CN203508839U - Stamping device - Google Patents
Stamping device Download PDFInfo
- Publication number
- CN203508839U CN203508839U CN201320636214.9U CN201320636214U CN203508839U CN 203508839 U CN203508839 U CN 203508839U CN 201320636214 U CN201320636214 U CN 201320636214U CN 203508839 U CN203508839 U CN 203508839U
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- Prior art keywords
- basin frame
- plate
- magnetic conductive
- iron basin
- conductive board
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Abstract
The utility model relates to the technical field of magnet processing, in particular to a stamping device. The stamping device comprises a stamping mechanism, a material receiving mechanism and a propulsion mechanism which are respectively arranged on a base plate. The stamping mechanism is mainly formed by a machine frame and a hydraulic oil cylinder, the hydraulic oil cylinder is fixed on the machine frame, and a piston rod of the hydraulic oil cylinder is connected with a stamping head. The material receiving mechanism is arranged on the side of the stamping head and mainly formed by a material receiving cylinder and a material receiving plate, a piston rod of the material receiving cylinder is connected with the front of the material receiving plate, the material receiving plate is provided with a material receiving groove, and a guide wheel is installed on the machine frame below the material receiving plate. The stamping device is simple in structure; through the stamping device, only by respectively placing a magnetic conduction plate and an iron basin frame in the propulsion mechanism, the magnetic conduction plate and the iron basin frame can be pushed into the stamping mechanism through a magnetic conduction plate propulsion cylinder and an iron basin frame propulsion cylinder to be subject to stamping together, and the stamping device is rapid and convenient and greatly improves working efficiency.
Description
Technical field
The utility model relates to magnet processing technique field, relates in particular to a kind of decompressor.
Background technology
Magnetic conductive board and iron basin frame are the necessary parts of making loudspeaker, adding man-hour, both need to be riveted together, mode used in the prior art be artificial first magnetic conductive board with after having put in the mould of iron basin frame at stamping machine, restart together with stamping machine is stamped into both, at every turn can only punching press one, operating efficiency is lower.Current decompressor is all artificial feeding, could feeding after needing machine to stop, and speed is slower.
Utility model content
The purpose of this utility model is to overcome the deficiency of above-mentioned technology, and a kind of decompressor is provided, and increases work efficiency.
The utility model for achieving the above object, by the following technical solutions: a kind of decompressor, comprise punching mechanism, propulsive mechanism, the receiving mechanism being separately positioned on base plate and the feed mechanism that is positioned at base plate side, described punching mechanism mainly consists of frame, hydraulic jack, described hydraulic jack is fixed in described frame, the piston rod of described hydraulic jack is connected with staking punch, and described staking punch is positioned at the top of described propulsive mechanism; Described propulsive mechanism mainly consists of magnetic conductive board propulsion cylinder, iron basin frame propulsion cylinder, magnetic conductive board guide plate and iron basin frame limitting casing, described magnetic conductive board guide plate is provided with stopper slot, in described stopper slot, be provided with the first push pedal, described the first push pedal is connected with the piston rod of described magnetic conductive board propulsion cylinder; Described iron basin frame limitting casing is positioned at the top of described magnetic conductive board guide plate, one side of described iron basin frame limitting casing is with sideboard, iron basin frame is pushed in described iron basin frame limitting casing from this sideboard place by iron basin frame propulsion cylinder, on the piston rod of described iron basin frame propulsion cylinder, the second push pedal is installed, this second push pedal is corresponding with described sideboard; Described receiving mechanism is arranged on the side of staking punch, described receiving mechanism mainly consists of rewinding cylinder, rewinding plate, the piston rod of described rewinding cylinder is connected with the front portion of described rewinding plate, on described rewinding plate, with receiving vat, in the frame of described rewinding plate below, directive wheel is installed; Described feed mechanism adopts vibrating disc feeding structure, and described feed mechanism mainly consists of magnetic conductive board vibrating disc and iron basin frame vibrating disc.
Described magnetic conductive board vibrating disc comprises vibrations hopper, feeding track, automatic sorting track and discharging track, and described vibrations hopper is used for blowing and gathers materials, and is drum; Described feeding track is along vibrations hopper spiral inner wall rising shape; Described automatic sorting track is shaking the top of hopper and is being connected with described feeding track, the outer wall of automatic sorting track and described vibrations hopper is 70 ° to 85 ° angles, the outside of automatic sorting track is provided with baffle plate, the width of described automatic sorting track end is less than described feeding track, and the bottom of automatic sorting track is provided with receiving vat; Described discharging track is arranged on automatic sorting track export place, and gap, with two overhead gages, is left between two overhead gages in the top of described discharging track.
The front end of described rewinding plate is with scraper plate.
Described staking punch is two, by connecting plate, is connected with described hydraulic jack; Described magnetic conductive board guide plate, iron basin frame limitting casing, the first push pedal and the second push pedal are respectively two.
The beneficial effects of the utility model are: the utility model is simple in structure, by this device, only need in propulsive mechanism, put into respectively magnetic conductive board and iron basin frame, together with magnetic conductive board and iron basin frame will be pushed into and in punching mechanism, both be stamped into by magnetic conductive board propulsion cylinder and iron basin frame propulsion cylinder, rapid and convenient, has improved operating efficiency greatly; A side at staking punch arranges a receiving mechanism, when staking punch takes the combination of magnetic conductive board and iron basin frame to certain height, rewinding cylinder in receiving mechanism drives rewinding plate to move back, simultaneously scraper plate is scraped both in receiving vat, and magnetic conductive board and iron basin frame are under the effect of gravity in the material collection bucket outside receiving vat slides into this device.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the top view in the utility model;
Fig. 3 is the structural representation of magnetic conductive board vibrating disc in the utility model;
In figure: 1, punching mechanism; 11, frame; 12, hydraulic jack; 13, staking punch; 2, propulsive mechanism; 21, magnetic conductive board propulsion cylinder; 22, iron basin frame propulsion cylinder; 23, magnetic conductive board guide plate; 24, iron basin frame limitting casing; 25, stopper slot; 26, the first push pedal; 27, sideboard; 28, the second push pedal; 3, primary importance sensor; 4, second place sensor; 5, receiving mechanism; 51, rewinding cylinder; 52, rewinding plate; 53, receiving vat; 54, directive wheel; 55, scraper plate; 6, feed mechanism; 61, magnetic conductive board vibrating disc; 62, iron basin frame vibrating disc; 63, vibrations hopper; 64, feeding track; 65, automatic sorting track; 66, discharging track; 67, baffle plate; 68, receiving vat; 69, overhead gage.
The specific embodiment
Below in conjunction with accompanying drawing and preferred embodiment, describe the specific embodiment of the present utility model in detail.As shown in Figure 1, a kind of decompressor, comprise the punching mechanism 1, propulsive mechanism 2 and the receiving mechanism 5 that are separately positioned on base plate, described punching mechanism 1 mainly consists of frame 11, hydraulic jack 12, described hydraulic jack is fixed in described frame, the piston rod of described hydraulic jack is connected with staking punch 13, in order to increase work efficiency, described staking punch is two, two staking punch are connected with the piston rod of described hydraulic jack by connecting plate, and described staking punch is positioned at the top of described propulsive mechanism.
As shown in Figure 2, described propulsive mechanism 2 mainly consists of magnetic conductive board propulsion cylinder 21, iron basin frame propulsion cylinder 22, magnetic conductive board guide plate 23 and iron basin frame limitting casing 24, in order to increase work efficiency, carry out two groups of workpiece of punching press, described magnetic conductive board guide plate, iron basin frame limitting casing, the first push pedal and the second push pedal are respectively two simultaneously.
Described magnetic conductive board guide plate is provided with stopper slot 25, in use, magnetic conductive board is placed in this stopper slot, and can in this stopper slot, slide, in described stopper slot, be provided with the first push pedal 26, described the first push pedal is connected with the piston rod of described magnetic conductive board propulsion cylinder.This push pedal is moved to the below of staking punch for promoting magnetic conductive board, when magnetic conductive board move to staking punch under time, the first push pedal promotes at magnetic conductive board to regain and prepare to promote next piece magnetic conductive board under the drive of cylinder.
Described iron basin frame limitting casing 24 is positioned at the top of described magnetic conductive board guide plate 23, one side of described iron basin frame limitting casing is with sideboard 27, iron basin frame is pushed in described iron basin frame limitting casing from this sideboard place by iron basin frame propulsion cylinder, active block stop is similar to Yishanmen, iron basin frame enters into iron basin frame limitting casing from here, on the piston rod of described iron basin frame propulsion cylinder, the second push pedal 28 is installed, this second push pedal is corresponding with described sideboard, the second push pedal promotes iron basin frame and enters into iron basin frame limitting casing, when iron basin frame is adjacent on the inwall of iron basin frame limitting casing, the second push pedal is regained, now, iron basin frame is just positioned at the top of magnetic conductive board, staking punch is positioned at both tops of earning, hydraulic jack work, drive staking punch moves down, together with iron basin frame is stamped into magnetic conductive board, staking punch is regained.For the ease of automatically taking out the workpiece that punching press completes, described receiving mechanism 5 is arranged on the side of staking punch, described receiving mechanism 5 mainly consists of rewinding cylinder 51, rewinding plate 52, the piston rod of described rewinding cylinder is connected with the front portion of described rewinding plate, on described rewinding plate with receiving vat 53, in the frame of described rewinding plate below, directive wheel 54 is installed, the front end of described rewinding plate is with scraper plate 55.During receiving mechanism work, rewinding cylinder first drives rewinding plate to move to staking punch direction, rewinding plate is advanced on directive wheel, and be tending towards gradually level, when rewinding plate is positioned at the below of staking punch, cylinder is regained, and the iron basin frame and the magnetic conductive board that are bonded on staking punch will be scraped in receiving vat by scraper plate, and cylinder continues to regain, rewinding plate is downward-sloping gradually, and iron basin frame and magnetic conductive board down sliding drop in material collection bucket.
Described feed mechanism adopts vibrating disc feeding structure, and described feed mechanism 6 mainly consists of magnetic conductive board vibrating disc 61 and iron basin frame vibrating disc 62.The structure of iron basin frame vibrating disc and vibrating disc same structure of the prior art, and described magnetic conductive board vibrating disc comprises vibrations hopper 63, feeding track 64, automatic sorting track 65 and discharging track 66, described vibrations hopper is used for blowing and gathers materials, and is drum; Described feeding track is along vibrations hopper spiral inner wall rising shape; Described automatic sorting track is shaking the top of hopper and is being connected with described feeding track, the outer wall of automatic sorting track and described vibrations hopper is 70 ° to 85 ° angles, the outside of automatic sorting track is provided with baffle plate 67, outside preventing that magnetic conductive board from falling, the thickness of baffle plate is slightly larger than the thickness of magnetic conductive board, the width of described automatic sorting track end is less than described feeding track, and the bottom of automatic sorting track is provided with receiving vat 68; Described discharging track is arranged on automatic sorting track export place, and the top of described discharging track is with leaving gap between 69, two overhead gages of two overhead gages.When magnetic conductive board shakes this position, if two riveting columns on magnetic conductive board can automatically upwards, down to this position, will be blocked by two on discharging track upper blocks, automatically plough under in receiving vat.
In order to control magnetic conductive board propulsion cylinder and the action of iron basin frame propulsion cylinder, described magnetic conductive board guide plate is provided with primary importance sensor 3, and described primary importance sensor is used for controlling the action of magnetic conductive board propulsion cylinder.Described iron basin frame limitting casing one side is provided with second place sensor 4, and described second place sensor is used for controlling the action of iron basin frame propulsion cylinder.
Claims (4)
1. a decompressor, comprise punching mechanism, propulsive mechanism, the receiving mechanism being separately positioned on base plate and the feed mechanism that is positioned at base plate side, described punching mechanism mainly consists of frame, hydraulic jack, described hydraulic jack is fixed in described frame, the piston rod of described hydraulic jack is connected with staking punch, and described staking punch is positioned at the top of described propulsive mechanism; Described propulsive mechanism mainly consists of magnetic conductive board propulsion cylinder, iron basin frame propulsion cylinder, magnetic conductive board guide plate and iron basin frame limitting casing, described magnetic conductive board guide plate is provided with stopper slot, in described stopper slot, be provided with the first push pedal, described the first push pedal is connected with the piston rod of described magnetic conductive board propulsion cylinder; Described iron basin frame limitting casing is positioned at the top of described magnetic conductive board guide plate, one side of described iron basin frame limitting casing is with sideboard, iron basin frame is pushed in described iron basin frame limitting casing from this sideboard place by iron basin frame propulsion cylinder, on the piston rod of described iron basin frame propulsion cylinder, the second push pedal is installed, this second push pedal is corresponding with described sideboard; Described receiving mechanism is arranged on the side of staking punch, described receiving mechanism mainly consists of rewinding cylinder, rewinding plate, the piston rod of described rewinding cylinder is connected with the front portion of described rewinding plate, on described rewinding plate, with receiving vat, in the frame of described rewinding plate below, directive wheel is installed; Described feed mechanism adopts vibrating disc feeding structure, and described feed mechanism mainly consists of magnetic conductive board vibrating disc and iron basin frame vibrating disc.
2. decompressor according to claim 1, is characterized in that: described magnetic conductive board vibrating disc comprises vibrations hopper, feeding track, automatic sorting track and discharging track, and described vibrations hopper is used for blowing and gathers materials, and is drum; Described feeding track is along vibrations hopper spiral inner wall rising shape; Described automatic sorting track is shaking the top of hopper and is being connected with described feeding track, the outer wall of automatic sorting track and described vibrations hopper is 70 ° to 85 ° angles, the outside of automatic sorting track is provided with baffle plate, the width of described automatic sorting track end is less than described feeding track, and the bottom of automatic sorting track is provided with receiving vat; Described discharging track is arranged on automatic sorting track export place, and gap, with two overhead gages, is left between two overhead gages in the top of described discharging track.
3. decompressor according to claim 1 and 2, is characterized in that: the front end of described rewinding plate is with scraper plate.
4. decompressor according to claim 3, is characterized in that: described staking punch is two, by connecting plate, is connected with described hydraulic jack; Described magnetic conductive board guide plate, iron basin frame limitting casing, the first push pedal and the second push pedal are respectively two.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201320636214.9U CN203508839U (en) | 2013-10-16 | 2013-10-16 | Stamping device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320636214.9U CN203508839U (en) | 2013-10-16 | 2013-10-16 | Stamping device |
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CN203508839U true CN203508839U (en) | 2014-04-02 |
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CN201320636214.9U Expired - Fee Related CN203508839U (en) | 2013-10-16 | 2013-10-16 | Stamping device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110876111A (en) * | 2019-11-27 | 2020-03-10 | 安徽井利电子有限公司 | Multi-station processing device for loudspeaker frame |
-
2013
- 2013-10-16 CN CN201320636214.9U patent/CN203508839U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110876111A (en) * | 2019-11-27 | 2020-03-10 | 安徽井利电子有限公司 | Multi-station processing device for loudspeaker frame |
CN110876111B (en) * | 2019-11-27 | 2021-02-12 | 安徽井利电子有限公司 | Multi-station processing device for loudspeaker frame |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C56 | Change in the name or address of the patentee | ||
CP01 | Change in the name or title of a patent holder |
Address after: 300350 Tianjin District of Jinnan City Industrial Zone, Rong Sheng Lu Station Patentee after: Tianjin Chang Yue electronic Polytron Technologies Inc Address before: 300350 Tianjin District of Jinnan City Industrial Zone, Rong Sheng Lu Station Patentee before: TIANJIN CHANGLE ELECTRONIC SCIENCE & TECHNOLOGY CO., LTD. |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140402 Termination date: 20201016 |