CN203091561U - Semi-automatic machine for riveting of combination lock - Google Patents

Semi-automatic machine for riveting of combination lock Download PDF

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Publication number
CN203091561U
CN203091561U CN 201320101347 CN201320101347U CN203091561U CN 203091561 U CN203091561 U CN 203091561U CN 201320101347 CN201320101347 CN 201320101347 CN 201320101347 U CN201320101347 U CN 201320101347U CN 203091561 U CN203091561 U CN 203091561U
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CN
China
Prior art keywords
riveted
rotating disk
combination lock
riveting
pressurized cylinder
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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 - Lifetime
Application number
CN 201320101347
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Chinese (zh)
Inventor
区新本
袁联添
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GUANGDONG JANES LOCK CO Ltd
Original Assignee
GUANGDONG JANES LOCK CO Ltd
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Priority to CN 201320101347 priority Critical patent/CN203091561U/en
Application granted granted Critical
Publication of CN203091561U publication Critical patent/CN203091561U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model relates to a semi-automatic machine for riveting of a combination lock. The semi-automatic machine for riveting of the combination lock comprises a machine platform, a turn plate, a turn plate driving device and a supercharging air cylinder, and the turn plate, the turn plate driving device and the supercharging air cylinder are all mounted on the machine platform. The turn plate is rotatably connected with the machine platform and is in driving connection with the turn plate driving device, and riveting lower dies distributed in a ring array are arranged on the upper surface of the turn plate. The supercharging air cylinder is located above the turn plate, riveting upper dies are arranged on the supercharging air cylinder, and the riveting upper dies are in riveting connection with the riveting lower dies on the riveting working position of the turn plate under the action of the supercharging air cylinder. Therefore, the semi-automatic riveting of assembling of a rear cover of the combination lock is achieved, production efficiency is greatly improved, and labor intensity and production cost are reduced at the same time. The combination lock does not need to be placed on the lower dies of the riveting working position manually or the riveted combination lock does not need to be taken out of the riveting lower dies manually, production safety is extremely high, and personal safety is guaranteed.

Description

A kind of combination lock riveted semiautomatic loading mechanism
Technical field
The utility model belongs to lockset production equipment technical field, relates in particular to a kind of combination lock riveted semiautomatic loading mechanism.
Background technology
At present, existing combination lock is when producing on the market, all be to put on the riveted counterdie of riveted station by operating the combination lock that will install bonnet additional manually, combination lock and bonnet are riveted tightly, riveted, after finishing, takes out from the riveted counterdie by operating the combination lock that riveted is good manually again riveted, this mechanical type operation so repeatedly, labour intensity is very big, the efficient that comes into force is extremely low, and place and all hand must be stretched on the riveted station when taking out combination lock, security incidents such as hand is weighed wounded take place easily, and especially in long-time production, production security is extremely low.
The utility model content
For solving the above-mentioned problems in the prior art, the utility model provides a kind of production efficiency height, labour intensity is low, production cost is few, and the high combination lock riveted semiautomatic loading mechanism of production safety.
For solving the problems of the technologies described above, the utility model adopts following technical scheme:
A kind of combination lock riveted semiautomatic loading mechanism includes board, rotating disk, rotating blade drive and pressurized cylinder, and described rotating disk, rotating blade drive and pressurized cylinder are installed on the described board; Wherein, described rotating disk and described board are rotationally connected, and are connected with described rotating blade drive driving, and the upper surface of described rotating disk is provided with the riveted counterdie that annular array is arranged; Described pressurized cylinder is positioned at the top of described rotating disk, which is provided with the riveted patrix, and described riveted patrix is being connected with riveted counterdie riveted on the riveted station of described rotating disk under the effect of described pressurized cylinder.
Further, described rotating blade drive mainly is made up of variable speed electric motors, particularly and transmission component, and described variable speed electric motors, particularly is positioned at the below of described rotating disk, and is connected with described rotating disk driving by described transmission component.
Further, described rotating blade drive also includes and is used to control the dispenser that described variable speed electric motors, particularly moves/stops, and described dispenser is located on the described transmission component.
Further, described transmission component includes driven synchronizing wheel and synchronizing shaft, described synchronizing shaft and described rotating disk are in transmission connection, the one end is provided with described driven synchronizing wheel, described dispenser is located on the described synchronizing shaft, the rotation section of described variable speed electric motors, particularly is provided with the active synchronization wheel, and described active synchronization wheel is in transmission connection by synchronous band and described driven synchronizing wheel.
Further, this riveted semiautomatic loading mechanism also includes the pressurized cylinder support, described pressurized cylinder support is the U font, its U-shaped mouth is towards described rotating disk, and the upper end is equipped with described pressurized cylinder, and the cylinder axis of described pressurized cylinder stretches in the described U-shaped mouth, and end is provided with described riveted patrix, the U-shaped mouth lower end of described pressurized cylinder support is provided with the rotating disk supporting plate, and the riveted station of described rotating disk places in the described U-shaped mouth, and between described riveted patrix and rotating disk supporting plate.
Further, the lower end of the cylinder axis of described pressurized cylinder is provided with described riveted patrix, and the upper end is provided with and is used to regulate described cylinder axis to the location of down stroke adjusting nut, and described location adjusting nut interconnects by helicitic texture between described cylinder axis.
The beneficial effects of the utility model are:
The utility model passes through technique scheme, can realize that by the utility model combination lock installs the semi-automatic riveted of bonnet additional, improved production efficiency widely, labour intensity and production cost have been reduced simultaneously, and do not need staff combination lock to be put on the riveted counterdie of riveted station or take out the good combination lock of riveted from the riveted counterdie, production safety is high, and personal safety is secure.
In addition, cylinder axis is controlled stroke range effectively by the location adjusting nut that the upper end is provided with, and stroke range is carried out trickle adjustment according to actual conditions, improve the accuracy of cylinder axis stroke, avoid the cylinder axis stroke excessive or not in place and cause combination lock to damage or riveted not tight, product quality is secure.
Description of drawings
Fig. 1 is the side-looking structural representation of combination lock riveted semiautomatic loading mechanism embodiment described in the utility model;
Fig. 2 is the structural representation of facing of combination lock riveted semiautomatic loading mechanism embodiment described in the utility model;
Fig. 3 is the plan structure schematic diagram of combination lock riveted semiautomatic loading mechanism embodiment described in the utility model.
The specific embodiment
In order to make the purpose of this utility model, technical scheme and advantage clearer,, the utility model is further elaborated below in conjunction with drawings and Examples.Should be appreciated that specific embodiment described herein only in order to explanation the utility model, and be not used in qualification the utility model.
As shown in Fig. 1 to Fig. 3:
The described a kind of combination lock riveted semiautomatic loading mechanism of the utility model embodiment include board 1, rotating disk 2, rotating blade drive and pressurized cylinder 4, and rotating disk 2, rotating blade drive and pressurized cylinder 4 is installed on the board 1.Wherein, described rotating disk 2 is rotationally connected with board 1, and drive with rotating blade drive and to be connected, described pressurized cylinder 4 is positioned at the top of rotating disk 2, the lower end of its cylinder axis 41 is provided with riveted patrix 42, and described riveted patrix 42 is being connected with riveted counterdie 21 riveteds on the riveted station of rotating disk 2 under the effect of pressurized cylinder 4; Concrete structure can for: described rotating blade drive mainly is made up of variable speed electric motors, particularly 31 and transmission component, described variable speed electric motors, particularly 31 is positioned at the below of rotating disk 2, described transmission component includes driven synchronizing wheel 32 and synchronizing shaft 33, described synchronizing shaft 33 is in transmission connection with rotating disk 2, the one end is provided with driven synchronizing wheel 32, the rotation section of described variable speed electric motors, particularly 31 is provided with active synchronization wheel 311, described active synchronization wheel 311 is by being with 312 to be in transmission connection with driven synchronizing wheel 32 synchronously, and promptly variable speed electric motors, particularly 31 is connected with rotating disk 2 drivings by transmission component.The upper surface of described rotating disk 2 is provided with the riveted counterdie 21 that annular array is arranged; This riveted semiautomatic loading mechanism also includes pressurized cylinder support 5, described pressurized cylinder support 5 is the U font, its U-shaped mouth 51 is towards rotating disk 2, the upper end is equipped with pressurized cylinder 4, the cylinder axis 41 of described pressurized cylinder 4 stretches in the U-shaped mouth 51, and end is provided with riveted patrix 42, and U-shaped mouth 51 lower ends of described pressurized cylinder support 5 are provided with rotating disk supporting plate 52, the riveted station of described rotating disk 2 places in the U-shaped mouth 51, and between riveted patrix 42 and rotating disk supporting plate 52.
In addition, described rotating blade drive also includes dispenser 34, and described dispenser 34 is located on the synchronizing shaft 33, is mainly used in control variable speed electric motors, particularly 31 and moves/stop.For example: it is 10 equal portions (being station) that rotating disk 2 is divided into, and every equal portions are installed a riveted counterdie 21, is cooperated jointly by variable speed electric motors, particularly 31 and dispenser 34, and control rotating disk 2 clockwise directions rotate, stop and governing speed, to the control of riveted counterdie 21 positions on it.
When combination lock riveted semiautomatic loading mechanism described in the utility model is worked, the combination lock that at first will install bonnet additional is placed on the riveted counterdie 21, variable speed electric motors, particularly 31 starts then, drive rotating disk 2 rotations, the riveted counterdie 31 that is placed with aforementioned combination lock is rotated on the riveted station, dispenser 34 is promptly controlled variable speed electric motors, particularly 31 and is stopped the rotation, then send the riveted instruction to pressurized cylinder 4, pressurized cylinder 4 starts and by cylinder axis 41 the riveted patrix 42 on it is moved down, be connected with riveted counterdie 31 riveteds on the riveted station, each action of riveted patrix 42 and riveted counterdie 21 is simultaneously started working, and combination lock and bonnet are riveted tightly; Then pressurized cylinder 4 makes riveted patrix 42 rise, reset by cylinder axis 41 again, variable speed electric motors, particularly 31 starts once more, drive rotating disk 2 and continue rotation, take the good combination lock of riveted to next station (material returned station) and carry out the material returned, the riveted counterdie 21 that simultaneously last station is placed with the combination lock that installs bonnet additional goes on the riveted station, repeats aforementioned operation; So circulation is closed riveted production until finishing repeatedly.
Like this, can realize that by the utility model combination lock installs the semi-automatic riveted of bonnet additional, improved production efficiency widely, production capacity is probably 6000/day/people, reduced labour intensity and production cost simultaneously, and do not needed staff combination lock to be put on the riveted counterdie 21 of riveted station or take out the good combination lock of riveteds, avoided hand fully by the generation of production accidents such as weighing wounded from riveted counterdie 21, production safety is high, and personal safety is secure.
As the utility model one preferred embodiment, the upper end of the cylinder axis 41 of described pressurized cylinder 4 is provided with and is used to regulate cylinder axis 41 to the location of down stroke adjusting nut 43, and described location adjusting nut 43 interconnects by helicitic texture between cylinder axis 41.In the riveted process, when the cylinder body upper end of location adjusting nut 43 and pressurized cylinder 4 touched the limit, cylinder axis 41 stopped to move down, and promptly finishes the riveted of combination lock.Like this, by upper end adjusting nut 43 stroke range of control cylinder axle 41 effectively in location is set at cylinder axis 41, and can carry out trickle adjustment to stroke range according to actual conditions, improve the accuracy of cylinder axis 41 strokes, avoid cylinder axis 41 strokes excessive or not in place and cause combination lock to damage or riveted not tight, product quality is secure.
The above is a preferred implementation of the present utility model; should be pointed out that for those skilled in the art, under the prerequisite that does not break away from the utility model principle; can also make some improvements and modifications, these improvements and modifications also are considered as protection domain of the present utility model.

Claims (6)

1. combination lock riveted semiautomatic loading mechanism, it is characterized in that: include board (1), rotating disk (2), rotating blade drive and pressurized cylinder (4), and described rotating disk (2), rotating blade drive and pressurized cylinder (4) are installed on the described board (1); Wherein, described rotating disk (2) is rotationally connected with described board (1), and is connected with described rotating blade drive driving, and the upper surface of described rotating disk (2) is provided with the riveted counterdie (21) that annular array is arranged; Described pressurized cylinder (4) is positioned at the top of described rotating disk (2), which is provided with riveted patrix (42), described riveted patrix (42) is being connected with riveted counterdie (21) riveted on the riveted station of described rotating disk (2) under the effect of described pressurized cylinder (4).
2. combination lock riveted semiautomatic loading mechanism according to claim 1, it is characterized in that: described rotating blade drive mainly is made up of variable speed electric motors, particularly (31) and transmission component, described variable speed electric motors, particularly (31) is positioned at the below of described rotating disk (2), and is connected with described rotating disk (2) driving by described transmission component.
3. combination lock riveted semiautomatic loading mechanism according to claim 2, it is characterized in that: described rotating blade drive also includes and is used to control the dispenser (34) that described variable speed electric motors, particularly (31) moves/stops, and described dispenser (34) is located on the described transmission component.
4. combination lock riveted semiautomatic loading mechanism according to claim 3, it is characterized in that: described transmission component includes driven synchronizing wheel (32) and synchronizing shaft (33), described synchronizing shaft (33) is in transmission connection with described rotating disk (2), the one end is provided with described driven synchronizing wheel (32), described dispenser (34) is located on the described synchronizing shaft (33), the rotation section of described variable speed electric motors, particularly (31) is provided with active synchronization wheel (311), and described active synchronization wheel (311) is by band (312) and described driven synchronizing wheel (32) are in transmission connection synchronously.
5. according to any one described combination lock riveted semiautomatic loading mechanism in the claim 1 to 4, it is characterized in that: this riveted semiautomatic loading mechanism also includes pressurized cylinder support (5), described pressurized cylinder support (5) is the U font, its U-shaped mouth (51) is towards described rotating disk (2), the upper end is equipped with described pressurized cylinder (4), the cylinder axis (41) of described pressurized cylinder (4) stretches in the described U-shaped mouth (51), and end is provided with described riveted patrix (42), U-shaped mouth (51) lower end of described pressurized cylinder support (5) is provided with rotating disk supporting plate (52), the riveted station of described rotating disk (2) places in the described U-shaped mouth (51), and is positioned between described riveted patrix (42) and the rotating disk supporting plate (52).
6. according to any one described combination lock riveted semiautomatic loading mechanism in the claim 1 to 4, it is characterized in that: the lower end of the cylinder axis (41) of described pressurized cylinder (4) is provided with described riveted patrix (42), the upper end is provided with and is used to regulate described cylinder axis (41) to the location of down stroke adjusting nut (43), and described location adjusting nut (43) interconnects by helicitic texture between described cylinder axis (41).
CN 201320101347 2013-03-06 2013-03-06 Semi-automatic machine for riveting of combination lock Expired - Lifetime CN203091561U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201320101347 CN203091561U (en) 2013-03-06 2013-03-06 Semi-automatic machine for riveting of combination lock

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201320101347 CN203091561U (en) 2013-03-06 2013-03-06 Semi-automatic machine for riveting of combination lock

Publications (1)

Publication Number Publication Date
CN203091561U true CN203091561U (en) 2013-07-31

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201320101347 Expired - Lifetime CN203091561U (en) 2013-03-06 2013-03-06 Semi-automatic machine for riveting of combination lock

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CN (1) CN203091561U (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104438887A (en) * 2013-09-20 2015-03-25 天津中电华利电器科技集团有限公司 Automatic riveting mechanism
CN105081110A (en) * 2014-05-09 2015-11-25 东风德纳车桥有限公司 Automatic nut skirt locking and riveting machine
CN106077403A (en) * 2016-08-16 2016-11-09 合肥齐兴电器有限责任公司 A kind of electromagnetic valve coil riveter
CN109226642A (en) * 2018-11-19 2019-01-18 哈尔滨轴承集团公司 A kind of bearing retainer electricity lock seaming machine

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104438887A (en) * 2013-09-20 2015-03-25 天津中电华利电器科技集团有限公司 Automatic riveting mechanism
CN105081110A (en) * 2014-05-09 2015-11-25 东风德纳车桥有限公司 Automatic nut skirt locking and riveting machine
CN105081110B (en) * 2014-05-09 2018-05-18 东风德纳车桥有限公司 Automatically riveter is locked in nut shirt rim
CN106077403A (en) * 2016-08-16 2016-11-09 合肥齐兴电器有限责任公司 A kind of electromagnetic valve coil riveter
CN109226642A (en) * 2018-11-19 2019-01-18 哈尔滨轴承集团公司 A kind of bearing retainer electricity lock seaming machine

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Granted publication date: 20130731