Battery connection module capable of instantly positioning and electrically connecting
By designing a battery connection module that can instantly locate the electrical connection and utilizing the combined structure of the base and the stabilizing part, the problems of time-consuming and unstable battery connection are solved, and the instant and stable electrical connection is achieved, which is ergonomically designed.
Patent Information
- Application Number
- CN202422704334.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-11-06
AI Technical Summary
The existing battery connection method requires removing the screw lock when replacing, which is time-consuming and easy to loosen. In addition, the plug-in connection lacks a stable structure, resulting in poor electrical connection or loosening.
A battery connection module capable of instant positioning and electrical connection is designed, comprising a storage portion, a positioning portion, and an electrical connection portion. Utilizing a combined structure of a base and a stabilizing portion, a stable connection is achieved through an inclined surface design and elastic members, thereby ensuring the instantaneous and stable electrical connection.
The instant, stable and ergonomic design of the battery connection is achieved, ensuring that the electrical connection is convenient, fast, stable and reliable.
Smart Images

Figure CN223309150U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a battery connection device, and more particularly to a battery connection module capable of instantly positioning an electrical connection. Background Art
[0002] Generally, equipment or a transport vehicle such as a car, an electric car, a motorcycle, an electric scooter, an electric cart or an electric energy storage cabinet needs to be equipped with a battery such as a lead-acid battery or a lithium battery to output power to the equipment or the transport vehicle.
[0003] Typically, a device or a transport vehicle is equipped with at least two connecting wires connected to the electrode pins of a battery. The connection method uses screws to lock the electrode pins, which can provide a reliable and stable connection and prevent the electrode pins from loosening and causing power outages due to the jumping of the device or a transport vehicle during movement. However, when replacing a new battery, it takes a lot of time to remove and lock the screws.
[0004] Furthermore, a business operator has designed a storage box for accommodating a battery. An electrical connection portion is provided on one side of the storage box. The electrical connection portion is used to electrically connect the battery internally, and the electrical connection portion is used to electrically connect to another electrical connection portion provided on a device or a transport vehicle. The battery can be replaced in a time-saving manner by plugging and unplugging. However, it lacks a better anti-fouling device or a structure that stabilizes the storage box, and power outages may occur due to poor contact or loosening of the electrical connection portion. Utility Model Content
[0005] The main purpose of the present invention is to provide a battery connection module that can instantly locate the electrical connection, which has the effect of convenient and instant electrical connection.
[0006] A secondary purpose of the present invention is to provide a battery connection module that can instantly locate the electrical connection and has a truly stable electrical connection effect.
[0007] Another object of the present invention is to provide a battery connection module that can instantly locate the electrical connection, which has a better structure and is ergonomically designed for use.
[0008] A battery connection module capable of instantly locating an electrical connection comprises at least:
[0009] A receiving portion, formed by butting at least two half-shells to form at least one hollow body having an interior space, a first bottom surface, and a first peripheral side surface surrounding the first bottom surface, for accommodating a battery in the interior space;
[0010] a first positioning portion, which is disposed on the first bottom surface;
[0011] a first electrical connection portion, adjacent to the first positioning portion and disposed on the first bottom surface, with one side of the first electrical connection portion being used for electrically connecting to the battery and the other side of the first electrical connection portion corresponding to an opening disposed on the first bottom surface;
[0012] a base for receiving the storage portion;
[0013] a second positioning portion, disposed on a side surface of the base and configured to engage with the first positioning portion;
[0014] A second electrical connection portion is adjacent to the second positioning portion and is provided on a side surface of the base. One side of the second electrical connection portion is used to provide electricity. When the first positioning portion is embedded in the second positioning portion, the other side of the first electrical connection portion is electrically connected to the other side of the second electrical connection portion.
[0015] Two second peripheral side surfaces are extended in the same direction from two opposite sides of one side surface of the base, so that the second positioning portion, the second electrical connection portion and the receiving portion are located between the two second peripheral side surfaces.
[0016] The battery connection module capable of instant positioning of electrical connection further comprises a first inclined surface and a second inclined surface; wherein,
[0017] The direction of the base transverse to the two second peripheral side surfaces is defined as a short axis direction, the direction transverse to the short axis direction is defined as a long axis direction, and a side surface of the base provided with the second positioning portion and the second electrical connection portion is defined as a placement surface;
[0018] The second positioning portion and the second electrical connection portion are arranged in the short axis direction;
[0019] The first inclined surface is formed by extending from one side of the base in the long axis direction and located between one ends of the two second peripheral side surfaces, and the angle between the first inclined surface and the placement surface is an obtuse angle;
[0020] The second positioning portion is formed by extending outward from the placement surface to form a protruding block having a top surface and a third peripheral side surface surrounding the top surface, and the third peripheral side surface corresponding to the first inclined surface has the second inclined surface, and the angle between the second inclined surface and the placement surface is an obtuse angle;
[0021] The first positioning portion is formed by a groove whose inner edge shape corresponds to the outer edge shape of the second positioning portion.
[0022] The battery connection module capable of instant positioning and electrical connection is characterized in that it further comprises a stabilizing portion, the stabilizing portion comprising at least one sheet and an elastic member;
[0023] One end of the plate is pivotally mounted on the other side of the base relative to the one side of the base. Two corresponding side plates extend outwardly to form a bracket and a corresponding rotation axis to angularly move between a first position and a second position. The other end of the plate is provided with a first connecting portion.
[0024] A second connecting portion is provided on the first peripheral side surface of the receiving portion corresponding to the first connecting portion, wherein when the sheet is located at the first position, the first connecting portion connects with the second connecting portion, and when the sheet is located at the second position, the first connecting portion does not connect with the second connecting portion;
[0025] The elastic member is arranged between the base and the sheet, with one end attached to the base and the other end attached to the sheet. The elastic member has a torque that drives the sheet to be located at the first position.
[0026] The first connecting portion is formed by a protruding block extending outward from the sheet body and having a circular top surface and a fourth peripheral side surface surrounding the circular top surface with a slightly triangular cross section. The second connecting portion is formed by a groove whose inner edge shape corresponds to the outer edge shape of the first connecting portion.
[0027] The other side of the first electrical connection portion has at least two grooves arranged at intervals, and a first pin is attached to each groove. The other side of the second electrical connection portion has a sheet-shaped second pin corresponding to each groove and protruding toward the receiving portion, and each first pin is used to connect with each second pin.
[0028] The elastic member is configured as a torsion spring, one end of which is attached to the base and the other end of which is attached to the sheet. The rotation axis R is configured as a rod that passes through the sheet and the torsion spring. The two ends of the rod are pivotally connected to the bracket, or the two ends of the rod are fixed to the bracket and the sheet is pivotally connected to the rod.
[0029] The beneficial effects of the present invention are as follows: the present invention has the effects of convenient and instant electrical connection, reliable and stable electrical connection, better structure and ergonomic use. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 It is a three-dimensional schematic diagram of a preferred embodiment of the utility model.
[0031] Figure 2 It is a partially exploded three-dimensional schematic diagram of a preferred embodiment of the present utility model.
[0032] Figure 3 It is a partially exploded three-dimensional schematic diagram from another perspective of a preferred embodiment of the present invention.
[0033] Figure 4 yes Figure 1 Schematic cross-sectional view in the direction 4-4.
[0034] 12 Storage Department
[0035] 13 first positioning portion
[0036] 14 first electrical connection portion
[0037] 15 base
[0038] 16 second positioning portion
[0039] 17 second electrical connection portion
[0040] 22Interior Space
[0041] 24 first bottom surface
[0042] 26 first peripheral side 241 opening 52 second peripheral side
[0043] 54 First Incline
[0044] 62 second slope
[0045] S short axis direction L long axis direction
[0046] 56 placement surface
[0047] 64 top surface
[0048] 66 Week 3 Side
[0049] 18 Stability Department
[0050] 82 pieces
[0051] 84 elastic parts
[0052] 58 side panels
[0053] R Rotation axis
[0054] 821 First Connection Section
[0055] 261 Second connection
[0056] 42 grooves
[0057] 72 second pin DETAILED DESCRIPTION
[0058] See also Figures 1 to 4 The battery connection module disclosed in the present invention can instantly position the electrical connection, which at least includes a storage portion 12, a first positioning portion 13, a first electrical connection portion 14, a base 15, a second positioning portion 16 and a second electrical connection portion 17.
[0059] The receiving portion 12 is formed by at least two half shells connected together to form at least a hollow body having an interior space 22, a first bottom surface 24 and a first peripheral side surface 26 surrounding the first bottom surface 24 for accommodating a battery (not shown) such as a lead-acid battery or a lithium battery in the interior space 22.
[0060] The first positioning portion 13 is disposed on the first bottom surface 24 .
[0061] The first electrical connection portion 14 is adjacent to the first positioning portion 13 and disposed inside the first bottom surface 24 . One side of the first electrical connection portion 14 is used for electrically connecting to the battery, and the other side thereof corresponds to an opening 241 disposed on the first bottom surface 24 .
[0062] The base 15 is used to receive the receiving portion 12 . Two second peripheral side surfaces 52 extend in the same direction from two opposite sides of a side surface of the base 15 , such that the receiving portion 12 is located between the two second peripheral side surfaces 52 .
[0063] The second positioning portion 16 is disposed on a side surface 15 of the base to engage with the first positioning portion 13 .
[0064] The second electrical connection portion 17 is adjacent to the second positioning portion 16 and is provided on a side surface of the base 15. One side of the second electrical connection portion 17 is used to output power to a device that requires a battery, such as a car, an electric car, a motorcycle, an electric locomotive, an electric cart, or a power storage cabinet. The second positioning portion 16 and the second electrical connection portion 17 are located between the two second peripheral sides 52. When the first positioning portion 13 is engaged with the second positioning portion 16, the other side of the first electrical connection portion 14 is electrically connected to the other side of the second electrical connection portion 17.
[0065] See also Figure 2 and Figure 4 The battery connection module disclosed in the present invention can instantly position the electrical connection, which further includes a first inclined surface 54 and a second inclined surface 62; wherein, the base 15 is defined as a short axis direction S in a direction transverse to the two second peripheral side surfaces 52, and a long axis direction L is defined as a direction transverse to the short axis direction, and a side surface of the base 15 provided with the second positioning portion 16 and the second electrical connection portion 17 is defined as a placement surface 56.
[0066] The second positioning portion 16 and the second electrical connection portion 17 are arranged in the short axis direction S at intervals.
[0067] The first inclined surface 54 is formed by extending from one side of the base 15 in the longitudinal direction L and located between one ends of the two second peripheral side surfaces 52 . The included angle between the first inclined surface 54 and the placement surface 56 is an obtuse angle.
[0068] The second positioning portion 16 is formed by extending outward from the placement surface 56 to form a protruding block having a top surface 64 and a third peripheral side surface 66 surrounding the top surface 64. The third peripheral side surface corresponding to the first inclined surface 54 has the second inclined surface 62, and the angle between the second inclined surface 62 and the placement surface 56 is an obtuse angle.
[0069] The first positioning portion 13 is formed by a groove whose inner edge shape corresponds to the outer edge shape of the second positioning portion 16 .
[0070] Please refer to Figures 1 to 4 The present invention provides a battery connection module capable of instantly positioning an electrical connection, which further includes a stabilizing portion 18, which includes at least a sheet 82 and an elastic member 84. One end of the sheet 82 is pivotally mounted on a bracket formed by two corresponding side sheets 58 extending outward from the other side of the base 15 relative to one side of the base 15, and is located between the two side sheets 58 and corresponds to a rotation axis R for angular displacement between a first position and a second position. The other end of the sheet 82 is provided with a first connecting portion 821, and a second connecting portion 261 is provided on the first peripheral side surface 26 of the storage portion 12 corresponding to the first connecting portion 821. When the sheet 82 is in the first position, the first connecting portion 821 is connected to the second connecting portion 261. When the sheet 82 is in the second position, the first connecting portion 821 is not connected to the second connecting portion 261.
[0071] The elastic member 84 is such as a torsion spring and is arranged between the base 15 and the sheet 18, with one end thereof attached to the base 15 and the other end thereof attached to the sheet 82. The elastic member 84 has a torque to drive the sheet 18 to be located in the first position; wherein, the rotation axis R can be set as a rod and passed through the sheet 82 and the torsion spring, and the two ends of the rod are pivotally connected to the bracket, or the two ends of the rod are fixed to the bracket, and the sheet 82 is pivotally connected to the rod.
[0072] The first connecting portion 821 is formed by a protrusion extending outward from the sheet 82 with a circular top surface and a fourth peripheral side surface surrounding the circular top surface, the cross section of which is slightly triangular. The second connecting portion 261 is formed by a groove whose inner edge shape corresponds to the outer edge shape of the first connecting portion 821.
[0073] See also Figure 2 and Figure 3 The battery connection module disclosed in the present invention can instantly locate the electrical connection, wherein the other side of the first electrical connection portion 14 has at least two spaced grooves 42, each of which has a first pin attached therein, and each of the first pins is used to electrically connect to the battery. The other side of the second electrical connection portion 17 has sheet-shaped second pins 72 corresponding to each of the grooves 42 and protruding toward the storage portion 12, and each of the first pins is used to connect to each of the second pins 72.
[0074] The battery connection module disclosed in the present invention can be instantly positioned and electrically connected. It uses the storage portion 12 and the first electrical connection portion 14 to accommodate and connect a battery. Then, the base 15 and the second electrical connection portion 17 can instantly accommodate the storage portion 12 and connect the first electrical connection portion 14. The second electrical connection portion 17 can conveniently output and provide power to a device. In addition, the first positioning portion 13 and the second positioning portion 16 can accurately connect the first electrical connection portion. 14 and the second electrical connection portion 17; in addition, by means of the first inclined surface 54 and the second inclined surface 62, the storage portion 12 can be conveniently slid into the base 15 from the side of the base 15, thereby firmly connecting the first electrical connection portion 14 and the second electrical connection portion 17; in addition, by means of the design of the stabilizing portion 18, the storage portion 12 can be stably fixed and the storage portion 12 can be conveniently and easily disassembled. The utility model is a battery connection module with a better mechanism and ergonomic use.
Claims
1. A battery connection module capable of instantly locating electrical connections, characterized by: At least include: A receiving portion, formed by butting at least two half-shells to form at least one hollow body having an interior space, a first bottom surface, and a first peripheral side surface surrounding the first bottom surface, for accommodating a battery in the interior space; a first positioning portion, which is disposed on the first bottom surface; a first electrical connection portion, adjacent to the first positioning portion and disposed on the first bottom surface, with one side of the first electrical connection portion being used for electrically connecting to the battery and the other side of the first electrical connection portion corresponding to an opening disposed on the first bottom surface; a base for receiving the storage portion; a second positioning portion, disposed on a side surface of the base and configured to engage with the first positioning portion; A second electrical connection portion is adjacent to the second positioning portion and is provided on a side surface of the base. One side of the second electrical connection portion is used to provide electricity. When the first positioning portion is embedded in the second positioning portion, the other side of the first electrical connection portion is electrically connected to the other side of the second electrical connection portion.
2. The battery connection module capable of instant positioning and electrical connection according to claim 1, wherein: Two second peripheral side surfaces are extended in the same direction from two opposite sides of one side surface of the base, so that the second positioning portion, the second electrical connection portion and the receiving portion are located between the two second peripheral side surfaces.
3. The battery connection module capable of instant positioning and electrical connection according to claim 2, wherein: It further comprises a first inclined surface and a second inclined surface; wherein, The direction of the base transverse to the two second peripheral side surfaces is defined as a short axis direction, the direction transverse to the short axis direction is defined as a long axis direction, and a side surface of the base provided with the second positioning portion and the second electrical connection portion is defined as a placement surface; The second positioning portion and the second electrical connection portion are arranged in the short axis direction; The first inclined surface is formed by extending from one side of the base in the long axis direction and located between one ends of the two second peripheral side surfaces, and the angle between the first inclined surface and the placement surface is an obtuse angle; The second positioning portion is formed by extending outward from the placement surface to form a protruding block having a top surface and a third peripheral side surface surrounding the top surface, and the third peripheral side surface corresponding to the first inclined surface has the second inclined surface, and the angle between the second inclined surface and the placement surface is an obtuse angle; The first positioning portion is formed by a groove whose inner edge shape corresponds to the outer edge shape of the second positioning portion.
4. The battery connection module capable of instant positioning and electrical connection according to any one of claims 1 to 3, wherein: It further comprises a stabilizing portion, the stabilizing portion comprising at least one sheet and an elastic member; One end of the plate is pivotally mounted on the other side of the base relative to the one side of the base. Two corresponding side plates extend outwardly to form a bracket and a corresponding rotation axis to angularly move between a first position and a second position. The other end of the plate is provided with a first connecting portion. A second connecting portion is provided on the first peripheral side surface of the receiving portion corresponding to the first connecting portion, wherein when the sheet is located at the first position, the first connecting portion connects with the second connecting portion, and when the sheet is located at the second position, the first connecting portion does not connect with the second connecting portion; The elastic member is arranged between the base and the sheet, with one end attached to the base and the other end attached to the sheet. The elastic member has a torque that drives the sheet to be located at the first position.
5. The battery connection module capable of instant positioning and electrical connection according to claim 4, wherein: The first connecting portion is formed by a protruding block extending outward from the sheet body and having a circular top surface and a fourth peripheral side surface surrounding the circular top surface with a slightly triangular cross section. The second connecting portion is formed by a groove whose inner edge shape corresponds to the outer edge shape of the first connecting portion.
6. The battery connection module capable of instant positioning and electrical connection according to any one of claims 1 to 3, wherein: The other side of the first electrical connection portion has at least two grooves arranged at intervals, and a first pin is attached to each groove. The other side of the second electrical connection portion has a sheet-shaped second pin corresponding to each groove and protruding toward the receiving portion, and each first pin is used to connect with each second pin.
7. The battery connection module capable of instant positioning and electrical connection according to claim 4, wherein: The other side of the first electrical connection portion has at least two grooves arranged at intervals, and a first pin is attached to each groove. The other side of the second electrical connection portion has a sheet-shaped second pin corresponding to each groove and protruding toward the receiving portion, and each first pin is used to connect with each second pin.
8. The battery connection module capable of instant positioning and electrical connection according to claim 5, wherein: The other side of the first electrical connection portion has at least two grooves arranged at intervals, and a first pin is attached to each groove. The other side of the second electrical connection portion has a sheet-shaped second pin corresponding to each groove and protruding toward the receiving portion, and each first pin is used to connect with each second pin.
9. The battery connection module capable of instant positioning and electrical connection according to claim 4, wherein: The elastic member is configured as a torsion spring, one end of which is attached to the base and the other end of which is attached to the sheet. The rotation axis R is configured as a rod that passes through the sheet and the torsion spring. The two ends of the rod are pivotally connected to the bracket, or the two ends of the rod are fixed to the bracket and the sheet is pivotally connected to the rod.
10. The battery connection module capable of instant positioning and electrical connection according to claim 7, wherein: The elastic member is configured as a torsion spring, one end of which is attached to the base and the other end of which is attached to the sheet. The rotation axis R is configured as a rod that passes through the sheet and the torsion spring. The two ends of the rod are pivotally connected to the bracket, or the two ends of the rod are fixed to the bracket and the sheet is pivotally connected to the rod.