Tripping device and finished battery detection equipment

文档序号:1797596 发布日期:2021-11-05 浏览:21次 中文

阅读说明:本技术 一种脱扣装置和成品电池检测设备 (Tripping device and finished battery detection equipment ) 是由 张俊峰 叶长春 王士对 于 2021-07-01 设计创作,主要内容包括:本发明公开了一种脱扣装置,包括安装件、限位挡件和第一驱动机构,安装件用于安装外部的第一部件;第一驱动机构用于驱动安装件和/或限位挡件运动,以使安装件上的第一部件和限位挡件彼此靠近或远离;限位挡件用于在与安装件上的第一部件彼此远离时,抵挡与第一部件扣合的第二部件,以使第二部件随限位挡件与第一部件彼此远离。本发明的一种脱扣装置,其能实现机械化脱扣,以降低劳动强度。本发明还公开了成品电池检测设备。(The invention discloses a tripping device which comprises a mounting part, a limiting stopper and a first driving mechanism, wherein the mounting part is used for mounting an external first component; the first driving mechanism is used for driving the mounting part and/or the limit stopper to move so as to enable the first part on the mounting part and the limit stopper to approach or move away from each other; the limiting stopper is used for stopping a second part buckled with the first part when the limiting stopper is far away from the first part on the mounting part, so that the second part is far away from the first part along with the limiting stopper. The tripping device can realize mechanical tripping so as to reduce labor intensity. The invention also discloses finished battery detection equipment.)

1. A trip device, characterized in that: comprising a mounting (10), a limit stop (20) and a first drive mechanism (30), wherein:

the mounting piece (10) is used for mounting an external first component;

the first driving mechanism (30) is used for driving the mounting part (10) and/or the limit stop (20) to move so as to enable a first part on the mounting part (10) and the limit stop (20) to approach or move away from each other;

the limiting stopper (20) is used for stopping a second part buckled with the first part when the limiting stopper (20) is far away from the first part on the mounting part (10), so that the second part is far away from the first part along with the limiting stopper (20).

2. The trip unit of claim 1, wherein: the mounting piece (10) comprises a mounting seat (11) and a mounting block (12), wherein the mounting seat (11) is provided with a mounting groove with a side opening, and the mounting block (12) can be mounted in the mounting groove in a vertically movable manner relative to the mounting groove; the mounting block (12) is used for mounting a first component; the side opening is used for enabling the first component to extend out of the mounting groove; the trip unit further includes a locking structure (40) for securing the mounting block (12) within the mounting slot.

3. The trip unit of claim 1, wherein: the mounting part (10) is positioned below the limiting stopper (20), and the first driving mechanism (30) is used for driving the mounting part (10) to lift relative to the limiting stopper (20); the limiting stopper (20) is used for abutting against the first part to prevent the first part from moving downwards.

4. The trip unit of claim 3, wherein: the second part comprises a fastening structure and a first limiting surface (112) surrounding the fastening structure; the limiting stopper (20) is provided with an avoidance opening (21) which runs through the upper surface and the lower surface of the limiting stopper; the avoiding opening (21) is used for allowing the buckling structure to pass through so as to be buckled with the first component; the part of the limiting stopper (20) surrounding the avoidance opening (21) forms a second limiting surface (22), and the second limiting surface (22) is used for abutting against the first limiting surface (112).

5. The trip unit of claim 1, wherein: the device further comprises a first bracket (50), and the mounting part (10), the limiting stopper (20) and the first driving mechanism (30) are all mounted on the first bracket (50).

6. The trip unit of claim 5, wherein: the device also comprises a second bracket (60) and a second driving mechanism (70), wherein the first bracket (50) is arranged on the second bracket (60); the second driving mechanism (70) is used for driving the first bracket (50) to move along a horizontal straight line relative to the second bracket (60).

7. A finished product battery check out test set which characterized in that: comprising a first part, a probe (80) and a trip device according to any of claims 1-2; the second, outer component is a finished battery (110); the first component is an adapter plate (100) and is mounted on the mounting piece (10); the input connector (101) of the adapter plate is used for being buckled with a connector (111) of a finished battery (110) and electrically contacted; the probe (80) is used for being electrically contacted with the output terminal (102) of the adapter plate.

8. The finished battery (110) inspection apparatus as set forth in claim 7, wherein: the mounting part (10) is positioned below the limiting stopper (20), and the first driving mechanism (30) is used for driving the mounting part (10) to lift relative to the limiting stopper (20); the input connector (101) of the adapter plate is arranged upwards.

9. The finished battery testing apparatus as set forth in any of claims 7-8, wherein: the finished battery (110) is also provided with a first limiting surface (112) surrounding the connector (111) of the finished battery; the limiting stopper (20) comprises an avoiding opening (21) which is communicated with the upper surface and the lower surface of the limiting stopper and is opposite to the input connector (101) of the adapter plate; the avoidance port (21) is used for allowing a connector (111) of a finished battery (110) to pass through so as to be buckled with an input connector (101) of the adapter plate; the part of the limiting stopper (20) surrounding the avoidance opening (21) forms a second limiting surface (22), and the second limiting surface (22) is used for abutting against the first limiting surface (112).

10. The finished battery testing apparatus as set forth in any of claims 7-8, wherein: the trip device further comprises a first bracket (50), a second bracket (60) and a second driving mechanism (70), wherein the first part, the probe (80) and the trip device are all arranged on the first bracket (50); the first bracket (50) is mounted on the second bracket (60); the second driving mechanism (70) is used for driving the first bracket (50) to move along a horizontal straight line relative to the second bracket (60).

Technical Field

The invention relates to the field of tripping equipment, in particular to a tripping device and finished battery detection equipment.

Background

At present, for a finished battery formed by fixedly connecting a lithium battery and a connector, quality detection such as electrical performance and the like is required before delivery to ensure delivery quality; generally, a connector of a finished battery is buckled with an input joint of an adapter plate, and then a probe obtains electrical property data of the finished battery through the adapter plate, so that whether the electrical property of the finished battery reaches the standard or not can be judged; however, tripping between the finished battery and the adapter plate requires manual operation, which results in high labor intensity when aiming at large batches of finished batteries.

Disclosure of Invention

In order to overcome the defects of the prior art, one of the objects of the present invention is to provide a trip device, which can realize mechanical trip to reduce labor intensity.

The second objective of the present invention is to provide a finished battery detection apparatus, which can realize the mechanical tripping of the finished battery and the adapter plate, so as to reduce the labor intensity.

One of the purposes of the invention is realized by adopting the following technical scheme:

a trip unit comprising a mounting member, a limit stop and a first drive mechanism, wherein:

the mounting piece is used for mounting an external first component;

the first driving mechanism is used for driving the mounting part and/or the limit stopper to move so as to enable the first part on the mounting part and the limit stopper to approach or move away from each other;

the limiting stopper is used for stopping a second part buckled with the first part when the limiting stopper is far away from the first part on the mounting part, so that the second part is far away from the first part along with the limiting stopper.

Further, the mounting piece comprises a mounting seat and a mounting block, the mounting seat is provided with a mounting groove with a side opening, and the mounting block can be mounted in the mounting groove in a vertically movable manner relative to the mounting groove; the mounting block is used for mounting a first component; the side opening is used for enabling the first component to extend out of the mounting groove; the tripping device also comprises a locking structure used for fixing the mounting block in the mounting groove.

Furthermore, the mounting part is positioned below the limiting stopper, and the first driving mechanism is used for driving the mounting part to lift relative to the limiting stopper; the limiting stopper is used for abutting against the first part to prevent the first part from moving downwards.

Furthermore, the second part comprises a fastening structure and a first limiting surface surrounding the fastening structure; the limiting stopper is provided with an avoidance opening which penetrates through the upper surface and the lower surface of the limiting stopper; the avoiding opening is used for allowing the buckling structure to pass through so as to be buckled with the first component; the part of the limiting stopper surrounding the avoidance opening forms a second limiting surface which is used for abutting against the first limiting surface.

Further, still include first support, the installed part, spacing fender spare and first actuating mechanism all install on first support.

The device further comprises a second bracket and a second driving mechanism, wherein the first bracket is arranged on the second bracket; the second driving mechanism is used for driving the first support to move along a horizontal straight line relative to the second support.

The second purpose of the invention is realized by adopting the following technical scheme:

a finished product battery detection device comprises a first component, a probe and the tripping device; the outer second part is a finished battery; the first component is an adapter plate and is arranged on the mounting piece; the input connector of the adapter plate is used for being buckled with a connector of a finished battery and electrically contacted with the connector; the probe is used for being electrically contacted with the output terminal of the adapter plate.

Furthermore, the mounting part is positioned below the limiting stopper, and the first driving mechanism is used for driving the mounting part to lift relative to the limiting stopper; the input joint of keysets sets up upwards.

Furthermore, the finished battery also has a first limiting surface surrounding the connector; the limiting stopper comprises an avoidance port which is arranged on the upper surface and the lower surface of the limiting stopper and is opposite to the input joint of the adapter plate; the avoiding port is used for the connector of the finished product battery to pass through so as to be buckled with the input joint of the adapter plate; the part of the limiting stopper surrounding the avoidance opening forms a second limiting surface which is used for abutting against the first limiting surface.

The trip device comprises a first component, a second component, a first driving mechanism, a second driving mechanism and a control unit, wherein the first component, the probe and the trip device are all arranged on the first support; the first bracket is mounted on the second bracket; the second driving mechanism is used for driving the first support to move along a horizontal straight line relative to the second support.

Compared with the prior art, the invention has the beneficial effects that:

according to the invention, the mounting part is adopted for mounting the first component, the first component and the limiting stopper on the mounting part are far away from each other under the driving of the first driving mechanism, at the moment, the limiting stopper also abuts against the second component buckled with the first component, so that the second component is far away from the first component along with the limiting stopper, and when the distance between the first component and the second component is larger than the buckling depth of the first component and the second component, the first component and the second component are tripped, so that manual tripping is not needed, and the labor intensity is reduced.

Drawings

FIG. 1 is a schematic structural diagram of a finished battery inspection device according to the present invention;

FIG. 2 is a schematic diagram of a disassembled structure of the finished battery detection device of the present invention;

FIG. 3 is a schematic structural diagram of a finished battery inspection apparatus according to the present invention (shown in a different view from FIG. 4);

FIG. 4 is a schematic view of the spacing stopper of the present invention;

fig. 5 is a schematic structural view of a conventional finished battery.

In the figure: 10. a mounting member; 11. a mounting seat; 12. mounting blocks; 20. a limit stopper; 21. avoiding the mouth; 22. a second limiting surface; 30. a first drive mechanism; 40. a locking structure; 50. a first bracket; 60. a second bracket; 70. a second drive mechanism; 80. a probe; 90. a probe base; 100. an adapter plate; 101. an input connector of the adapter plate; 102. an output terminal of the interposer; 110. a finished battery; 111. a connector; 112. a first limit surface.

Detailed Description

Referring to fig. 1 to 5, the present invention discloses a trip device, which comprises a mounting member 10, a limiting stopper 20 and a first driving mechanism 30, wherein:

the mounting member 10 is used for mounting an external first component;

the first driving mechanism 30 is used for driving the mounting member 10 and/or the limit stop 20 to move so as to make the first component on the mounting member 10 and the limit stop 20 approach or move away from each other; it will be appreciated that the first drive mechanism 30 is used to drive either or both of the mount 10 and the limit stop 20 to move so as to move the first component on the mount 10 and the limit stop 20 toward or away from each other; such as: the first driving mechanism 30 is used for driving the limiting stopper 20 to move relative to the mounting part 10, and when the first driving mechanism 30 drives the limiting stopper 20 to ascend and be far away from the first part on the mounting part 10, the limiting stopper 20 pushes the second part to move, so that the first part and the second part are far away from each other;

the limiting stopper 20 is used for stopping a second component buckled with the first component when the limiting stopper 20 and the first component on the mounting part 10 are far away from each other, so that the second component is far away from the first component along with the limiting stopper 20.

On the basis of the structure, the first component is installed on the installation component 10, then the first component on the installation component 10 is far away from the limiting blocking component 20 by the first driving mechanism 30, at the moment, the limiting blocking component 20 also blocks the second component buckled with the first component, so that the second component is far away from the first component along with the limiting blocking component 20, and when the distance between the first component and the second component which are far away from each other is larger than the buckling depth of the first component and the second component, the first component and the second component are tripped, so that manual tripping is not needed, and labor intensity is reduced.

Specifically, the mounting member 10 includes a mounting seat 11 and a mounting block 12, the mounting seat 11 is provided with a mounting groove having a side opening, and the mounting block 12 is mounted in the mounting groove in a manner of being vertically movable relative to the mounting groove; the mounting block 12 is used for mounting a first component; the side opening is used for enabling the first component to extend out of the mounting groove; the trip unit also includes a locking structure 40 for securing the mounting block 12 in the mounting slot.

Based on the above structure, when the locking structure 40 is not used to fix the mounting block 12 in the mounting slot, the mounting block 12 can be moved downward so that the mounting block 12 is away from the bottom of the mounting slot to provide a sufficient distance to mount the first component on the mounting block 12, thereby facilitating replacement of the first component.

The locking structure 40 may be a locking structure, and specifically, a male buckle of the locking structure is installed on the installation base 11, and a female buckle of the locking structure is installed on the installation block 12.

Preferably, the mounting member 10 is located below the limit stop 20, and the first driving mechanism 30 is used for driving the mounting member 10 to ascend and descend relative to the limit stop 20; the limit stopper 20 is used for abutting against the first part to prevent the first part from moving downwards; therefore, when the first component is mounted on the mounting member 10, the fastening part of the first component is upward, and the bottom surface of the second component is abutted against the top surface of the limiting stopper 20, at this time, when the first driving mechanism 30 drives the mounting member 10 to move downward, the mounting member 10 drives the first component to move downward, so that the first component and the second component can be released, and the operation is simple and convenient; then, the first driving mechanism 30 drives the mounting member 10 to ascend, so that the first component and the next second component can be buckled.

Specifically, the second component includes a fastening structure and a first position-limiting surface 112 surrounding the fastening structure; the limiting stopper 20 is provided with an avoidance opening 21 penetrating through the upper and lower surfaces thereof; the avoiding opening 21 is used for the buckling structure to pass through so as to be buckled with the first component; the part of the limiting stopper 20 surrounding the avoidance opening 21 is formed into a second limiting surface 22, and the second limiting surface 22 is used for abutting against the first limiting surface 112; thus, the resisting force of the limit stopper 20 to the second component is equalized, so as to reduce the possibility that the second component is pulled by the first component to deform.

The tripping device also comprises a first bracket 50, and the mounting part 10, the limiting stopper 20 and the first driving mechanism 30 are all arranged on the first bracket 50, so that the mounting part 10, the limiting stopper 20 and the first driving mechanism 30 can be conveniently and integrally moved.

Further, the detection apparatus for the finished battery 110 further includes a second bracket 60 and a second driving mechanism 70; the first bracket 50 is mounted on the second bracket 60; the second driving mechanism 70 is used for driving the first bracket 50 to horizontally move relative to the second bracket 60; in this way, after the second bracket 60 is fixed, if the position of the mounting member 10 or the like needs to be adjusted, the first bracket 50 can be driven to move by the second driving mechanism 70; it should be noted that the second driving mechanism 70 may be a linear motor, an air cylinder, or the like.

The invention also discloses finished product battery 110 detection equipment, which comprises a first part, a probe 80 and the tripping device; the second, outer component is the finished battery 110; the first component is an adapter plate 100 and is mounted on a mounting 10; the input connector 101 of the adapter plate is used for being buckled with the connector 111 of the finished battery 110 and electrically contacted; the probe 80 is used for electrically contacting with the output terminal 102 of the interposer, and at this time, the probe 80 can obtain the electrical performance data of the finished battery 110 through the interposer 100; in this way, a mechanized tripping of the finished battery 110 from the interposer 100 can be achieved.

Specifically, the mounting member 10 is located below the limiting stopper 20, and the first driving mechanism 30 is configured to drive the mounting member 10 to ascend and descend relative to the limiting stopper 20; the input connector 101 of the adapter plate is arranged facing upwards. When the connector 111 of the finished product battery 110 is reversely buckled on the input connector 101 of the adapter plate, at the moment, the limit stopper 20 is abutted to the lower part of the finished product battery 110, when the connector needs to be loosened, the first driving mechanism 30 drives the adapter plate 100 to move downwards relative to the limit stopper 20 through the mounting part 10, the finished product battery 110 cannot move downwards under the abutment of the limit stopper 20, and when the descending distance of the adapter plate 100 is greater than the buckling depth of the finished product battery 110 and the adapter plate 100, the buckling of the finished product battery 110 and the adapter plate 100 is released, so that the operation is simple and convenient; then, the first driving mechanism 30 drives the adapter plate 100 to ascend, so as to engage the next finished battery 110, i.e., detect the next finished battery 110.

More specifically, the finished battery 110 further has a first position-limiting surface 112 surrounding the connector 111; the limit stopper 20 comprises an avoidance port 21 which is provided with an input connector 101 which penetrates through the upper surface and the lower surface of the limit stopper and is opposite to the adapter plate; the avoidance port 21 is used for the connector 111 of the finished battery 110 to pass through to be buckled with the input connector 101 of the adapter plate; the part of the limiting stopper 20 surrounding the avoidance opening 21 is formed into a second limiting surface 22, and the second limiting surface 22 is used for abutting against the first limiting surface 112, so as to balance the tensile force of the adapter plate 100 on the finished battery 110, and reduce the possibility that the connector 111 of the finished battery 110 is pulled and bent.

Further, the finished battery 110 detection device further comprises a first bracket 50; the first member, the probe 80 and the trip device are all mounted on the first bracket 50; in this way, the integral movement of the first member, the probe 80 and the trip device can be facilitated; specifically, the probe 80 is mounted on the first support 50 by a probe mount 90.

Further, the detection apparatus for the finished battery 110 further includes a second bracket 60 and a second driving mechanism 70; the first bracket 50 is mounted on the second bracket 60; the second driving mechanism 70 is used for driving the first bracket 50 to horizontally move relative to the second bracket 60; in this way, after the second bracket 60 is fixed, if the position of the adapter plate 100 or the like needs to be adjusted, at this time, the first bracket 50 may be driven to move by the second driving mechanism 70; it should be noted that the second driving mechanism 70 may be a linear motor, an air cylinder, or the like.

The above embodiments are only preferred embodiments of the present invention, and the protection scope of the present invention is not limited thereby, and any insubstantial changes and substitutions made by those skilled in the art based on the present invention are within the protection scope of the present invention.

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