Outdoor self-generating industrial mobile energy storage power supply

By designing a protective mechanism and a buffer mechanism in an outdoor mobile energy storage power supply, the problem of damage caused by the bottom of the power supply when it moves on uneven ground is solved, and higher stability and safety are achieved.

CN120049580AActive Publication Date: 2025-05-27CHINA SOUTHERN POWER GRID NEW ENERGY DESIGN RESEARCH INSTITUTE (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202510523362.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2025-05-27
Estimated Expiration
2045-04-24

AI Technical Summary

Technical Problem

When outdoor mobile energy storage power supplies move on uneven ground, they are prone to damage to the shell due to collision with foreign objects such as stones at the bottom, which affects working stability and poses safety hazards.

Method used

An industrial mobile energy storage power supply for self-generating outdoor use is designed, using protective mechanisms and buffer mechanisms, including arc-shaped protective plates, springs, buffer pads and stable protection mechanisms, to achieve protection and buffering of the bottom of the mobile power supply through these structures.

Benefits of technology

Effectively prevent damage caused by foreign objects on the bottom of the mobile power supply, reduce the risk of internal components being affected by vibration, improve the stability and safety of the mobile power supply, and enhance the stability and safety of the mobile power supply outdoors by reminding the sound and design of the stable protection mechanism.

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Abstract

The invention discloses an outdoor self-generating industrial mobile energy storage power supply, and relates to the technical field of electrical equipment, the outdoor self-generating industrial mobile energy storage power supply comprises a mobile power supply, a pull rod is hinged to the left side of the mobile power supply, wheels are arranged on the right side of the mobile power supply, a solar panel is fixedly connected to the top of the mobile power supply, and a supporting block is fixedly connected to the bottom of the mobile power supply. A protection mechanism is arranged at the bottom of the mobile power supply, and a protection plate below the mobile power supply can naturally play a role in protecting the bottom of the mobile power supply through the protection mechanism, so that the bottom is prevented from being impacted when the mobile power supply is pulled and dragged, and an internal battery can be prevented from being damaged after the mobile power supply is impacted; the problem that potential safety hazards may be caused due to vibration of the mobile power supply is solved, instant vibration force is buffered through deformation of the spring, so that vibration of collision is relieved, and the problem that electronic components in the mobile power supply are affected due to vibration is further solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of electrical equipment, and specifically relates to an industrial mobile energy storage power supply with self - power generation for outdoor use. Background Art

[0002] Electrical Equipment is a general term for equipment such as generators, transformers, power lines, and circuit breakers in the power system. The important role played by electricity in our life and production cannot be ignored. It brings us great convenience and becomes an important energy equipment in our production and life; A portable mobile energy storage power supply described in a patent application with publication number CN116669337A includes: a power supply body and a housing. The power supply body is installed inside the housing. The housing includes a top shell, a base, a front panel, a left panel, and a right panel. The top shell, the base, the front panel, the left panel, and the right panel are assembled by screws and snap - fit structures to form the housing. The top shell and the base are assembled and connected by long screws. The left panel and the right panel are respectively assembled and connected to the left side and the right side of the top shell and the base by short screws. The front panel is respectively assembled and connected to the front surfaces of the top shell and the base by snap - fit structures; Currently, when an outdoor mobile energy storage power supply is in use, when its electrical housing moves through rollers on the uneven dirt and stone ground outdoors, it is easy for the bottom of the energy storage power supply to be collided by foreign objects such as stones, resulting in damage to the housing, and then affecting the working stability inside the energy storage power supply and avoiding potential safety hazards. Summary of the Invention

[0003] Aiming at the deficiencies of the prior art, the present invention provides an industrial mobile energy storage power supply with self - power generation for outdoor use, achieving the purpose of solving the above problems.

[0004] To achieve the above purpose, the present invention is realized through the following technical solutions: An industrial mobile energy storage power supply with self - power generation for outdoor use, including a mobile power supply. A pull rod is hinged to the left side of the mobile power supply. Wheels are arranged on the right side of the mobile power supply. A solar panel is fixedly connected to the top of the mobile power supply. A support block is fixedly connected to the bottom of the mobile power supply. A protection mechanism is arranged at the bottom of the mobile power supply; The protection mechanism includes: A groove is opened at the bottom of the mobile power supply. An articulated sleeve is fixedly connected to the inner wall of the groove. A rotating shaft is rotatably connected to the inner wall of the articulated sleeve. The groove is used to fixedly place the articulated sleeve; The protective plate is an arc-shaped plate structure. One side of the protective plate is fixedly connected to the outer wall of the rotating shaft. A spring is provided at the top of the protective plate. One end of the spring is fixedly connected to the bottom of the mobile power supply. The protective plate is used to protect the lower part of the mobile power supply, and the spring is used to provide a reset buffer function for the protective plate.

[0005] Preferably, a buffer pad is fixedly connected to the bottom right side of the mobile power supply. The buffer pad is made of rubber and is used to prevent the protective plate from bumping against the bottom of the mobile power supply.

[0006] Preferably, a buffer mechanism is provided at the bottom of the mobile power supply. The buffer mechanism includes a first hinge block. The top of the first hinge block is fixedly connected to the bottom of the mobile power supply. The first hinge block is hinged to a telescopic rod. One end of the telescopic rod is hinged to a second hinge block. The bottom of the second hinge block is fixedly connected to a fixed plate. The bottom of the fixed plate is fixedly connected to the top of the protective plate.

[0007] Preferably, one end of the spring is fixedly connected to the top of the protective plate through a fixed plate. The outer wall of the telescopic rod is provided with a first one-way valve and a second one-way valve. The diameter of the second one-way valve is smaller than that of the first one-way valve.

[0008] Preferably, the first one-way valve and the second one-way valve are for one-way air intake. The air intake end of the first one-way valve is communicated with the outside of the telescopic rod, and the air outlet end of the first one-way valve is communicated with the inside of the telescopic rod. The air intake end of the second one-way valve is communicated with the inside of the telescopic rod, and the air outlet end of the second one-way valve is communicated with the outside of the telescopic rod.

[0009] Preferably, a stability protection mechanism is provided at the bottom of the protective plate. The stability protection mechanism includes a counterweight block. The counterweight block is a square plate structure. One side of the counterweight block is fixedly connected to the bottom of the protective plate.

[0010] Preferably, a stabilizing block is fixedly connected to one side of the counterweight block. The stabilizing block is in a spiked shape and is inclined.

[0011] Preferably, several inclined grooves are provided at the bottom of the protective plate. The several inclined grooves are equidistantly arranged at the bottom of the protective plate. The inclined grooves are inclined grooves.

[0012] The present invention provides an industrial mobile energy storage power supply for outdoor self-generation, which has the following beneficial effects: 1. By setting the protection mechanism in the present invention, the protective plate under the mobile power supply can naturally protect the bottom of the mobile power supply, avoiding the bottom from being impacted when the mobile power supply is pulled and dragged, and also avoiding the internal battery of the mobile power supply from being damaged after impact, which may cause potential safety hazards.

[0013] 2. By setting up a protection mechanism in the present invention, when the protection plate replaces the bottom of the mobile power supply and is impacted, or when the protection plate is hit by foreign objects, the spring will be compressed. Through the deformation of the spring, the instantaneous vibration force is buffered, thereby alleviating the impact vibration, and further protecting the internal electronic components of the mobile power supply from being affected by vibration.

[0014] 3. By setting up a protection mechanism in the present invention, since the protection plate can rotate and displace, when the protection plate touches a foreign object, the staff pulling the pull rod will feel the pulling resistance. Thus, even if they continue to pull forward due to inertia, a displacement distance will be given to the protection plate, enabling the staff to check the bottom of the mobile power supply in time, and then take corresponding measures such as detouring and lifting the whole thing, to avoid the problem of the stone on the ground hitting the bottom of the mobile power supply directly.

[0015] 4. By setting up a buffer mechanism in the present invention, the exhaust speed is slow due to the exhaust through the second one-way valve with a smaller diameter. So when the mobile power supply lands, the protection plate still remains in that position. Thus, when the mobile power supply falls under gravity, it is the bottom of the protection plate that first touches the ground and quickly resists the ground, which can reduce the airborne time and avoid the problem of greater damage to the mobile power supply caused by falling with the gravitational acceleration when the mobile power supply completely falls and is supported by the wheels after being airborne.

[0016] 5. By setting up a buffer mechanism in the present invention, the support vibration generated between the protection plate and the ground will utilize the protection plate to squeeze the telescopic rod, accelerating the exhaust of the second one-way valve, realizing that the protection plate gradually pushes the telescopic rod to reset, thereby further alleviating the instantaneous vibration. It can not only contact the ground earlier than the wheels, but also relieve the vibration by gradually resetting, and fall at a moderate speed, which can also avoid the problem of the mobile power supply tilting left and right, and avoid the problem of tilting and falling due to direct support, thus comprehensively realizing the protection effect of the mobile power supply when dealing with various problems.

[0017] 6. By setting up a buffer mechanism in the present invention, when the staff pulls the pull rod and the mobile power supply rolls forward through the wheels, since several inclined grooves are opened at the bottom of the protection plate, when foreign objects such as stones slide past the bottom of the protection plate, they will have a slight collision with the inclined inclined grooves, thereby generating a certain sound to remind the staff of the collision situation of the protection plate at the bottom, which is more conducive to understanding the unevenness of the road surface at this time.

[0018] 7. The present invention provides a stabilizing protection mechanism. When the mobile power source is laid flat, the stabilizing block on the counterweight block on the right side of the protective plate touches the ground. When the stabilizing block touches the ground, it naturally falls into the soil. This can avoid the problem of the mobile power source being touched and causing the mobile power source to shake when the mobile power source is statically transmitting electricity. The spike-shaped stabilizing block can increase the friction between the mobile power source and the soil surface, thereby keeping the mobile power source stable in a flat state as much as possible. As long as the mobile power source is laid flat, it can automatically stabilize to a certain extent, thereby avoiding the problem of the mobile power source being touched and flipped over due to the staff's negligence in locking the wheels.

[0019] 8. The present invention provides a stabilizing protection mechanism. If the mobile power supply needs to be positioned more stably, the mobile power supply can be slightly pushed to the right. At this time, the stabilizing block will be directly inserted into the soil in the lower right direction. Since the stabilizing block is in an inclined state, the stabilizing block inserted into the soil will be pushed by the soil to drive the protective plate to apply a downward force, which will drive the protective plate to rotate downward and enter a deeper position in the soil, thereby achieving a more stable fixation of the mobile power supply.

[0020] 9. The present invention provides a stabilizing protection mechanism, and at the same time, the protective plate is inserted into the soil by the stabilizing block, pushed down and pulled to deform the spring, so that after the spring is deformed, there is always a pulling force to pull the protective plate to restore it, thereby transmitting the interaction force between the top of the stabilizing block and the soil to increase the friction between the stabilizing block and the soil, making it difficult for the stabilizing block to easily separate from the soil, and forming a more stable fixing effect.

[0021] 10. The present invention provides a stabilizing protection mechanism, and multiple inclined grooves can also achieve that when the mobile power supply is placed horizontally in a static state, it falls on the soil due to gravity and slightly sinks into the soil. The soil enters each inclined groove to form a larger obstacle, further preventing the mobile power supply from being pushed, thereby ensuring the stability of the mobile power supply when it is placed horizontally and statically. It can also contact with the soil to perform appropriate sound-absorbing and shock-absorbing effects, which is more conducive to the progress of work. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 The structure of the mobile power supply of the present invention is shown in FIG. Figure 1 ; Figure 2 The structure diagram of the mobile power supply of the present invention is shown as follows Figure 1 ; Figure 3 The structure diagram of the mobile power supply of the present invention is shown as follows Figure 2 ; Figure 4 The structure of the mobile power supply of the present invention is shown in FIG. Figure 2 ; Figure 5 For the present inventionFigure 3 Enlarged view of part A; Figure 6 Structural schematic diagram of the protection mechanism of the present invention; Figure 7 Structural movement schematic diagram of the protection plate when it is extruded in the present invention Figure 1 ; Figure 8 Structural movement schematic diagram of the protection plate rebounding when the mobile power supply jumps up in the present invention Figure 1 ; Figure 9 Structural schematic diagram of the buffer mechanism of the present invention Figure 1 ; Figure 10 Structural schematic diagram of the buffer mechanism of the present invention Figure 2 ; Figure 11 Structural movement schematic diagram of the protection plate when it is extruded in the present invention Figure 2 ; Figure 12 Structural movement schematic diagram of the protection plate rebounding when the mobile power supply jumps up in the present invention Figure 2 ; Figure 13 Structural schematic diagram of the stable protection mechanism of the present invention; Figure 14 For the present invention Figure 3 Enlarged view of part B; Figure 15 Structural movement schematic diagram of the mobile power supply when it is placed flat in the present invention Figure 1 ; Figure 16 Structural movement schematic diagram of the mobile power supply when it is placed flat in the present invention Figure 2 。

[0023] In the figure: 1 mobile power supply, 2 pull rod, 3 protection mechanism, 301 groove, 302 hinge sleeve, 303 rotating shaft, 304 protection plate, 305 spring, 306 buffer pad, 4 buffer mechanism, 401 first hinge block, 402 telescopic rod, 403 second hinge block, 404 fixed plate, 405 first one-way valve, 406 second one-way valve, 5 stable protection mechanism, 501 counterweight, 502 stable block, 503 inclined groove, 6 support block, 7 wheel, 8 solar panel. Specific embodiments

[0024] Embodiment 1: Please refer to Figures 1 - 8 , the present invention provides a technical solution: an outdoor self-powered industrial mobile energy storage power supply, including a mobile power supply 1, a pull rod 2 is hinged to the left side of the mobile power supply 1, a wheel 7 is arranged on the right side of the mobile power supply 1, a solar panel 8 is fixedly connected to the top of the mobile power supply 1, a support block 6 is fixedly connected to the bottom of the mobile power supply 1, and a protection mechanism 3 is arranged at the bottom of the mobile power supply 1; The protection mechanism 3 includes: A groove 301 is opened at the bottom of the mobile power supply 1. An articulated sleeve 302 is fixedly connected to the inner wall of the groove 301. A rotating shaft 303 is rotatably connected to the inner wall of the articulated sleeve 302. The groove 301 is used to fixedly place the articulated sleeve 302. A protection plate 304, which is in an arc-shaped plate structure. One side of the protection plate 304 is fixedly connected to the outer wall of the rotating shaft 303. A spring 305 is arranged at the top of the protection plate 304. One end of the spring 305 is fixedly connected to the bottom of the mobile power supply 1. The protection plate 304 is used to protect the lower part of the mobile power supply 1, and the spring 305 is used for the reset buffer of the protection plate 304.

[0025] A buffer pad 306 is fixedly connected to the bottom right of the mobile power supply 1. The buffer pad 306 is made of rubber and is used to prevent the protection plate 304 from colliding with the bottom of the mobile power supply 1. When in use, when the mobile power supply 1 is used outdoors, it can absorb solar energy through the solar panel 8 on the top to realize self-power generation inside the mobile power supply 1, and then realize the function of mobile power supply through the external socket of the mobile power supply 1. When it is necessary to move the mobile power supply 1 outdoors, after flipping up and rotating the pull rod 2 and pulling the pull rod 2, lift the pull rod 2 and the mobile power supply 1 as a whole, so that the mobile power supply 1 can only rotate and move through the wheels 7 below, realizing the portable movement of the mobile power supply 1. When the mobile power supply 1 is in harsh outdoor terrains, such as some common construction areas where the ground is mostly muddy and stony, when pulling the pull rod 2 to lift the mobile power supply 1, when the mobile power supply 1 rotates and moves through the wheels 7, various stones and other foreign objects below are likely to hit the lower part of the mobile power supply 1 when the mobile power supply 1 rolls through the wheels 7, resulting in the cracking, denting or deformation of the outer shell of the mobile power supply 1, and then exposing the internal components, increasing the risk of damage. At this time, the protection plate 304 below the mobile power supply 1 will naturally play a role in protecting the bottom of the mobile power supply 1, avoiding the impact on the bottom when the mobile power supply 1 is pulled and dragged, and also being able to avoid the damage of the internal battery of the mobile power supply after impact, which may cause potential safety hazards. When the protection plate 304 replaces the bottom of the mobile power supply 1 to be impacted, when the protection plate 304 is hit by foreign objects, it will squeeze the spring 305. Through the deformation of the spring 305, the force of vibration in an instant is buffered, so as to relieve the vibration of the collision, and then further protect the problem that the internal electronic components of the mobile power supply 1 are affected due to vibration. At the same time, since the protective plate 304 can be rotated to move, the moment the protective plate 304 touches the foreign object, the staff pulling the pull rod 2 to move will feel the pulling resistance, so even if it continues to be pulled forward due to inertia, the protective plate 304 will be given a displacement distance, and the staff can check the bottom of the mobile power supply 1 in time, and then take corresponding measures such as detouring and lifting the mobile power supply 1 to avoid the problem of the stone on the ground hitting the bottom of the mobile power supply 1; When the pull rod 2 is pulled to make the mobile power source 1 move forward at a faster speed, if a larger stone is accidentally encountered, the bottom of the mobile power source 1 is easily lifted up by the stone due to the faster pulling speed, causing the wheel 7 to be slightly lifted off the ground. At this time, the protective plate 304 will rotate upward, and the compression spring 305 will be deformed; Example 2: Please refer to Figures 1 - 12 On the basis of the first embodiment, the present invention provides a technical solution: a buffer mechanism 4 is arranged at the bottom of the mobile power supply 1, and the buffer mechanism 4 includes a first hinge block 401, the top of the first hinge block 401 is fixedly connected to the bottom of the mobile power supply 1, the first hinge block 401 is hinged with a telescopic rod 402, one end of the telescopic rod 402 is hinged with a second hinge block 403, the bottom of the second hinge block 403 is fixedly connected with a fixing plate 404, and the bottom of the fixing plate 404 is fixedly connected to the top of the protective plate 304.

[0026] The top of the protection plate 304 is fixedly connected to one end of the spring 305 through a fixing plate 404 , and a first one-way valve 405 and a second one-way valve 406 are provided on the outer wall of the telescopic rod 402 . The diameter of the second one-way valve 406 is smaller than that of the first one-way valve 405 .

[0027] The first one-way valve 405 and the second one-way valve 406 are one-way air intakes. The air intake end of the first one-way valve 405 is connected to the outside of the telescopic rod 402, and the air outlet end of the first one-way valve 405 is connected to the inside of the telescopic rod 402. The air intake end of the second one-way valve 406 is connected to the inside of the telescopic rod 402, and the air outlet end of the second one-way valve 406 is connected to the outside of the telescopic rod 402. When the mobile power source 1 and the wheel 7 are lifted off the ground because the protective plate 304 below is hit by a stone, and the wheel 7 at the bottom of the mobile power source 1 is lifted off the ground and suspended in the air, the protective plate 304 is quickly rebounded by the rebound force of the spring 305 when it is received at the bottom, and is pushed to rotate and descend by the inertia after the rebound by the spring 305, and the protective plate 304, which was originally in a nearly horizontal state, is transformed into a vertical state. The protective plate 304 can rotate and descend by a greater angle, so that the protective plate 304 in a nearly vertical state will exceed the bottom of the wheel 7. Because the protective plate 304 rotates and descends, the spring 305 is stretched, and the telescopic rod 402 is pulled and extended, and the air inside the telescopic rod 402 is taken in through the first one-way valve 405, but when the spring 305 pulls the protective plate 304 to reset, the exhaust inside the telescopic rod 402 is exhausted through the second one-way valve 406 exhaust, the caliber of the second one-way valve 406 is much smaller than that of the first one-way valve 405, so when the protective plate 304 rotates and descends beyond the bottom of the wheel 7 and pulls the spring 305 and the telescopic rod 402, the air intake through the first one-way valve 405 is not affected, but when the protective plate 304 is reset by the elastic force of the spring 305, the air is exhausted through the second one-way valve 406 with a smaller caliber, resulting in a slower exhaust speed. Therefore, when the mobile power supply 1 falls to the ground, the protective plate 304 will remain in this position for a long time after being ejected beyond the bottom of the wheel 7, so that when the mobile power supply 1 falls with gravity, the bottom of the protective plate 304 contacts the ground first and quickly resists the ground, which can reduce the vacant time and avoid the problem of greater damage to the mobile power supply 1 caused by falling with the acceleration of gravity when the mobile power supply 1 is completely dropped after being vacated and supported by the wheel 7 on the ground; As the second one-way valve 406 is gradually exhausted, the protective plate 304 gradually rotates from a vertical state to an original approximately horizontal state, thereby gradually leveling the mobile power supply 1. When the wheels 7 can touch the ground, the staff can pull the mobile power supply 1 to move again by using the pull rod 2. When the bottom of the protective plate 304 is against the ground, the mobile power source 1 is supported. At the same time, the supporting vibration generated by the protective plate 304 and the ground will use the protective plate 304 to squeeze the telescopic rod 402 to accelerate the exhaust of the second one-way valve 406, so that the protective plate 304 gradually pushes the telescopic rod 402 to reset, thereby further alleviating the instantaneous vibration. Not only can it contact the ground earlier than the wheel 7, but it can also alleviate its vibration by gradually resetting. By falling at a moderate speed, it can also avoid the problem of the mobile power source 1 tilting left and right, and avoid the problem of tilting left and right due to direct support, thereby fully realizing the protection function of the mobile power source 1 in dealing with various problems. Primary buffer: The protective plate 304 directly absorbs the instantaneous impact kinetic energy through the deformation of the spring 305. This primary buffer can reduce the instantaneous impact force by 60% - 70% (refer to the conventional spring damping efficiency). Secondary buffer: When the protective plate 304 is hit by a stone and causes the associated mobile power supply 1 to be lifted and then land, the exhaust speed is controlled by the small-diameter second one-way valve 406 inside the telescopic rod 402, so that the protective plate 304 automatically pops up after rebounding and touches the ground one step ahead of the wheel 7. As the small-diameter second one-way valve 406 gradually exhausts, the remaining impact force is converted into slowly released energy, further reducing the amplitude of vibration transmitted to the mobile power supply, and can additionally reduce the vibration amplitude generated when the mobile power supply 1 lands on the ground by more than 40% on top of the primary buffer; When pulling the mobile power supply 1 through the pull rod 2, the support block 6 does not contact the ground. When the mobile power supply is placed flat, the support block 6 and the wheel 7 jointly support the mobile power supply 1 to keep it stable; Embodiment 3: Please refer to Figures 1 - 16 , based on Embodiment 1 and Embodiment 2, the present invention provides a technical solution: A stable protection mechanism 5 is provided at the bottom of the protective plate 304. The stable protection mechanism 5 includes a counterweight 501. The counterweight 501 is a square plate-like structure, and one side of the counterweight 501 is fixedly connected to the bottom of the protective plate 304.

[0028] A stabilizing block 502 is fixedly connected to one side of the counterweight 501. The stabilizing block 502 is spike-shaped and is inclined.

[0029] A plurality of inclined slots 503 are opened at the bottom of the protective plate 304. The plurality of inclined slots 503 are equidistantly opened at the bottom of the protective plate 304, and the inclined slots 503 are inclined slots; When the staff pulls the pull rod 2 and moves the mobile power supply 1 forward by rolling the wheel 7, if the bottom of the protective plate 304 touches foreign objects such as stones, it will push the protective plate 304 to lift and slide past the bottom of the protective plate 304. At this time, because a plurality of inclined slots 503 are opened at the bottom of the protective plate 304, when foreign objects such as stones slide past the bottom of the protective plate 304, they will have a slight collision with the inclined inclined slots 503, so as to generate a certain sound to remind the staff of the collision of the protective plate 304 at the bottom, which is more conducive to understanding the unevenness of the road surface at this time; Since the right side of the protective plate 304 is fixedly connected to the counterweight 501, when the mobile power supply 1 is laid flat, the counterweight 501 will give the protective plate 304 a greater force to pull the spring 305 than when the mobile power supply 1 is tilted. Therefore, when the mobile power supply 1 is laid flat, the spring 305 needs to bear a greater load applied by the protective plate 304 and the counterweight 501, and the spring 305 will be pulled and deformed to a greater extent. At this time, the protective plate 304 will drive the rotating shaft 303 to rotate and descend in the inner wall of the hinge sleeve 302, so that the counterweight 501 on the right side of the protective plate 304 The stabilizing block 502 touches the ground. When the stabilizing block 502 touches the ground, it naturally falls into the soil. When the mobile power supply 1 is working in a static state of transmitting electricity, the problem of shaking of the mobile power supply 1 caused by touching the mobile power supply 1 can be avoided. The friction between the mobile power supply 1 and the soil ground can be increased by the spike-shaped stabilizing block 502, so as to keep the mobile power supply 1 stable in a flat state as much as possible. As long as the mobile power supply 1 is laid flat, it can automatically stabilize to a certain extent, so as to avoid the problem of being touched and flipped due to the staff's negligence of not locking the wheels 7. If the mobile power supply 1 needs to be positioned more stably, the mobile power supply 1 can be slightly pushed to the right. At this time, the stabilizing block 502 will be directly inserted into the soil in the lower right direction. Since the stabilizing block 502 is in an inclined state, the stabilizing block 502 inserted into the soil will be pushed by the soil to drive the protective plate 304 to apply a downward component of force, which will drive the protective plate 304 to rotate downward and enter a deeper position in the soil, thereby achieving a more stable fixation of the mobile power supply 1. At the same time, the protective plate 304 is pushed down by the stabilizing block 502 inserted into the soil and pulls the spring 305 to deform. Therefore, after the spring 305 is deformed, there will always be a pulling force to pull the protective plate 304 to reset it, which is transmitted to the interaction force between the top of the stabilizing block 502 and the soil, so as to increase the friction between the stabilizing block 502 and the soil, so that the stabilizing block 502 is not easily separated from the soil, and a more stable fixing effect can be formed. The multiple inclined grooves 503 can also achieve the situation that the mobile power supply 1 slightly sinks into the soil due to gravity when it falls on the soil in a flat static state, and the soil enters each inclined groove 503 to form a larger obstacle, further preventing the mobile power supply 1 from being pushed, thereby ensuring the stability of the mobile power supply 1 when working flat and static, and can also contact with the soil to perform appropriate sound insulation and shock absorption, which is more conducive to the progress of work.

[0030] The above are only preferred specific implementation modes of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical solutions and inventive concepts of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. An industrial mobile energy storage power source for outdoor self-generation, comprising a mobile power source (1), a pull rod (2) being hinged on the left side of the mobile power source (1), and wheels (7) being arranged on the right side of the mobile power source (1), characterized in that: The top of the mobile power source (1) is fixedly connected to a solar panel (8), the bottom of the mobile power source (1) is fixedly connected to a support block (6), and the bottom of the mobile power source (1) is provided with a protective mechanism (3); The protection mechanism (3) comprises: A groove (301), the groove (301) being provided at the bottom of the mobile power source (1), the inner wall of the groove (301) being fixedly connected to a hinge sleeve (302), and the inner wall of the hinge sleeve (302) being rotatably connected to a rotating shaft (303); A protective plate (304), the protective plate (304) being an arc-shaped plate-like structure, one side of the protective plate (304) being fixedly connected to the outer wall of the rotating shaft (303), a spring (305) being arranged on the top of the protective plate (304), and one end of the spring (305) being fixedly connected to the bottom of the mobile power source (1).

2. The outdoor self-generating industrial mobile energy storage power supply according to claim 1 is characterized in that: A buffer pad (306) is fixedly connected to the bottom of the right side of the mobile power supply (1), and the buffer pad (306) is made of rubber.

3. The outdoor self-generating industrial mobile energy storage power supply according to claim 2 is characterized in that: A buffer mechanism (4) is provided at the bottom of the mobile power supply (1), the buffer mechanism (4) comprising a first hinge block (401), the top of the first hinge block (401) being fixedly connected to the bottom of the mobile power supply (1), the first hinge block (401) being hingedly connected to a telescopic rod (402), one end of the telescopic rod (402) being hingedly connected to a second hinge block (403), the bottom of the second hinge block (403) being fixedly connected to a fixing plate (404), and the bottom of the fixing plate (404) being fixedly connected to the top of the protective plate (304).

4. The outdoor self-generating industrial mobile energy storage power supply according to claim 3 is characterized by: The top of the protective plate (304) is fixedly connected to one end of the spring (305) via a fixing plate (404); a first one-way valve (405) and a second one-way valve (406) are provided on the outer wall of the telescopic rod (402); the second one-way valve (406) has a smaller caliber than the first one-way valve (405).

5. The outdoor self-generating industrial mobile energy storage power supply according to claim 4 is characterized in that: The first one-way valve (405) and the second one-way valve (406) are one-way air intakes; an air intake end of the first one-way valve (405) is in communication with the outside of the telescopic rod (402); an air outlet end of the first one-way valve (405) is in communication with the inside of the telescopic rod (402); an air intake end of the second one-way valve (406) is in communication with the inside of the telescopic rod (402); and an air outlet end of the second one-way valve (406) is in communication with the outside of the telescopic rod (402).

6. The outdoor self-generating industrial mobile energy storage power supply according to claim 5, characterized in that: A stabilizing protection mechanism (5) is provided at the bottom of the protective plate (304), and the stabilizing protection mechanism (5) comprises a counterweight block (501). The counterweight block (501) is a square plate-shaped structure, and one side of the counterweight block (501) is fixedly connected to the bottom of the protective plate (304).

7. The outdoor self-generating industrial mobile energy storage power supply according to claim 6, characterized in that: A stabilizing block (502) is fixedly connected to one side of the counterweight block (501); the stabilizing block (502) is spike-shaped and is arranged obliquely.

8. The outdoor self-generating industrial mobile energy storage power supply according to claim 7 is characterized by: The bottom of the protection plate (304) is provided with a plurality of inclined grooves (503), the plurality of inclined grooves (503) are provided at equal intervals on the bottom of the protection plate (304), and the inclined grooves (503) are inclined grooves.

Citation Information

Patent Citations

  • Portable mobile energy storage power supply

    CN116669337A

  • BE460636A

  • Voltage stabilizer structure of precise composite integrated voltage-stabilized power supply

    CN114501897A

  • Transformer voltage conversion device

    CN117500194A

  • Quick-charging mobile power supply with built-in TWS earphone and built-in charging line

    CN118763762A