CN203266107U - Three-in-one semi-automatic machine of combination lock - Google Patents
Three-in-one semi-automatic machine of combination lock Download PDFInfo
- Publication number
- CN203266107U CN203266107U CN 201320278540 CN201320278540U CN203266107U CN 203266107 U CN203266107 U CN 203266107U CN 201320278540 CN201320278540 CN 201320278540 CN 201320278540 U CN201320278540 U CN 201320278540U CN 203266107 U CN203266107 U CN 203266107U
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- Prior art keywords
- punch press
- combination lock
- rotating disk
- punching press
- riveter
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Abstract
The utility model relates to a three-in-one semi-automatic machine of a combination lock. The three-in-one semi-automatic machine of the combination lock comprises a machine table, a rotating disc, a spin riveter, a first punch press and a second punch press, wherein the rotating disc is arranged on the machine table in a rotatable mode and is in driving connection with a rotating disc driving device arranged on the machine table; locating clamps which are arranged in an annular array mode are arranged on the upper surface of the rotating disc; the spin riveter, the first punch press and the second punch press are installed on the machine table and are sequentially arranged on the outer side of the rotating disc, and a riveting upper die of the spin riveter, a stamping upper die of the first punch press and a stamping upper die of the second punch press are located above the corresponding locating clamps. Thus, riveting of a lock shell, a base and a pin of the combination lock can be finished at a time, the production efficiency is greatly improved, meanwhile, the transportation links among processes are removed, the labor intensity is lowered, the number of working personnel is reduced, the labor cost is low, hands need not to stretch into a riveting station or a press fit station, the occurrence of production accidents like crushing to the hands can be avoided thoroughly, the production safety is extremely high, and personal safety is guaranteed.
Description
Technical field
The utility model belongs to lockset production equipment technical field, relates in particular to the three-in-one semiautomatic loading mechanism of a kind of combination lock.
Background technology
at present, carrying out combination lock when producing in the lockmaking industry, all with the combination lock lock housing, the riveted of base and pin, packet header pressing and space pressing are respectively by riveter and two punch press complete independently processing one by one, operate very tired lock, have a strong impact on production efficiency, average daily production capacity is 4000 left and right, every equipment operates by different staff simultaneously, cost of labor is high, and the staff is by hand directly being stretched into placement and the taking-up to complete workpiece in riveted station and punching press station, this mechanical type operation so repeatedly, labour intensity is very large, production efficiency is extremely low, and the security incidents such as hand is weighed wounded easily occur, especially for a long time produce, 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 high, has reduced staff's labour intensity and cost of labor, the three-in-one semiautomatic loading mechanism of combination lock that production operation is light, safe.
For solving the problems of the technologies described above, the utility model adopts following technical scheme:
The three-in-one semiautomatic loading mechanism of a kind of combination lock includes board, rotating disk, riveter, the first punch press and the second punch press; Described rotating disk is located on described board rotationally, and drives and be connected with described rotating blade drive on being located at described board, and the upper surface of described rotating disk is provided with the positioning fixture that annular array is arranged; Described riveter, the first punch press and the second punch press are arranged on described board, and be located at successively the described rotating disk outside, and the punching press patrix of the punching press patrix of the riveted patrix of described riveter, the first punch press and the second punch press is positioned at the top of corresponding described positioning fixture.
Further, described rotating blade drive mainly is comprised 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 the dispenser that moves/stop be used to controlling described variable speed electric motors, particularly, and described dispenser is located on 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 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 Timing Belt and described driven synchronizing wheel.
Further, the base of the base of the base of described riveter, the first punch press and the second punch press all partly stretches to the below of described rotating disk, and be respectively equipped with riveted supporting plate, the first punching press supporting plate and the second punching press supporting plate on it, described riveted supporting plate, the first punching press supporting plate and the second punching press supporting plate are located along the same line with the riveted patrix of described riveter, the punching press patrix of the first punch press and punching press patrix and the corresponding positioning fixture of the second punch press respectively.
The beneficial effects of the utility model are:
The utility model passes through technique scheme, can once complete combination lock lock housing, base and pin riveted, greatly improved production efficiency, average daily production capacity is more than 80000, removed simultaneously the link of moving between each operation from, reduced widely staff's labour intensity, also can reduce required staff's quantity, one people gets final product complete operation, reduce cost of labor, and need not to stretch in riveted station and pressing station during the staff feeding, avoided hand by the generation of production accidents such as weighing wounded fully, production safety is high, and personal safety is secure.
Description of drawings
Fig. 1 is the structural representation of the three-in-one semiautomatic loading mechanism embodiment of combination lock described in the utility model;
Fig. 2 is the plan structure schematic diagram of the three-in-one semiautomatic loading mechanism embodiment of combination lock described in the utility model.
The specific embodiment
In order to make the purpose of this utility model, technical scheme and advantage clearer, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein only in order to explaining the utility model, and be not used in restriction the utility model.
As shown in Fig. 1 and Fig. 2:
The three-in-one semiautomatic loading mechanism of the described a kind of combination lock of the utility model embodiment includes board 1, rotating disk 2, riveter 3, the first punch press 4 and the second punch press 5; Described rotating disk 2 is located on board 1 rotationally, and drives and to be connected with rotating blade drive on being located at board 1, and the upper surface of described rotating disk 2 is provided with the positioning fixture 21 that annular array is arranged; Described riveter 3, the first punch press 4 and the second punch press 5 are arranged on board 1, and be located at successively rotating disk 2 outsides, and the punching press patrix 51 of the punching press patrix 41 of the riveted patrix 31 of riveter 3, the first punch press 4 and the second punch press 5 is positioned at the top of corresponding positioning fixture 21.Wherein, described rotating blade drive mainly is comprised of variable speed electric motors, particularly 6 and transmission component, described variable speed electric motors, particularly 6 is positioned at the below of rotating disk 2, and be connected with rotating disk 2 drivings by transmission component, this transmission component includes driven synchronizing wheel 8 and synchronizing shaft 9, described synchronizing shaft 9 is in transmission connection with rotating disk 2, the one end is provided with driven synchronizing wheel 8, the rotation section of described variable speed electric motors, particularly 6 is provided with active synchronization wheel 61, and described active synchronization wheel 61 is in transmission connection by Timing Belt (not showing in figure) and driven synchronizing wheel 8.The base (42) of the base 32 of described riveter 3, the first punch press 4 and the base 52 of the second punch press 5 all partly stretch to the below of rotating disk 2, and be respectively equipped with riveted supporting plate 33, the first punching press supporting plate (not showing in figure) and the second punching press supporting plate 53 on it, described riveted supporting plate 33, the first punching press supporting plate 43 and the second punching press supporting plate 53 are located along the same line with the riveted patrix 31 of riveter 3, the punching press patrix 41 of the first punch press 4 and punching press patrix 51 and the corresponding positioning fixture 21 of the second punch press 5 respectively.
In addition, described rotating blade drive also includes dispenser 7, and described dispenser 7 is located on the synchronizing shaft 33 of transmission component, is mainly used in controlling variable speed electric motors, particularly 31 and moves/stop.For example: it is 12 equal portions (being station) that rotating disk 2 is divided into, and every equal portions are installed a positioning fixture 21, is jointly coordinated by variable speed electric motors, particularly 6 and dispenser 7, controls rotating disk 2 and rotates, stops and governing speed clockwise, to the control of 21 positions of positioning fixture on it.
during the three-in-one semiautomatic loading mechanism work of combination lock described in the utility model, at first combination lock lock housing, base and pin are placed on the rear startup variable speed electric motors, particularly 31 of positioning fixture 21, drive rotating disk 2 rotations, the positioning fixture 21 that is placed with aforementioned combination lock lock housing, base and pin is rotated to the below of the riveted patrix 31 of riveter 3, and dispenser 7 is namely controlled variable speed electric motors, particularly 6 and is stopped the rotation, then riveter 3 starts and the riveted patrix 31 that drives moves down, and is connected with positioning fixture 21 riveteds below it, and combination lock lock housing, base and pin are riveted tightly together, then riveter 3 starts and the riveted patrix 31 that drives rises, reset, variable speed electric motors, particularly 6 starts again, drive rotating disk 2 and continue rotation, the combination lock lock housing that riveted is good, base and pin take the below of the punching press patrix 41 of the first punch press 4 to, the first punch press 4 starts and drives its punching press patrix 41 and moves down, punching press is in the good combination lock lock housing of riveted, on base and pin, base is protruded and the packet header pressing out of lock housing height, simultaneously last station is placed with the combination lock lock housing, the positioning fixture 21 of base and pin goes on the riveted station, repeat aforementioned riveted operation, last variable speed electric motors, particularly 6 starts once more, drive rotating disk 2 and continue rotation, combination lock lock housing after packet header is flattened, base and pin take the below of the punching press patrix 51 of the second punch press 5 to, the second punch press 5 starts and drives its punching press patrix 51 and moves down, the combination lock lock housing of punching press after packet header flattens, on base and pin, combination lock lock housing and base are combined left space pressing to stick together, after completing, variable speed electric motors, particularly 6 drives rotating disk 2 continuation rotations, workpiece rotating (is processed code lock case of lock together to material returned station staff with the combination lock assembly, base and pin) put into container, circulation like this is aforementioned operation repeatedly, until complete production and processing.
like this, can once complete the combination lock lock housing by the three-in-one semiautomatic loading mechanism of combination lock described in the utility model, base and pin riveted, greatly improved production efficiency, average daily production capacity is more than 80000, removed simultaneously the link of moving between each operation from, reduced widely staff's labour intensity, also can reduce required staff's quantity, one people gets final product complete operation, reduce cost of labor, and need not to stretch in riveted station and pressing station during the staff feeding, avoided hand by the generation of production accidents such as weighing wounded fully, production safety is high, personal safety is secure.
The above is preferred embodiment 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 (5)
1. the three-in-one semiautomatic loading mechanism of combination lock, is characterized in that: include board (1), rotating disk (2), riveter (3), the first punch press (4) and the second punch press (5); Described rotating disk (2) is located on described board (1) rotationally, and drives and be connected with described rotating blade drive on being located at described board (1), and the upper surface of described rotating disk (2) is provided with the positioning fixture (21) that annular array is arranged; Described riveter (3), the first punch press (4) and the second punch press (5) are arranged on described board (1), and be located at successively described rotating disk (2) outside, and the punching press patrix (51) of the punching press patrix (41) of the riveted patrix (31) of described riveter (3), the first punch press (4) and the second punch press (5) is positioned at the top of corresponding described positioning fixture (21).
2. the three-in-one semiautomatic loading mechanism of combination lock according to claim 1, it is characterized in that: described rotating blade drive mainly is comprised of variable speed electric motors, particularly (6) and transmission component, described variable speed electric motors, particularly (6) is positioned at the below of described rotating disk (2), and is connected with described rotating disk (2) driving by described transmission component.
3. the three-in-one semiautomatic loading mechanism of combination lock according to claim 2, it is characterized in that: described rotating blade drive also includes the dispenser (7) that moves/stop be used to controlling described variable speed electric motors, particularly (6), and described dispenser (7) is located on described transmission component.
4. the three-in-one semiautomatic loading mechanism of combination lock according to claim 3, it is characterized in that: described transmission component includes driven synchronizing wheel (8) and synchronizing shaft (9), described synchronizing shaft (9) is in transmission connection with described rotating disk (2), the one end is provided with described driven synchronizing wheel (8), described dispenser (7) is located on described synchronizing shaft (9), the rotation section of described variable speed electric motors, particularly (6) is provided with active synchronization wheel (61), and described active synchronization wheel (61) is in transmission connection by Timing Belt and described driven synchronizing wheel (8).
5. the three-in-one semiautomatic loading mechanism of any one described combination lock according to claim 1 to 4, it is characterized in that: the base (32) of described riveter (3), the base (42) of the first punch press (4) and the base (52) of the second punch press (5) all partly stretch to the below of described rotating disk (2), and be respectively equipped with riveted supporting plate (33) on it, the first punching press supporting plate (43) and the second punching press supporting plate (53), described riveted supporting plate (33), the first punching press supporting plate (43) and the second punching press supporting plate (53) respectively with the riveted patrix (31) of described riveter (3), the punching press patrix (41) of the first punch press (4) and the punching press patrix (51) of the second punch press (5) and corresponding positioning fixture (21) are located along the same line.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201320278540 CN203266107U (en) | 2013-05-21 | 2013-05-21 | Three-in-one semi-automatic machine of combination lock |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 201320278540 CN203266107U (en) | 2013-05-21 | 2013-05-21 | Three-in-one semi-automatic machine of combination lock |
Publications (1)
Publication Number | Publication Date |
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CN203266107U true CN203266107U (en) | 2013-11-06 |
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Application Number | Title | Priority Date | Filing Date |
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CN 201320278540 Expired - Lifetime CN203266107U (en) | 2013-05-21 | 2013-05-21 | Three-in-one semi-automatic machine of combination lock |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113414569A (en) * | 2021-07-23 | 2021-09-21 | 上海康德莱医疗器械自动化研究所有限公司 | Automatic assembling device for filter element of pressure gauge |
-
2013
- 2013-05-21 CN CN 201320278540 patent/CN203266107U/en not_active Expired - Lifetime
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113414569A (en) * | 2021-07-23 | 2021-09-21 | 上海康德莱医疗器械自动化研究所有限公司 | Automatic assembling device for filter element of pressure gauge |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CX01 | Expiry of patent term |
Granted publication date: 20131106 |
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CX01 | Expiry of patent term |