CN213068955U - New forms of energy lithium cell detects auxiliary assembly - Google Patents

New forms of energy lithium cell detects auxiliary assembly Download PDF

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Publication number
CN213068955U
CN213068955U CN202022049786.XU CN202022049786U CN213068955U CN 213068955 U CN213068955 U CN 213068955U CN 202022049786 U CN202022049786 U CN 202022049786U CN 213068955 U CN213068955 U CN 213068955U
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plate
fixed plate
lithium cell
energy lithium
lithium battery
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CN202022049786.XU
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Chinese (zh)
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徐美松
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Hefei Bimais New Energy Technology Co ltd
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Hefei Bimais New Energy Technology Co ltd
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Abstract

The utility model provides a new forms of energy lithium cell detects auxiliary assembly, relate to lithium battery testing technology field, new forms of energy lithium cell detects auxiliary assembly is including supporting the curb plate, fixed plate one, fixed plate two and connecting plate, the quantity of supporting the curb plate is two, fixed plate one and fixed plate two pass through the axis of rotation and install at supporting the curb plate inboard, the connecting plate setting is between fixed plate one and fixed plate two, the equal butt fusion in connecting plate both sides has the extension board, all be provided with in fixed plate one and the fixed plate two and adjust the chamber, it is provided with logical groove to adjust chamber one side, extension board one end is passed logical groove setting and is adjusting. The utility model discloses a spacing splint and the spacing diaphragm of both sides can carry out the centre gripping to the lithium cell fixed to can conveniently detect the lithium cell, and can adjust the position that both sides supported the curb plate, consequently can fix the lithium cell of different specifications, and can adjust the detection angle of lithium cell behind fixed lithium cell, consequently use in a flexible way, be convenient for detect.

Description

New forms of energy lithium cell detects auxiliary assembly
Technical Field
The utility model relates to a lithium cell detects technical field, especially relates to a new forms of energy lithium cell detects auxiliary assembly.
Background
A lithium battery is a type of battery using a nonaqueous electrolyte solution, using lithium metal or a lithium alloy as a positive/negative electrode material. Because the chemical characteristics of lithium metal are very active, the requirements on the environment for processing, storing and using the lithium metal are very high. With the development of science and technology, the lithium cell has become the mainstream, in order to reduce the pollution to the environment in recent years, new forms of energy lithium cell has become mainstream battery, and the lithium cell need use detection device to detect when producing, consequently need use to detect auxiliary assembly and fix the lithium cell, but present detection auxiliary assembly mostly has certain not enough, and ordinary detection auxiliary assembly mostly all has fixed structure, can only fix the lithium cell of a specification to angle regulation can not.
Therefore, it is necessary to provide a new energy lithium battery detection auxiliary device to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
In order to compensate the above insufficiency, the utility model provides a new forms of energy lithium cell detects auxiliary assembly.
The technical scheme of the utility model is that:
a new forms of energy lithium cell detection auxiliary assembly includes: the number of the supporting side plates is two; the first fixing plate and the second fixing plate are mounted on the inner side of the supporting side plate through rotating shafts; the connecting plate is arranged between the first fixing plate and the second fixing plate, extending plates are welded to the two sides of the connecting plate, adjusting cavities are formed in the first fixing plate and the second fixing plate, through grooves are formed in one sides of the adjusting cavities, one ends of the extending plates penetrate through the through grooves and are arranged in the adjusting cavities, and limiting clamping plates are welded to the bottoms of the first fixing plate and the second fixing plate.
Preferably, a blocking piece is welded at one end of the extension plate and is clamped in the adjusting cavity.
Preferably, the top of the through groove is provided with a screw hole, and a fixing screw rod is meshed in the screw hole through threads.
Preferably, the welding of axis of rotation one end has the dwang, evenly be provided with four cotter ways on the dwang, be provided with the storage tank in the support curb plate.
Preferably, the inner wall of the accommodating groove is welded with a limiting rod through a spring, and one end of the limiting rod is clamped in the pin groove.
Preferably, the top of the supporting side plate is provided with a pull head, a connecting rod is welded between the pull head and the limiting rod, the top of the pin groove is provided with a through hole, and the connecting rod is clamped in the through hole.
Preferably, the first fixing plate and the second fixing plate are welded to a limiting transverse plate through a second spring.
Compared with the prior art, the utility model provides a new forms of energy lithium cell detection auxiliary assembly has following beneficial effect:
this practicality is when using, can carry out the centre gripping to the lithium cell through the spacing splint and the spacing diaphragm of both sides fixed to can conveniently detect the lithium cell, and can adjust the position that both sides supported the curb plate, consequently can fix the lithium cell of different specifications, and can adjust the detection angle of lithium cell behind fixed lithium cell, consequently use in a flexible way, be convenient for detect.
Drawings
Fig. 1 is a front view of the new energy lithium battery detection auxiliary device provided by the present invention;
fig. 2 is a cross-sectional view of a fixing plate of the new energy lithium battery detection auxiliary device provided by the present invention;
fig. 3 is a cross-sectional view of a supporting side plate of the new energy lithium battery detection auxiliary device provided by the present invention;
fig. 4 is a partial structural view of fig. 3 of the new energy lithium battery detection auxiliary device provided by the present invention;
fig. 5 is a schematic diagram of a circuit principle related to an adaptive algorithm of AD sampling accuracy of a single battery-powered embedded system.
Reference numbers in the figures: 1. the supporting side plate comprises a supporting side plate body 2, a first fixing plate, a second fixing plate, a connecting plate, a 5 extending plate, a 6 blocking piece, a 7 fixing screw rod, 8 limiting clamping plates, 9 rotating shafts, 10 rotating rods, 11 pin grooves, 12 springs, a first spring, 13 limiting rods, 14 pull heads, 15 connecting rods, 16 springs, a second spring, 17 limiting transverse plate.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and embodiments.
Please refer to fig. 1, fig. 2, fig. 3, fig. 4 and fig. 5 in combination, wherein, fig. 1 is the utility model provides a pair of new forms of energy lithium battery detection auxiliary assembly's front view, fig. 2 is the utility model provides a pair of new forms of energy lithium battery detection auxiliary assembly's a fixed plate profile view, fig. 3 is the utility model provides a pair of new forms of energy lithium battery detection auxiliary assembly's support curb plate profile view, fig. 4 is the utility model provides a pair of new forms of energy lithium battery detection auxiliary assembly's local structure view in fig. 3, fig. 5 is the relevant circuit principle schematic diagram of the adaptive algorithm of single section battery power supply embedded system AD sampling precision.
A new forms of energy lithium cell detection auxiliary assembly includes: the support side plate 1, the first fixing plate 2, the second fixing plate 3 and the connecting plate 4.
Refer to and show in figure 1, the quantity that supports curb plate 1 is two, install at supporting curb plate 1 inboardly through axis of rotation 9 fixed plate one 2 and fixed plate two 3, connecting plate 4 sets up between fixed plate one 2 and fixed plate two 3, fixed plate one 2 and fixed plate two 3 bottom welding have spacing splint 8, fixed plate one 2 and fixed plate two 3 bottoms are all through two 16 butt welds spacing diaphragm 17 of spring, can place spacing splint 8 and spacing diaphragm 17 between with the lithium cell, thereby can fix the lithium cell, and then can make things convenient for the lithium cell to detect.
Referring to fig. 1 and 2, connecting plate 4 sets up between fixed plate 2 and fixed plate two 3, 4 both sides of connecting plate all weld have extension board 5, all be provided with in fixed plate 2 and the fixed plate two 3 and adjust the chamber, it is provided with logical groove to adjust chamber one side, 5 one end of extension board is passed and is led to the groove setting and adjusting the intracavity, 5 one end weldings of extension board have separation blade 6, 6 blocks of separation blade are established at adjusting the intracavity, it is provided with the screw to lead to the groove top, there is set screw 7 through the thread engagement in the screw, can be according to the interval between the lithium cell volume regulation support curb plate 1 through extension board 5.
The specific using process is as follows: firstly, the fixing screw 7 is screwed, so that the supporting side plates 1 can be pulled towards two sides, the extension plates 5 can move in the adjusting cavity, the exposed length of the extension plates 5 can be adjusted, the indirection between the limiting clamp plates 8 can be controlled according to the width of the lithium battery, the fixing screw 7 is screwed after the adjustment is finished, then the lithium battery is placed in the limiting clamp plates 8, the top of the lithium battery can push the limiting transverse plate 17 to extrude the second spring 16, and the lithium battery can be fixedly clamped in all directions.
Referring to fig. 3 and 4, a rotating rod 10 is welded at one end of a rotating shaft 9, four pin grooves 11 are evenly formed in the rotating rod 10, a containing groove is formed in a supporting side plate 1, a limiting rod 13 is welded on the inner wall of the containing groove through a first spring 12, one end of the limiting rod 13 is clamped in the pin groove 11, a pull head 14 is arranged at the top of the supporting side plate 1, a connecting rod 15 is welded between the pull head 14 and the limiting rod 13, a through hole is formed in the top of the pin groove 11, the connecting rod 15 is clamped in the through hole, a limiting transverse plate 17 is welded at the bottoms of a first fixing plate 2 and a second fixing plate 3 through a second spring 16, and the lithium battery and the using angles of the first fixing plate 2 and the second fixing plate 3 can be.
The specific using process is as follows: firstly, the pull head 14 at the top of the supporting side plate 1 is pulled upwards, so the pull head 14 can drive the limiting rod 13 to extrude the first spring 12 and move upwards through the connecting rod 15, when the limiting rod 13 completely moves into the accommodating groove from the pin groove 11, no fixed connection relation exists between the rotating rod 10 and the supporting side plate 1, so that a lithium battery can be adjusted through rotating the rotating shaft 9, the using angles of the first fixing plate 2 and the second fixing plate 3 are adjusted, after the proper angle is adjusted, the pull head 14 is loosened and the first fixing plate 2 and the second fixing plate 3 are slightly rotated, therefore, when the limiting rod 13 is in contact with the nearest pin groove 11, the limiting rod 13 can be bounced into the nearest pin groove 11 under the elastic force action of the first spring 12, and the angle adjustment.
In a specific implementation process, the new energy lithium battery detection auxiliary device can also achieve the effect that the AD sampling precision of a single battery power supply embedded system does not change along with the change of battery voltage and the low power consumption requirement of the single battery power supply system is met, specifically as shown in fig. 5, the resource advantage of an embedded microprocessor STM32F411CEU6 is fully utilized on hardware, a peripheral circuit is reduced, no additional power consumption exists, and the most basic and important requirement of a single battery power supply system is met, namely no additional energy consumption exists.
The utility model discloses a theory of operation is: this practicality is when using, at first twist clamping screw 7, consequently can be with supporting curb plate 1 to both sides pulling, extension board 5 can be in adjusting the intracavity removal to can adjust the length that exposes of extension board 5, and then can be according to the width control of lithium cell between the spacing splint 8, adjust finish the back screw up clamping screw 7 can, then place the lithium cell in spacing splint 8, the lithium cell top can promote spacing diaphragm 17 extrusion spring two 16, thereby can guarantee all directions fixed clamp lithium cell.
Can adjust the detection angle of lithium cell behind the fixed lithium cell, at first the pull head 14 upwards pulling that will support 1 top of curb plate, consequently pull head 14 can drive gag lever post 13 extrusion spring 12 and upward movement through connecting rod 15, do not have the fixed connection relation between dwang 10 and the support curb plate 1 after gag lever post 13 moves in the storage tank from cotter 11 completely, consequently, can rotate through axis of rotation 9 and adjust the lithium cell, the use angle of fixed plate 2 and fixed plate two 3, loosen pull head 14 and rotate fixed plate 2 and fixed plate two 3 slightly after adjusting suitable angle, consequently, when gag lever post 13 contacts with nearest cotter 11, can spring into nearest cotter 11 under the spring action of spring 12 in, thereby can accomplish the angle modulation of lithium cell, later detect the lithium cell can.
The above is only the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structures or equivalent processes of the present invention can be used in other related technical fields, directly or indirectly, or in the same way as the present invention.

Claims (7)

1. The utility model provides a new forms of energy lithium cell detects auxiliary assembly which characterized in that includes:
the number of the supporting side plates (1) is two;
the fixing plate I (2) and the fixing plate II (3) are mounted on the inner side of the supporting side plate (1) through rotating shafts (9);
connecting plate (4), connecting plate (4) set up fixed plate one (2) with between two (3) of fixed plate, connecting plate (4) both sides all the butt fusion have extension board (5), fixed plate one (2) with all be provided with the regulation chamber in two (3) of fixed plate, regulation chamber one side is provided with logical groove, extension board (5) one end is passed logical groove setting is in adjust the intracavity, fixed plate one (2) with fixed plate two (3) bottom butt fusion have spacing splint (8).
2. The auxiliary equipment for detecting the new energy lithium battery as claimed in claim 1, wherein a blocking piece (6) is welded to one end of the extension plate (5), and the blocking piece (6) is clamped in the adjusting cavity.
3. The auxiliary equipment for detecting the new energy lithium battery as claimed in claim 1, wherein a screw hole is arranged at the top of the through groove, and a fixing screw rod (7) is engaged in the screw hole through threads.
4. The auxiliary equipment for detecting the new energy lithium battery as claimed in claim 1, wherein a rotating rod (10) is welded at one end of the rotating shaft (9), four pin grooves (11) are uniformly formed in the rotating rod (10), and a containing groove is formed in the supporting side plate (1).
5. The auxiliary equipment for detecting the new energy lithium battery as claimed in claim 4, wherein a limiting rod (13) is welded to the inner wall of the containing groove through a first spring (12), and one end of the limiting rod (13) is clamped in the pin groove (11).
6. The auxiliary equipment for detecting the new energy lithium battery as claimed in claim 5, wherein a pull head (14) is arranged at the top of the supporting side plate (1), a connecting rod (15) is welded between the pull head (14) and the limiting rod (13), a through hole is arranged at the top of the pin groove (11), and the connecting rod (15) is clamped in the through hole.
7. The auxiliary equipment for detecting the new energy lithium battery as claimed in claim 1, wherein the first fixing plate (2) and the second fixing plate (3) are welded at the bottoms through a second spring (16) to form a limiting transverse plate (17).
CN202022049786.XU 2020-09-17 2020-09-17 New forms of energy lithium cell detects auxiliary assembly Active CN213068955U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022049786.XU CN213068955U (en) 2020-09-17 2020-09-17 New forms of energy lithium cell detects auxiliary assembly

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022049786.XU CN213068955U (en) 2020-09-17 2020-09-17 New forms of energy lithium cell detects auxiliary assembly

Publications (1)

Publication Number Publication Date
CN213068955U true CN213068955U (en) 2021-04-27

Family

ID=75560312

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022049786.XU Active CN213068955U (en) 2020-09-17 2020-09-17 New forms of energy lithium cell detects auxiliary assembly

Country Status (1)

Country Link
CN (1) CN213068955U (en)

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