Overground electromechanical transportation platform device
By designing the on-hole electromechanical transportation platform device, the electromechanical positioning frame mechanism is used to lock and protect electromechanical equipment of different sizes, the problems of collision and damage during equipment transportation and transportation safety are solved, and the equipment is efficient, safe and rapid deployment is achieved.
Patent Information
- Application Number
- CN202422053514.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-08-23
AI Technical Summary
During coal mining, due to its large size, large weight and special-shaped structure, electromechanical equipment is prone to collision and damage during transportation, and the transportation of different types of equipment is difficult to ensure safety and protection.
An on-hole electromechanical transport platform device is designed, including an electromechanical packaging transport box and an electromechanical positioning rack mechanism. The electromechanical positioning frame mechanism realizes locking and protection of different body types through components such as frame base, first rod assembly, second rod assembly, transverse pull rod and longitudinal pull rod.
Through this device, the equipment can be effectively prevented from being damaged during transportation, improve transportation safety and protection, and can be easily taken out of the transport box and transported to the workplace.
Smart Images

Figure CN222988760U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of in - well mechanical and electrical transportation, and particularly relates to an in - well mechanical and electrical transportation platform device. Background Technique
[0002] In the process of coal mine exploitation, a large number of mining machinery and mechanical and electrical equipment are required. Due to their large volume and heavy weight, etc., if the equipment is to be transported underground, it needs to be disassembled in advance, transported underground, and then assembled for operation. And the safety of transporting a large number of mechanical and electrical working equipment and ensuring that the equipment is not damaged during transportation are important links in the process of coal mine exploitation.
[0003] Specifically, for the disassembled mechanical and electrical equipment such as motors, transformers, electrical cabinets, and racks, etc., due to their large volume and irregular shapes, when they are hoisted into the transportation box and transported underground, because the underground terrain is complex, during transportation, the mechanical and electrical equipment is likely to collide with the box body. And due to the heavy mechanical and electrical equipment with large inertia, it is extremely easy for the equipment to be damaged during the collision.
[0004] Moreover, since there are many types of mechanical and electrical equipment used, with large differences in volume and shape, it is very important to keep different types of equipment positioned and locked during the equipment transportation process to protect the equipment. It is very important for improving the safety of equipment transportation and the protection of equipment during transportation.
[0005] And how to conveniently move the equipment out of the transportation box when the equipment is transported underground and be able to transport it to the working position very labor - saving is also very important for improving the assembly of the equipment. It is reflected that the underground geographical environment is complex, and large hoisting equipment often cannot work smoothly. Therefore, it is very difficult to unload and transfer heavy mechanical and electrical equipment to the working position. Content of the Utility Model
[0006] Based on the above background, the purpose of the utility model is to provide an in - well mechanical and electrical transportation platform device.
[0007] To achieve the above purpose, the utility model adopts the following technical solutions:
[0008] An in - well mechanical and electrical transportation platform device, including a mechanical and electrical packing transportation box, and the mechanical and electrical packing transportation box includes a box base;
[0009] An in - well mechanical and electrical positioning frame mechanism is arranged on the top of the box base;
[0010] The in - well mechanical and electrical positioning frame mechanism includes a frame - type base, and a plurality of first support rod assemblies are respectively hinged on the left and right sides of the frame - type base, and a plurality of second support rod assemblies are respectively hinged on the front and back sides of the frame - type base;
[0011] The first handrail assembly includes a first handrail hingedly arranged, and the second handrail assembly includes a second handrail hingedly arranged;
[0012] A transverse pull rod is assembled and connected between the upper ends of the first handrails, and a longitudinal pull rod is assembled and connected between the upper ends of the second handrails;
[0013] Push nuts are respectively threadedly connected to both ends of the transverse pull rod and the longitudinal pull rod;
[0014] The electromechanical equipment is hoisted onto the frame-type base. The two sides of the first handrail are flipped until the first handrail touches the side of the electromechanical equipment, and the two sides of the second handrail are flipped until the second handrail touches the left and right sides of the electromechanical equipment. The first handrail and the second handrail are tightened by the transverse pull rod and the longitudinal pull rod.
[0015] Preferably, the frame-type base includes a frame-type beam frame part, and a plurality of connecting beam parts are fixedly connected inside the frame-type beam frame part.
[0016] Preferably, a plurality of hinge interfaces are respectively opened on the front and rear side edges and the left and right side edges of the frame-type beam frame part. Pin shafts are respectively fixedly connected to the lower ends of the first handrail and the second handrail, and the pin shafts are hinged inside the hinge interfaces.
[0017] Preferably, rectangular sliding openings are respectively opened at the upper ends of the first handrail and the second handrail, and the transverse pull rod and the longitudinal pull rod respectively penetrate through the rectangular sliding openings;
[0018] During the process of flipping the first handrail and the second handrail, the transverse pull rod and the longitudinal pull rod slide relative to the rectangular sliding openings.
[0019] Preferably, spring wheel assemblies are respectively installed at the four corner parts of the frame-type beam frame part.
[0020] Preferably, the spring wheel assembly includes a telescopic rod slidably connected to the frame-type beam frame part. A roller frame is fixedly connected to the bottom of the telescopic rod, and a roller is rotatably connected inside the roller frame;
[0021] A strengthening spring is sleeved on the telescopic rod, and both ends of the strengthening spring are fixedly connected to the top of the roller frame and the bottom of the frame-type beam frame part.
[0022] Preferably, a plurality of locking components for locking the roller frame are fixedly connected to the box base.
[0023] Preferably, the locking component includes a fixed column fixedly connected to the box base, and a locking screw is threadedly connected to the fixed column;
[0024] A fixed seat threadedly connected to the locking screw is fixedly connected to the roller frame;
[0025] A thread groove is opened on the fixed seat.
[0026] Preferably, the electromechanical packing and transporting box further includes box frame plates fixedly connected to the front and rear sides of the top of the box base, and box door plates are assembled and connected between the box frame plates in a hinged manner.
[0027] The utility model has the following beneficial effects:
[0028] 1. During the working process, the electromechanical equipment is hoisted onto the frame-shaped base. The first support rods on both sides are flipped until the first support rods touch the sides of the electromechanical equipment, and the second support rods on both sides are flipped until the second support rods touch the left and right sides of the electromechanical equipment. The first support rods and the second support rods are tightened by the transverse pull rod and the longitudinal pull rod.
[0029] Due to the first support rods and the second support rods being arranged in a flip-hinged manner, for small-sized equipment, the first support rods and the second support rods are flipped inwards until the first support rods and the second support rods abut against the sides of the equipment. On the contrary, when large-sized equipment is suspended, since the first support rods and the second support rods can be appropriately flipped outwards, after being flipped outwards, the transverse pull rod and the longitudinal pull rod are still limited in the rectangular sliding openings. Therefore, the first support rods and the second support rods still touch the outer sides of the equipment. In this way, the first support rods and the second support rods are flipped at different angles according to the size of the equipment, and the locking of various-sized equipment is realized.
[0030] During transportation after locking, the equipment will not shake, and there will be no defects such as impact and collision resulting in equipment damage. At the same time, after locking, the transportation of the equipment is kept highly safe.
[0031] 2. The structural design of the spring wheel assembly realizes that during the working process, after the equipment is placed, at this time, the reinforcing spring is compressed, and the telescopic rod slides upwards. During the deformation and compression process of the spring, a buffer is formed (using the deformation of the spring to form a buffer is a conventional application of the inherent property of the spring), realizing the protection of the equipment and avoiding excessive impact on the frame-shaped base. And through the spring wheel assembly structure, when the equipment is transported to the working position, the whole equipment is pushed out of the box body and pushed to the working position to solve the technical defect that it is difficult to handle the equipment due to the complex terrain in the mine.
[0032] 3. The locking component realizes locking the positions of the four-wheel structures of the electromechanical positioning frame mechanism, increasing the stability of the equipment during transportation. Description of the Drawings
[0033] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.
[0034] Figure 1 It is a schematic diagram of the overall structure in the embodiment of the present utility model;
[0035] Figure 2 It is a schematic diagram of the structure of the electromechanical positioning frame mechanism in the embodiment of the present utility model;
[0036] Figure 3 It is a schematic diagram of the structure of the spring wheel assembly in the embodiment of the present utility model;
[0037] Figure 4 It is a schematic diagram of the structure in which the transverse pull rod and the longitudinal pull rod tighten the first support rod and the second support rod in the embodiment of the present utility model;
[0038] Figure 5 In the embodiment of the present utility model Figure 2 It is a schematic diagram of the structure from another perspective;
[0039] Figure 6 It is a schematic diagram of the structure in which the box door panel is opened in the embodiment of the present utility model.
[0040] The realization, functional features and advantages of the purpose of the present utility model will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments
[0041] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0042] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present utility model are only used to explain the relative position relationship and movement conditions between components in a specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.
[0043] In addition, in the present utility model, descriptions such as "first", "second", etc. are only for descriptive purposes and should not be construed as indicating or implying their relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions between various embodiments may be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present utility model.
[0044] Embodiment 1
[0045] As Figures 1-6 shown, an in-well electromechanical transportation platform device includes an electromechanical packing transportation box 1, and the electromechanical packing transportation box 1 includes a box base. Specifically, similar to the existing transportation packing boxes, the electromechanical packing transportation box 1 further includes box frame plates fixedly connected to the front and rear sides of the top of the box base 13, and box door plates 11 (the upper ends of the box door plates 11 are hinged through fixed pins) are assembled and connected between the box frame plates. Specifically, preferably, box door plates 11 are hinged on both the left and right sides of the box frame plates as shown in Figure 6 shown, that is, the double-sided hinged opening method. Or as shown in Figure 1 shown, the single-sided hinged setting method of the box door plate 11 is adopted. Similar to the existing locking method of the box door plate 11, locking bolts 12 are threadedly connected to the lower ends of the side walls of the box frame plates and locked into the lock holes at the lower ends of the side walls of the box door plate 11, so that the box door plate 11 can be opened by unscrewing the locking bolts 12, which is convenient for handling.
[0046] An electromechanical positioning frame mechanism is provided on the top of the above box base 13; various electromechanical devices with different shapes, sizes, and weights can be locked through the electromechanical positioning frame mechanism.
[0047] Specifically, the electromechanical positioning frame mechanism includes a frame-shaped base 21 (the shape of the frame-shaped base 21 is: the frame-shaped base 21 includes a frame-shaped beam part, and several connecting beam parts are fixedly connected inside the frame-shaped beam part), and several first support rod assemblies are respectively hinged on the left and right sides of the frame-shaped base 21, and several second support rod assemblies are respectively hinged on the front and rear sides of the frame-shaped base 21.
[0048] The first support rod assembly includes a first support rod 25 that is hinged, and the second support rod assembly includes a second support rod 23 that is hinged (specifically, several hinge openings are respectively opened on the front and rear side edges and the left and right side edges of the frame-shaped beam part, and pins are fixedly connected to the lower ends of the first support rod 25 and the second support rod 23, and the pins are hinged in the hinge openings).
[0049] Meanwhile, a transverse pull rod 26 is assembled and connected between the upper ends of the first handrails 25, and a longitudinal pull rod 24 is assembled and connected between the upper ends of the second handrails 23; push nuts A are respectively threadedly connected to both ends of the transverse pull rod 26 and the longitudinal pull rod 24.
[0050] Specifically, rectangular sliding openings are respectively formed at the upper ends of the first handrails 25 and the second handrails 23, and the transverse pull rod 26 and the longitudinal pull rod 24 respectively penetrate through the rectangular sliding openings; during the process of turning the first handrails 25 and the second handrails 23, the transverse pull rod 26 and the longitudinal pull rod 24 slide relative to the rectangular sliding openings. Due to the fact that the rectangular sliding openings have a certain length, during the process of turning the first handrails 25 and the second handrails 23, after the first handrails 25 and the second handrails 23 are turned by a certain angle range, the transverse pull rod 26 and the longitudinal pull rod 24 are still limited within the rectangular sliding openings.
[0051] During the working process, the electromechanical equipment is hoisted onto the frame-shaped base 21, the first handrails 25 on both sides are turned until the first handrails 25 press against the side of the electromechanical equipment, the second handrails 23 on both sides are turned until the second handrails 23 press against the left and right sides of the electromechanical equipment, and the first handrails 25 and the second handrails 23 are tightened by the transverse pull rod 26 and the longitudinal pull rod 24.
[0052] Due to the first handrails 25 and the second handrails 23 being arranged in a flip-hinged manner, for small-sized equipment, the first handrails 25 and the second handrails 23 are turned inwards until the first handrails 25 and the second handrails 23 abut against the side of the equipment. On the contrary, when large-sized equipment is suspended, since the first handrails 25 and the second handrails 23 can be appropriately turned outwards, after turning outwards, the transverse pull rod 26 and the longitudinal pull rod 24 are still limited within the rectangular sliding openings. Therefore, the first handrails 25 and the second handrails 23 still press against the outer side of the equipment. By this method, the first handrails 25 and the second handrails 23 are turned at different angles according to the size of the equipment, realizing the locking of various-sized equipment.
[0053] During transportation after locking, the equipment will not shake, and there will be no defects such as the equipment being damaged due to impact and collision. At the same time, after locking, the transportation of the equipment is kept with high safety.
[0054] Embodiment 2
[0055] As Figures 1-6 shown, on the basis of the structure of Embodiment 1, spring wheel assemblies 22 are respectively installed at the four corner parts of the above-mentioned frame-shaped beam frame part. Through the spring wheel assemblies 22, when the hoisted equipment falls onto the frame-shaped base 21, buffering is realized to protect the equipment.
[0056] Specifically, the spring wheel assembly 22 includes a telescopic rod 223 slidably connected to the frame beam portion (a retaining cap is threadedly connected to the upper end of the telescopic rod 223). The bottom of the telescopic rod 223 is fixedly connected to a roller frame 221, which has the same structure as the existing roller. A roller 222 is rotatably connected inside the roller frame 221. At the same time, a reinforcing spring 224 is sleeved on the telescopic rod 223, and both ends of the reinforcing spring 224 are fixedly connected to the top of the roller frame 221 and the bottom of the frame beam portion.
[0057] During the working process, after the equipment is placed, at this time, the reinforcing spring 224 is compressed, and the telescopic rod 223 slides upward. A buffer is formed during the deformation and compression of the spring (using the deformation of the spring to form a buffer is a conventional application of the inherent property of the spring), realizing the protection of the equipment and avoiding excessive impact on the frame base 21.
[0058] And through the structure of the spring wheel assembly 22, when the equipment is transported to the working position, the entire equipment is pushed out of the box body and pushed to the working position to solve the technical defect that it is difficult to carry the equipment due to the complex terrain in the mine.
[0059] Embodiment 3
[0060] As Figures 1-6 shown, on the basis of the structure of Embodiment 2 in this embodiment, in order to lock the electromechanical positioning frame mechanism and prevent the equipment from rolling in the box during transportation, four locking components corresponding to the spring wheel assembly 22 are fixedly connected to the box base 13.
[0061] Specifically, the locking component includes a fixed column 3 fixedly connected to the box base 13, and a locking screw 31 is threadedly connected to the fixed column 3; correspondingly, a fixed seat threadedly connected to the locking screw 31 is fixedly connected to the roller frame 221; a threaded groove is provided on the fixed seat.
[0062] Locking the locking screw 31 to the fixed seat realizes locking the positions of the four-wheel structures of the electromechanical positioning frame mechanism.
[0063] Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions, or substitutions made by those skilled in the art within the scope of the essence of the present invention should also fall within the protection scope of the present invention.
Claims
1. An electromechanical transport platform device on a well, characterized in that: It includes an electromechanical packaging and transportation box, and the electromechanical packaging and transportation box includes a box base; An electromechanical positioning frame mechanism is provided on the top of the box base; The electromechanical positioning frame mechanism comprises a frame-shaped base, a plurality of first support bar assemblies are hingedly connected to the left and right sides of the frame-shaped base, and a plurality of second support bar assemblies are hingedly connected to the front and rear sides of the frame-shaped base; The first handrail assembly includes a first handrail that is hingedly arranged, and the second handrail assembly includes a second handrail that is hingedly arranged; A transverse pull rod is assembled and connected between the upper ends of the first handrails, and a longitudinal pull rod is assembled and connected between the upper ends of the second handrails; Both ends of the transverse pull rod and the longitudinal pull rod are respectively threadedly connected with push nuts; The electromechanical equipment is hoisted onto the frame base, the first handrails on both sides are flipped until the first handrails touch the sides of the electromechanical equipment, the second handrails on both sides are flipped until the second handrails touch the left and right sides of the electromechanical equipment, and the first and second handrails are tightened by the transverse and longitudinal pull rods.
2. The well electromechanical transport platform device according to claim 1, characterized in that: The frame-shaped base comprises a frame-shaped beam frame portion, and a plurality of connecting beam portions are fixedly connected inside the frame-shaped beam frame portion.
3. The well electromechanical transport platform device according to claim 2, characterized in that: A plurality of hinge ports are respectively provided on the front and rear sides and the left and right sides of the frame-shaped beam frame portion, and the lower ends of the first support rod and the second support rod are respectively fixedly connected with pin shafts, and the pin shafts are hinged in the hinge ports.
4. The well electromechanical transport platform device according to claim 1, characterized in that: The upper ends of the first handrail and the second handrail are respectively provided with rectangular sliding openings, and the transverse pull rod and the longitudinal pull rod respectively pass through the rectangular sliding openings; During the process of flipping the first handrail and the second handrail, the transverse pull rod and the longitudinal pull rod slide relative to the rectangular sliding opening.
5. The well electromechanical transport platform device according to claim 2, characterized in that: The four corner positions of the frame-type beam frame portion are respectively equipped with spring wheel assemblies.
6. The well electromechanical transport platform device according to claim 5, characterized in that: The spring wheel assembly comprises a telescopic rod slidably connected to the frame beam frame, a roller frame is fixedly connected to the bottom of the telescopic rod, and a roller is rotatably connected inside the roller frame; A reinforcing spring is sleeved on the telescopic rod, and two ends of the reinforcing spring are fixedly connected to the top of the roller frame and the bottom of the frame beam frame part.
7. The well electromechanical transport platform device according to claim 5, characterized in that: The box base is fixedly connected with a plurality of locking components of the locking roller frames.
8. The well electromechanical transport platform device according to claim 7, characterized in that: The locking component comprises a fixed column fixedly connected to the box base, and a locking screw is threadedly connected to the fixed column; A fixing seat threadably connected to a locking screw is fixedly connected to the roller frame; The fixing seat is provided with a thread groove.
9. The well electromechanical transport platform device according to claim 1, characterized in that: The electromechanical packaging and transportation box also includes box frame plates fixedly connected to the front and rear sides of the top of the box base, and hinged box door plates are assembled and connected between the box frame plates.