A motorcycle battery installation structure
By designing the installation plate, bottom plate, limit plate, positioning assembly and sealing assembly in the motorcycle battery installation structure, the problem of inaccurate treatment of batteries during spontaneous combustion in the prior art is solved, and the slowing of fire spread and the improvement of safety performance are achieved.
Patent Information
- Application Number
- CN202411963016.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2044-12-30
AI Technical Summary
The existing motorcycle battery installation structure cannot carry out effective emergency treatment when the battery is spontaneously ignited, resulting in the spread of fire and increasing the safety risks of vehicles and personnel.
A motorcycle battery installation structure is designed, including mounting plates, bottom plates, limit plates, positioning components and enclosing components, which can quickly build a closed protective space when the battery is spontaneously ignited, block the spread of fire, and release high-pressure gas through the circulation tank and activated carbon filter plate to prevent external air from fueling combustion.
It quickly slows down the spread of flames when the battery is spontaneously ignited, improves the safety performance of vehicles and personnel, and simplifies the installation and disassembly of the battery.
Smart Images

Figure CN119381677B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of motorcycle accessories, and in particular relates to a motorcycle battery installation structure. Background Art
[0002] Motorcycles are equipped with batteries for electrically starting the engine or other purposes. In order to firmly fix the batteries, a battery mounting structure is usually provided to install and fix the batteries.
[0003] For example, the existing utility model patent motorcycle battery installation structure (Announcement No.: CN209804752U) can firmly install the motorcycle battery. The plane, transverse plate, side plate on the air filter installation seat and the first guard plate, limit plate and second guard plate on the installation clamp can cooperate to limit the front, rear, left, right, top and bottom six directions of the battery, so that the battery can be fixed in all directions, with good fixing effect, and it is very convenient to install and disassemble;
[0004] At present, in the market, in order to pursue convenient installation and high heat dissipation performance, the battery positioning structure is usually reduced as in the above-mentioned technology. Although such installation structure has high heat dissipation performance, when the battery is naturally caused by certain conditions, the existing structure cannot handle it in an emergency. Due to the lack of effective fixing and emergency treatment measures, the fire may spread, increasing the safety risks of vehicles and personnel.
[0005] Therefore, this solution proposes a motorcycle battery installation structure to solve the above problems. Summary of the invention
[0006] The purpose of the present invention is to provide a motorcycle battery installation structure to solve the problem that the existing structure of the prior art cannot perform emergency treatment on spontaneous combustion batteries, and due to the lack of effective fixing and emergency treatment measures, the fire may spread, increasing the safety risks of vehicles and personnel.
[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a motorcycle battery mounting structure, comprising a frame and an air filter mounting seat mounted on the frame, a mounting plate 1 being mounted on the side wall of the air filter mounting seat, a bottom plate being mounted on the bottom surface of the mounting plate 1, the bottom plate being used to support the bottom surface of the battery, limiting plates being mounted on both sides of the top surface of the bottom plate, a positioning member 2 being mounted on the bottom surface of the bottom plate, a positioning assembly being inserted between the two limiting plates, a positioning member 1 being mounted between the positioning assembly and the positioning member 2, the positioning member 1 being used to limit the position between the positioning assembly and the positioning member 2, a closing assembly being mounted in the positioning assembly, the closing assembly being used to close the positioning assembly in case of fire to prevent the fire from spreading;
[0008] The positioning assembly includes a cover plate, a second mounting plate is installed on the side wall of the cover plate, a plurality of first flow slots are evenly opened on one side of the second mounting plate close to the cover plate, limited blocks are evenly distributed on both sides of the bottom surface of the cover plate, and positioning columns are distributed in a rectangular shape on the bottom surface of the cover plate;
[0009] A connecting seat is symmetrically installed above and below the inner wall of the circulation slot, and the connecting seat is in a "concave" shape. Mounting holes are respectively opened on the inner walls on both sides of the connecting seat that are symmetrical to each other, and a transmission shaft is rotatably installed between the two mounting holes. Two torsion springs are respectively sleeved on both sides of the outer wall of the transmission shaft, one end of the second torsion spring is connected to the transmission shaft, and the other end of the second torsion spring is connected to the inner wall of the mounting hole;
[0010] A transfer roller is installed on the outer wall of the transmission shaft, and a main closing plate is fixedly installed on the outer wall of the transfer roller;
[0011] A fixing rope is connected between the two main closing plates located inside the same circulation slot, and the fixing rope is used to maintain the flipping state of the two main closing plates.
[0012] Preferably: the side of the main closing plate away from the transfer roller is designed to be arc-shaped, and an auxiliary closing plate is installed on the side wall of the connecting seat. The auxiliary closing plate is used to limit the flipping angle of the main closing plate to avoid excessive flipping of the main closing plate. One side wall of the connecting seat is designed to be arc-shaped.
[0013] A through hole four is respectively opened above one side wall of the plurality of circulation grooves, the through hole four is connected to the inner cavity of the circulation groove one, and the through hole four is sequentially installed with an activated carbon filter plate and a one-way valve from the inside to the outside.
[0014] Preferably, a sliding groove 2 is provided above the inner wall of the circulation groove 1, a movable frame is slidably installed in the sliding groove 2, and the movable frame is used to isolate the connection between the through hole 4 and the circulation groove 1.
[0015] Preferably: a fixing plate 1 is installed below the side wall of the second mounting plate, and a plurality of through holes 1 are evenly opened on the fixing plate 1;
[0016] The positioning member 2 includes a mounting plate 4, the bottom surface of the bottom plate is mounted with the mounting plate 4, and the mounting plate 4 is evenly provided with a plurality of through holes 2;
[0017] The bottom surface of the mounting plate 4 is provided with a mounting frame, and the top surface of the mounting frame is evenly provided with a plurality of through holes 3;
[0018] Through hole three, through hole two and through hole one correspond to each other in the vertical direction, and positioning member one is installed in through hole two.
[0019] Preferably: the positioning member 1 comprises a mounting plate 3, a plurality of positioning rods are evenly distributed on the bottom surface of the mounting plate 3, and a concave ring is respectively formed on the side walls of the plurality of positioning rods;
[0020] A positioning rod is slidably installed in the through hole one, a positioning rod is slidably installed in the through hole two, and a positioning rod is slidably installed in the through hole three.
[0021] Preferably: the inner cavity of the through hole three is provided with an expansion slot, the outer wall of the installation frame is provided with a sliding slot one, the sliding slot one is connected to the expansion slot, a sliding block is slidably installed in the sliding slot one, a plurality of connecting ropes are evenly arranged on the side wall of the sliding block, and a curved plate is respectively connected to one side of the connecting rope away from the sliding block.
[0022] Preferably: a fixed shaft is installed on the inner wall of the expansion slot, a rotating ring is rotatably installed in the middle of the fixed shaft, a torsion spring is respectively sleeved on the top and bottom of the outer wall of the rotating ring, one end of the torsion spring is connected to the rotating ring, and the other end of the torsion spring is connected to the inner wall of the expansion slot, and an arc plate is installed on the side wall of the rotating ring, and the arc plate is used to clamp in the concave ring, so as to limit the up and down movement of the positioning rod.
[0023] Preferably: the limiting plate is evenly provided with a plurality of grooves 1 on both inner and outer sides, the top and bottom surfaces of the bottom plate are evenly provided with grooves 3, and the mounting plate 1 is evenly provided with grooves 2 on both inner and outer sides;
[0024] A limiting block is inserted into a groove one on the outer wall of the limiting plate away from each other, a groove three is clamped between the bottom plate and the positioning column, and a groove three is clamped between the two limiting plates.
[0025] Compared with the prior art, the present invention has the following beneficial effects:
[0026] 1. The present invention arranges a mounting plate 1, a bottom plate, a limit plate, a positioning assembly and a closing assembly in a motorcycle battery mounting structure, so that if spontaneous combustion occurs in the groove 3 during the use of the device, the above structures cooperate with each other to quickly construct a closed protective space, thereby achieving the effect of slowing down the spread of flames, solving the problem that the existing structure of the prior art cannot perform emergency treatment on spontaneous combustion batteries, and due to the lack of effective fixing and emergency treatment measures, the fire may spread, increasing the safety risks of vehicles and personnel.
[0027] 2. The present invention arranges a sealing component, a through hole four, a movable frame, an activated carbon filter plate and a sliding groove two in a motorcycle battery installation structure. When the device is in use, the above structures cooperate with each other to achieve timely release of high-pressure gas in the enclosed space when the groove three spontaneously ignites, while preventing outside air from entering the enclosed space to promote the combustion of the groove three, thereby further improving the safety performance of the device.
[0028] 3. The present invention arranges a mounting plate 1, a bottom plate, a limit plate, a positioning assembly, a positioning member 1 and a positioning member 2 in a motorcycle battery mounting structure. When the device is used, the above structures cooperate with each other to achieve the effect of being able to install the groove 3, and the stability after installation is strong, which solves the problem that bolts are usually used to install and fix the battery in the prior art, resulting in the need for tools to assist in disassembly and installation, resulting in low disassembly and installation efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 One of the three-dimensional diagrams of the present invention;
[0030] Figure 2 This is the second stereogram of the present invention;
[0031] Figure 3 This is the third stereogram of the present invention;
[0032] Figure 4 It is an exploded view of the present invention;
[0033] Figure 5 This is a structural diagram of the positioning component of the present invention;
[0034] Figure 6 It is a second cross-sectional view of the mounting plate of the present invention;
[0035] Figure 7 for Figure 6 Enlarged view of point A in the middle;
[0036] Figure 8 This is a structural diagram of the closure assembly of the present invention;
[0037] Fig. 9 This is the installation diagram of the second torsion spring of the present invention;
[0038] Fig.10 This is a second position diagram of the sliding groove of the present invention;
[0039] Fig.11 This is an exploded view of the second positioning member of the present invention;
[0040] Fig.12 It is a second cross-sectional view of the positioning member of the present invention;
[0041] Fig.13 This is an installation diagram of a torsion spring of the present invention.
[0042] In the figure: 1, frame; 2, air filter mounting seat; 3, mounting plate 1; 4, bottom plate; 5, positioning assembly; 501, cover plate; 502, mounting plate 2; 503, stop block; 504, flow slot 1; 505, fixing plate 1; 506, through hole 1; 507, positioning column; 6, positioning member 1; 601, mounting plate 3; 602, positioning rod; 603, concave ring; 7, positioning member 2; 701, mounting plate 4; 702, through hole 2; 703, mounting frame; 704, through hole 3; 705, sliding block; 706, expansion slot; 707, Sliding groove one; 708, arc plate; 709, fixed shaft; 710, rotating ring; 711, torsion spring one; 712, connecting rope; 8, limit plate; 9, groove one; 10, groove two; 11, groove three; 12, closing component; 121, connecting seat; 122, main closing plate; 123, auxiliary closing plate; 124, fixing rope; 125, mounting hole; 126, torsion spring two; 127, transmission shaft; 128, transfer roller; 13, moving frame; 14, activated carbon filter plate; 15, one-way valve; 16, through hole four; 17, sliding groove two. DETAILED DESCRIPTION
[0043] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0044] Reference Figure 1 - Fig.13 As shown, the present invention provides a motorcycle battery installation structure, comprising a frame 1 and an air filter installation seat 2 installed on the frame 1, a mounting plate 3 is installed on the side wall of the air filter installation seat 2, a bottom plate 4 is installed on the bottom surface of the mounting plate 3, the bottom plate 4 is used to support the bottom surface of the battery, and limiting plates 8 are installed on both sides of the top surface of the bottom plate 4, and a positioning member 7 is installed on the bottom surface of the bottom plate 4. A positioning component 5 is inserted between the two limiting plates 8, and a positioning member 6 is installed between the positioning component 5 and the positioning member 7. The positioning member 6 is used to limit the position between the positioning component 5 and the positioning member 7. A closing component 12 is installed in the positioning component 5, and the closing component 12 is used to close the positioning component 5 in the event of a fire to prevent the spread of the fire;
[0045] The positioning assembly 5 includes a cover plate 501, a second mounting plate 502 is mounted on the side wall of the cover plate 501, a plurality of first flow slots 504 are evenly opened on one side of the second mounting plate 502 close to the cover plate 501, limited blocks 503 are evenly distributed on both sides of the bottom surface of the cover plate 501, and positioning columns 507 are distributed in a rectangular shape on the bottom surface of the cover plate 501;
[0046] The limit block 503 is used to vertically position the groove three 11. The limit block 503 is made of rubber to provide a certain buffer space for the groove three 11 in the vertical direction.
[0047] A connecting seat 121 is symmetrically installed above and below the inner wall of the circulation slot 1 504. The connecting seat 121 is in a "concave" shape. Mounting holes 125 are respectively opened on the inner walls of the two sides of the connecting seat 121 that are symmetrical to each other. A transmission shaft 127 is rotatably installed between the two mounting holes 125. Two torsion springs 126 are respectively sleeved on both sides of the outer wall of the transmission shaft 127. One end of the torsion spring 126 is connected to the transmission shaft 127, and the other end of the torsion spring 126 is connected to the inner wall of the mounting hole 125.
[0048] A transfer roller 128 is installed on the outer wall of the transmission shaft 127, and a main closing plate 122 is fixedly installed on the outer wall of the transfer roller 128;
[0049] The two sides of the transfer roller 128 are in contact with the inner wall of the connecting seat 121 to prevent the fire from spreading outward through the gap.
[0050] A fixing rope 124 is connected between the two main sealing plates 122 located in the same flow slot 1 504, and the fixing rope 124 is used to maintain the flipping state of the two main sealing plates 122;
[0051] The fixing rope 124 may be a fiber rope, so that when the groove three 11 spontaneously ignites, it can break quickly, thereby improving the reaction speed of the closing component 12.
[0052] In a further embodiment, referring to Figure 1 - Fig. 9 The side of the main closing plate 122 away from the transfer roller 128 is designed to be arc-shaped, and the side wall of the connecting seat 121 is installed with an auxiliary closing plate 123, which is used to limit the flipping angle of the main closing plate 122 to prevent the main closing plate 122 from over-flipping. One side wall of the connecting seat 121 is designed to be arc-shaped;
[0053] Among them, when the main closing plate 122 flips, the auxiliary closing plate 123 will limit the flipping angle of the main closing plate 122. Under the action of the torsion spring 126, the main closing plate 122 fits tightly with the auxiliary closing plate 123 to avoid excessive flipping of the main closing plate 122, which may lead to sealing failure.
[0054] In a further embodiment, referring to Figure 5 - Figure 8 , through holes 16 are respectively opened on the upper side walls of the plurality of flow slots 504, the through holes 16 are connected to the inner cavity of the flow slots 504, and the through holes 16 are sequentially installed with activated carbon filter plates 14 and one-way valves 15 from the inside to the outside;
[0055] When the groove 11 self-ignites, the high-pressure gas will first pass through the activated carbon filter plate 14 and then be discharged outward through the one-way valve 15, thereby reducing the internal pressure and the probability of explosion. The activated carbon filter plate 14 itself is not easy to burn and has stable chemical properties. At the same time, it can have a certain filtering effect on the exhaust smoke.
[0056] Furthermore, the one-way valve 15 controls the flow direction of the gas so that only the internal high-pressure gas can be released, thereby preventing the external gas from entering during combustion, thereby promoting the combustion problem.
[0057] In a further embodiment, referring to Figure 1 - Fig.13 A sliding groove 2 17 is provided above the inner wall of the circulation groove 1 504, and a moving frame 13 is slidably installed in the sliding groove 2 17, and the moving frame 13 is used to isolate the communication between the through hole 4 16 and the circulation groove 1 504;
[0058] A fixing plate 505 is installed below the side wall of the second mounting plate 502, and a plurality of through holes 506 are evenly formed on the fixing plate 505;
[0059] The positioning member 2 7 includes a mounting plate 4 701, the bottom surface of the bottom plate 4 is mounted with the mounting plate 4 701, and a plurality of through holes 2 702 are evenly opened on the mounting plate 4 701;
[0060] The bottom surface of the mounting plate 701 is provided with a mounting frame 703, and the top surface of the mounting frame 703 is provided with a plurality of through holes 704 evenly disposed thereon;
[0061] The through hole 3 704, the through hole 2 702 and the through hole 1 506 correspond to each other in the vertical direction, and a positioning member 1 6 is installed in the through hole 2 702;
[0062] The positioning member 6 comprises a mounting plate 3 601, a plurality of positioning rods 602 are evenly distributed on the bottom surface of the mounting plate 3 601, and a concave ring 603 is respectively formed on the side walls of the plurality of positioning rods 602;
[0063] A positioning rod 602 is slidably installed in the through hole 1 506, a positioning rod 602 is slidably installed in the through hole 2 702, and a positioning rod 602 is slidably installed in the through hole 3 704;
[0064] An expansion slot 706 is provided in the inner cavity of the through hole 3 704, and a sliding slot 1 707 is provided on the outer wall of the mounting frame 703. The sliding slot 1 707 is connected to the expansion slot 706. A sliding block 705 is slidably installed in the sliding slot 1 707. A plurality of connecting ropes 712 are evenly arranged on the side wall of the sliding block 705. A curved plate 708 is respectively connected to the side of the connecting rope 712 away from the sliding block 705; a fixed shaft 709 is installed on the inner wall of the expansion slot 706, and a rotating ring 710 is rotatably installed in the middle of the fixed shaft 709. A torsion spring 1 711 is respectively sleeved on the upper and lower sides of the outer wall of the rotating ring 710, and one end of the torsion spring 1 711 is connected to the rotating ring 710 and the other end of the torsion spring 1 711 is connected to the inner wall of the expansion slot 706. An curved plate 708 is installed on the side wall of the rotating ring 710, and the curved plate 708 is used to be clamped in the concave ring 603, so as to limit the up and down movement of the positioning rod 602;
[0065] The limiting block 503 on the cover plate 501 is aligned with the groove 9 on the limiting plate 8 for insertion, so that the fixing plate 1 505 on the mounting plate 2 502 and the mounting plate 4 701 are in contact with each other; then the mounting plate 3 601 is held, and the multiple positioning rods 602 on the mounting plate 3 601 are aligned with the through hole 1 506 for insertion. At this time, the positioning rods 602 are sequentially inserted into the through hole 1 506, the through hole 2 702 and the through hole 3 704, and at the same time, the sliding block 705 is pulled so that the sliding block 705 slides in the sliding groove 1 707. When the sliding block 705 drives the arc plate 708 through the connecting rope 712, the arc plate 708 is moved. Flip it so that the arc plate 708 is retracted from the middle of the through hole three 704 into the expansion slot 706 to avoid affecting the downward movement of the positioning rod 602; when the bottom surface of the positioning rod 602 is in contact with the bottom surface of the through hole three 704, release the pull on the sliding block 705. At this time, under the action of multiple torsion springs one 711, the arc plate 708 and the sliding block 705 will be reset, so that the arc plate 708 is snapped into the concave ring 603 to achieve rapid positioning between the positioning component 5 and the positioning member two 7, thereby achieving the installation of the groove three 11. At this time, the flow groove one 504 is used to connect the inner cavity and the outside of the installation groove three 11.
[0066] In a further embodiment, referring to Figure 1 - Fig.13 , the limiting plate 8 has multiple grooves 9 evenly formed on both sides inside and outside, the bottom plate 4 has grooves 11 evenly formed on the top and bottom surfaces, and the mounting plate 3 has grooves 10 evenly formed on both sides inside and outside;
[0067] The limiting block 503 is inserted into the groove 1 9 on the outer wall of the limiting plate 8 on one side away from each other, a groove 3 11 is clamped between the bottom plate 4 and the positioning column 507, and a groove 3 11 is clamped between the two limiting plates 8;
[0068] Among them, the groove three 11, the groove two 10 and the limiting plate 8 are opened to reduce the contact area between the bottom plate 4, the mounting plate 1 3 and the limiting plate 8 and the groove three 11, thereby enhancing the heat dissipation effect.
[0069] The working principle of the present invention is as follows: when the groove three 11 is installed on the device, the groove three 11 is placed between the top surface of the bottom plate 4 and the two limit plates 8 to achieve preliminary positioning of the groove three 11;
[0070] Then, align the limit block 503 on the cover plate 501 with the groove 9 on the limit plate 8 and insert them so that the fixing plate 1 505 on the mounting plate 2 502 and the mounting plate 4 701 are in contact with each other;
[0071] Then, the mounting plate 3 601 is held, and the plurality of positioning rods 602 on the mounting plate 3 601 are aligned with the through hole 1 506 and inserted. At this time, the positioning rods 602 are sequentially inserted into the through hole 1 506, the through hole 2 702 and the through hole 3 704. At the same time, the sliding block 705 is pulled to slide in the sliding groove 1 707. When the sliding block 705 drives the arc plate 708 to flip through the connecting rope 712, the arc plate 708 is put into the expansion groove 706 from the through hole 3 704, so as to avoid affecting the downward movement of the positioning rods 602.
[0072] When the bottom surface of the positioning rod 602 and the bottom surface of the through hole 3 704 are in contact with each other, the pull on the sliding block 705 is released. At this time, the arc plate 708 and the sliding block 705 will be reset under the action of the multiple torsion springs 1 711, so that the arc plate 708 is clamped into the concave ring 603 to achieve rapid positioning between the positioning assembly 5 and the positioning member 2 7, thereby achieving the installation of the groove 3 11;
[0073] At this time, the flow groove 1 504 is used to connect the inner cavity and the outside of the installation groove 3 11;
[0074] When groove three 11 spontaneously ignites due to some factors during use, the fixing rope 124 is burned and broken first, and then under the action of torsion spring two 126, the transmission shaft 127 and the transfer roller 128 will flip, so that the main sealing plate 122 and the auxiliary sealing plate 123 are in contact with each other, thereby further sealing the groove three 11, thereby slowing down the spread of the fire, and at the same time, when the main sealing plate 122 flips, it will drive the movable frame 13 to slide upward, thereby connecting the through hole four 16 and the circulation groove one 504 to each other. At this time, when the pressure in the enclosed space is too high due to the burning of groove three 11, the airflow will pass through the movable frame 13 and be discharged by the one-way valve 15, thereby reducing the internal pressure and reducing the probability of explosion.
[0075] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A motorcycle battery mounting structure, comprising a frame (1) and an air filter mounting seat (2) mounted on the frame (1), characterized in that: The side wall of the air filter mounting seat (2) is mounted with a mounting plate 1 (3), the bottom surface of the mounting plate 1 (3) is mounted with a bottom plate (4), the bottom plate (4) is used to support the bottom surface of the battery, limiting plates (8) are respectively mounted on both sides of the top surface of the bottom plate (4), the bottom surface of the bottom plate (4) is mounted with a positioning member 2 (7), a positioning component (5) is inserted between the two limiting plates (8), a positioning member 1 (6) is mounted between the positioning component (5) and the positioning member 2 (7), the positioning member 1 (6) is used to limit the position between the positioning component (5) and the positioning member 2 (7), a closing component (12) is mounted in the positioning component (5), the closing component (12) is used to close the positioning component (5) in the event of a fire, thereby preventing the fire from spreading; The positioning assembly (5) comprises a cover plate (501), a second mounting plate (502) is mounted on the side wall of the cover plate (501), a plurality of first flow slots (504) are evenly arranged on a side of the second mounting plate (502) close to the cover plate (501), limiting blocks (503) are evenly distributed symmetrically on both sides of the bottom surface of the cover plate (501), and positioning columns (507) are distributed in a rectangular shape on the bottom surface of the cover plate (501); A connecting seat (121) is symmetrically mounted above and below the inner wall of the first circulation slot (504); the connecting seat (121) is in a "concave" shape; mounting holes (125) are respectively opened on the inner walls of the connecting seat (121) which are symmetrical to each other; a transmission shaft (127) is rotatably mounted between the two mounting holes (125); two torsion springs (126) are respectively sleeved on the two sides of the outer wall of the transmission shaft (127); one end of the second torsion spring (126) is connected to the transmission shaft (127), and the other end of the second torsion spring (126) is connected to the inner wall of the mounting hole (125); A transfer roller (128) is mounted on the outer wall of the transmission shaft (127), and a main closing plate (122) is fixedly mounted on the outer wall of the transfer roller (128); A fixing rope (124) is connected between two main sealing plates (122) located inside the same circulation slot 1 (504), and the fixing rope (124) is used to maintain the flipping state of the two main sealing plates (122); A plurality of through holes (16) are respectively provided above the side walls of the circulation slots one (504), the through holes four (16) being connected to the inner cavity of the circulation slot one (504), and the through holes four (16) are sequentially installed with an activated carbon filter plate (14) and a one-way valve (15) from the inside to the outside; A sliding groove 2 (17) is provided on the inner wall of the circulation groove 1 (504), and a moving frame (13) is slidably mounted in the sliding groove 2 (17), and the moving frame (13) is used to isolate the connection between the through hole 4 (16) and the circulation groove 1 (504); The side wall of the connecting seat (121) is provided with an auxiliary sealing plate (123), which is used to limit the turning angle of the main sealing plate (122) to prevent the main sealing plate (122) from turning over. When the main sealing plate (122) turns over, it drives the movable frame (13) to slide upward, thereby connecting the through hole four (16) and the flow slot one (504) to each other.
2. A motorcycle battery installation structure according to claim 1, characterized in that: The side of the main closing plate (122) away from the transfer roller (128) is designed to be arc-shaped, and a side wall of the connecting seat (121) is designed to be arc-shaped.
3. A motorcycle battery installation structure according to claim 1, characterized in that: A fixing plate 1 (505) is installed below the side wall of the second mounting plate (502), and a plurality of through holes 1 (506) are evenly opened on the fixing plate 1 (505); The second positioning member (7) comprises a fourth mounting plate (701), the bottom surface of the bottom plate (4) is mounted with the fourth mounting plate (701), and the fourth mounting plate (701) is evenly provided with a plurality of second through holes (702); The bottom surface of the mounting plate (701) is provided with a mounting frame (703), and the top surface of the mounting frame (703) is provided with a plurality of through holes (704) evenly spaced. Through hole three (704), through hole two (702) and through hole one (506) correspond one to one in the vertical direction, and positioning member one (6) is installed in through hole two (702).
4. A motorcycle battery mounting structure according to claim 3, characterized in that: The positioning member 1 (6) comprises a mounting plate 3 (601), a plurality of positioning rods (602) being evenly distributed on the bottom surface of the mounting plate 3 (601), and a concave ring (603) is respectively formed on the side walls of the plurality of positioning rods (602); A positioning rod (602) is slidably installed in the through hole one (506), a positioning rod (602) is slidably installed in the through hole two (702), and a positioning rod (602) is slidably installed in the through hole three (704).
5. A motorcycle battery installation structure according to claim 3, characterized in that: The inner cavity of the through hole three (704) is provided with an expansion slot (706), the outer wall of the installation frame (703) is provided with a sliding slot one (707), the sliding slot one (707) is connected to the expansion slot (706), a sliding block (705) is slidably installed in the sliding slot one (707), a plurality of connecting ropes (712) are evenly arranged on the side wall of the sliding block (705), and a curved plate (708) is respectively connected to one side of the connecting rope (712) away from the sliding block (705).
6. A motorcycle battery mounting structure according to claim 5, characterized in that: A fixed shaft (709) is installed on the inner wall of the expansion slot (706), a rotating ring (710) is rotatably installed in the middle of the fixed shaft (709), and a torsion spring (711) is respectively sleeved on the upper and lower sides of the outer wall of the rotating ring (710), one end of the torsion spring (711) is connected to the rotating ring (710), and the other end of the torsion spring (711) is connected to the inner wall of the expansion slot (706), and an arc plate (708) is installed on the side wall of the rotating ring (710), and the arc plate (708) is used to be clamped in the concave ring (603), so as to limit the upward and downward movement of the positioning rod (602).
7. A motorcycle battery mounting structure according to claim 1, characterized in that: The limiting plate (8) is evenly provided with a plurality of grooves one (9) on both inner and outer sides, the top and bottom surfaces of the bottom plate (4) are evenly provided with grooves three (11), and the mounting plate one (3) is evenly provided with grooves two (10) on both inner and outer sides; A limiting block (503) is inserted into a groove one (9) on the outer wall of the limiting plate (8) which is away from each other, a groove three (11) is clamped between the bottom plate (4) and the positioning column (507), and a groove three (11) is clamped between the two limiting plates (8).
Citation Information
Patent Citations
Motorcycle battery mounting structure
CN209804752U
Thermal diffusion protection battery box and battery pack
CN117477164A
Fixing device for battery box
CN205159395U
Battery securing device and electric motor car
CN207558863U
Protection assembly of solid-state lithium battery
CN220604875U