A chassis for adjusting electromechanical equipment
By designing a chassis for adjustment of electromechanical equipment, the problem of difficulty in leveling during installation of electromechanical equipment is solved, and the stable installation and protection of the equipment is achieved.
Patent Information
- Application Number
- CN202010696152.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-07-20
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2040-07-20
AI Technical Summary
When installing electromechanical equipment, it is difficult to level due to processing errors. Existing solutions such as hitting the protruding part by a hammer, which can easily damage the equipment and be unstable.
A chassis for adjusting electromechanical equipment is designed, including base, fixing table, sliding plate, connecting plate, fixing plate, guide rod, screw and other components. Through the use of these components, the position of electromechanical equipment can be adjusted and stabilized.
This technical solution makes the installation of electromechanical equipment more stable, avoids equipment damage, and improves the overall stability of the installation.
Smart Images

Figure CN111795273B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a chassis for adjusting electromechanical equipment, which is applied to the technical field of electromechanical equipment installation. Background Art
[0002] Electromechanical equipment generally refers to machinery, electrical appliances and electrical automation equipment. In the fields of production and processing, a large number of electromechanical equipment are often used to carry out various production, processing or monitoring operations. When installing electromechanical equipment, due to some errors during processing, it is often difficult to level it. The current solution on the market is to hit the protruding part with a hammer, which is very backward and often causes damage to the electromechanical equipment itself. In view of the above defects, a chassis for adjusting electromechanical equipment is specially proposed, which can facilitate leveling, effectively stabilize the electromechanical equipment, and improve the stability of the installation of electromechanical equipment. Summary of the invention
[0003] In order to solve the defects of the existing technical solutions, the present invention discloses a chassis for adjusting electromechanical equipment. The present invention is easy to operate and can improve the stability of the electromechanical equipment during installation.
[0004] The invention discloses a chassis for adjusting electromechanical equipment, comprising: a base, a fixed platform, a sliding plate, a connecting plate, a fixed plate, a guide rod, a screw rod, a handle 1, a rectangular groove, a clamping plate, a bidirectional screw rod, a handle 2, a screw sleeve, a screw rod, a regular hexagonal block, a short shaft, and a top block. The left and right ends of the upper end surface of the base are respectively fixedly connected to a fixed platform, a sliding plate is placed on each fixed platform, the sliding plate extends longitudinally from the outside to the inside, and the middle part of the end surface of each sliding plate away from the center of the base is fixedly connected to a connecting plate. The fixed plate is fixedly connected to the end of the end surface of the fixed platform away from the center of the base, and the fixed plate corresponds to the connecting plate on the same side, and a guide rod is horizontally fixedly connected to the inner and outer sides of the end surface of the connecting plate away from the center of the base, the guide rod passes through the fixed plate on the same side and is slidably connected to the fixed plate, a screw rod is arranged between the two guide rods on each connecting plate, and one end of the screw rod is connected to the connecting plate The plate is transferred, the screw rod passes through the fixed plate on the same side and is threadedly connected with it, one end of the screw rod extending out of the fixed plate is fixedly connected to a handle 1, each sliding plate is opened with a rectangular groove, two clamping plates are symmetrically and slidably installed on both sides of the inner and outer sides of the rectangular groove, one end of the clamping plate extends out of the rectangular groove toward the center of the base, and a bidirectional screw rod is rotatably installed in each rectangular groove through a bearing, the bidirectional screw rod passes through the two clamping plates and is threadedly connected with them, the outer end of each bidirectional screw rod is fixedly connected to an extension rod, and the outer end of the extension rod is fixedly connected to a handle 2, four screw sleeves are fixedly connected to the upper end surface of the base placed between the two fixed platforms, and the screw sleeves are distributed in a rectangular array, and a screw is threadedly installed in each screw sleeve, the top of the screw is fixedly connected to a regular hexagonal block, and a short shaft is vertically fixedly connected to the center of the upper end surface of the regular hexagonal block, and the top block is rotatably installed on the top of the short shaft through a bearing.
[0005] The distance between the two fixed platforms is less than the length of the electromechanical equipment to be installed.
[0006] The height of the clamping plate is the same as that of the rectangular groove, and the end of the clamping plate facing the connecting plate does not protrude from the rectangular groove.
[0007] The top block is a cylindrical block, and a layer of rubber pad is bonded to the upper end surface of the top block.
[0008] Adopting this technical solution has the following advantages:
[0009] 1. Convenient operation;
[0010] 2. Effectively improve the stability during the installation of electromechanical equipment. Description of the Drawings
[0011] Figure 1 is the front view structural schematic diagram of a chassis for adjusting an electromechanical equipment according to the present invention;
[0012] Figure 2 is the top view structural schematic diagram of a chassis for adjusting an electromechanical equipment according to the present invention;
[0013] Figure 3 is the structural schematic diagram at the sliding plate in the present invention.
[0014] Wherein: 1 - base; 2 - fixed platform; 3 - sliding plate; 4 - connecting plate; 5 - fixing plate; 6 - guide rod; 7 - lead screw; 8 - handle one; 9 - rectangular groove; 10 - clamping plate; 11 - bidirectional lead screw; 12 - handle two; 13 - screw sleeve; 14 - screw; 15 - regular hexagon block; 16 - short shaft; 17 - top block; 111 - extension rod; 171 - rubber pad. Detailed Embodiment
[0015] Such as Figures 1 to 3As shown, the present invention discloses a chassis for adjusting electromechanical equipment, comprising: a base 1, a fixed platform 2, a sliding plate 3, a connecting plate 4, a fixed plate 5, a guide rod 6, a screw rod 7, a handle 1 8, a rectangular groove 9, a clamping plate 10, a bidirectional screw rod 11, a handle 2 12, a screw rod sleeve 13, a screw rod 14, a regular hexagonal block 15, a short shaft 16, and a top block 17. The left and right ends of the upper end surface of the base 1 are respectively fixed with a fixed platform 2, and a sliding plate 3 is placed on each fixed platform 2. The sliding plate 3 extends longitudinally from the outside to the inside. The middle part of the end face of each sliding plate 3 away from the center of the base 1 is fixedly connected to a connecting plate 4, the fixed plate 5 is fixedly connected to the end of the end face of the fixed platform 2 away from the center of the base 1, and the fixed plate 5 corresponds to the connecting plate 4 on the same side, and the inner and outer sides of the end face of the connecting plate 4 away from the center of the base 1 are respectively fixedly connected to a guide rod 6 horizontally, and the guide rod 6 passes through the fixed plate 5 on the same side and is slidably connected thereto, and a screw rod 7 is arranged between the two guide rods 6 on each connecting plate 4, and one end of the screw rod 7 is connected to the connecting plate 4 The screw rod 7 passes through the fixed plate 5 on the same side and is threadedly connected thereto. The end of the screw rod 7 extending out of the fixed plate 5 is fixedly connected to a handle 8. A rectangular groove 9 is opened on each sliding plate 3. Two clamping plates 10 are symmetrically slidably installed on both sides of the rectangular groove 9. The end of the clamping plate 10 extending toward the center of the base 1 extends out of the rectangular groove 9. A bidirectional screw rod 11 is rotatably installed in each rectangular groove 9 through a bearing. The bidirectional screw rod 11 passes through the two clamping plates 10 and is threadedly connected thereto. Each bidirectional screw rod 11 passes through the two clamping plates 10 and is threadedly connected thereto. The outer end of the screw rod 11 is fixedly connected to an extension rod 111, and the outer end of the extension rod 111 is fixedly connected to a handle 12. Four screw sleeves 13 are fixedly connected to the upper end surface of the base 1 placed between the two fixed platforms 2, and the screw sleeves 13 are distributed in a rectangular array. A screw 14 is threadedly installed in each screw sleeve 13, and a regular hexagonal block 15 is fixedly connected to the top of the screw 14. A short shaft 16 is vertically fixedly connected to the center of the upper end surface of the regular hexagonal block 15, and the top block 17 is rotatably installed on the top of the short shaft 16 through a bearing.
[0016] The distance between the two fixing platforms 2 is smaller than the length of the electromechanical equipment to be installed.
[0017] The height of the clamping plate 10 is consistent with that of the rectangular groove 9 , and one end of the clamping plate 10 facing the connecting plate 4 does not extend out of the rectangular groove 9 .
[0018] The top block 17 is a cylindrical block, and a rubber pad 171 is bonded to the upper end surface of the top block 17 .
[0019] The present invention is implemented as follows: In use, the electromechanical device to be installed is erected above the two fixed platforms 2. The handle two 12 can drive the two clamping plates 10 placed in the rectangular groove 9 to approach or move away from each other. Before installing the electromechanical device, the distance between the two clamping plates 10 on the sliding plate 3 is adjusted to be greater than the width of the electromechanical device. After placing the electromechanical device, the handle one 8 drives the screw rod 7 to rotate, driving the length of the screw rod 7 extending out of the fixed plate 5 to change, so as to drive the connecting plate 4 together with the sliding plate 3 to approach one side of the electromechanical device, making the sliding plate 3 close to the electromechanical device. Then, the handle two 12 drives the bidirectional screw rod 11 to rotate, and the rotation of the bidirectional screw rod 11 drives the two clamping plates 10 to approach each other, clamping the inner and outer sides of the electromechanical device. The screw sleeve 13 arranged between the two fixed platforms 2 and the mechanism installed on the screw sleeve 13 can be used for leveling the electromechanical device. The regular hexagon block 15 can be clamped and rotated by a wrench, thereby driving the screw rod 14 to rotate, so that the length of the screw rod 14 extending out of the screw sleeve 13 changes, so as to change the height of the top block 17, making the bottom of the electromechanical device on the same horizontal plane. In this application, the two sliding plates 3 clamp the left and right sides of the electromechanical device, the clamping plates 10 are arranged on the inner and outer sides of the electromechanical device, and then the screw sleeve 13 and the mechanism installed on the screw sleeve 13 ensure that the bottom of the electromechanical device is on the same horizontal plane, which can improve the stability during the installation of the electromechanical device.
[0020] Finally, it should be noted that the above embodiments are only used to illustrate the present invention and do not limit the technical solutions described in the present invention; therefore, although this specification has described the present invention in detail with reference to the above respective embodiments, those of ordinary skill in the art should understand that the present invention can still be modified or equivalently replaced; and all technical solutions and their improvements that do not depart from the spirit and scope of the present invention should be covered by the scope of the claims of the present invention.
Claims
1. A chassis for adjusting electromechanical equipment, include: The cam is an angular channel block, a plurality of channels, a plurality of channels are connected to the base, and the plurality of channels are connected to the base, wherein the plurality of channels are connected to the plurality of channels. The cam is provided with a plurality of support members, each of which is provided with a plurality of support members, each of which is provided with a plurality of support members, each of which is provided with a plurality of support members, each of which is provided with a plurality of support members.
2. A chassis for adjusting electromechanical equipment according to claim 1, Features: The distance between the two fixing tables is smaller than the length of the electromechanical equipment to be installed.
Citation Information
Patent Citations
Chassis for adjusting electromechanical equipment
CN212430284U