CN202630695U - Feeding device for alloying furnace and metallurgic system - Google Patents

Feeding device for alloying furnace and metallurgic system Download PDF

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Publication number
CN202630695U
CN202630695U CN 201220185049 CN201220185049U CN202630695U CN 202630695 U CN202630695 U CN 202630695U CN 201220185049 CN201220185049 CN 201220185049 CN 201220185049 U CN201220185049 U CN 201220185049U CN 202630695 U CN202630695 U CN 202630695U
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CN
China
Prior art keywords
hopper
rear end
static line
hanging feet
alloying furnace
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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 - Fee Related
Application number
CN 201220185049
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Chinese (zh)
Inventor
熊正林
彭定平
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Zhaoqing Leoch Battery Technology Co Ltd
Original Assignee
Zhaoqing Leoch Battery Technology 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
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Priority to CN 201220185049 priority Critical patent/CN202630695U/en
Application granted granted Critical
Publication of CN202630695U publication Critical patent/CN202630695U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a feeding device for an alloying furnace, and the feeding device comprises a beam-type crane, a hopper and a fixed rope, wherein the beam-type crane comprises a hook, the fixed rope comprises a front end fixed rope which is detachably installed on the front end of the hopper and a rear end fixed rope which is installed on the rear end of the hopper, and when the fixed rope is hung on the hook, the beam-type crane can drive the hopper to ascend or descend. The invention also discloses a metallurgic system. Since the feeding device comprises the beam-type crane, the hopper and the fixed rope, the hopper is hung on the beam-type crane through the fixed rope, the hopper can be controlled by the beam-type crane to ascend or descend, leftover materials which are fed manually through a rubber basket are changed to be fed by operating a machine, so that time and labor can be saved, the labor efficiency can be improved, workers are free from frequently approaching the alloying furnace, and more safety in operation can be realized.

Description

The adding material device and the smelting system that are used for alloying furnace
Technical field
The utility model relates to battery production field, relates in particular to a kind of adding material device and smelting system that is used for alloying furnace.
Background technology
In the process of producing lead-acid accumulator, can produce many leftover pieces, such as minute false lug of plate generation.The configuration alloy can be melted down with leftover pieces in the manufacturing firm of lead-acid accumulator, casts grid again, to reduce production costs.Present alloy arrangement step; The workman generally uses one basket of one basket of ground of glue basket that leftover pieces are added in alloying furnace, and workload is very big, and as in the process that alloying furnace has heated up, adding leftover pieces; Need frequent contact high temperature in operating process, have bigger potential safety hazard.
The utility model content
The technical problem that the utility model will solve is the deficiency to prior art, and a kind of safe and adding material device that is used for alloying furnace and the smelting system that can raise the efficiency are provided.
The technical problem that the utility model will solve is solved through following technical scheme:
A kind of adding material device that is used for alloying furnace; It is characterized in that; Comprise beam cranes, hopper and static line, said beam cranes comprises hook, and said static line comprises front end static line that is removably mounted on said hopper front end and the rear end static line that is installed in said hopper rear end; When said static line hung on the said hook, said beam cranes can drive said hopper and rise or fall.
A kind of smelting system; Comprise alloying furnace and workbench; Said workbench is arranged on around the said alloying furnace, it is characterized in that, also comprises the beam cranes, the hopper static line that are fixed on said workbench top; Said beam cranes comprises hook; Said static line comprises front end static line that is removably mounted on said hopper front end and the rear end static line that is installed in said hopper rear end, and when said static line hung on the said hook, said beam cranes can drive said hopper and rise or fall.
Said hopper rear end is provided with the rear end fixed mechanism that is used for fixing the rear end static line, and said hopper front end is provided with the front end fixed mechanism that is used for fixing the front end static line.
Said rear end fixed mechanism comprises the first rear end hanging feet and the second rear end hanging feet that is separately positioned on both sides, hopper rear end.
Said front end fixed mechanism comprises the first front end hanging feet and the second front end hanging feet that is separately positioned on hopper front end both sides.
Said hopper is the dustpan bucket.
Owing to adopted above technical scheme, the beneficial effect that the utility model is possessed is:
(1) in the specific embodiment of the utility model, owing to comprise beam cranes, hopper and static line, hopper hangs on the beam cranes through static line; Can control hopper through beam cranes and rise or fall, use the glue basket to add leftover pieces manual work, change into and control the machinery interpolation; Time saving and energy saving; Improved efficiency, and the workman need not be frequently near alloying furnace, operation safe.
(2) in the specific embodiment of the utility model; Because static line comprises front end static line that is arranged on the hopper front end and the rear end static line that is arranged on the hopper rear end; Hopper adopts the dustpan bucket; When the front end static line was taken off, leftover pieces can be poured in the alloying furnace automatically, have further improved efficiency.
Description of drawings
Fig. 1 is the structural representation of the adding material device that is used for alloying furnace in a kind of specific embodiment of the utility model;
Fig. 2 is the structural representation of the smelting system in a kind of specific embodiment of the utility model;
Sketch map when Fig. 3 topples over material for the smelting system in a kind of specific embodiment of the utility model.
The specific embodiment
Combine accompanying drawing that the utility model is done further explain through the specific embodiment below.
Extremely shown in Figure 3 like Fig. 1, the adding material device that is used for alloying furnace of the utility model, its a kind of embodiment; Comprise beam cranes 10, hopper 20 and static line; Beam cranes 10 is fixed on the roof 40, and beam cranes 10 comprises hook 11, and static line comprises front end static line 31 and rear end static line 32; Front end static line 31 is removably mounted on the front end of hopper 20; Rear end static line 32 is fixed on the rear end of hopper 20, links up with for 11 last times when static line hangs over, and beam cranes 10 can drive hopper 20 and rise or fall.
In one embodiment, hopper 20 rear ends are provided with the rear end fixed mechanism, and the rear end fixed mechanism is used for fixing rear end static line 32, and hopper 20 front ends are provided with the front end fixed mechanism, and the front end fixed mechanism is used for fixing front end static line 31.Front end static line 31 can be selected firm metallic cable for use with rear end static line 32, and in this specific embodiment, front end static line 31 is selected steel cable for use with rear end static line 32.
In one embodiment, the rear end fixed mechanism comprises the first rear end hanging feet 22 and the second rear end hanging feet (figure does not show), and the first rear end hanging feet 22 and the second rear end hanging feet are separately positioned on the both sides of hopper 20 rear ends.
In one embodiment, the front end fixed mechanism comprises the first front end hanging feet 21 and the second front end hanging feet (figure does not show), and the first front end hanging feet 21 and the second front end hanging feet are separately positioned on the both sides of hopper 20 front ends.
In one embodiment, hopper 20 is the dustpan bucket.The dustpan bucket can use metal material to process, and in this embodiment, the dustpan bucket can use steel to process.The dustpan bucket comprises first inclined-plane 23, second inclined-plane 24 and two symmetrically arranged sides; First inclined-plane 23 is arranged on the front side of dustpan bucket; Second inclined-plane 24 is arranged on the rear side of dustpan bucket; The angle of first inclined-plane 23 and horizontal plane is less than the angle of second inclined-plane 24 with horizontal plane, and the first rear end hanging feet 22 and the second rear end hanging feet are separately positioned on the both sides of first inclined- plane 23 and 24 junctions, second inclined-plane, and the first front end hanging feet 21 and the second front end hanging feet are separately positioned on front end both sides, first inclined-plane.
A kind of smelting system; Comprise alloying furnace 50, workbench 60, beam cranes 10, hopper 20 and static line, beam cranes 10 is fixed on the roof 40, and workbench 60 is arranged on around the alloying furnace 50; Beam cranes 10 comprises hook 11; Static line comprises front end static line 31 and rear end static line 32, and front end static line 31 is removably mounted on the front end of hopper 20, and rear end static line 32 is fixed on the rear end of hopper 20; Linked up with for 11 last times when static line hangs over, beam cranes 10 can drive hopper 20 and rise or fall.In this embodiment, hopper 20 can drop on the workbench 60.
In one embodiment, hopper 20 rear ends are provided with the rear end fixed mechanism, and the rear end fixed mechanism is used for fixing rear end static line 32, and hopper 20 front ends are provided with the front end fixed mechanism, and the front end fixed mechanism is used for fixing front end static line 31.Front end static line 31 can be selected firm metallic cable for use with rear end static line 32, and in this specific embodiment, front end static line 31 is selected steel cable for use with rear end static line 32.
In one embodiment, the rear end fixed mechanism comprises the first rear end hanging feet 22 and the second rear end hanging feet (figure does not show), and the first rear end hanging feet 22 and the second rear end hanging feet are separately positioned on the both sides of hopper 20 rear ends.At this moment, when beam cranes 10 rises, then can material be poured in the alloying furnace 50.
In one embodiment, the front end fixed mechanism comprises the first front end hanging feet 21 and the second front end hanging feet (figure does not show), and the first front end hanging feet 21 and the second front end hanging feet are separately positioned on the both sides of hopper 20 front ends.Load onto leftover pieces when hopper 20 and drop on 60 last times of workbench, the workman can take off front end static line 31 respectively from the first front end hanging feet 21 and the second front end hanging feet, also can front end static line 31 be hung on the first rear end hanging feet 22 and the second rear end hanging feet.At this moment
In one embodiment, hopper 20 is the dustpan bucket.The dustpan bucket can use metal material to process, and in this embodiment, the dustpan bucket can use steel to process.The dustpan bucket comprises first inclined-plane 23, second inclined-plane 24 and two symmetrically arranged sides; First inclined-plane 23 is arranged on the front side of dustpan bucket; Second inclined-plane 24 is arranged on the rear side of dustpan bucket; The angle of first inclined-plane 23 and horizontal plane is less than the angle of second inclined-plane 24 with horizontal plane, and the first rear end hanging feet 22 and the second rear end hanging feet are separately positioned on the both sides of first inclined- plane 23 and 24 junctions, second inclined-plane, and the first front end hanging feet 21 and the second front end hanging feet are separately positioned on front end both sides, first inclined-plane.
The course of work of the utility model is following:
Be hung in front end static line 31 on the first front end hanging feet 21 and the second front end hanging feet of hopper 20 front ends of filling leftover pieces, be hung in rear end static line 32 on the first rear end hanging feet 22 and the second rear end hanging feet of hopper 20 rear ends, the top of front end static line 31 and rear end static line 32 is suspended on the hook 11 of beam cranes 10; Start beam cranes 10; Mention hopper 20, hang the hopper of filling leftover pieces 20 above the workbench 60, the front end of hopper 20 is placed on alloying furnace 50 tops; The rear end is placed on the workbench 60; The bipod place of front end static line 31, be suspended to rear end hanging feet bipod place 4. and be suspended to respectively on the first rear end hanging feet 22 and the second rear end hanging feet then, start beam cranes 10 once more; Mention hopper 20, the leftover pieces in the hopper 20 are automatically poured in the alloying furnace 50.
Above content is the further explain that combines concrete embodiment that the utility model is done, and can not assert that the practical implementation of the utility model is confined to these explanations.For the those of ordinary skill of technical field under the utility model, under the prerequisite that does not break away from the utility model design, can also make some simple deduction or replace, all should be regarded as belonging to the protection domain of the utility model.

Claims (10)

1. adding material device that is used for alloying furnace; It is characterized in that; Comprise beam cranes, hopper and static line, said beam cranes comprises hook, and said static line comprises front end static line that is removably mounted on said hopper front end and the rear end static line that is installed in said hopper rear end; When said static line hung on the said hook, said beam cranes can drive said hopper and rise or fall.
2. the adding material device that is used for alloying furnace as claimed in claim 1 is characterized in that, said hopper rear end is provided with the rear end fixed mechanism that is used for fixing the rear end static line, and said hopper front end is provided with the front end fixed mechanism that is used for fixing the front end static line.
3. the adding material device that is used for alloying furnace as claimed in claim 2 is characterized in that, said rear end fixed mechanism comprises the first rear end hanging feet and the second rear end hanging feet that is separately positioned on both sides, hopper rear end.
4. the adding material device that is used for alloying furnace as claimed in claim 3 is characterized in that, said front end fixed mechanism comprises the first front end hanging feet and the second front end hanging feet that is separately positioned on hopper front end both sides.
5. like each described adding material device that is used for alloying furnace in the claim 1 to 4, it is characterized in that said hopper is the dustpan bucket.
6. smelting system; Comprise alloying furnace and workbench; Said workbench is arranged on around the said alloying furnace, it is characterized in that, also comprises the beam cranes, hopper and the static line that are fixed on said workbench top; Said beam cranes comprises hook; Said static line comprises front end static line that is removably mounted on said hopper front end and the rear end static line that is installed in said hopper rear end, and when said static line hung on the said hook, said beam cranes can drive said hopper and rise or fall.
7. smelting system as claimed in claim 6 is characterized in that, it is characterized in that, said hopper rear end is provided with the rear end fixed mechanism that is used for fixing the rear end static line, and said hopper front end is provided with the front end fixed mechanism that is used for fixing the front end static line.
8. smelting system as claimed in claim 7 is characterized in that, said rear end fixed mechanism comprises the first rear end hanging feet and the second rear end hanging feet that is separately positioned on both sides, hopper rear end.
9. smelting system as claimed in claim 8 is characterized in that, said front end fixed mechanism comprises the first front end hanging feet and the second front end hanging feet that is separately positioned on hopper front end both sides.
10. like each described smelting system in the claim 6 to 9, it is characterized in that said hopper is the dustpan bucket.
CN 201220185049 2012-04-26 2012-04-26 Feeding device for alloying furnace and metallurgic system Expired - Fee Related CN202630695U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220185049 CN202630695U (en) 2012-04-26 2012-04-26 Feeding device for alloying furnace and metallurgic system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220185049 CN202630695U (en) 2012-04-26 2012-04-26 Feeding device for alloying furnace and metallurgic system

Publications (1)

Publication Number Publication Date
CN202630695U true CN202630695U (en) 2012-12-26

Family

ID=47383888

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201220185049 Expired - Fee Related CN202630695U (en) 2012-04-26 2012-04-26 Feeding device for alloying furnace and metallurgic system

Country Status (1)

Country Link
CN (1) CN202630695U (en)

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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: 20121226

Termination date: 20140426