CN201740478U - Charging machine of detonation grain of seismic source in civil explosion - Google Patents
Charging machine of detonation grain of seismic source in civil explosion Download PDFInfo
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- CN201740478U CN201740478U CN2010202204960U CN201020220496U CN201740478U CN 201740478 U CN201740478 U CN 201740478U CN 2010202204960 U CN2010202204960 U CN 2010202204960U CN 201020220496 U CN201020220496 U CN 201020220496U CN 201740478 U CN201740478 U CN 201740478U
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- hopper
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Abstract
The utility model relates to a charging machine of a detonation grain of a seismic source in civil explosion, mainly comprising a rack, a hopper, a metering material feeding part, a weighing material supplying part and a chute component. The charging machine is characterized in that the hopper is connected on the rack by a flange; a controller of the metering material feeding part is connected on the hopper by the flange; a fixed frame and a cylinder bracket of the weighing material supplying part are respectively connected on the rack; and a fixed frame and a short chute of the chute component are respectively fixed on the rack. The charging machine is reasonable in structure, reliable in performance and simple and convenient in operation, and can finish the charging operation of the detonation grain accurately and effectively.
Description
Technical field
The utility model belongs to the package packing machine field, is specifically related to multiple civil explosive seismic source initiating explosive grain charging charging machine.
Background technology
The quick-fried industry of the people belongs to high risk industries, has inflammable and explosive attribute, it in the whole cycle of the production of product, storage, transportation, use, all have very easily burn, explode may.At present, national big or small explosive production enterprise has about 400 families, and most of enterprise also is in the very machine packed state at the end of Manual Packaging or automaticity.At the bottom of existing explosive-source explosive post packaging production line ubiquity price height, the production capacity and the defective of aspect such as unstable properties, can not adapt to the demand of explosive production enterprise to the high explosive baling line, especially annual production reaches the explosive production enterprise more than 20,000 tons.And each explosive production enterprise all adopts and manually seals, operating personnel are many, labour intensity is big, in order to alleviate labor intensity of operating personnel and minimizing operating personnel's quantity, just necessary configuration primary explosive column charging machine between the explosive-source explosive post of charging machine output is extremely cased.
Summary of the invention
The purpose of this utility model provides a kind of novel people of delicate structure quick-fried middle seismic source initiating explosive grain charging charging machine, to alleviate working strength of workers and the quick-fried production operation personnel of the minimizing people in the quick-fried industry of the people, realize the automation of primary explosive column Production and Packaging production line, replenish in the quick-fried industry of the people by artificial vacancy of giving the primary explosive column powder charge.
Technical solutions of the utility model are:
Seismic source initiating explosive grain charging charging machine during the people are quick-fried, mainly form by frame, hopper, metering feeding parts, the supply part of weighing, chute assembly five parts, it is characterized in that: hopper is connected on the frame with flange, the controller of metering feeding parts is connected on the hopper with flange, the gentle jar support of fixed mount of supply part of weighing is fastened on respectively on the frame, and the fixed mount of chute assembly and short chute are fastened on the frame respectively.
Described metering feeding parts are made up of synchronous band transmission component, material controlling device, dust cap, shaft, stepper motor, flashboard, rack and pinion assembly, driving decelerating electric machine, driving decelerating electric machine links to each other with synchronous band transmission component, the band transmission component links to each other with shaft synchronously, the material controlling device directly is connected with hopper with flange, dust cap is fixed on the shaft, and rack and pinion assembly is enclosed within on the step motor shaft and with flashboard and is connected.Material freely falls into the material controlling device by hopper, freely falls into the hopper of weighing again, is driven by driving decelerating electric machine and is with transmission component synchronously and drives coupled shaft, and shaft stirs the material that falls into the material controlling device and avoids putty, bridging; Dust cap is upwards to splash in whipping process for fear of material; The metering of material is by flashboard standard-sized sheet on rack and pinion assembly of stepper motor drive gear teeth bar assembly and control connection, half-open, control that actions 1/4th open and close realize the material amount of feeding.
The described supply part of weighing is made up of the hopper of weighing, LOAD CELLS, the support of weighing, cylinder, cylinder support, the fixed mount of weighing, the hopper of weighing is installed on the LOAD CELLS, LOAD CELLS is installed on the support of weighing, the support of weighing is fixed on the fixed mount of weighing, the tip side of cylinder directly links to each other with the support of weighing, the tail end of cylinder links to each other with the cylinder support, and the cylinder support is installed on the frame with the fixed mount of weighing.The metering feeding parts are fed to the hopper of weighing, and when the amount of meeting the requirements of, LOAD CELLS passes out signal, control cylinder motion, and cylinder drives weigh hopper and LOAD CELLS and moves together; In motion process, the hopper of weighing can be poured material in the long chute in the chute assembly.
Described chute assembly is made up of fixed mount, long chute, short chute, and fixed mount and short chute are directly installed on the frame, and long chute is installed on the fixed mount, and the outlet of long chute faces the inlet of short chute.
The utility model can also be made double, powder charge simultaneously.
Material in the long chute freely falls into short chute, and finishes whole powder charge process in the die sleeve below continuing freely to fall to.
The utility model is double powder charge simultaneously, and 8 of die sleeves are 1 group, needs 4 die sleeve conversion stations to finish an assembling medicine altogether.This charging machine is mainly realized the automatic ration powder charge function of primary explosive column.
The utility model charging machine is shown in figure one: expect in the hopper on artificial, mass transport in the hopper is to the metering feeding parts, the metering feeding parts utilize gate switch amount and the stirring of controlling material be transported in the supply part of weighing, the supply part of weighing is finished the function of weighing of material and material is fed on the chute assembly, die sleeve is then waited for material below the chute assembly, can automatically empty die sleeve be returned back on this powder charge station after filling, finally realize automatic powder charge.
The utility model is rational in infrastructure, dependable performance, easy and simple to handle, can finish the charging of primary explosive column accurately and efficiently.
Description of drawings
Fig. 1 is a front view of the present utility model.
Fig. 2 is a metering feeding parts vertical view of the present utility model.
Fig. 3 is the front view of the supply part of weighing of the present utility model.
Fig. 4 is a chute assembly front view of the present utility model.
The specific embodiment
Below in conjunction with accompanying drawing the utility model is described in detail:
As shown in Figure 1, the utility model mainly is made up of frame 1, hopper 2, metering feeding parts 3, the supply part 4 of weighing, chute assembly 5 five parts, hopper 2 usefulness flanges are connected on the frame 1, the controller 7 usefulness flanges of metering feeding parts 3 are connected on the hopper 2, the fixed mount 19 gentle jar supports 18 of supply part 4 of weighing are fastened on respectively on the frame 1, and the fixed mount 20 of chute assembly 5 and short chute 22 are fastened on respectively on the frame 1.
As shown in Figure 2, described metering feeding parts 3 are made up of synchronous band transmission component 6, material controlling device 7, dust cap 8, shaft 9, stepper motor 10, flashboard 11, rack and pinion assembly 12, driving decelerating electric machine 13, driving decelerating electric machine 13 links to each other with synchronous band transmission component 6, band transmission component 6 links to each other with shaft 9 synchronously, material controlling device 7 directly is connected with hopper 2 with flange, dust cap 8 is fixed on the shaft 9, and rack and pinion assembly 12 is enclosed within 10 of stepper motors and upward and with flashboard 11 is connected.Material freely falls into material controlling device 7 by hopper 2, freely falls into the hopper 14 of weighing again.Driven synchronously band transmission components 6 and driven coupled shaft 9 by driving decelerating electric machine 13, the material that 9 pairs of shafts fall into material controlling device 7 stirs avoids putty, bridging.Dust cap 8 is upwards to splash in whipping process for fear of material.The metering of material is by flashboard 11 standard-sized sheets on rack and pinion assembly 12 of stepper motor 10 drive gear teeth bar assemblies 12 and control connection, half-open, control that actions 1/4th open and close realize the material amount of feeding.
As shown in Figure 3, the described supply part 4 of weighing is made up of the hopper 14 of weighing, LOAD CELLS 15, the support 16 of weighing, cylinder 17, cylinder support 18, the fixed mount 19 of weighing, the hopper 14 of weighing is installed on the LOAD CELLS 15, LOAD CELLS 15 is installed on the support 16 of weighing, the support 16 of weighing is fixed on the fixed mount 19 of weighing, the tip side of cylinder 17 directly links to each other with the support 16 of weighing, the tail end of cylinder 17 links to each other with cylinder support 18, and cylinder support 18 is installed on the frame 1 with the fixed mount 19 of weighing.The metering feeding parts are fed to the hopper 14 of weighing, and when the amount of meeting the requirements of, LOAD CELLS 15 passes out signal, control cylinder 17 motion, and cylinder 17 drives weigh hopper 14 and LOAD CELLS 15 and moves together.In motion process, the hopper 14 of weighing can be poured material in the long chute 22 in the chute assembly 5.
As shown in Figure 4, described chute assembly 5 is made up of fixed mount 20, long chute 21, short chute 22, and fixed mount 20 and short chute 22 are directly installed on the frame 1, and long chute 21 is installed on the fixed mount 20, and the outlet of long chute 21 faces the inlet of short chute 22.
Material in the long chute 21 freely falls into short chute 22, and finishes whole powder charge process in the die sleeve below continuing freely to fall to.Among Fig. 4 because two long chutes 21 on two stations are to be fixed on together on the fixed mount 20 after linking to each other with link.
Claims (4)
- The people quick-fried in the seismic source initiating explosive grain charging charging machine, mainly form by frame, hopper, metering feeding parts, the supply part of weighing, chute assembly five parts, it is characterized in that: hopper is connected on the frame with flange, the controller of metering feeding parts is connected on the hopper with flange, the gentle jar support of fixed mount of supply part of weighing is fastened on respectively on the frame, and the fixed mount of chute assembly and short chute are fastened on the frame respectively.
- 2. seismic source initiating explosive grain charging charging machine during the people according to claim 1 are quick-fried, it is characterized in that: described metering feeding parts are made up of synchronous band transmission component, material controlling device, dust cap, shaft, stepper motor, flashboard, rack and pinion assembly, driving decelerating electric machine, driving decelerating electric machine links to each other with synchronous band transmission component, the band transmission component links to each other with shaft synchronously, the material controlling device directly is connected with hopper with flange, dust cap is fixed on the shaft, and rack and pinion assembly is enclosed within on the step motor shaft and with flashboard and is connected.
- 3. seismic source initiating explosive grain charging charging machine during the people according to claim 1 are quick-fried, it is characterized in that: the described supply part of weighing is made up of the hopper of weighing, LOAD CELLS, the support of weighing, cylinder, cylinder support, the fixed mount of weighing, the hopper of weighing is installed on the LOAD CELLS, LOAD CELLS is installed on the support of weighing, the support of weighing is fixed on the fixed mount of weighing, the tip side of cylinder directly links to each other with the support of weighing, the tail end of cylinder links to each other with the cylinder support, and the cylinder support is installed on the frame with the fixed mount of weighing.
- 4. seismic source initiating explosive grain charging charging machine during the people according to claim 1 are quick-fried, it is characterized in that: described chute assembly is made up of fixed mount, long chute, short chute, fixed mount and short chute are directly installed on the frame, long chute is installed on the fixed mount, and the outlet of long chute faces the inlet of short chute.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2010202204960U CN201740478U (en) | 2010-06-04 | 2010-06-04 | Charging machine of detonation grain of seismic source in civil explosion |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2010202204960U CN201740478U (en) | 2010-06-04 | 2010-06-04 | Charging machine of detonation grain of seismic source in civil explosion |
Publications (1)
Publication Number | Publication Date |
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CN201740478U true CN201740478U (en) | 2011-02-09 |
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Application Number | Title | Priority Date | Filing Date |
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CN2010202204960U Expired - Fee Related CN201740478U (en) | 2010-06-04 | 2010-06-04 | Charging machine of detonation grain of seismic source in civil explosion |
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CN (1) | CN201740478U (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101871754A (en) * | 2010-06-04 | 2010-10-27 | 武汉人天包装技术有限公司 | Seismic source initiating explosive grain charging machine during civil explosion |
CN103196338A (en) * | 2013-04-24 | 2013-07-10 | 山东天宝化工股份有限公司 | Automatic and intelligent primer gating system and working method thereof |
-
2010
- 2010-06-04 CN CN2010202204960U patent/CN201740478U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101871754A (en) * | 2010-06-04 | 2010-10-27 | 武汉人天包装技术有限公司 | Seismic source initiating explosive grain charging machine during civil explosion |
CN103196338A (en) * | 2013-04-24 | 2013-07-10 | 山东天宝化工股份有限公司 | Automatic and intelligent primer gating system and working method thereof |
CN103196338B (en) * | 2013-04-24 | 2015-09-09 | 山东天宝化工股份有限公司 | Automatic, the intelligent running gate system of relay blaster and method of work thereof |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20110209 Termination date: 20140604 |