CN213826608U - Alkaline battery manganese ring forming equipment - Google Patents

Alkaline battery manganese ring forming equipment Download PDF

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Publication number
CN213826608U
CN213826608U CN202022461975.8U CN202022461975U CN213826608U CN 213826608 U CN213826608 U CN 213826608U CN 202022461975 U CN202022461975 U CN 202022461975U CN 213826608 U CN213826608 U CN 213826608U
Authority
CN
China
Prior art keywords
die
plates
forming
fixing plate
lower mould
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN202022461975.8U
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Chinese (zh)
Inventor
路立涛
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tianjin Juhua Daneng Battery Co ltd
Original Assignee
Tianjin Juhua Daneng Battery Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tianjin Juhua Daneng Battery Co ltd filed Critical Tianjin Juhua Daneng Battery Co ltd
Priority to CN202022461975.8U priority Critical patent/CN213826608U/en
Application granted granted Critical
Publication of CN213826608U publication Critical patent/CN213826608U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides an alkaline battery manganese ring former, includes manganese ring former base, table surface, lower mould locating plate, lower mould, goes up the mould, goes up fixed die plate, punching press telescopic link, auxiliary stay cover, table surface is connected on manganese ring former base upper portion, table surface connects lower mould locating plate on upper portion, a plurality of lower moulds are connected on lower mould locating plate upper portion, lower mould evenly distributed is on lower mould locating plate upper portion, and the lower mould lower part has positioning screw, the lower mould locating plate is connected in the positioning screw outside, and the inside grooving that has of lower mould, the grooving inboard has the shaping terrace die, and manganese ring former base rear side has the equipment backplate, the drive case is connected on equipment backplate upper portion, drive case sub-unit connection punching press telescopic link, punching press telescopic link sub-unit connection fixed die plate, go up a plurality of moulds of upper fixing plate sub-unit connection.

Description

Alkaline battery manganese ring forming equipment
Technical Field
The utility model relates to a battery field especially relates to an alkaline cell manganese ring former.
Background
In the use of alkaline cell manganese ring former, most alkaline cell manganese ring formers can only make a single manganese ring, and the staff need to move the manganese plate repeatedly, so that the workload of the staff is increased, the working efficiency is reduced, and inconvenience is brought to the user.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the aforesaid to prior art exists is not enough, provides an alkaline cell manganese ring former that work efficiency is high.
The utility model aims at realizing through the following technical scheme:
an alkaline battery manganese ring forming device comprises a manganese ring former base, a workbench surface, lower die positioning plates, lower dies, upper dies, an upper die fixing plate, a stamping telescopic rod and an auxiliary supporting sleeve, wherein the upper part of the manganese ring former base is connected with the workbench surface, the upper part of the workbench surface is connected with the lower die positioning plates, the upper part of the lower die positioning plates is connected with a plurality of lower dies, the lower dies are uniformly distributed on the upper part of the lower die positioning plates, the lower parts of the lower dies are provided with positioning screws, the outer sides of the positioning screws are connected with the lower die positioning plates, cutting grooves are formed in the lower dies, the inner sides of the cutting grooves are provided with forming male dies, the rear side of the manganese ring former base is provided with a device back plate, the upper part of the device back plate is connected with a driving box, the lower parts of the driving box are connected with the stamping telescopic rod, the lower parts of the stamping telescopic rod are connected with the upper die fixing plate, the lower parts of the upper die fixing plate are uniformly distributed on the lower part of the upper die fixing plate, the upper die is provided with a fixing screw rod on the upper portion, the outer side of the fixing screw rod is connected with an upper die fixing plate, the lower portion of the upper die is provided with a cutter, the inner side of the cutter is provided with a forming female die, and the cutter is matched with the cutting groove.
The cutting groove is connected to the outer side of the cutter, the cutter slides in the cutting groove, the forming female die is matched with the forming male die, the forming female die is connected to the outer side of the forming male die, the forming male die slides in the forming female die, the auxiliary supporting sleeve is connected to the outer side of the stamping telescopic rod, and two auxiliary supporting plates are arranged on the outer side of the auxiliary supporting sleeve.
The auxiliary support plates are symmetrically arranged, the outer sides of the auxiliary support plates are connected with the fixed connecting plate, the auxiliary support plates slide in the fixed connecting plate, the inner sides of the fixed connecting plate are connected with the springs, the springs slide in the fixed connecting plate, the lower portions of the springs are connected with the auxiliary support plates, and the bottom of the fixed connecting plate is connected with the upper die fixing plate.
Has the advantages that:
at the auxiliary stay cover, the fixed connection board, supplementary extension board, under the mutually supporting of spring, have played connection and fixed action to an upper fixing plate and punching press telescopic link, the area of contact of an upper fixing plate and punching press telescopic link has been increased, it is more firm to make an upper fixing plate be connected with the punching press telescopic link, make overall structure more stable, make punching press telescopic link to the decurrent pressure evenly distributed of an upper fixing plate on an upper fixing plate, thereby the pressure that the last mould that makes the different positions in an upper fixing plate lower part received is the same, the qualification rate of product has been improved, simultaneously at the lower mould, under the mutually supporting of last mould, can a plurality of manganese rings of one-time cutting shaping, the work efficiency is improved, the work load of staff has been reduced.
Drawings
Fig. 1 is a schematic structural view of a manganese ring forming apparatus for an alkaline battery of the present invention.
Fig. 2 is a partial cross-sectional view of the alkaline battery manganese ring forming device of the present invention.
Fig. 3 is a schematic view of a lower die structure of the alkaline battery manganese ring forming equipment of the present invention.
Fig. 4 is a schematic view of the upper die structure of the alkaline battery manganese ring forming equipment of the present invention.
Detailed Description
The invention is explained in more detail below with reference to the figures and examples:
the alkaline battery manganese ring forming equipment comprises a manganese ring former base 01, a working table board 02, a lower die positioning plate 03, a lower die 04, an upper die 05, an upper die fixing plate 06, a stamping telescopic rod 07 and an auxiliary support sleeve 08, wherein the upper part of the manganese ring former base 01 is connected with the working table board 02, the upper part of the working table board 02 is connected with the lower die positioning plate 03, the upper part of the lower die positioning plate 03 is connected with a plurality of lower dies 04, the lower dies 04 are uniformly distributed on the upper part of the lower die positioning plate 03, the lower part of the lower die 04 is provided with a positioning screw 12, the outer side of the positioning screw 12 is connected with the lower die positioning plate 03, a cutting groove 14 is arranged inside the lower die 04, the inner side of the cutting groove 14 is provided with a forming convex die 13, the rear side of the manganese ring former base 01 is provided with an equipment back plate 19, the upper part of the equipment back plate 19 is connected with a driving box 09, the lower part of the driving box 09 is connected with the stamping telescopic rod 07, the lower part of the stamping telescopic rod 07 is connected with the upper die fixing plate 06, the mould fixing plate 06 lower part is connected with a plurality of last moulds 05, go up mould 05 evenly distributed in last mould fixing plate 06 lower part, go up mould 05 upper portion and have set screw 17, the last mould fixing plate 06 is connected in the set screw 17 outside, goes up mould 05 lower part and has cutter 15, cutter 15 inboard has shaping die 16, and cutter 15 suits with grooving 14.
The outer side of the cutter 15 is connected with a cutting groove 14, the cutter 15 slides in the cutting groove 14, a forming female die 16 is matched with a forming male die 13, the outer side of the forming male die 13 is connected with the forming female die 16, the forming male die 13 slides in the forming female die 16, the outer side of the stamping telescopic rod 07 is connected with an auxiliary support sleeve 08, and two auxiliary support plates 11 are arranged on the outer side of the auxiliary support sleeve 08.
The auxiliary support plates 11 are symmetrically arranged, the outer sides of the auxiliary support plates 11 are connected with the fixed connecting plate 10, the auxiliary support plates 11 slide in the fixed connecting plate 10, the inner sides of the fixed connecting plate 10 are connected with the springs 18, the springs 18 slide in the fixed connecting plate 10, the lower portions of the springs 18 are connected with the auxiliary support plates 11, and the bottom of the fixed connecting plate 10 is connected with the upper die fixing plate 06.
At auxiliary stay cover 08, fixed connection board 10, supplementary extension board 11, under the mutually supporting of spring 18, have played connection and fixed action to upper fixing plate 06 and punching press telescopic link 07, the area of contact of upper fixing plate 06 with punching press telescopic link 07 has been increased, it is more firm to make upper fixing plate 06 be connected with punching press telescopic link 07, make overall structure more stable, make punching press telescopic link 07 to upper fixing plate 06 decurrent pressure evenly distributed on upper fixing plate 06, thereby the pressure that the last mould 05 that makes the different positions in upper fixing plate 06 lower part received is the same, the qualification rate of product has been improved, simultaneously at lower mould 04, under the mutually supporting of last mould 05, can a plurality of manganese rings of one-time cutting shaping, the work efficiency is improved, the work load of staff has been reduced.

Claims (3)

1. The alkaline battery manganese ring forming equipment is characterized by comprising a manganese ring former base, a workbench surface, lower die positioning plates, lower dies, upper dies, an upper die fixing plate, a stamping telescopic rod and an auxiliary support sleeve, wherein the upper part of the manganese ring former base is connected with the workbench surface, the upper part of the workbench surface is connected with the lower die positioning plates, the upper parts of the lower die positioning plates are connected with a plurality of lower dies, the lower dies are uniformly distributed on the upper parts of the lower die positioning plates, the lower parts of the lower dies are provided with positioning screws, the outer sides of the positioning screws are connected with the lower die positioning plates, cutting grooves are formed in the lower dies, forming male dies are arranged on the inner sides of the cutting grooves, an equipment back plate is arranged on the rear side of the manganese ring former base, the upper parts of the equipment back plate are connected with a driving box, the lower parts of the driving box are connected with the stamping telescopic rod, the lower parts of the stamping telescopic rod are connected with the upper die fixing plate, the lower parts of the upper die fixing plate are connected with the plurality of the upper dies, the upper die is uniformly distributed on the lower portion of the upper die fixing plate, the upper portion of the upper die is provided with a fixing screw rod, the outer side of the fixing screw rod is connected with the upper die fixing plate, the lower portion of the upper die is provided with a cutter, the inner side of the cutter is provided with a forming female die, and the cutter is matched with the cutting groove.
2. The alkaline battery manganese ring forming device according to claim 1, wherein the outside of the cutter is connected with a cutting groove, the cutter slides in the cutting groove, the forming female die is adapted to the forming male die, the outside of the forming male die is connected with the forming female die, the forming male die slides in the forming female die, the outside of the stamping telescopic rod is connected with an auxiliary supporting sleeve, and the outside of the auxiliary supporting sleeve is provided with two auxiliary supporting plates.
3. The apparatus for forming manganese rings of alkaline batteries as claimed in claim 2, wherein said auxiliary supporting plates are symmetrically disposed, the outer sides of the auxiliary supporting plates are connected with the fixed connection plates, the auxiliary supporting plates slide in the fixed connection plates, the inner sides of the fixed connection plates are connected with springs, the springs slide in the fixed connection plates, the lower portions of the springs are connected with the auxiliary supporting plates, and the bottoms of the fixed connection plates are connected with the upper mold fixing plate.
CN202022461975.8U 2020-10-30 2020-10-30 Alkaline battery manganese ring forming equipment Expired - Fee Related CN213826608U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022461975.8U CN213826608U (en) 2020-10-30 2020-10-30 Alkaline battery manganese ring forming equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022461975.8U CN213826608U (en) 2020-10-30 2020-10-30 Alkaline battery manganese ring forming equipment

Publications (1)

Publication Number Publication Date
CN213826608U true CN213826608U (en) 2021-07-30

Family

ID=77012102

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022461975.8U Expired - Fee Related CN213826608U (en) 2020-10-30 2020-10-30 Alkaline battery manganese ring forming equipment

Country Status (1)

Country Link
CN (1) CN213826608U (en)

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GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20210730