CN203545099U - Conical ore storage yard ore unloading system capable of conducting fixed-point unloading - Google Patents

Conical ore storage yard ore unloading system capable of conducting fixed-point unloading Download PDF

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Publication number
CN203545099U
CN203545099U CN201320720324.3U CN201320720324U CN203545099U CN 203545099 U CN203545099 U CN 203545099U CN 201320720324 U CN201320720324 U CN 201320720324U CN 203545099 U CN203545099 U CN 203545099U
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China
Prior art keywords
level
ore deposit
discharge
ore
belt conveyer
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Withdrawn - After Issue
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CN201320720324.3U
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Chinese (zh)
Inventor
李国洲
张廷东
魏兵团
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MCC North Dalian Engineering Technology Co Ltd
Northern Engineering and Technology Corp MCC
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MCC North Dalian Engineering Technology Co Ltd
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Abstract

The utility model belongs to the technical field of ore storage, and particularly relates to a conical ore storage yard ore unloading system capable of conducting fixed-point unloading. The conical ore storage yard ore unloading system comprises a set of conical ore storage yards which are arranged at intervals and is characterized in that a belt-type conveying and unloading system is arranged above the set of conical ore storage yards, the belt-type conveying and unloading system comprises a feeding belt-type conveyor and belt-type unloading systems which are connected with the feeding belt-type conveyor and arranged in a step mode, the belt-type unloading systems which are arranged in the step mode are composed of the first-level unloading system, a second-level unloading system connected with the first-level unloading system......and the N-level unloading system connected with the N-1-level unloading system, and all the levels of unloading systems are arranged above the set of conical ore storage yards respectively. The conical ore storage yard ore unloading system capable of conducting fixed-point unloading is simple in structure, convenient to repair, low in fault rate, small in occupied space, low in investment and capable of effectively conducting ore unloading on multiple sections of conical ore storage yards which are arranged at intervals.

Description

Ore deposit system is unloaded in the circular cone storage stockyard, ore deposit of attachment point discharging
Technical field
The utility model belongs to ore storage ore deposit technical field, and ore deposit system is unloaded in the circular cone storage stockyard, ore deposit that especially relates to a kind of attachment point discharging.
Background technology
Due to Ore stockpile, to have volume of cargo in storage large, and directly heap exists the advantages such as ground, and when storing up, ore deposit amount is large, or in the larger place of earthquake strength, generally use Ore stockpile heap ore deposit.At present Ore stockpile has strip stockyard, and two kinds, circular cone stockyard.Longitudinal continuous discharge need to be piled along ore deposit in strip stockyard, so need, with leaking mine car discharging, to leak in mine car body equipment, highly large, afterbody also needs the leakage mine car regression survival space of growing, so it is large to use this stockyard to take up an area, equipment investment is high, and construction investment is high.Use spaced apart circular cone heap field system along stockyard Width, to arrange many disposings mine mouth in bottom, stockyard, can increase the effective volume in stockyard like this, can also realize by the layout of discharge belt at the bottom of storehouse the mixing of edge material and middle material, make marker size even.But because interval, circular cone stockyard is arranged, use non-the store up district of leakage mine car discharging between stockyard to have the problem of spilling material, so cannot use Lou mine car discharging.
Summary of the invention
The purpose of this utility model is a kind ofly can actv. to spaced apart multistage circular cone storage stockyard, ore deposit, unload ore deposit, take up an area few, invest low, simple in structure, easy to maintenance, failure rate is low, ore deposit system is unloaded in the circular cone storage stockyard, ore deposit of the attachment point discharging that operating rate is high.
The purpose of this utility model realizes by following technical proposals:
Ore deposit system is unloaded in the circular cone storage stockyard, ore deposit of attachment point discharging of the present utility model, comprise spaced apart one group of circular cone storage stockyard, ore deposit, it is characterized in that being provided with belt conveying and discharge system above one group of described circular cone storage stockyard, ore deposit, this belt conveying and discharge system comprise feed belt conveyer, the belt discharge system that the ladder that feed belt conveyer is connected is therewith arranged, the belt discharge system that described ladder is arranged is by one-level discharge system, the secondary discharge system that one-level discharge system is connected therewith, until the N level discharge system being connected with N-1 level discharge system forms, discharge systems at different levels are located at respectively described top, one group of circular cone storage stockyard, ore deposit,
Described one-level, secondary unload ore deposit belt conveyer until any one-level discharge system in N-1 level discharge system includes this level, therewith arbitrarily one-level unload the head discharge funnel that ore deposit belt conveyer is connected, described head discharge funnel comprise with described any one-level unload material inlet I, the middle discharge gate that is located at this material inlet I bottom that ore deposit belt conveyer is connected, be located at discharge gate both sides in the middle of this side discharge gate, be located at two side discharge ports of these two side discharge gates bottoms
Described N level discharge system comprises that N level unloads ore deposit belt conveyer, N level is unloaded the N level head discharge funnel that ore deposit belt conveyer is connected therewith, described N level head discharge funnel comprises with described N level and unloads the material inlet II that ore deposit belt conveyer is connected, the dumping pit that material inlet II is connected therewith
The middle discharge gate of one-level is all located at the belt top that next stage unloads ore deposit belt conveyer arbitrarily.
Described N >=2.
Advantage of the present utility model:
(1) the ore deposit equipment that unloads that ore deposit belt conveyer is this section of circular cone storage stockyard, ore deposit that unloads of ore deposit system is unloaded in the circular cone of attachment point discharging of the present utility model storage stockyard, ore deposit, be again the feeding device in next section of circular cone storage stockyard, ore deposit, by controls, unload the startup of ore deposit belt conveyer and stop realizing and allow native system store to any one circular cone the object that ore deposit is unloaded in stockyard, ore deposit;
(2) circular cone of attachment point discharging of the present utility model storage stockyard, ore deposit unload ore deposit system to unload ore deposit belt conveyer head discharge funnel be threeway funnel, emptying point is fixed, and can to circular cone storage stockyard, ore deposit, carry out discharging by actv.;
(3) to unload ore deposit system architecture simple, easy to maintenance in the circular cone of attachment point discharging of the present utility model storage stockyard, ore deposit, failure rate is low, and operating rate is high, does not additionally increase special ore deposit equipment, the reduced investment of unloading.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the A-A view of the utility model Fig. 1.
The specific embodiment
Below in conjunction with accompanying drawing, further illustrate the specific embodiment of the present utility model.
As Fig. 1, shown in 2, ore deposit system is unloaded in the circular cone storage stockyard, ore deposit of attachment point discharging of the present utility model, comprise spaced apart one group of circular cone storage stockyard, ore deposit 7, it is characterized in that being provided with belt conveying and discharge system above one group of described circular cone storage stockyard, ore deposit 7, this belt conveying and discharge system comprise feed belt conveyer 6, the belt discharge system that the ladder that feed belt conveyer 6 is connected is therewith arranged, the belt discharge system that described ladder is arranged is by one-level discharge system, the secondary discharge system that one-level discharge system is connected therewith, until the N level discharge system being connected with N-1 level discharge system forms, discharge systems at different levels are located at respectively one group of described circular cone storage 7 top, stockyard, ore deposit,
Described one-level, secondary unload ore deposit belt conveyer 5 until any one-level discharge system in N-1 level discharge system includes this level, therewith arbitrarily one-level unload the head discharge funnel 3 that ore deposit belt conveyer 5 is connected, described head discharge funnel 3 comprise with described any one-level unload material inlet I 8, the middle discharge gate 9 that is located at these material inlet I 8 bottoms that ore deposit belt conveyer 5 is connected, be located at discharge gate 9 both sides in the middle of this side discharge gate 4, be located at two side discharge ports 10 of these two side discharge gate 4 bottoms
Described N level discharge system comprises that N level unloads ore deposit belt conveyer 11, N level is unloaded the N level head discharge funnel 1 that ore deposit belt conveyer 11 is connected therewith, described N level head discharge funnel 1 comprises with described N level and unloads the material inlet II that ore deposit belt conveyer is connected, the dumping pit 2 that material inlet II is connected therewith
The middle discharge gate 9 of one-level is all located at the belt top that next stage unloads ore deposit belt conveyer arbitrarily.
Described N >=2.
Mode of operation of the present utility model is:
In one group of circular cone storage stockyard, ore deposit 7, the top correspondence in each circular cone storage stockyard, ore deposit 7 is provided with discharge systems at different levels, when ores lifting is store 7 heap ore deposit, stockyard, ore deposit to circular cone, first by feed belt conveyer 6, flow to coupled one-level discharge system, be that ore flows to one-level from feed belt conveyer 6 and unloads ore deposit belt conveyer 5, material inlet I 8 material feedings by one-level discharge system, and by two side discharge gate 4 discharges of one-level discharge system, until first circular cone storage stockyard, ore deposit 7 piles with.Now, can be according to actual needs, if next circular cone storage stockyard, ore deposit 7 does not need to store ore deposit, the secondary that can close secondary discharge system unloads ore deposit belt conveyer; Otherwise if if ore deposit need to be store in next stage circular cone storage stockyard, ore deposit 7, can start secondary and unload ore deposit belt conveyer, ore can unload through the middle discharge gate 9 of one-level discharge system on the belt that ore deposit to secondary unloads ore deposit belt conveyer.By that analogy, ore unloads ore deposit step by step, until unload ore deposit to N level discharge system, storage ore deposit is a circular cone storage stockyard, ore deposit 7 in the end.
The ore deposit equipment that unloads that ore deposit belt conveyer is this section of circular cone storage stockyard, ore deposit that unloads of ore deposit system is unloaded in the circular cone storage stockyard, ore deposit of attachment point discharging of the present utility model, it is again the feeding device in next section of circular cone storage stockyard, ore deposit, by control, unload the startup of ore deposit belt conveyer and stop realizing and allow native system any one circular cone storage stockyard, ore deposit 7 be unloaded to the object in ore deposit, and it is simple to unload ore deposit system architecture, easy to maintenance, failure rate is low, operating rate is high, additionally do not increase special ore deposit equipment, the reduced investment of unloading.

Claims (2)

1. ore deposit system is unloaded in the circular cone of attachment point discharging storage stockyard, ore deposit, comprise spaced apart one group of circular cone storage stockyard, ore deposit, it is characterized in that being provided with belt conveying and discharge system above one group of described circular cone storage stockyard, ore deposit, this belt conveying and discharge system comprise feed belt conveyer, the belt discharge system that the ladder that feed belt conveyer is connected is therewith arranged, the belt discharge system that described ladder is arranged is by one-level discharge system, the secondary discharge system that one-level discharge system is connected therewith, until the N level discharge system being connected with N-1 level discharge system forms, discharge systems at different levels are located at respectively described top, one group of circular cone storage stockyard, ore deposit,
Described one-level, secondary unload ore deposit belt conveyer until any one-level discharge system in N-1 level discharge system includes this level, therewith arbitrarily one-level unload the head discharge funnel that ore deposit belt conveyer is connected, described head discharge funnel comprise with described any one-level unload material inlet I, the middle discharge gate that is located at this material inlet I bottom that ore deposit belt conveyer is connected, be located at discharge gate both sides in the middle of this side discharge gate, be located at two side discharge ports of these two side discharge gates bottoms
Described N level discharge system comprises that N level unloads ore deposit belt conveyer, N level is unloaded the N level head discharge funnel that ore deposit belt conveyer is connected therewith, described N level head discharge funnel comprises with described N level and unloads the material inlet II that ore deposit belt conveyer is connected, the dumping pit that material inlet II is connected therewith
The middle discharge gate of one-level is all located at the belt top that next stage unloads ore deposit belt conveyer arbitrarily.
2. ore deposit system is unloaded in the circular cone of attachment point discharging according to claim 1 storage stockyard, ore deposit, it is characterized in that described N >=2.
CN201320720324.3U 2013-11-15 2013-11-15 Conical ore storage yard ore unloading system capable of conducting fixed-point unloading Withdrawn - After Issue CN203545099U (en)

Priority Applications (1)

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CN201320720324.3U CN203545099U (en) 2013-11-15 2013-11-15 Conical ore storage yard ore unloading system capable of conducting fixed-point unloading

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Application Number Priority Date Filing Date Title
CN201320720324.3U CN203545099U (en) 2013-11-15 2013-11-15 Conical ore storage yard ore unloading system capable of conducting fixed-point unloading

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103723501A (en) * 2013-11-15 2014-04-16 中冶北方(大连)工程技术有限公司 Circular cone ore storage yard ore discharge system capable of conducting discharge at fixed point

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103723501A (en) * 2013-11-15 2014-04-16 中冶北方(大连)工程技术有限公司 Circular cone ore storage yard ore discharge system capable of conducting discharge at fixed point
CN103723501B (en) * 2013-11-15 2016-01-20 中冶北方(大连)工程技术有限公司 Ore deposit system is unloaded in the circular cone storage stockyard, ore deposit of attachment point discharging

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GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20140416

Effective date of abandoning: 20160120

C25 Abandonment of patent right or utility model to avoid double patenting