A safety protection device for a new energy storage station
By introducing a rotating protective panel and positioning pile structure into the safety protection device of the new energy storage station, the problems of insufficient protection flexibility and stability of the existing device are solved, enabling rapid deployment and convenient maintenance, and improving the safety and applicability of the energy storage station.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- POWERCHINA JIANGXI ELECTRIC POWER ENGINEERING CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-06-02
AI Technical Summary
Existing protective devices for new energy storage stations lack flexibility in protection against external forces, cannot flexibly adjust the protective area according to specific needs, have insufficient structural strength and stability, and are time-consuming and costly to construct, making it difficult to meet the needs of rapid deployment and maintenance.
A safety protection device for a new energy storage station was designed. By setting rotating protective panels on both sides of the protective plate, combined with a positioning pile structure and a rotation adjustment structure, the protection range can be flexibly expanded and stabilized. The use of aluminum alloy plates and transparent plates improves convenience. The positioning pile structure ensures quick and stable insertion into the ground, while the limiting structure and pull rope structure improve fixing accuracy and convenience.
It achieves flexible expansion and stability of the protection range, simplifies the construction process, reduces costs and time requirements, and improves the environmental adaptability and safety of the device, making it suitable for temporary or relocatable scenarios of new energy storage stations.
Smart Images

Figure CN224314719U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of protection technology for new energy storage stations, specifically a safety protection device for new energy storage stations. Background Technology
[0002] New energy storage power stations store electrical energy and convert it into other forms of energy when power is scarce. To ensure the environmental safety of new energy storage power stations during use and to prevent them from being damaged by strangers, a safety protection device is needed to provide safety warnings and guidance.
[0003] During the operation of energy storage stations, they may be subjected to various external forces, such as natural disasters like strong winds and earthquakes, as well as collisions caused by human factors. The existing guardrails lack flexibility; they cannot flexibly adjust the protective area according to specific needs, failing to effectively balance comprehensive protection with space occupancy. Furthermore, their structural strength and stability are insufficient, and the guardrails and other equipment used are time-consuming, difficult, and costly to construct, making it difficult to meet the needs of rapid deployment and maintenance. Therefore, corresponding technical solutions need to be designed to address these issues. Utility Model Content
[0004] (a) Technical problems to be solved
[0005] In view of the shortcomings of the existing technology, this utility model provides a safety protection device for new energy storage stations, which solves the technical problems.
[0006] (II) Technical Solution
[0007] To achieve the above objectives, this utility model provides a safety protection device for a new energy storage station.
[0008] Protective panel;
[0009] The protective display panel is horizontally rotatably connected to both sides of the protective panel;
[0010] The base plate is fixed horizontally and vertically to the lower part of the protective plate along the length of the protective plate, and is divided into an inner base plate and an outer base plate by the protective plate;
[0011] A positioning pile structure is used to movably fix the base plate to the ground, and the positioning pile structure is disposed on the outer base plate and / or the inner base plate;
[0012] A rotation adjustment structure is provided to limit the relative rotation between the protective display panel and the protective plate. The rotation adjustment structure is disposed between the protective display panel and the base plate.
[0013] Preferably, the positioning pile structure includes:
[0014] A positioning cylinder is vertically fixed to the upper part of the base plate, and the positioning cylinder has openings at both ends;
[0015] A positioning stake is movably inserted into the positioning cylinder and extends to the lower part of the base plate. The base plate is provided with a through hole to facilitate the movement of the positioning stake through.
[0016] A positioning plate is disposed on the outer periphery of the positioning pile. The positioning cylinder has a positioning groove that mates with the positioning plate at one end along its central axis and away from the bottom plate. The opening of the positioning groove faces upward.
[0017] Preferably, the bottom of the positioning pile is conical, and the upper part is provided with a pressure plate to facilitate the insertion of the positioning pile into the ground. The positioning pile is nail-shaped as a whole.
[0018] The device further includes a limiting structure, the limiting structure comprising:
[0019] The first limiting rod is used to fix the positioning pile and the positioning cylinder. The positioning cylinder has a through hole on one side to facilitate the passage of the first limiting rod. The positioning pile has several first limiting holes along its length to facilitate the insertion and fixing of the first limiting rod.
[0020] The first end plate is fixedly disposed at the end of the first limiting rod located outside the positioning cylinder;
[0021] A first spring is sleeved outside the first limiting rod and located between the first end plate and the positioning cylinder. One end of the first spring is fixed to the end of the first limiting rod outside the positioning cylinder, and the other end is fixed to the positioning cylinder. When the first spring is in a free state, the first limiting rod is inserted into the first limiting hole.
[0022] Preferably, the device further includes a pull rope connected between the positioning stake and the base plate to prevent the positioning stake from being lost.
[0023] Preferably, the device further includes a storage structure for winding and storing the pull cord, the storage structure comprising:
[0024] A reinforcing plate is disposed between the base plate and the protective plate, and the reinforcing plate is fixed to the upper part of the base plate and the inner side of the protective plate respectively;
[0025] A fixing plate is provided at intervals along the width direction of the base plate on the side of the reinforcing plate near the positioning pile, and a long strip-shaped stepped groove is provided along the length direction on the side of the fixing plate away from the reinforcing plate.
[0026] The sliding part includes a slider that is slidably disposed in the stepped slide groove, a slide rod that is vertically fixed on the slider, and a circular baffle disposed at the end of the slide rod away from the slider, wherein the diameter of the circular baffle is larger than the diameter of the slide rod;
[0027] Positioning bolts are used to fix and adjust the height of the slider. The bottom of the stepped slide groove of the fixing plate is provided with a number of screw holes that are adapted to the positioning bolts along its length.
[0028] Preferably, the rotation adjustment structure includes:
[0029] A limiting plate is fixedly installed at both ends of the base plate and located at the lower part of the protective display panel. The limiting plate is semi-flat cylindrical.
[0030] A connecting plate is disposed on the side of the protective display panel closest to the protective panel;
[0031] The second limiting rod is provided in the connecting plate with a through hole for the second limiting rod to move through, and the limiting plate is provided with a plurality of second limiting holes for the second limiting rod to be inserted and fixed.
[0032] The second end plate is disposed at the end of the second limiting rod away from the limiting plate;
[0033] The second spring is sleeved outside the second limiting rod and located between the second end plate and the connecting plate. The two ends of the second spring are fixed to the connecting plate and the second end plate, respectively. When the second spring is in a free state, the second limiting rod is inserted into the second limiting hole to restrict the relative rotation between the protective display plate and the protective plate.
[0034] Preferably, the second limiting hole is a circular hole, and the second limiting hole is located on the rotation path of the second limiting rod.
[0035] Preferably, the upper part of the second end plate is provided with a pull ring for easy operation by the operator.
[0036] Preferably, the protective plate and the protective display plate are fitted with transparent plates that allow staff to observe the operating status of the energy storage station, and both the protective plate and the protective display plate are equipped with handles for easy movement. The protective plate and the protective display plate are connected by hinges.
[0037] (III) Beneficial Effects
[0038] 1. This utility model features rotatably connected protective panels on both sides of a protective plate, allowing the panels to rotate freely and flexibly expand the protection range (e.g., unfolding to form a "U"-shaped protective structure). This adapts to different site layout requirements and improves the environmental adaptability of the protective device. The base plate is connected to the ground via positioning piles, ensuring the stability of the protective device while facilitating disassembly and relocation, meeting the needs of temporary or relocatable scenarios for new energy storage stations. A rotation adjustment structure ensures the stability of the unfolded protective panels relative to the protective plate angle, guaranteeing the stability of the protection range. Simultaneously, the baffle angle can be adjusted as needed, balancing protection and ease of equipment maintenance.
[0039] This device has a simple structure, can be quickly unfolded and folded up, making it easy to deploy. At the same time, its foldable storage reduces the overall space occupied by the device, making it easy to transport and store.
[0040] 2. This utility model guides the positioning pile vertically through a positioning cylinder, improving fixing accuracy and enabling rapid and stable insertion of the device into the ground, thus increasing installation efficiency. Through the cooperation of the positioning plate and positioning groove, once the positioning pile is inserted into the ground, it prevents the positioning pile from rotating relative to the positioning cylinder, preventing loosening in the vertical direction and enhancing the pull-out resistance of the fixing structure.
[0041] 3. This utility model uses a second limiting rod and a second limiting hole on a limiting plate for fixation. After the angle of the protective display panel is adjusted, it is fixed to the protective plate, ensuring the stability of the structure of the protective device when unfolded and adapting to the needs of use in severe weather such as strong winds. When it is necessary to retract the protective device, simply pull up the second limiting rod using the pull ring to disengage it from the second limiting hole, thus releasing the lock between the protective display panel and the protective plate. The operation is simple and convenient. Attached Figure Description
[0042] Figure 1 This is a schematic diagram of the overall external top view structure of this utility model;
[0043] Figure 2 This is a schematic diagram of the overall internal structure of this utility model from an upper view.
[0044] Figure 3 This is a schematic diagram of the overall internal lower view structure of this utility model;
[0045] Figure 4 This is a schematic diagram of the positioning pile locking structure of this utility model;
[0046] Figure 5 This is a schematic diagram of the pull cord storage structure of this utility model;
[0047] Figure 6 For the present utility model Figure 4 Enlarged structural diagram at point B;
[0048] Figure 7 For the present utility model Figure 1 Enlarged structural diagram at point A in the middle.
[0049] In the diagram: 10. Protective panel; 101. Handle; 102. Hinge;
[0050] 20. Protective display boards;
[0051] 30. Base plate; 301. Inner base plate; 302. Outer base plate;
[0052] 40. Positioning pile structure; 401. Positioning cylinder; 4011. Positioning groove; 402. Positioning pile; 4021. First limiting hole; 403. Positioning plate; 404. Pressure plate;
[0053] 50. Rotation adjustment structure; 501. Limiting plate; 5011. Second limiting hole; 502. Connecting plate; 503. Second limiting rod; 504. Second end plate; 505. Second spring; 506. Pull ring;
[0054] 60. Limiting structure; 601. First limiting rod; 602. First end plate; 603. First spring;
[0055] 70. Pull the rope;
[0056] 80. Storage structure; 801. Reinforcing plate; 802. Fixing plate; 8021. Stepped slide; 806. Sliding part; 8061. Slider; 8062. Sliding rod; 8063. Circular baffle; 8064. Positioning bolt. Detailed Implementation
[0057] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0058] Please refer to Figures 1-7 As shown, a safety protection device for a new energy storage station.
[0059] Protective plate 10;
[0060] The protective display panel is horizontally rotatably connected to both sides of the protective panel 10;
[0061] The base plate 30 is horizontally and vertically fixed to the lower part of the protective plate 10 along the length of the protective plate 10, and is divided into an inner base plate 301 and an outer base plate 302 by the protective plate 10.
[0062] The positioning pile structure 40 is used to movably fix the base plate 30 to the ground. The positioning pile structure 40 is set on the outer base plate 302 and / or the inner base plate 301.
[0063] The rotation adjustment structure 50 is used to limit the relative rotation between the protective display panel and the protective plate 10. The rotation adjustment structure 50 is set between the protective display panel and the base plate 30.
[0064] This embodiment features rotatably connected protective panels on both sides of the protective plate 10, allowing the panels to rotate freely and flexibly expand the protection range (e.g., unfolding to form a "U"-shaped protective structure). This adapts to different site layout requirements and improves the environmental adaptability of the protective device. The base plate 30 is connected to the ground via positioning piles 40, ensuring the stability of the protective device while facilitating disassembly and relocation, meeting the needs of temporary or relocatable scenarios for new energy storage stations. A rotation adjustment structure 50 ensures the stability of the angle of the protective panels relative to the protective plate 10 after unfolding, guaranteeing the stability of the protection range. Simultaneously, the angle of the baffles can be adjusted as needed, balancing protection with ease of equipment maintenance.
[0065] This device has a simple structure, making it easy to quickly unfold and fold up. At the same time, the foldable function reduces the overall space occupied by the device, making it easy to transport and store.
[0066] Please refer to Figures 1-3 As shown, in this embodiment, the protective plate 10 and the protective display panel are rotatably connected by a hinge 102. The protective plate 10 and the protective display panel are fitted with transparent panels that facilitate observation of the energy storage station's operating status by staff, providing them with a good field of vision. Staff can observe the operating status of the internal equipment of the energy storage station without opening the protective device, promptly detecting abnormalities, greatly improving work efficiency and safety. Compared to traditional opaque protective devices, this avoids the safety risks that may arise from frequent opening of the device for inspection, and reduces maintenance costs and time. Simultaneously, both the protective plate 10 and the protective display panel are equipped with handles 101 for easy movement.
[0067] It should be noted that in this embodiment, both the protective plate 10 and the protective display plate are made of aluminum alloy. The ultra-lightweight nature of aluminum alloy reduces the overall weight of the device, facilitating handling and movement. For the same reasons, the transparent plate can be made of polycarbonate or acrylic (PMMA).
[0068] Please refer to Figure 1 and Figure 4 As shown, the positioning pile structure 40 includes:
[0069] Positioning cylinder 401 is vertically fixed to the upper part of base plate 30, and the positioning cylinder 401 has openings at both ends;
[0070] The positioning pile 402 is movably inserted into the positioning cylinder 401 and extends to the lower part of the bottom plate 30. The bottom plate 30 is provided with a through hole to facilitate the movement of the positioning pile 402.
[0071] The positioning plate 403 is set on the outer periphery of the positioning pile 402. The positioning cylinder 401 has a positioning groove 4011 that cooperates with the positioning plate 403 at one end along its central axis and away from the bottom plate 30. The opening of the positioning groove 4011 faces upward.
[0072] The bottom of the positioning pile 402 is conical, and the upper part is provided with a pressure plate 404 to facilitate the insertion of the positioning pile 402 into the ground. The positioning pile 402 is nail-shaped in general.
[0073] In this embodiment, the positioning cylinder 401 guides the positioning pile 402 to be inserted vertically, improving the fixing accuracy and enabling the device to be quickly and stably inserted into the ground, thus improving installation efficiency. Through the cooperation of the positioning plate 403 and the positioning groove 4011, once the positioning pile 402 is inserted into the ground, it prevents the positioning pile 402 from rotating relative to the positioning cylinder 401, preventing the positioning pile 402 from loosening in the vertical direction and enhancing the pull-out resistance of the fixing structure.
[0074] It should be noted that the nail-like structure reduces the resistance when the positioning pile 402 is inserted into the ground, facilitating rapid driving and improving construction efficiency. Simultaneously, the conical structure enhances soil adhesion and improves stability. Since the positioning pile 402 needs to be inserted into the ground, it must possess sufficient strength, corrosion resistance, and wear resistance to ensure long-term stable operation. In this embodiment, the positioning pile 402 is made of stainless steel.
[0075] Please refer to Figure 4 and Figure 6 As shown, in this embodiment, the protective device further includes a limiting structure 60, which includes:
[0076] The first limiting rod 601 is used to fix the positioning pile 402 and the positioning cylinder 401. The positioning cylinder 401 has a through hole on one side to facilitate the passage of the first limiting rod 601. The positioning pile 402 has several first limiting holes 4021 along its length to facilitate the insertion and fixing of the first limiting rod 601.
[0077] The first end plate 602 is fixedly disposed at the end of the first limiting rod 601 located outside the positioning cylinder 401;
[0078] The first spring 603 is sleeved outside the first limiting rod 601 and located between the first end plate 602 and the positioning cylinder 401. One end of the first spring 603 is fixed to the end of the first limiting rod 601 located outside the positioning cylinder 401, and the other end is fixed to the positioning cylinder 401. When the first spring 603 is in a free state, the first limiting rod 601 is inserted into the first limiting hole 4021.
[0079] In this embodiment, the first limiting rod 601 passes through the positioning cylinder 401 and inserts into the first limiting hole 4021 of the positioning pile 402, thereby fixing the positioning pile 402 to the positioning cylinder 401. The multiple first limiting holes 4021 can accommodate different insertion depths to meet the fixing requirements of different ground hardnesses. When the spring is in a free state, the first limiting rod 601 automatically inserts into the limiting hole, achieving automated "insertion and locking" fixing, reducing manual operation steps and improving operational convenience.
[0080] Please refer to Figure 4 and Figure 5 As shown, in this embodiment, the protective device also includes a pull rope 70 connected between the positioning stake 402 and the base plate 30 to prevent the positioning stake 402 from being lost. By setting the pull rope 70 to prevent the positioning stake 402 from being lost after disassembly, it is especially suitable for scenarios that require frequent movement or multi-component cooperation, improving the convenience of device maintenance and the integrity of components.
[0081] In addition, to facilitate stretching and storage, the protective device in this embodiment also includes a storage structure 80, specifically comprising:
[0082] A reinforcing plate 801 is installed between the base plate 30 and the protective plate 10. The reinforcing plate 801 is fixed to the upper part of the base plate 30 and the inner side of the protective plate 10 respectively. The reinforcing plate 801 can improve the installation strength of the base plate 30 and the protective plate 10.
[0083] The fixing plate 802 is spaced along the width direction of the base plate 30 on the side of the reinforcing plate 801 near the positioning pile 402. The side of the fixing plate 802 away from the reinforcing plate 801 has a long strip-shaped stepped slide groove 8021 along its length direction.
[0084] The sliding part 806 includes a slider 8061 slidably disposed in the stepped slide groove 8021, a slide rod 8062 vertically fixed on the slider 8061, and a circular baffle 8063 disposed at the end of the slide rod 8062 away from the slider 8061. The diameter of the circular baffle 8063 is larger than the diameter of the slide rod 8062.
[0085] The large opening of the stepped slide 8021 is located inside the fixed plate 802. At the same time, the width of the large opening of the stepped slide 8021 is equal to or slightly larger than the width of the slider 8061, the width of the slider 8061 is greater than the width of the lower opening of the stepped slide 8021, and the width of the small opening of the stepped slide 8021 is equal to or slightly larger than the diameter of the slide rod 8062.
[0086] The positioning bolt 8064 is used to fix and adjust the height of the slider 8061. The bottom of the stepped slide groove 8021 of the fixing plate 802 is provided with several screw holes that are adapted to the positioning bolt 8064 along its length.
[0087] Understandably, during storage, the relative height between the slide rod 8062 and the base plate 30, and / or between the slide rod 8062 itself, is adjusted using the positioning bolt 8064 to facilitate the storage of pull ropes 70 of different lengths, achieving orderly storage of the pull ropes 70. The diameter of the circular baffle 8063 is larger than the diameter of the slide rod 8062, effectively preventing the pull ropes 70 wrapped around the slide rod 8062 from slipping off the slide rod 8062.
[0088] Please refer to Figure 1 and Figure 7 As shown, the rotation adjustment structure 50 includes:
[0089] The limiting plate 501 is fixedly installed at both ends of the base plate 30 and located at the bottom of the protective display plate. The limiting plate 501 is a semi-flat cylindrical shape.
[0090] Connecting plate 502 is located on the side of the protective display panel closest to the protective plate 10;
[0091] The second limiting rod 503, the connecting plate 502 is provided with a through hole to facilitate the movement of the second limiting rod 503, and the limiting plate 501 is provided with a plurality of second limiting holes 5011 to facilitate the insertion and fixing of the second limiting rod 503.
[0092] The second end plate 504 is located at the end of the second limit rod 503 away from the limit plate 501; the upper part of the second end plate 504 is provided with a pull ring 506 for easy operation by the operator.
[0093] The second spring 505 is sleeved outside the second limiting rod 503 and located between the second end plate 504 and the connecting plate 502. The two ends of the second spring 505 are fixed to the connecting plate 502 and the second end plate 504 respectively. When the second spring 505 is in a free state, the second limiting rod 503 is inserted into the second limiting hole 5011 to limit the relative rotation between the protective display plate and the protective plate 10.
[0094] In this embodiment, the second limiting rod 503 is fixed to the second limiting hole 5011 of the limiting plate 501. After the angle of the protective display board is adjusted, it is fixed to the protective plate 10, which ensures the stability of the structure of the protective device when it is unfolded and can adapt to the use requirements of severe weather such as strong winds.
[0095] Understandably, when it is necessary to retract the protective device, one only needs to pull up the second limiting rod 503 through the pull ring 506 to disengage it from the second limiting hole 5011, thereby releasing the lock between the protective display plate and the protective plate 10. The operation is simple and convenient.
[0096] To facilitate the alignment and insertion of the second limiting rod 503 with the second limiting hole 5011, the second limiting hole 5011 in this embodiment is a circular hole. Furthermore, the second limiting hole 5011 is located on the rotation path of the second limiting rod 503; that is, the center of the second limiting hole 5011 is located on the arc formed by the rotation of the second limiting rod 503. In this embodiment, there are seven second limiting holes 5011. Obviously, the number of second limiting holes 5011 can be determined based on the accuracy of the protective display panel angle adjustment, and this application does not impose any limitation on this number.
[0097] It should be noted that the specific model and specifications need to be selected and determined based on the actual specifications of the device. The specific selection calculation method adopts existing technology in this field, and therefore will not be described in detail. The power supply and its principle are clear to those skilled in the art, and will not be described in detail here. At the same time, the above-mentioned components in this application are all general standard parts or components known to those skilled in the art, and their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods. This application will not describe them in detail here.
[0098] Working principle of the protective device: The protective plate 10 and the protective display board are placed in front of the new energy storage station. The positioning pile 402 is extended through the positioning cylinder 401 to the lower part of the base plate 30 and in contact with the ground, so that the positioning plate 403 is limited to the positioning groove 4011. A tool is used to impact the pressure plate 404 so that the tip of the positioning pile 402 is inserted into the ground, ensuring stable support of the base plate 30 and safe protection. At the same time, the first limiting rod 601 is inserted into the first limiting hole 4021 to further fix the positioning pile 402 and the positioning cylinder 401, and the relative height of the sliding rod 8062 is adjusted. The pull rope 70 is sequentially wound around the sliding rod 8062.
[0099] The operator pulls the pull ring 506 to open the protective panel at a certain angle as needed for safety protection. The protective panel is then rotated and opened to a suitable angle. The pull ring 506 is then released, and the second limiting rod 503, under the elastic tension of the second spring 505, is inserted into the second limiting hole 5011, thereby locking the protective panel to prevent it from rotating.
[0100] When disassembling the protective device, pull the first limiting rod 601 to disengage it from the first limiting hole 4021. Use tools or untie the pull rope 70 to pull the positioning stake 402 out of the ground. After the positioning stake 402 is off the ground, wrap the pull rope 70 around the slide rod 8062 in sequence to store it and prevent the positioning stake 402 from being lost.
[0101] Pull the second limiting rod 503 to disengage it from the second limiting hole 5011, and the protective display panel and the protective plate 10 will be unlocked. Fold the protective display panel and the protective plate 10 together for easy transportation and storage.
[0102] The problem solved by this utility model is the lack of flexibility in protective devices. Existing guardrails cannot flexibly adjust the protective area according to specific needs, cannot effectively balance the comprehensiveness of protection with space occupation, and have insufficient structural strength and stability. Furthermore, the guardrails and other equipment used are time-consuming, difficult, and costly to construct. This utility model, through the combination of the above-mentioned components, and the protective display panel connected at both ends of the protective plate 10 by hinges 102, greatly enhances the protective flexibility of the device. It is suitable for the complex and ever-changing environment around the energy storage station, and can be easily unfolded or retracted according to specific needs. When unfolded, it can expand the protective area, providing more comprehensive safety protection for the energy storage station and preventing accidental impacts from external objects or personnel from accidentally entering dangerous areas. When retracted, it can reduce the overall space occupied by the device, making it easier to transport and store, and improving the applicability of the device in different scenarios. It significantly enhances the structural strength and stability of the entire device, effectively dispersing and bearing external forces, preventing deformation or damage to the device, and ensuring that the energy storage station is always in a safe protective environment. It achieves rapid and stable insertion of the device into the ground, improving installation efficiency, greatly shortening construction time, reducing installation difficulty and cost, and providing a more reliable and efficient guarantee for the safe operation of new energy storage stations, with broad market application prospects. The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It will be apparent to those skilled in the art that this utility model is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or basic characteristics of this utility model. Therefore, the embodiments should be considered exemplary and non-limiting in all respects. The scope of this utility model is defined by the appended claims rather than the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within this utility model. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0103] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A safety protection device for a new energy storage station, characterized in that: Protective plate (10); The protective display panel (20) is horizontally rotatably connected to both sides of the protective panel (10); The base plate (30) is horizontally and vertically fixed to the lower part of the protective plate (10) along the length direction of the protective plate (10), and is divided into an inner base plate (301) and an outer base plate (302) by the protective plate (10); A positioning pile structure (40) is used to movably fix the base plate (30) to the ground. The positioning pile structure (40) is set on the outer base plate (302) and / or the inner base plate (301). A rotation adjustment structure (50) is used to limit the relative rotation between the protective display panel and the protective plate (10). The rotation adjustment structure (50) is disposed between the protective display panel and the base plate (30).
2. The safety protection device for a new energy storage station according to claim 1, characterized in that: The positioning pile structure (40) includes: The positioning cylinder (401) is vertically fixed to the upper part of the base plate (30), and the positioning cylinder (401) has openings at both ends; The positioning stake (402) is movably inserted into the positioning cylinder (401) and extends to the lower part of the base plate (30). The base plate (30) is provided with a through hole to facilitate the movement of the positioning stake (402). A positioning plate (403) is disposed on the outer periphery of the positioning pile (402). The positioning cylinder (401) has a positioning groove (4011) that cooperates with the positioning plate (403) at one end along its central axis and away from the bottom plate (30). The opening of the positioning groove (4011) is upward.
3. The safety protection device for a new energy storage station according to claim 2, characterized in that: The bottom of the positioning pile (402) is conical, and the upper part is provided with a pressure plate (404) to facilitate the insertion of the positioning pile (402) into the ground. The positioning pile (402) is nail-shaped in general.
4. The safety protection device for a new energy storage station according to claim 2, characterized in that: The device further includes a limiting structure (60), the limiting structure (60) comprising: The first limiting rod (601) is used to fix the positioning pile (402) and the positioning cylinder (401). The positioning cylinder (401) has a through hole on one side to facilitate the passage of the first limiting rod (601). The positioning pile (402) has a plurality of first limiting holes (4021) along its length to facilitate the insertion and fixing of the first limiting rod (601). The first end plate (602) is fixedly disposed at the end of the first limiting rod (601) located outside the positioning cylinder (401); A first spring (603) is sleeved outside the first limiting rod (601) and located between the first end plate (602) and the positioning cylinder (401). One end of the first spring (603) is fixed to the end of the first limiting rod (601) located outside the positioning cylinder (401), and the other end is fixed to the positioning cylinder (401). When the first spring (603) is in a free state, the first limiting rod (601) is inserted into the first limiting hole (4021).
5. The safety protection device for a new energy storage station according to claim 3, characterized in that: The device also includes a pull rope (70) connected between the positioning stake (402) and the base plate (30) to prevent the positioning stake (402) from being lost.
6. The safety protection device for a new energy storage station according to claim 5, characterized in that: The device further includes a storage structure (80) for winding and storing the pull cord (70), the storage structure (80) comprising: A reinforcing plate (801) is disposed between the base plate (30) and the protective plate (10), and the reinforcing plate (801) is fixed to the upper part of the base plate (30) and the inner side of the protective plate (10) respectively; A fixing plate (802) is spaced along the width direction of the base plate (30) on the side of the reinforcing plate (801) close to the positioning pile (402), and a long strip stepped groove (8021) is opened along its length direction on the side of the fixing plate (802) away from the reinforcing plate (801). The sliding part (806) includes a slider (8061) slidably disposed in the stepped slide groove (8021), a slide rod (8062) vertically fixed on the slider (8061), and a circular baffle (8063) disposed at one end of the slide rod (8062) away from the slider (8061), wherein the diameter of the circular baffle (8063) is larger than the diameter of the slide rod (8062); The positioning bolt (8064) is used to fix and adjust the height of the slider (8061). The bottom of the stepped slide groove (8021) of the fixing plate (802) is provided with a plurality of screw holes adapted to the positioning bolt (8064) along its length direction.
7. The safety protection device for a new energy storage station according to claim 2, characterized in that: The rotation adjustment structure (50) includes: The limiting plate (501) is fixedly installed at both ends of the base plate (30) and located at the lower part of the protective display plate (20). The limiting plate (501) is a semi-flat cylindrical shape. A connecting plate (502) is disposed on the side of the protective display plate (20) near the protective plate (10); The second limiting rod (503) is provided with a through hole for the second limiting rod (503) to move through, and the limiting plate (501) is provided with a plurality of second limiting holes (5011) for the second limiting rod (503) to be inserted and fixed. The second end plate (504) is disposed at the end of the second limiting rod (503) away from the limiting plate (501); The second spring (505) is sleeved outside the second limiting rod (503) and located between the second end plate (504) and the connecting plate (502). The two ends of the second spring (505) are fixed to the connecting plate (502) and the second end plate (504) respectively. When the second spring (505) is in a free state, the second limiting rod (503) is inserted into the second limiting hole (5011) to restrict the relative rotation between the protective display plate (20) and the protective plate (10).
8. The safety protection device for a new energy storage station according to claim 7, characterized in that: The second limiting hole (5011) is a circular hole, and the second limiting hole (5011) is located on the rotation path of the second limiting rod (503).
9. The safety protection device for a new energy storage station according to claim 7, characterized in that: The upper part of the second end plate (504) is provided with a pull ring (506) for easy operation by the operator.
10. The safety protection device for a new energy storage station according to any one of claims 1-9, characterized in that: The protective plate (10) and the protective display plate (20) are fitted with transparent plates that allow staff to observe the operation status of the energy storage station. Both the protective plate (10) and the protective display plate (20) are equipped with handles (101) for easy movement. The protective plate (10) and the protective display plate (20) are rotatably connected by hinges (102).