CN210182439U - Lock bin cover type scooter battery bin - Google Patents

Lock bin cover type scooter battery bin Download PDF

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Publication number
CN210182439U
CN210182439U CN201921260721.0U CN201921260721U CN210182439U CN 210182439 U CN210182439 U CN 210182439U CN 201921260721 U CN201921260721 U CN 201921260721U CN 210182439 U CN210182439 U CN 210182439U
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CN
China
Prior art keywords
bin
battery
lock body
movable
scooter
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Active
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CN201921260721.0U
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Chinese (zh)
Inventor
Gang Han
韩刚
Jun Wu
吴俊�
Qibing Lu
陆其兵
Qi Zhou
周奇
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Changzhou Hongji Two Wheeled Intelligent Transportation Co Ltd
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Changzhou Hongji Two Wheeled Intelligent Transportation Co Ltd
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Application filed by Changzhou Hongji Two Wheeled Intelligent Transportation Co Ltd filed Critical Changzhou Hongji Two Wheeled Intelligent Transportation Co Ltd
Priority to CN201921260721.0U priority Critical patent/CN210182439U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

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Abstract

The utility model discloses a lock body bin cover type scooter battery bin, which comprises a scooter pedal, wherein the scooter pedal comprises a shell structure with an upper side opening; a battery bin is arranged inside the shell structure, and a battery box is detachably mounted in the battery bin; a movable battery compartment cover is arranged on the upper side of the battery compartment; one end of the movable battery bin cover close to the scooter faucet is hinged with the shell structure through a hinge assembly; one end of the movable battery bin cover, which is far away from the scooter faucet, is in locking connection with the shell structure through a lock assembly; the utility model has the advantages of simple structure, only need carry out the unblock with the lock subassembly and can realize being the afterbody perk with movable battery storehouse lid, and then taking out of the battery of being convenient for.

Description

Lock bin cover type scooter battery bin
Technical Field
The utility model belongs to the scooter field.
Background
The battery needs often to be dismantled in the maintenance and the charging of scooter's power, and detachable battery compartment structure is stolen easily, therefore needs design the battery compartment structure of a take lock body to scooter structure specially.
Disclosure of Invention
The purpose of the invention is as follows: in order to overcome the deficiencies in the prior art, the utility model provides a take lock body bin cover formula scooter battery compartment of lock body structure.
The technical scheme is as follows: in order to achieve the above purpose, the lock body bin cover type scooter battery bin of the utility model comprises a scooter pedal, wherein the scooter pedal comprises a shell structure with an upper side opening; a battery bin is arranged inside the shell structure, and a battery box is detachably mounted in the battery bin; a movable battery compartment cover is arranged on the upper side of the battery compartment; one end of the movable battery bin cover close to the scooter faucet is hinged with the shell structure through a hinge assembly; and one end of the movable battery bin cover, which is far away from the scooter faucet, is in locking connection with the shell structure through a lock assembly.
Furthermore, the upper surface of activity battery compartment lid sets up the anti-skidding foot mat of rubber material, the upper surface of anti-skidding foot mat is provided with a plurality of non-slip raised.
Furthermore, a battery box fixing seat is fixedly arranged at the bottom in the shell structure, and the battery box is detachably fixed on the battery box fixing seat.
Furthermore, two limit convex strips are arranged on two sides of the bottom of the movable battery compartment cover in parallel in the extension direction, and the two limit convex strips are in limit contact with two inner side walls at the upper end of the battery compartment respectively.
Further, the lock assembly comprises a lock body fixing seat in the battery bin, and the lock body fixing seat is fixed on the shell structure; the lock body fixing seat is provided with a lock body support, the lock body support comprises a fixing transverse plate and a fixing vertical plate which are vertically and integrally connected, the fixing transverse plate is locked on the lock body fixing seat through a bolt, and one side of the fixing vertical plate is fixedly provided with a lock body; the lock tongue of the lock body can transversely extend out and retract;
the lock assembly further comprises a movable vertical plate, and the upper end of the movable vertical plate is fixedly connected with the lower side surface of the movable battery bin cover through a plurality of first locking bolts; the lower end of the movable vertical plate is vertically and fixedly connected with a movable transverse plate; the lock body is characterized in that the lock bolt is in a protruding state, and the movable transverse plate is limited between the fixed transverse plate and the lock bolt.
Furthermore, the lock head of the lock body is arranged at the outer side part of the shell structure.
Further, the front end of the shell structure is integrally connected with an oblique structure body, and the upper end of the front part of the oblique structure body is connected with a head pipe; the inclined structure body is a shell structure with an open upper part, a controller bin is arranged inside the inclined structure body, and a controller is arranged in the controller bin; an oblique controller bin cover is arranged on the upper side cover of the controller bin, and the controller bin cover is fixedly locked on the oblique structure body through a plurality of locking bolts; the lower end of the controller bin cover and the front end of the movable battery bin cover are spliced to form a process gap;
the hinge assembly comprises a first hinge seat and a second hinge seat, and the first hinge seat is locked at the lower side of the front end of the battery bin cover through a plurality of second locking bolts; the second hinge seat is locked on the inner side of the inclined structure body through a plurality of third locking bolts;
the device comprises a first connecting rod piece and a second connecting rod piece, wherein a first arm and a second arm which extend upwards are integrally arranged at two ends of the first connecting rod piece respectively, and a first hinge part and a second hinge part are arranged at the tail ends of the first arm and the second arm respectively; the connecting rod comprises a first connecting rod piece and a second connecting rod piece, wherein a first arm and a second arm which extend upwards are integrally arranged at two ends of the first connecting rod piece respectively;
the lower end of the first hinge seat is provided with a transverse sliding chute; the sliding block at the tail end of the third arm is arranged in the sliding groove in a sliding manner; the first hinge piece is hinged with one end, close to the process gap, of the first hinge seat; the second hinge piece is hinged with one end, far away from the process gap, of the second hinge seat, and the third hinge piece is hinged with one end, close to the process gap, of the second hinge seat; a first limiting end wall is arranged on one side, close to the first arm, of the first hinge seat, and a second limiting end wall is arranged on one side, close to the fourth arm, of the second hinge seat; when first articulated seat is the horizontality, the spacing contact of one side and the spacing end wall of first spacing of first arm, the spacing contact of one side and the spacing end wall of second of fourth arm.
Has the advantages that: the utility model has the advantages of simple structure, only need to carry out the unblock with the lock subassembly and can realize being the afterbody perk with movable battery storehouse lid, and then the taking out of the battery of being convenient for, when the unblock state, after artifical tail end with movable battery storehouse lid is mentioned, this hinge assemblies's structure has two degrees of freedom, movable battery storehouse lid is rotatory along hinge assemblies roughly, but this hinge assemblies's structure enables movable battery storehouse lid and is not necessarily strict rotatory along fixed pivot, consequently, the tail end of movable battery storehouse lid is mentioned the back, movable battery storehouse lid front end can not take place the motion at technology gap department and interfere.
Drawings
FIG. 1 is a schematic view of the overall structure of a scooter;
FIG. 2 is a schematic view of the tail structure of the scooter;
FIG. 3 is a schematic view of a scooter with non-slip tread pads hidden;
FIG. 4 is a schematic perspective cross-sectional view of a scooter pedal;
FIG. 5 is a second perspective cross-sectional view of a scooter pedal;
FIG. 6 is a schematic view of a lock body;
FIG. 7 is a first fragmentary schematic view at reference number 014 of FIG. 5;
FIG. 8 is a second fragmentary schematic view at reference number 014 of FIG. 5;
FIG. 9 is a schematic view of the first link member and the second link member;
fig. 10 is a schematic view of fig. 9 with a first hinge base and a second hinge base;
FIG. 11 is a schematic view of the overall structure of a scooter's handlebar;
FIG. 12 is a schematic view of the handle shown in FIG. 11 with the handle at both ends hidden;
FIG. 13 is a schematic view of the right hand transverse casing shown removed from the handle bar;
FIG. 14 is a schematic view of the removal of the movable clasping clamp;
FIG. 15 is a schematic structural view of a right hand horizontal casing;
FIG. 16 is a schematic view of the right handlebar cross guard and the right handlebar cross;
FIG. 17 is a schematic view of a bar cross-sectional configuration;
FIG. 18 is an axial view of the handlebar with the right handlebar cross guard in a mated condition;
fig. 19 is an axial view of the right hand lateral guard.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
The lock body bin cover type scooter battery bin shown in the attached fig. 1 to 10 comprises a scooter pedal 02, wherein the scooter pedal 02 comprises a shell structure 2 with an opening at the upper side; the battery compartment 002 is arranged inside the shell structure 2, the battery box 12 is detachably mounted in the battery compartment 002, the battery box fixing seat 13 is fixedly mounted at the bottom of the shell structure 2 in the embodiment, and the battery box 12 is detachably fixed on the battery box fixing seat 13; a movable battery compartment cover 5 is mounted on the upper side of the battery compartment 002, the movable battery compartment cover 5 plays a role of a pedal pad, in addition, an anti-skid pedal pad 10 made of rubber is arranged on the upper surface of the movable battery compartment cover 5, and a plurality of anti-skid protrusions are arranged on the upper surface of the anti-skid pedal pad 10; the anti-skid foot mat 10 is used for increasing the friction effect; one end of the movable battery compartment cover 5 close to the scooter faucet is hinged with the shell structure 2 through a hinge assembly 014; one end of the movable battery bin cover 5, which is far away from the scooter faucet, is in locking connection with the shell structure 2 through a lock assembly; therefore, the movable battery bin cover 5 can be tilted at the tail part only by unlocking the lock assembly, so that the batteries can be taken out conveniently;
two limit convex strips 11 are arranged in parallel in the extension direction of two sides of the bottom of the movable battery bin cover 5, and the two limit convex strips 11 are respectively in limit contact with two inner side walls at the upper end of the battery bin 002; the limiting convex strips 11 play a role in limiting the movable battery compartment cover 5 left and right, so that the shaking phenomenon is prevented;
the lock assembly comprises a lock body fixing seat 17 in the battery bin 002, and the lock body fixing seat 17 is fixed on the shell structure 2; a lock body support is arranged on the lock body fixing seat 17 and comprises a fixed transverse plate 19 and a fixed vertical plate 18 which are vertically and integrally connected, the fixed transverse plate 19 is locked on the lock body fixing seat 17 through a bolt, and a lock body 16 is fixedly arranged on one side of the fixed vertical plate 18; the bolt 15 of the lock body 16 can transversely extend and retract; the lock assembly further comprises a movable vertical plate 21, and the upper end of the movable vertical plate 21 is fixedly connected with the lower side surface of the movable battery bin cover 5 through a plurality of first locking bolts 7; the lower end of the movable vertical plate 21 is vertically and fixedly connected with a movable transverse plate 20; when the bolt 15 of the lock body 16 is in a protruding state, the movable transverse plate 20 is limited between the fixed transverse plate 19 and the bolt 15; when the lock assembly needs to be unlocked, the lock assembly can be unlocked only by retracting the lock tongue 15 of the lock body 16, and after the lock assembly is unlocked, the movable battery bin cover 5 is in a free state, so that the tail end of the movable battery bin cover 5 can be lifted manually, the tail end of the movable battery bin cover 5 is tilted, and the batteries can be conveniently replaced;
the lock head 6 of the lock body 16 of the present embodiment is on the outside of the housing structure 2, which facilitates key opening.
The front end of the shell structure 2 is integrally connected with an inclined structure body 03, and the upper end of the front part of the inclined structure body 03 is connected with a head pipe 14; the inclined structure 03 is of a shell structure with an open upper part, a controller bin 009 is arranged inside the inclined structure 03, and a controller is installed in the controller bin 009; an oblique controller bin cover 9 is covered on the upper side of the controller bin 009, and the controller bin cover 9 is fixedly locked on the oblique structure 03 through a plurality of locking bolts; a process gap 22 is formed by splicing the lower end of the controller bin cover 9 and the front end of the movable battery bin cover 5; conventional hinge structures often require a gap of sufficient width at the process gap 22 of the present embodiment to ensure that the hinge is not interfered with; in order to solve the problem that the battery compartment is not tightly sealed due to an excessively wide gap, the hinge assembly 014 of the embodiment includes a first hinge seat 23 and a second hinge seat 24, wherein the first hinge seat 23 is locked at the lower side of the front end of the battery compartment cover 5 by a plurality of second locking bolts 8; the second hinge base 24 is locked to the inner side of the inclined structure 03 by a plurality of third locking bolts 09; the device further comprises a first link 33, a first arm 36 and a second arm 033 extending upwards are integrally arranged at two ends of the first link 33 respectively, and a first hinge 25 and a second hinge 34 are arranged at the tail ends of the first arm 36 and the second arm 033 respectively; the connecting rod further comprises a second connecting rod piece 26, a third arm 39 and a fourth arm 35 which extend upwards are integrally arranged at two ends of the second connecting rod piece 26 respectively, a cylindrical sliding block 37 is arranged at the tail end of the third arm 39, and a third hinge piece 38 is arranged at the tail end of the fourth arm 35; the lower end of the first hinge seat 23 is provided with a transverse sliding chute 27; the slide block 37 at the end of the third arm 39 is slidably arranged in the slide groove 27; the first hinge member 25 is hinged to one end of the first hinge base 23 close to the process gap 22; the second hinge member 34 is hinged to an end of the second hinge base 24 away from the process gap 22, and the third hinge member 38 is hinged to an end of the second hinge base 24 close to the process gap 22; a first limit end wall 012 is arranged on one side of the first hinge seat 23 close to the first arm 36, and a second limit end wall 011 is arranged on one side of the second hinge seat 24 close to the fourth arm 35;
when the first hinge seat 23 is in a horizontal state, one side of the first arm 36 is in limit contact with the first limit end wall 012, and one side of the fourth arm 35 is in limit contact with the second limit end wall 011; the limiting mechanism realizes the structural stability of the movable battery bin cover 5 in a horizontal posture (namely a locking state), improves the bearing capacity of the movable battery bin cover 5 in the horizontal posture, and is higher than the bearing capacity of a common hinged part; in an unlocking state, when the tail end of the movable battery bin cover 5 is lifted manually, the structure of the hinge assembly has two degrees of freedom, the movable battery bin cover 5 rotates along the hinge assembly 014 generally, but the structure of the hinge assembly enables the movable battery bin cover 5 not to rotate along a fixed rotating shaft strictly, so that after the tail end of the movable battery bin cover 5 is lifted, the front end of the movable battery bin cover 5 cannot generate motion interference at the process gap 22;
the faucet structure of the present embodiment introduces: the scooter handlebar head body 82 comprises a shell structure, wherein a transverse handlebar transverse penetrating tube 97 is formed in the shell of the handlebar head body 82; the handlebar cross protection device further comprises a transverse handlebar 87, the middle of the handlebar 87 transversely penetrates through the handlebar cross protection tube 97, a left handlebar transverse protection tube 83 and a right handlebar transverse protection tube 81 are sleeved on the handlebar 87, and the left handlebar transverse protection tube 83 and the right handlebar transverse protection tube 81 are respectively located on the left side and the right side of the handlebar head body 82.
The scooter head tube 14 is further included, and the upper end of the scooter head tube 14 is detachably and fixedly connected with the lower end of the handle head body 82 through at least two fastening bolts 84; the two ends of the handle bar 87 are respectively fixedly sleeved with a left handle 69 and a right handle 80; the handle bar 87 is completely wrapped by an integrated structure consisting of the left handle 69, the right handle 80, the left handle transverse protective cylinder 83, the right handle transverse protective cylinder 81 and the handle head body 82; thus, the handle bar 87 is completely in a wrapped state, and the influence of rusting on the appearance of the handle bar made of metal materials is effectively prevented;
in the embodiment, the cross bar 87 is a metal tubular structure with a C-shaped cross section, and a linear clamping groove 92 extending along the axial direction is formed at the C-shaped opening of the cross bar 87; in the present embodiment, a ring body 67 is disposed in the left/right horizontal protective casing 83/81, and the handle 87 movably passes through the inner ring of the ring body 67; the inner wall of the left/right transverse casing 83/81 is connected with two circumferential positioning piles 64 extending inwards; the tail ends of the two circumferential positioning piles 64 are inserted into the linear clamping grooves 92 on the handle bars 87; the number of the circumferential positioning piles 64 is two, and one side surface of each of the two circumferential positioning piles 64, which is far away from each other, is in limit contact with the two groove edges 89 of the linear clamping groove 92; the structure realizes the circumferential positioning of the cross handle 87 and the left/right cross protective barrel 83/81, prevents the phenomenon of noise caused by rotation in the riding process, and is convenient to disassemble;
at least a first structural reinforcing rib 65 and a second structural reinforcing rib 66 are arranged on the inner ring body 67 of the left transverse pile casing 83/the right transverse pile casing 81, and one ends of the first structural reinforcing rib 65 and the second structural reinforcing rib 66 close to the axis of the cross beam 87 are contacted with the outer wall of the tube of the cross beam 87; the first structural reinforcement 65 and the second structural reinforcement 66 can increase the structural strength of the structural ring body, and at the same time, can play a role in radially positioning the cross member 87.
Because the structural strength of the C-shaped metal tubular structure is lower than that of a full-circle pipe body, a structure capable of enhancing the bending resistance of the cross bar is required to be designed, in the embodiment, a reinforcing structure rib 86 is integrally arranged inside the pipe body of the cross bar 87 along the length direction, and a hollow column 88 with a crescent-shaped cross section is formed on one side, away from the linear clamping groove 92, of the reinforcing structure rib 86; the reinforcing structural ribs 86 effectively increase the structural strength of the handle bar 87.
Semicircular fixed clasping hoops 95 are fixedly arranged on the two sides of the handle head body 82; each fixed clasping hoop 95 corresponds to a semicircular movable clasping hoop 94, and the movable clasping hoop 94 is locked on a locking hole 98 on the corresponding fixed clasping hoop 95 through a clasping bolt 93; the movable clasping clamp 94 is locked in the fixed clasping clamp 95, and the movable clasping clamp 94 and the fixed clasping clamp 95 form a whole round structure; the handlebar 87 is tightly held between the movable tightly holding hoop 94 and the fixed tightly holding hoop 95; the holding structure can realize preliminary holding;
one ends of the left transverse protective cylinder 83 and the right transverse protective cylinder 81, which are close to the handle head body 82, are provided with a thick cylinder section 81, and the inner diameter of the thick cylinder section 81 is larger than the outer diameter of a whole round structure body formed by the movable clasping clamp 94 and the fixed clasping clamp 95; the thick cylinder section 81 is coated on the outer side of a whole round structure body formed by the movable clasping hoop 94 and the fixed clasping hoop 95; a left side is violently protecting a section of thick bamboo and a right side is violently protecting a section of thick bamboo and both had played the parcel guard action to violently, has also effectively avoided the clamp of holding tightly of metal material to expose externally easily rustting.
A linear notch 91 is formed in one groove edge 89 of the linear clamping groove 92, and the linear notch 91 is located in the middle of the handle bar 87 in the length direction; a limiting bulge 96 is arranged on the inner side of the movable clasping hoop 94, the movable clasping hoop 94 is locked on the fixed clasping hoop 95, and the limiting bulge 96 is clamped into one end of the linear notch 91; the cooperation of spacing arch 96 and straight line breach 91 has realized promptly violently 87 with the head body 82 between the axis location, has also realized violently 87 with the head body 82 between the circumference location, this compact structure moreover, restraines easily and dismantles.
The above description is only a preferred embodiment of the present invention, and it should be noted that: for those skilled in the art, without departing from the principle of the present invention, several improvements and modifications can be made, and these improvements and modifications should also be considered as the protection scope of the present invention.

Claims (7)

1. Lock body bin cover formula scooter battery compartment, its characterized in that: the scooter comprises a scooter pedal (02), wherein the scooter pedal (02) comprises a shell structure (2) with an opening at the upper side; a battery bin (002) is arranged inside the shell structure (2), and a battery box (12) is detachably mounted in the battery bin (002); a movable battery compartment cover (5) is arranged on the upper side of the battery compartment (002); one end of the movable battery compartment cover (5) close to the scooter faucet is hinged with the shell structure (2) through a hinge assembly (014); one end of the movable battery bin cover (5) far away from the scooter faucet is connected with the shell structure (2) in a locking mode through a lock assembly.
2. The lock body bin cover type scooter battery bin of claim 1, wherein: the upper surface of activity battery compartment lid (5) sets up anti-skidding foot mat (10) of rubber material, the upper surface of anti-skidding foot mat (10) is provided with a plurality of non-slip raised.
3. The lock body bin cover type scooter battery bin of claim 1, wherein: the battery box is characterized in that a battery box fixing seat (13) is fixedly arranged at the bottom in the shell structure (2), and the battery box (12) is detachably fixed on the battery box fixing seat (13).
4. The lock body bin cover type scooter battery bin of claim 1, wherein: two limit convex strips (11) are arranged on two sides of the bottom of the movable battery compartment cover (5) in parallel in the extension direction, and the two limit convex strips (11) are in limit contact with two inner side walls at the upper end of the battery compartment (002) respectively.
5. The lock body bin cover type scooter battery bin of claim 1, wherein: the lock assembly comprises a lock body fixing seat (17) in a battery bin (002), and the lock body fixing seat (17) is fixed on the shell structure (2); a lock body support is arranged on the lock body fixing seat (17), the lock body support comprises a fixing transverse plate (19) and a fixing vertical plate (18) which are vertically and integrally connected, the fixing transverse plate (19) is locked on the lock body fixing seat (17) through a bolt, and a lock body (16) is fixedly arranged on one side of the fixing vertical plate (18); the lock tongue (15) of the lock body (16) can transversely extend out and retract;
the lock assembly further comprises a movable vertical plate (21), and the upper end of the movable vertical plate (21) is fixedly connected with the lower side surface of the movable battery compartment cover (5) through a plurality of first locking bolts (7); the lower end of the movable vertical plate (21) is vertically and fixedly connected with a movable transverse plate (20); the lock body (16) is characterized in that the lock bolt (15) is in a protruding state, and the movable transverse plate (20) is limited between the fixed transverse plate (19) and the lock bolt (15).
6. The lock body bin cover type scooter battery bin of claim 5, wherein: the lock head (6) of the lock body (16) is arranged at the outer side part of the shell structure (2).
7. The lock body bin cover type scooter battery bin of claim 6, wherein: the front end of the shell structure (2) is integrally connected with an oblique structure body (03), and the upper end of the front part of the oblique structure body (03) is connected with a scooter head pipe (14); the inclined structure body (03) is of a shell structure with an open upper part, a controller bin (009) is arranged inside the inclined structure body (03), and a controller is arranged in the controller bin (009); an oblique controller bin cover (9) is arranged on the upper side cover of the controller bin (009), and the controller bin cover (9) is fixedly locked on the oblique structure body (03) through a plurality of locking bolts; a process gap (22) is formed by splicing the lower end of the controller bin cover (9) and the front end of the movable battery bin cover (5);
the hinge assembly (014) comprises a first hinge seat (23) and a second hinge seat (24), wherein the first hinge seat (23) is locked at the lower side of the front end of the battery compartment cover (5) through a plurality of second locking bolts (8); the second hinged seat (24) is locked on the inner side of the inclined structure body (03) through a plurality of third locking bolts (09);
the connecting device is characterized by further comprising a first connecting rod (33), wherein a first arm (36) and a second arm (033) which extend upwards are integrally arranged at two ends of the first connecting rod (33) respectively, and a first hinge piece (25) and a second hinge piece (34) are arranged at the tail ends of the first arm (36) and the second arm (033) respectively; the connecting rod device is characterized by further comprising a second connecting rod piece (26), wherein a third arm (39) and a fourth arm (35) which extend upwards are integrally arranged at two ends of the second connecting rod piece (26) respectively, a cylindrical sliding block (37) is arranged at the tail end of the third arm (39), and a third hinge piece (38) is arranged at the tail end of the fourth arm (35);
the lower end of the first hinged seat (23) is provided with a transverse sliding groove (27); a sliding block (37) at the tail end of the third arm (39) is arranged in the sliding groove (27) in a sliding manner; the first hinge piece (25) is hinged with one end of the first hinge seat (23) close to the process gap (22); the second hinge piece (34) is hinged with one end of the second hinge base (24) far away from the process gap (22), and the third hinge piece (38) is hinged with one end of the second hinge base (24) close to the process gap (22); a first limiting end wall (012) is arranged on one side, close to the first arm (36), of the first hinging seat (23), and a second limiting end wall (011) is arranged on one side, close to the fourth arm (35), of the second hinging seat (24); when the first hinge seat (23) is in a horizontal state, one side of the first arm (36) is in limit contact with the first limit end wall (012), and one side of the fourth arm (35) is in limit contact with the second limit end wall (011).
CN201921260721.0U 2019-08-06 2019-08-06 Lock bin cover type scooter battery bin Active CN210182439U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921260721.0U CN210182439U (en) 2019-08-06 2019-08-06 Lock bin cover type scooter battery bin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921260721.0U CN210182439U (en) 2019-08-06 2019-08-06 Lock bin cover type scooter battery bin

Publications (1)

Publication Number Publication Date
CN210182439U true CN210182439U (en) 2020-03-24

Family

ID=69841993

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921260721.0U Active CN210182439U (en) 2019-08-06 2019-08-06 Lock bin cover type scooter battery bin

Country Status (1)

Country Link
CN (1) CN210182439U (en)

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