Transportation device for electromechanical equipment

By designing a transportation device for electromechanical equipment, combined with lifting and clamping components, the space limitations and equipment damage problems of coal mine electromechanical equipment during loading, unloading and transportation, achieving flexible handling and preventing equipment damage.

CN223118001UActive Publication Date: 2025-07-18SHENHUA GUONENG ENERGY GRP +1
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Patent Information

Application Number
CN202421864729.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-07-18
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

The existing coal mine electromechanical equipment transportation devices have problems such as space limitations and equipment damage during loading and unloading, especially when space limitations are difficult to carry flexibly.

Method used

A transportation device including a placement seat, support column, lifting assembly and clamping assembly is designed. The lifting assembly is connected to the rotating column to achieve flexible lifting and fixing of the equipment. The clamping assembly is used for stable clamping of the equipment to prevent equipment damage caused by bumps.

Benefits of technology

In the case of space limitations, flexible handling of electromechanical equipment is achieved and equipment collision prevention is prevented, improving safety and convenience during transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a transportation device for electromechanical equipment, which comprises a placing seat for placing the electromechanical equipment; the supporting column is arranged at the edge of the placing seat and vertically extends upwards, two mounting plates are arranged on the supporting column in a spaced mode, a rotating column is connected between the two mounting plates, the supporting column and the rotating column are arranged in a spaced mode, and the rotating column is rotationally arranged on the mounting plates; the hoisting assembly is used for hoisting the electromechanical equipment, one end of the hoisting assembly is connected to the rotating column, and the hoisting assembly and the placing base are arranged at an interval; and the clamping assembly is arranged on the placing seat and is used for clamping the electromechanical equipment. And the electromechanical equipment can be conveniently loaded and unloaded, the electromechanical equipment can also be fixed in the transportation process, and the situation that the equipment is damaged due to equipment collision caused by transportation jolt is prevented. The hoisting assembly is connected with the rotating column, and the rotating column drives the hoisting assembly to rotate within a certain range with the rotating column as the circle center, so that the coal mine electromechanical equipment is flexibly carried under the condition that the space is limited.
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Description

Technical Field

[0001] The present disclosure relates to the field of coal mine equipment transportation, and more particularly, to a transportation device for electromechanical equipment. Background Art

[0002] During the coal mining process, various electromechanical equipment is required to ensure the smooth coal mining and power supply. When transporting the electromechanical equipment to the coal mine site, corresponding transportation devices are needed to carry or transfer the electromechanical equipment used in the coal mine. However, in the existing coal mine electromechanical transportation devices, during the loading and unloading process of the electromechanical equipment on the device, due to space limitations, there are many position limits for placing the equipment during the loading and unloading process, and it is inconvenient for the loading and unloading tools to enter, making it difficult to load and unload the equipment. In addition, during the equipment transportation process, the roads in the coal mine are bumpy, and the electromechanical equipment will move back and forth on the transportation device, resulting in damage due to collisions. Summary of the Utility Model

[0003] The purpose of the present disclosure is to provide a transportation device for electromechanical equipment to solve the problems of damage to coal mine electromechanical equipment during handling and the inability to flexibly handle coal mine electromechanical equipment under space constraints in the prior art.

[0004] To achieve the above object, the present disclosure provides a transportation device for electromechanical equipment, including:

[0005] A placement seat for placing electromechanical equipment;

[0006] Support columns are provided at the edges of the placement seat and extend vertically upward. Two mounting plates are spaced apart on the support columns, and a rotating column spaced from the support columns is connected between the two mounting plates. The rotating column is rotatably provided on the mounting plates;

[0007] A hoisting assembly for hoisting the electromechanical equipment. One end of the hoisting assembly is connected to the rotating column and is spaced from the placement seat; and

[0008] A clamping assembly is provided on the placement seat for clamping the electromechanical equipment.

[0009] Optionally, the placement seat includes:

[0010] A base on which a plurality of placement grooves are spaced apart;

[0011] A plurality of rubber wheels, which are correspondingly arranged in the placement grooves, and the tops of the rubber wheels are higher than the upper surface of the base; and

[0012] A placement plate that is movably placed on the plurality of rubber wheels.

[0013] Optionally, a first sliding groove is provided on the base, and the first sliding groove is located on the outer periphery of the plurality of placement grooves. The clamping assembly includes a plurality of abutting tops movably arranged in the first sliding groove, and the plurality of abutting tops can be arranged at intervals in the first sliding groove for clamping the electromechanical equipment.

[0014] Optionally, the placement seat further includes a connecting plate arranged on the base, the connecting plate is located between the first sliding groove and the placement plate, a limiting pin extending towards the placement plate is connected to the connecting plate, and a limiting hole matching with the limiting pin is arranged on the placement plate.

[0015] Optionally, the abutting top includes:

[0016] A fixed seat, the fixed seat is movably arranged in the first sliding groove;

[0017] A fixing plate, connected to the fixed seat and extending vertically upwards, a second sliding groove is formed on the fixing plate, and the second sliding groove extends along the extending direction of the fixing plate; and

[0018] A sliding block, movably arranged in the second sliding groove; and

[0019] An abutting limiting member, the abutting limiting member is connected to the sliding block and is used for abutting against one side of the electromechanical equipment.

[0020] Optionally, the abutting limiting member includes:

[0021] A screw rod, the screw rod is movably penetrated through the sliding block and is arranged at an angle with the fixing plate;

[0022] An abutting top plate, the abutting top plate is arranged at one end of the screw rod close to the placement groove, and the abutting top plate is used for contacting the electromechanical equipment; and

[0023] A turntable, the turntable is arranged at one end of the screw rod far from the abutting top plate.

[0024] Optionally, the cross section of the first sliding groove is an inverted T-shaped structure, the fixed seat is located in the horizontal end of the inverted T-shaped structure, and the width of the fixed seat is greater than the width of the vertical end of the inverted T-shaped structure, so that the top end of the inverted T-shaped structure can limit the fixed seat in the thickness direction of the placement seat. The abutting top further includes a fastener, the fastener is in threaded cooperation with the fixed seat, and the fastener can abut against the bottom surface of the horizontal end of the inverted T-shaped structure.

[0025] Optionally, the hoisting assembly includes:

[0026] A cantilever, which is connected to the rotating column and extends in a direction away from the rotating column; and

[0027] A hoisting gourd, which is movably arranged on the cantilever along the extending direction of the cantilever and is used for hoisting the electromechanical equipment.

[0028] Optionally, the cross-section of the cantilever is an I-shaped structure, and two oppositely arranged tracks are formed on the bottom wall of the I-shaped structure. Two sets of pulleys are oppositely arranged on the hoisting gourd, and the two sets of pulleys are respectively arranged on the two tracks.

[0029] Optionally, one of the mounting plates is located at one end of the support column away from the placing seat.

[0030] Optionally, a plurality of rollers are arranged at intervals below the placing seat.

[0031] Optionally, a push-pull rod for moving the placing seat is further arranged at the upper edge of the placing seat.

[0032] Through the above technical solutions, by installing both the hoisting assembly and the clamping assembly on the placing seat, it is not only convenient for loading and unloading the electromechanical equipment, but also can fix the electromechanical equipment during transportation, thereby preventing the equipment damage caused by the collision of the electromechanical equipment due to the bumps during transportation. In addition, the hoisting assembly is connected to the rotating column, and the rotating column can drive the hoisting assembly to rotate within a certain range with the rotating column as the center, increasing the moving area of the hoisting assembly. When there are other things restricting the transportation device around the equipment and it is not convenient for the transportation device to enter, the position of the hoisting assembly can be adjusted by rotating the rotating column. After adjusting the hoisting assembly to a suitable position, the electromechanical equipment to be transported is hoisted out and placed on the placing seat, so as to flexibly transport the coal mine electromechanical equipment under limited space conditions.

[0033] Other features and advantages of the present disclosure will be described in detail in the subsequent specific implementation part. Brief Description of the Drawings

[0034] The drawings are used to provide a further understanding of the present disclosure, and constitute a part of the specification. They are used together with the following specific implementation to explain the present disclosure, but do not constitute a limitation to the present disclosure. In the drawings:

[0035] Figure 1 is a schematic diagram of a transportation device for electromechanical equipment according to an embodiment of the present disclosure.

[0036] Figure 2 is a side view of a transportation device for electromechanical equipment according to an embodiment of the present disclosure.

[0037] Figure 3A cross-sectional view of a transportation device for electromechanical equipment according to an embodiment of the present disclosure.

[0038] Figure 4 is Figure 1 An enlarged view of part A on the basis.

[0039] Explanation of reference numerals

[0040] 1 - Placing seat; 11 - Base; 111 - Placing groove; 112 - First chute; 12 - Rubber wheel; 13 - Placing plate; 131 - Limiting hole; 14 - Connecting plate; 141 - Limiting pin; 2 - Support column; 21 - Mounting plate; 22 - Rotating column; 3 - Hoisting assembly; 31 - Cantilever; 311 - Track; 32 - Hoisting winch; 33 - Pulley; 4 - Clamping assembly; 40 - Top abutting part; 41 - Fixed seat; 42 - Fixed plate; 421 - Second chute; 43 - Slide block; 44 - Top abutting limiting member; 441 - Screw; 442 - Top abutting plate; 443 - Turntable; 45 - Fastening member; 5 - Roller; 6 - Push - pull rod. Detailed description of specific embodiments

[0041] The following will describe in detail the specific embodiments of the present disclosure with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are only for the purpose of illustrating and explaining the present disclosure, and are not intended to limit the present disclosure.

[0042] In the present disclosure, unless otherwise stated, the orientation terms such as "upper" and "lower" are defined according to the layout direction of the transportation device for electromechanical equipment during actual use, specifically as Figure 2 shown in the drawing direction. The orientation terms such as "inner" and "outer" are defined with respect to the contour of the corresponding component. The use of terms such as "first" and "second" is for the purpose of distinguishing different components, and does not have sequentiality and importance. In addition, in the following description, when referring to the drawings, unless otherwise explained, the same reference numerals in different drawings represent the same or similar elements.

[0043] According to an embodiment of the present disclosure, as Figures 1 to 4 shown, a transportation device for electromechanical equipment is provided, including a placing seat 1, a support column 2, a hoisting assembly 3, and a clamping assembly 4. Among them, the placing seat 1 can be used to place electromechanical equipment. The support column 2 can be arranged at the edge of the placing seat 1 and extend vertically upward. Two mounting plates 21 are arranged at intervals on the support column 2, and a rotating column 22 spaced from the support column 2 is connected between the two mounting plates 21. The rotating column 22 is rotatably arranged on the mounting plate 21. The hoisting assembly 3 can be used to hoist electromechanical equipment. One end of the hoisting assembly 3 is connected to the rotating column 22 and is spaced from the placing seat 1. The clamping assembly 4 can be arranged on the placing seat 1 for clamping electromechanical equipment.

[0044] Through the above technical solution, the hoisting assembly 3 and the clamping assembly 4 are installed on the placement base 1 at the same time, which can not only facilitate the loading and unloading of the electromechanical equipment, but also fix the electromechanical equipment during transportation, thereby preventing equipment damage caused by the collision of the electromechanical equipment due to bumps during transportation. In addition, the hoisting assembly 3 is connected to the rotating column 22, and the rotating column 22 can drive the hoisting assembly 3 to rotate within a certain range with the rotating column 22 as the center, increasing the moving area of the hoisting assembly 3. When there are other things around the equipment to limit the access of the transportation device, the position of the hoisting assembly 3 can be adjusted by rotating the rotating column 22. After adjusting the hoisting assembly 3 to a suitable position, the electromechanical equipment to be transported is hoisted out and placed on the placement base 1, so as to flexibly transport the coal mine electromechanical equipment under limited space conditions.

[0045] It should be noted that one mounting plate 21 is located at the end of the support column 2 away from the placement base 1. The other mounting plate 21 can be arranged at a position closer to the end of the support column 2 away from the placement base 1, so that there is a larger gap between the hoisting assembly 3 and the placement base 1 to accommodate electromechanical equipment with a higher height. The support column 2 can also be set as a telescopic structure. By telescoping the support column 2, the distance between the rotating column 22 and the placement base 1 is changed, so as to adjust the installation height of the hoisting assembly 3. The present disclosure does not limit this.

[0046] Furthermore, as Figures 1 to 3 shown, the placement base 1 can include a base 11, a plurality of rubber wheels 12 and a placement plate 13. Among them, a plurality of placement grooves 111 can be spaced apart on the base 11, and the plurality of rubber wheels 12 are correspondingly arranged in the placement grooves 111, and the top of the rubber wheels 12 is higher than the upper surface of the base 11. Here, the placement groove 111 can be a through groove penetrating the base 11 or a bottomed groove. When the placement groove 111 is a bottomed groove, the rubber wheel 12 can be directly placed in the groove. When the placement groove 111 is a through groove, a rotating shaft can be connected in the through groove, and the rubber wheel 12 can be connected in the placement groove 111 through the rotating shaft and can rotate relative to the rotating shaft. The present disclosure does not limit this. Regarding the number of the placement grooves 111, taking the base 11 and the placement plate 13 as quadrilaterals as an example, the placement grooves 111 can be four, which can be correspondingly arranged on each side of the quadrilateral base 11 and are all located at the mid-axis of each side. The present disclosure also does not limit this. The placement plate 13 is movably placed on the plurality of rubber wheels 12. The rubber wheels 12 can not only support the placement plate 13, so that there is a space between the placement plate 13 and the base 11, but also make it easier to adjust the position of the placement plate 13 when the rubber wheels 12 roll.

[0047] Furthermore, as Figure 1 and Figure 4As shown, a first chute 112 may be annularly provided on the base 11. The first chute 112 is located on the outer periphery of a plurality of placement grooves 111. The clamping assembly 4 includes a plurality of abutting tops 40 movably arranged in the first chute 112. The plurality of abutting tops 40 can be arranged at intervals in the first chute 112 for clamping the electromechanical device. The abutting top 40 can be adjusted to any position in the first chute 112 to be abutted against the electromechanical device in multiple directions according to different size specifications of the electromechanical device, so as to complete the fixed clamping of the electromechanical device. Here, taking the base 11 as a triangle as an example, there may be three abutting tops 40, and the first chute 112 may also be triangular. The abutting tops 40 can be respectively adjusted to the three sides of the first chute 112 and abutted against the electromechanical device to be transported from three directions to fix the electromechanical device. Taking the base 11 as a quadrilateral as an example, there may be four abutting tops 40, and the first chute 112 may also be quadrilateral. The abutting tops 40 can be respectively located on the four sides of the first chute 112 and abutted against the electromechanical device to be transported from four directions to fix the electromechanical device. Here, the four abutting tops 40 can also be in pairs corresponding to each other and adjusted to the positions on the two central axes of the quadrilateral, corresponding to the positions of the placement grooves 111. The present disclosure does not limit this.

[0048] Further, as Figure 3 and Figure 4As shown, the placement base 1 further includes a connecting plate 14 disposed on the base 11. The connecting plate 14 is located between the first chute 112 and the placement plate 13. A limit pin 141 extending towards the placement plate 13 is connected to the connecting plate 14, and a limit hole 131 cooperating with the limit pin 141 is provided on the placement plate 13. The number of the limit holes 131 can be multiple, so that the placement plate 13 can cooperate with the limit pin 141 when adjusted to different positions. The present disclosure does not limit this. Here, taking both the base 11 and the placement plate 13 as quadrilaterals as an example, the limit holes 131 can be four and are provided at the central axis of the placement plate 13. The connecting plate 14 and the limit pins 141 can both be four and are provided at the central axis of the base 11, and the limit pins 141 and the limit holes 131 correspond to each other one by one. It can also be that the connecting plate 14 and the limit pin 141 are only one. When the placement plate 13 rotates to different directions, it cooperates with one of the limit holes 131 to limit the placement plate 13 on the base 11, reducing the possibility of crosstalk caused by the displacement between the placement plate 13 and the base 11 during the transportation of the electromechanical equipment. In addition, taking the scheme of one limit pin 141 and four limit holes 131 as an example, after the electromechanical equipment to be loaded and unloaded has been placed on the placement plate 13, if it is desired to change the direction of the electromechanical equipment, only need to move the limit pin 141 out of the limit hole 131, rotate the placement plate 13 to adjust the electromechanical equipment to the corresponding direction, and then cooperate the limit pin 141 with the limit hole 131 at the corresponding position, so as to facilitate the flexible loading and unloading of the equipment. At this time, if there is interference between the abutting top 40 and the placement plate 13, the abutting top 40 can be moved to adjust its position on the first chute 112 to avoid the placement plate 13.

[0049] According to an embodiment of the present disclosure, as Figures 1 to 4 shown, the abutting top 40 can include a fixed seat 41, a fixing plate 42, a slider 43, and an abutting limit member 44. Here, the fixed seat 41 can be movably disposed in the first chute 112. The fixing plate 42 can be connected to the fixed seat 41 and extends vertically upward. A second chute 421 is formed on the fixing plate 42, and the second chute 421 extends along the extending direction of the fixing plate 42. The slider 43 can be movably disposed in the second chute 421. The abutting limit member 44 can be connected to the slider 43 and is used to abut against one side of the electromechanical equipment. The slider 43 can move along the second chute 421 to adjust the position of the abutting limit member 44 in the height direction, so as to perform multi-directional abutting and clamping on electromechanical equipment of different specifications and sizes.

[0050] Further, as Figure 4As shown, the abutting and limiting member 44 may include a screw rod 441, an abutting plate 442, and a turntable 443. The screw rod 441 may be movably inserted through the slider 43 and disposed at an angle to the fixing plate 42. The abutting plate 442 may be disposed at one end of the screw rod 441 close to the placement groove 111, and the abutting plate 442 may be used to contact the electromechanical device. The turntable 443 may be disposed at one end of the screw rod 441 away from the abutting plate 442. Since the screw rod 441 is in threaded cooperation with the slider 43, by rotating the turntable 443, the position of the abutting plate 442 in the horizontal direction can be adjusted. Taking the number of the abutting and limiting members 44 being four and arranged in two pairs opposite to each other as an example, rotating the turntable 443 can adjust the distance between two oppositely arranged abutting plates 442 to correspond to electromechanical devices of different sizes. Thus, the position of the abutting plate 442 can be adjusted by rotating the turntable 443 to abut against electromechanical devices of different sizes in multiple directions and play a role in clamping and fixing the electromechanical device under the combined abutment.

[0051] According to an embodiment of the present disclosure, as Figure 3 and Figure 4As shown, the cross-section of the first sliding groove 112 can be an inverted T-shaped structure. The fixing base 41 is located in the horizontal end of the inverted T-shaped structure, and the width of the fixing base 41 is greater than the width of the vertical end of the inverted T-shaped structure, enabling the top end of the inverted T-shaped structure to limit the fixing base 41 in the thickness direction of the placing base 1. The abutting top 40 further includes a fastener 45. The fastener 45 is in threaded cooperation with the fixing base 41, and the fastener 45 can abut against the bottom surface of the horizontal end of the inverted T-shaped structure. Here, the fastener 45 can be a bolt or a stud, and the present disclosure does not limit this. The fixing base 41 can be first snapped into the inverted T-shaped structure. The way the fixing base 41 snaps into the inverted T-shaped structure can be that an opening structure for the fixing base 41 to enter is provided at the edge of the first sliding groove 112, and the fixing base 41 enters the sliding groove of the inverted T-shaped structure from the opening structure. The present disclosure does not limit this. In this way, the upper surface of the horizontal end of the inverted T-shaped structure will limit the fixing base 41 to prevent the fixing base 41 from moving out. After the fixing base 41 enters the inverted T-shaped structure, the fixing base 41 is moved by moving the fixing plate 42 to adjust it to a suitable position, and then the fastener 45 is screwed in. By rotating the fastener 45, it abuts against the bottom surface of the horizontal end of the inverted T-shaped structure. If the fastener 45 continues to be tightened when it already abuts against the bottom surface of the horizontal end of the inverted T-shaped structure, at this time, the fastener 45 cannot displace in the height direction, but due to the threaded cooperation, the fixing base 41 will move in the opposite direction, that is, the more the fastener 45 is tightened, the more the fixing base 41 will move towards the top surface of the horizontal end of the inverted T-shaped structure until the fixing base 41 contacts and abuts against the top surface of the horizontal end of the inverted T-shaped structure. At this time, the fastener 45 cannot be tightened further, and the fixing base 41 cannot move up anymore. Through the frictional force generated by the threaded cooperation between the fastener 45 and the fixing base 41 and the abutting force between the fixing base 41 and the top surface of the horizontal end of the inverted T-shaped structure, the fixing of the fixing base 41 in the first sliding groove 112 is completed. Of course, it can also be that several through holes are fixedly provided in the first sliding groove 112, the fastener 45 is a bolt, the bolt passes through the through holes and then cooperates with a nut, and the bolt is tightened to clamp the fixing base 41 and the bottom wall of the first sliding groove 112 between the head of the bolt and the nut to complete the limitation of the fixing base in the first sliding groove 112. The present disclosure does not limit this.

[0052] According to an embodiment of the present disclosure, as Figures 1 to 3As shown, the hoisting assembly 3 may include a cantilever 31 and a hoisting winch 32. The cantilever 31 may be connected to the rotating column 22 and extend in a direction away from the rotating column 22. The hoisting winch 32 may be movably disposed on the cantilever 31 along the extending direction of the cantilever 31 for hoisting the electromechanical equipment. The hoisting winch 32 may be a manual winch or an electric winch, and the present disclosure does not limit this. When it is necessary to hoist the electromechanical equipment, the rotating column 22 may be adjusted first to adjust the cantilever 31 to the corresponding position, and then the hoisting winch 32 may be moved to adjust the position of the hoisting winch 32 on the cantilever 31 so that the hoisting part cooperating with the electromechanical equipment to be transported is arranged vertically corresponding. Finally, the hook of the hoisting winch 32 is hung on the cooperating part on the electromechanical equipment, and the electromechanical equipment is hoisted by hand or electricity, and the electromechanical equipment is moved and placed on the placing seat 1.

[0053] Further, as Figure 1 and Figure 2 shown, the cross section of the cantilever 31 may be an I-shaped structure. Two relatively arranged tracks 311 may be formed on the bottom wall of the I-shaped structure. Two groups of pulleys 33 are relatively arranged on the hoisting winch 32, and the two groups of pulleys 33 are respectively arranged on the two tracks 311. Here, the side walls of the I-shaped structure may separate the two tracks 311, and the two groups of pulleys 33 may move along the corresponding tracks 311 respectively, and the position of the hoisting winch 32 on the cantilever 31 is adjusted by the movement of the pulleys 33 on the tracks 311. Here, the track 311 may be the bottom wall of the I-shaped structure itself, or a groove may be opened at the upper end of the bottom wall of the I-shaped structure, and the pulley 33 may be embedded in the groove. The present disclosure does not limit this. Each group of pulleys 33 may be a plurality of pulleys 33 arranged at intervals, or may be divided into a plurality of groups arranged at intervals, and each group has a plurality of adjacent pulleys 33. The present disclosure also does not limit this.

[0054] According to an embodiment of the present disclosure, as Figures 1 to 3 shown, a plurality of rollers 5 may be arranged at intervals below the placing seat 1 to move the placing seat 1. The rollers 5 may be universal wheels, and the universal wheels may be provided with a locking mechanism to prevent the transport device from slipping during the loading and unloading process, affecting the equipment handling, and ensuring that the transport device can stay in place. When the placing seat 1 is quadrilateral, they may be respectively arranged at the four corners below the placing seat 1. The present disclosure does not limit this. A push rod 6 for moving the placing seat 1 may also be arranged at the upper edge of the placing seat 1. An extension part may be additionally extended at the edge of the placing seat 1, and the push rod 6 may be placed on the extension part of the placing seat 1 to reduce the interference with the hoisting assembly 3 or the clamping assembly 4. The push rod 6 may be a structure that gradually inclines away from the hoisting assembly 3 and the clamping assembly 4 from the connection with the placing seat 1. When it is necessary to move the placing seat 1, the operator only needs to hold the push rod 6 and apply force to drive the placing seat 1 to move.

[0055] The preferred embodiments of the present disclosure have been described in detail above in conjunction with the accompanying drawings. However, the present disclosure is not limited to the specific details in the above embodiments. Within the scope of the technical concept of the present disclosure, various simple modifications can be made to the technical solutions of the present disclosure, and these simple modifications all fall within the protection scope of the present disclosure.

[0056] In addition, it should be noted that, among the various specific technical features described in the above specific embodiments, without conflict, they can be combined in any appropriate manner. To avoid unnecessary repetition, the present disclosure will not separately describe various possible combination manners.

[0057] Furthermore, any combination can be made among various different embodiments of the present disclosure, as long as it does not violate the idea of the present disclosure, and it should also be regarded as the content disclosed by the present disclosure.

Claims

1. A transportation device for electromechanical equipment, characterized in that, Comprising: A placement seat for placing electromechanical equipment; Support columns provided at the edge of the placement seat and extending vertically upward. Two mounting plates are spaced apart on the support columns. A rotating column spaced from the support column is connected between the two mounting plates, and the rotating column is rotatably provided on the mounting plates; A hoisting assembly for hoisting the electromechanical equipment. One end of the hoisting assembly is connected to the rotating column and is spaced from the placement seat; And A clamping assembly provided on the placement seat for clamping the electromechanical equipment.

2. The transportation device for electromechanical equipment according to claim 1, characterized in that, The placement seat includes: A base on which a plurality of placement grooves are spaced apart; A plurality of rubber wheels, with the plurality of rubber wheels being correspondingly arranged in the placement grooves, and the tops of the rubber wheels being higher than the upper surface of the base; and A placement plate movably placed on the plurality of rubber wheels.

3. The transport device for electromechanical equipment according to claim 2, wherein, A first chute is provided in a ring shape on the base, and the first chute is located on the outer periphery of the plurality of placement grooves. The clamping assembly includes a plurality of abutting tops movably provided in the first chute, and the plurality of abutting tops can be spaced apart in the first chute for clamping the electromechanical equipment.

4. The transport device for electromechanical equipment according to claim 3, characterized in that, The placement seat further includes a connecting plate provided on the base, the connecting plate being located between the first chute and the placement plate. A limiting pin extending in a direction close to the placement plate is connected to the connecting plate, and a limiting hole cooperating with the limiting pin is provided on the placement plate.

5. The transport device for electromechanical equipment according to claim 3, characterized in that, The abutting top includes: A fixed seat movably provided in the first chute; A fixed plate connected to the fixed seat and extending vertically upward. A second chute is provided on the fixed plate and extends along the extending direction of the fixed plate; and A slider movably provided in the second chute; and An abutting limiting member connected to the slider for abutting against one side of the electromechanical equipment.

6. The transport device for electromechanical equipment according to claim 5, characterized in that, The abutting limiting member includes: A screw rod movably penetrating through the slider and arranged at an angle with the fixed plate; An abutting plate provided at one end of the screw rod close to the placement groove, and the abutting plate is used for contacting the electromechanical equipment; and A turntable provided at the other end of the screw rod away from the abutting plate.

7. The transport device for electromechanical equipment according to claim 5, characterized in that, The cross-section of the first chute is an inverted T-shaped structure. The fixed seat is located in the horizontal end of the inverted T-shaped structure, and the width of the fixed seat is greater than the width of the vertical end of the inverted T-shaped structure, enabling the top end of the inverted T-shaped structure to limit the fixed seat in the thickness direction of the placement seat. The abutting top further includes a fastener threadedly engaged with the fixed seat, and the fastener can abut against the bottom surface of the horizontal end of the inverted T-shaped structure.

8. The transport device for electromechanical equipment according to claim 1, characterized in that, The hoisting assembly includes: A cantilever connected to the rotating column and extending in a direction away from the rotating column; and A hoisting winch movably provided on the cantilever along the extending direction of the cantilever for hoisting the electromechanical equipment.

9. The transport device for electromechanical equipment according to claim 8, characterized in that, The cross-section of the cantilever is an I-shaped structure. Two oppositely arranged tracks are formed on the bottom wall of the I-shaped structure. Two sets of pulleys are oppositely arranged on the hoisting pulley. The two sets of pulleys are respectively arranged on the two tracks.

10. The transport device for electromechanical equipment according to claim 1, characterized in that, One of the mounting plates is located at an end of the support column away from the placing seat.

11. The transport device for electromechanical equipment according to claim 1, characterized in that, A plurality of rollers are spaced below the placing seat.

12. The transport device for electromechanical equipment according to claim 1, characterized in that, A push-pull rod for moving the placing seat is further arranged at the upper edge of the placing seat.