200;

[0051] an installation frame 310 configured above the installation plate 300, two fixed columns 320 are fixedly arranged on two corners of the installation frame 310;

[0052] a U-shaped column 330U configured above the fixed column 320;

[0053] a rotating shaft 340 configured inside the U-shaped column 330U;

[0054] a rotating seat 350 sleeved on the rotating shaft 340;

[0055] a limiting column 360 configured on the other two corners of the installation frame 310;

[0056] a limiting groove 370 opened on the limiting column 360;

[0057] a fixed shaft 380 slidingly arranged inside the limiting groove 370;

[0058] a sliding block 390 sleeved on the fixed shaft 380;

[0059] a connecting shaft 400 with two ends fixed on the rotating seat 350 and the sliding block 390, respectively;

[0060] a sleeve 410 sleeved on the outside of the connecting shaft 400;

[0061] The connecting block 420 is movably connected to the two sleeves 410;

[0062] The driving mechanism 430 is arranged on the mounting plate 300, and the connecting block 420 is arranged on the driving mechanism 430;

[0063] The object plate 440 is arranged on the two connecting shafts 400.

[0064] In the technical solution, in order to enable the non-horizontal electromechanical equipment to be debugged, the mounting plate 300 is fixed above the mounting bottom plate 100 through the support mechanism 200, the mounting frame 310 is fixedly arranged on the upper surface of the mounting plate 300, the fixed columns 320 are respectively fixedly arranged above the two left corners of the mounting frame 310, the U-shaped columns 330U are respectively fixedly arranged above the two fixed columns 320, the rotating shafts 340 are respectively arranged between the two U-shaped columns 330U, the rotating seats 350 are respectively sleeved on the two rotating shafts 340, the two limiting columns 360 are fixedly arranged at the other two corners of the mounting frame 310, the limiting grooves 370 are respectively formed in penetrating through the two limiting columns 360, the fixed shafts 380 are respectively arranged in the limiting grooves 370, the fixed shafts 380 can slide in the limiting grooves 370, the sliding blocks 390 are sleeved on the fixed shafts 380, the connecting shafts 400 are fixedly connected between the sliding blocks 390 and the rotating seats 350 on the same side, the object plate 440 is arranged on the two connecting shafts 400, the sleeves 410 are respectively sleeved on the two connecting shafts 400, the connecting block 420 is movably connected between the two sleeves 410, the driving mechanism 430 is fixedly arranged on the mounting plate 300 below the connecting block 420, the height of the connecting block 420 can be changed through the driving mechanism 430, so that the height of the connecting shaft 400 on the side close to the connecting block 420 can be changed, the inclination of the object plate 440 is changed, and finally the device can adapt to the debugging of the non-horizontal electromechanical equipment.

[0065] The embodiment provides an electromechanical equipment mounting and debugging platform, in addition to the technical solutions of the above-mentioned embodiments, and has the following technical features.

[0066] As shown in the figure, in the embodiment, the driving mechanism 430 comprises: Figs. 1-3

[0067] The worm 431 is arranged in the inside of the mounting frame 310;

[0068] The screw rod 432 is arranged above the mounting plate 300 and fixedly arranged below the connecting block 420;

[0069] The worm wheel 433 is arranged below the screw rod 432, and the worm wheel 433 is engaged with the worm 431.

[0070] ​In this technical solution, in order to drive the height of the connecting block 420, a worm gear 431 is horizontally arranged inside the mounting frame 310, and a screw 432 is vertically fixed on the mounting plate 300. A worm wheel 433 is fixedly arranged at the lower end of the screw 432 at the same level as the worm gear 431. The rotation of the worm gear 431 can drive the worm wheel 433 to rotate, thereby causing the screw 432 to rotate, which in turn drives the connecting block 420 to change position, making it easier to adjust the tilt of the carrying plate 440.

[0071] This embodiment provides an electromechanical equipment installation and commissioning platform, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0072] like Figs. 1-3 As shown, in this embodiment, the limiting groove 370 is arc-shaped, and the limiting groove 370 is arc-shaped with the rotation axis 340 as the center.

[0073] In this technical solution, in order for the fixed shaft 380 to slide smoothly inside the limiting post 360 when the connecting block 420 drives the connecting shaft 400 to rotate, the limiting groove 370 is set as an arc, and the limiting groove 370 is set as an arc with the axis of the rotating shaft 340 as the center. In this way, when the connecting block 420 drives one end of the two connecting shafts 400 to change the height, the sliding block 390 can slide along the limiting groove 370 with the fixed shaft 380, which facilitates the change of height of the carrying plate 440.

[0074] This embodiment provides an electromechanical equipment installation and commissioning platform, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0075] like Figs. 1-3 As shown, in this embodiment, the support mechanism 200 includes:

[0076] Side plates 210 are disposed on the front and rear sides of the upper surface of the mounting base plate 100, and are also disposed on the front and rear sides of the lower surface of the mounting plate 300.

[0077] A sliding groove 220 extends through the side plates 210 on both the front and rear sides;

[0078] The sliding shaft 230 is configured inside the two sliding grooves 220;

[0079] The limiting shaft 240 is positioned between two side plates 210 on the same horizontal plane;

[0080] The rotating plate 250 is positioned between the limiting shaft 240 and the sliding shaft 230 on the upper and lower sides respectively, and the two rotating plates 250 are arranged in an "X" shape.

[0081] A rotating shaft 260 is arranged at the position overlapping the two "X"-shaped rotating plates 250.

[0082] A cylinder 270 is fixedly arranged on the upper surface of the mounting base plate 100, and the output shaft of the cylinder 270 is fixedly connected to the sliding shaft 230.

[0083] In the technical solution, in order to adjust the height of the object plate 440, a support mechanism 200 is arranged between the mounting plate 300 and the mounting base plate 100, side plates 210 are fixedly arranged on the upper surface of the mounting base plate 100 and the lower surface of the mounting plate 300 on the front and rear sides, sliding grooves 220 are arranged at the same positions of the side plates 210 on the front and rear sides of the mounting plate 300 and the mounting base plate 100, a sliding shaft 230 is arranged between the sliding grooves 220 on the lower surface of the mounting plate 300 and the upper surface of the mounting base plate 100, limit shafts 240 are fixedly arranged at the ends of the side plates 210 away from the sliding grooves 220, rotating plates 250 are connected between the sliding shaft 230 on the upper surface of the mounting base plate 100 and the limit shaft 240 on the lower surface of the mounting plate 300, and rotating plates 250 are also connected between the limit shaft 240 on the upper surface of the mounting base plate 100 and the sliding shaft 230 on the lower surface of the mounting plate 300, the two rotating plates 250 are arranged in an "X" shape, a group of rotating plates 250 are arranged on the front and rear sides of the mounting plate 300 and the mounting base plate 100, respectively, rotating shafts 260 are arranged at the positions overlapping the two rotating plates 250 in each group, the two groups of rotating shafts 260 are connected together, a cylinder 270 is fixedly arranged on the upper surface of the mounting base plate 100, and the output shaft of the cylinder 270 is fixedly connected to the sliding shaft 230, so that the sliding shaft 230 can slide along the inside of the sliding groove 220 through the output shaft of the cylinder 270, thereby changing the distance between the sliding shaft 230 and the limit shaft 240 on the same horizontal plane, and the height of the mounting plate 300 and the height of the object plate 440 can be changed, thereby facilitating the requirement of different heights.

[0084] The embodiment provides an electromechanical equipment installation and debugging platform.

[0085] As shown in Figs. 1-3 In the embodiment, downwardly curved fixing plates 441 are arranged on the two sides of the object plate 440, and the object plate 440 is clamped on the two connecting shafts 400 through the fixing plates 441.

[0086] In the technical solution, in order to facilitate the installation of the object plate 440, downwardly curved fixing plates 441 are fixedly arranged at the two ends of the object plate 440, so that the two ends of the object plate 440 can be clamped on the two connecting shafts 400 through the fixing plates 441, thereby facilitating the installation and dismounting of the object plate 440.

[0087] The embodiment provides a mechanical and electrical equipment installation and debugging platform.

[0088] As shown in Figs. 1-3 In the embodiment, the baffle 442 is arranged on one side of the object plate 440 close to the U-shaped column 330U.

[0089] In the technical scheme, in order to limit the mechanical and electrical equipment when the object plate 440 is inclined, the baffle 442 is arranged on one side of the object plate 440 close to the U-shaped column 330U, so that the object plate 440 is arranged to be inclined when the two connecting shafts 400 are changed in height, and the baffle 442 arranged on the bottom of the object plate 440 can limit the mechanical and electrical equipment above the object plate 440, and meanwhile, a clamp (not shown in the figure) can be arranged on the object plate 440 and used in cooperation with the baffle 442, so that the mechanical and electrical equipment is conveniently fixed.

[0090] The embodiment provides a mechanical and electrical equipment installation and debugging platform.

[0091] As shown in Figs. 1-3 In the embodiment, one end of the worm 431 penetrates through the mounting frame 310 and is fixedly connected with the hand wheel 434.

[0092] In the technical scheme, in order to facilitate the rotation of the worm 431, one end of the worm 431 penetrates through the mounting frame 310 and is fixedly connected with the hand wheel 434, the rotation of the worm 431 is driven through the hand wheel 434, so that the rotation of the screw rod 432 is conveniently controlled, and finally the inclination of the object plate 440 is conveniently controlled.

[0093] The embodiments of the application are described above in combination with the drawings, the embodiments and the features in the embodiments in the application can be combined with each other without conflict, the application is not limited to the above-mentioned specific embodiments, the above-mentioned specific embodiments are only illustrative but not restrictive, and a person of ordinary skill in the art can make many forms under the guidance of the application without departing from the purpose of the application and the scope protected by the claims, and all the forms belong to the protection of the application.

Claims

1. A platform for installation and commissioning of electromechanical equipment, characterized in that, Include: The installation of the bottom plate (100); Supporting mechanism (200), configured with the installation of the bottom plate (100) on; Mounting plate (300), configured on the supporting mechanism (200); Mounting frame (310), configured above the mounting plate (300), two corners of the mounting frame (310) are fixedly provided with two fixed columns (320); U-shaped column (330), configured above the fixed column (320); Rotary shaft (340), configured inside the U-shaped column (330); Rotating seat (350), sleeved on the rotary shaft (340); Limiting column (360), configured on the other two corners of the mounting frame (310); Limiting groove (370) is opened on the limiting column (360); Fixed shaft (380), sliding with the inside of the limiting groove (370); Sliding block (390), sleeved on the fixed shaft (380); Connecting shaft (400), both ends are fixed on the rotating seat (350) and the sliding block (390) respectively; Sleeve (410), sleeved on the outside of the connecting shaft (400); Connecting block (420), movably connected to two sleeves (410); Driving mechanism (430), configured on the mounting plate (300), and the connecting block (420) is configured on the driving mechanism (430); The object plate (440) is configured on two connecting shafts (400).

2. The electromechanical device installation commissioning platform of claim 1, wherein: The driving mechanism (430) comprises: Worm (431), configured inside the mounting frame (310); Screw rod (432), configured above the mounting plate (300), and fixedly configured below the connecting block (420); Worm wheel (433), configured below the screw rod (432), and the worm wheel (433) is engaged with the worm (431).

3. The electromechanical device installation commissioning platform of claim 1, wherein: The limiting groove (370) is arc-shaped, and the limiting groove (370) is arc-shaped with the rotary shaft (340) as the center.

4. The electromechanical device installation commissioning platform of claim 1, wherein: The supporting mechanism (200) comprises: Side plate (210), configured with the front and back sides of the upper surface of the installation bottom plate (100), and also arranged on the front and back sides of the lower surface of the mounting plate (300); Sliding groove (220), through opening on the side plate (210) on the front and back sides; Sliding shaft (230), configured inside two sliding grooves (220); Limiting shaft (240), configured between two side plates (210) on the same horizontal plane; Rotating plate (250), both ends are respectively configured between the limiting shaft (240) and the sliding shaft (230) on the upper and lower sides, and two rotating plates (250) are arranged in "X" shape; Rotating shaft (260), configured at the position overlapping two "X" type rotating plates (250); Cylinder (270), fixedly configured on the upper surface of the installation bottom plate (100), and the output shaft of the cylinder (270) is fixedly connected to the sliding shaft (230).

5. The electromechanical device installation commissioning platform of claim 1, wherein: Two sides of the carrier plate (440) are provided with downwardly curved fixing plates (441) for clamping the carrier plate (440) on the two connecting shafts (400).

6. The electromechanical device installation commissioning platform of claim 1, wherein: The carrier plate (440) is provided with a baffle (442) on one side close to the U-shaped column (330).

7. The electromechanical device installation commissioning platform of claim 2, wherein: One end of the worm (431) penetrates through the mounting frame (310) and is fixedly connected with a hand wheel (434).

Citation Information

Patent Citations

  • Electromechanical equipment installation and debugging platform

    CN219337640U