CN203903492U - Mineral aggregate storage system - Google Patents
Mineral aggregate storage system Download PDFInfo
- Publication number
- CN203903492U CN203903492U CN201420270999.7U CN201420270999U CN203903492U CN 203903492 U CN203903492 U CN 203903492U CN 201420270999 U CN201420270999 U CN 201420270999U CN 203903492 U CN203903492 U CN 203903492U
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- CN
- China
- Prior art keywords
- roller
- mineral aggregate
- aggregate
- load
- transfer device
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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
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- Filling Or Emptying Of Bunkers, Hoppers, And Tanks (AREA)
Abstract
The utility model discloses a mineral aggregate storage system. The mineral aggregate storage system comprises a bunker with a V-shaped bottom, a discharge hopper is mounted at the lowermost point of the bottom, and a cover plate is hinged to one side of an opening of the discharge hopper and connected with an air cylinder. The mineral aggregate storage system further comprises a support beam mount arranged in the bunker, conveying rollers are mounted at two ends of a crossbeam at the top of the support beam mount, and a conveying belt is wound on the conveying rollers; rails are arranged on two sides of the conveying belt and a dumper is arranged on the rails and comprises a frame and a driving device; a blanking roller and a transitional roller are fixed on the frame, the conveying belt is wound on the blanking roller and the transitional roller, a blanking hopper is fixed below the blanking roller, and discharge outlets of the blanking hopper are arranged on two sides of the rails. With the additionally arranged dumper, mineral aggregates on the conveying belt can uniformly fall into the bunker from two sides when the dumper moves back and forth, and the mineral aggregates can be more uniform during storage; capacity of the bunker can be sufficiently utilized, and discharge of the bunker can be controlled by the air cylinder through the discharge hopper at the bottom.
Description
technical field:
The utility model relates to mining equiment technical field, relates in particular to a kind of mineral aggregate aggregate-storing system.
background technology:
Traditional ore extraction industry is stacked aspect this and is conventionally just simply directly delivered to feed bin by load-transfer device at mineral aggregate, while adopting this simple mode to carry out mineral aggregate stacking, discharging point is for fixing, make the material cannot the whole feed bin of uniform filling, cause the waste of feed bin space, for some larger feed bins, need many conveyings to bring increase discharging point, this mode effect is bad and cost is also high, cannot effectively utilize space resources, and this problem does not obtain actv. solution in industry always.
In addition, by the also very inconvenience in the time that this transport is gone out of the mineral aggregate in feed bin, also the mineral aggregate in feed bin cannot be moved totally, particularly be worth higher mineral aggregate for some, waste precious resources.
utility model content:
The purpose of this utility model is exactly in order to solve existing issue, and provide a kind of mineral aggregate aggregate-storing system, while walking up and down by lorry, the mineral aggregate on load-transfer device is evenly fallen into feed bin, take full advantage of feed bin space, to being also suitable for compared with big material bin, cost is low, stablize durable, and whole mineral aggregate aggregate-storing system is closed, without dust, greatly improve working environment.
Technology solution of the present utility model is as follows:
A kind of mineral aggregate aggregate-storing system, comprising: feed bin, is positioned at support beam frame and the haul material storage mechanism of feed bin;
One end, described feed bin top is provided with inlet point;
Described support beam frame includes crossbeam and pillar stiffener, described crossbeam two ends are separately installed with active transportation roller and passive conveying roller, described active transportation roller is connected with drive motor, and active transportation roller and passive conveying roller tensioning have load-transfer device, and load-transfer device is accepted the supplied materials of inlet point;
Described material storage mechanism comprises lorry, lorry walks on crossbeam along load-transfer device, described lorry includes vehicle frame, wheel and actuating device, on described vehicle frame, be fixed with blanking roller and transition roller, blanking roller upwards climbs load-transfer device, transition roller is positioned at the below of blanking roller, and transition roller is close inlet point compared with blanking roller, load-transfer device is walked around blanking roller and transition roller successively, vehicle frame is provided with the material-falling hopper of load-transfer device blanking, the both sides of described material-falling hopper are respectively equipped with discharging opening, and discharging opening is to the discharging of load-transfer device both sides.
As preferably, described vehicle frame is feed end near one end of inlet point, and the other end is discharge end, and feed end is the slope of upwards climbing, and discharge end flushes with the top on slope, and blanking roller is positioned at discharge end.
As preferably, described crossbeam is provided with the track of guiding lorry motion, and described track is positioned at load-transfer device both sides, and the wheel of lorry is positioned on track, and the discharging opening of material-falling hopper stretches out outside track.
As preferably, described passive conveying roller is near the inlet point of feed bin, and active transportation roller is away from the inlet point of feed bin.
As preferably, described bin bottom is that V-type and bottom nadir are provided with discharge bucket, described discharge bucket bottom sides is hingedly connected with cover plate by connecting panel, and cover forward end is provided with the positioning plate being fixedly connected with discharge bucket, and cover forward end is provided with the positioning plate being fixedly connected with discharge bucket, described connecting panel is hingedly connected with cylinder, and the quantity of discharge bucket can be 1, can be also multiple.
As preferably, the wheel of described lorry bottom be two pairs or more, and wherein pair of wheels drives by actuating device, and described actuating device comprises drive motor and drive mechanism, and described drive mechanism is chain transmission, or gear transmission, or is with transmission.
As preferably, the inclined-plane, slope upwards climbing in described lorry feed end place and the angle of horizontal direction are 20 ° ~ 35 °.
As preferably, described blanking roller is positioned at load-transfer device below, and described transition roller is positioned at load-transfer device top.
As preferably, the V-type angle α of described bin bottom is 120 ° ~ 160 °.
As preferably, described cylinder push-rod top and connecting panel are articulated and connected, and cylinder block is fixedly connected with discharge bucket by the connecting rod that is fixed on discharge bucket side, and described cylinder is all connected with gas path pipe and master cock.
The beneficial effects of the utility model are:
1, at feed bin top design load-transfer device in conjunction with lorry, load-transfer device is around in to blanking roller and the transition roller on lorry, while walking up and down by lorry, the mineral aggregate on load-transfer device is evenly fallen into feed bin, take full advantage of feed bin space, and to being also suitable for compared with big material bin, cost is low, and energy consumption is low, stablizes durable.
2, bin bottom adopts V-type bottom surface, and discharge bucket is realized out by cylinder or be closed, easy to operate, very simple and convenient to the movement of mineral aggregate, blanking is fast, and makes noresidue mineral aggregate in feed bin, whole mineral aggregate aggregate-storing system is closed, without dust, has greatly improved working environment.
brief description of the drawings:
Fig. 1 is the utility model Facad structure schematic diagram;
Fig. 2 is the utility model construction profile schematic diagram;
Fig. 3 is the partial enlarged drawing in the utility model Facad structure schematic diagram;
Fig. 4 is lorry Facad structure schematic diagram in the utility model structure;
Fig. 5 be in the utility model structure lorry B to structural representation.
In figure: 1, feed bin; 2, inlet point; 3, discharge bucket; 4, connecting panel; 5, cover plate; 6, cylinder; 7, crossbeam; 8, pillar stiffener; 9, passive conveying roller; 10, load-transfer device; 11, track; 12, lorry; 13, active transportation roller; 14, positioning plate; 121, vehicle frame; 122, wheel; 123, actuating device; 124, feed end; 125, discharge end; 126, blanking roller; 127, transition roller; 128, material-falling hopper.
detailed description of the invention:
As Figure 1-5, a kind of mineral aggregate aggregate-storing system, comprising: feed bin 1, is positioned at support beam frame and the haul material storage mechanism of feed bin 1;
Described feed bin 1 one end, top is provided with inlet point 2;
Described support beam frame includes crossbeam 7 and pillar stiffener 8, described crossbeam 7 two ends are separately installed with active transportation roller 13 and passive conveying roller 9, described active transportation roller 13 is connected with drive motor, and active transportation roller 13 has load-transfer device 10 with passive conveying roller 9 tensionings, and load-transfer device 10 is accepted the supplied materials of inlet point;
Described material storage mechanism comprises lorry 12, lorry 12 walks on crossbeam 7 along load-transfer device 10, described lorry 12 includes vehicle frame 121, wheel 122 and actuating device 123, on described vehicle frame 121, be fixed with blanking roller 126 and transition roller 127, blanking roller 126 upwards climbs load-transfer device 10, transition roller 127 is positioned at the below of blanking roller 126, and transition roller 127 is close inlet point 2 compared with blanking roller 126, load-transfer device 10 is walked around blanking roller 126 and transition roller 127 successively, vehicle frame 121 is provided with the material-falling hopper 128 of load-transfer device 10 blankings, the both sides of described material-falling hopper 128 are respectively equipped with discharging opening, discharging opening is to load-transfer device 10 both sides dischargings,
Particularly, described blanking roller 126 is positioned at load-transfer device 10 belows, described transition roller 127 is positioned at load-transfer device 10 tops, make mineral aggregate utilize gravity to fall into material-falling hopper 128 through blanking roller 126 and transition roller 127, lorry 12 can all be transported into the mineral aggregate on whole piece load-transfer device 10 in feed bin 1 in the time moving back and forth simultaneously.
Particularly, described vehicle frame 121 is feed end 124 near one end of inlet point 2, and the other end is discharge end 125, the slope of feed end 124 for upwards climbing, and discharge end 125 flushes with the top on slope, and blanking rod 126 is positioned at discharge end.
Particularly, described lorry 12 inclined-planes of feed end 124 and the angle of horizontal direction are 20 ° ~ 35 °, and inclined-plane is steadily transported to blanking roller 126 for the mineral aggregate supporting on the first load-transfer device 10, make the first load-transfer device 10 stressed even in the time of haul, and mineral aggregate is carried steadily.
Particularly, crossbeam 7 is provided with the track 11 that guiding lorry 12 moves, and described track 11 is positioned at load-transfer device 10 both sides, and the wheel of lorry 12 is positioned on track 11, and the discharging opening of material-falling hopper 128 stretches out outside track.
Particularly, feed bin 1 bottom is that V-type and bottom nadir are provided with discharge bucket 3, described discharge bucket 3 bottom sides are hingedly connected with cover plate 5 by connecting panel 4, cover plate 5 is that arc and the center of circle are connecting panel 4 hinge-points, and after cover plate 5 closes, limited location plate 14 is withstood in one end, and positioning plate 14 is fixed on discharge bucket 3 open end sides, and connecting panel 4 is hingedly connected with cylinder 6.
Particularly, the V-type angle α of described feed bin 1 bottom is 120 ° ~ 160 °.
Particularly, described cylinder 6 push rod tops and connecting panel 4 are articulated and connected, cylinder body is fixedly connected with discharge bucket 3 by the connecting rod that is fixed on discharge bucket 3 sides, described cylinder 6 is all connected with gas path pipe and master cock, when control cylinder 6 is worked, when cylinder 6 push rods shrink, drive connecting panel 4 and cover plate 5 to rotate around the hinge-point of connecting panel 4, discharge bucket 3 discharging openings are opened, when cylinder 6 push rods protruding, drive connecting panel 4 and cover plate 5 to rotate around the hinge-point of connecting panel 4, discharge bucket 3 discharging openings are closed, and while closing, cover plate 5 positions are undertaken spacing by positioning plate 14.The quantity of discharge bucket can be 1, can be also multiple.
Particularly, described passive conveying roller 9 is near the inlet point 2 of feed bin 1, and active transportation roller 13 is away from the inlet point 2 of feed bin 1.
Particularly, the wheel 122 of described lorry 12 bottoms is two pairs or more, and wherein pair of wheels 122 drives by actuating device, described actuating device comprises drive motor and drive mechanism, described drive mechanism is chain transmission, or gear transmission, or band transmission.
Principle of work of the present utility model is: mineral aggregate is transported to the inlet point 2 of feed bin 1 and falls within on load-transfer device 10 through gig, load-transfer device 10 is not opened inlet point 2 one end by mineral aggregate to feed bin 1 with passive conveying roller 9 through active transportation roller 13 and is carried, load-transfer device 10 is around on the blanking roller 126 and transition roller 127 on lorry 12 simultaneously, because load-transfer device 10 send in stopping transportation not, lorry 12 is walked up and down the mineral aggregate on load-transfer device 10 is fallen into material-falling hopper 128 along track 11, thereby mineral aggregate is uniformly dispersed when the storing, makes full use of feed bin 1 space.
In the time the mineral aggregate in feed bin 1 need to being transferred out, the discharge bucket 3 that only need control feed bin 1 bottom by cylinder 6 is opened, and the mineral aggregate in feed bin 1 is outside discharge bucket 3 is transported to, and the feed bin 1 that bottom surface is V-type can be realized inner mineral aggregate without leaving over, and economizes on resources.
Other parts of not describing (part), principle of work are the known technology of those skilled in the art.
The foregoing is only the preferred embodiment of utility model, those of ordinary skill in the art are not making the every other embodiment obtaining under creative work prerequisite, all should belong to the scope of the utility model protection.
Claims (10)
1. a mineral aggregate aggregate-storing system, is characterized in that, comprising: feed bin (1), is positioned at support beam frame and the haul material storage mechanism of feed bin (1);
Described feed bin (1) one end, top is provided with inlet point (2);
Described support beam frame includes crossbeam (7) and pillar stiffener (8), described crossbeam (7) two ends are separately installed with active transportation roller (13) and passive conveying roller (9), described active transportation roller (13) is connected with drive motor, and active transportation roller (13) has load-transfer device (10) with passive conveying roller (9) tensioning;
Described material storage mechanism comprises lorry (12), lorry (12) is positioned on crossbeam (7), described lorry (12) includes vehicle frame (121), wheel (122) and actuating device (123), on described vehicle frame (121), be fixed with blanking roller (126) and transition roller (127), transition roller (127) is positioned at the below of blanking roller (126), and transition roller (127) is close inlet point (2) compared with blanking roller (126), load-transfer device (10) is walked around blanking roller (126) and transition roller (127) successively, vehicle frame (121) is provided with the material-falling hopper (128) of load-transfer device (10) blanking, the both sides of described material-falling hopper (128) are respectively equipped with discharging opening, discharging opening is to load-transfer device (10) both sides discharging.
2. mineral aggregate aggregate-storing system according to claim 1, it is characterized in that: described vehicle frame (121) is feed end (124) near one end of inlet point (2), the other end is discharge end (125), the slope of feed end (124) for upwards climbing, discharge end (125) flushes with the top on slope, and blanking roller (126) is positioned at discharge end.
3. mineral aggregate aggregate-storing system according to claim 1, it is characterized in that: described crossbeam (7) is provided with the track (11) of guiding lorry (12) motion, described track (11) is positioned at load-transfer device (10) both sides, it is upper that the wheel of lorry (12) is positioned at track (11), and the discharging opening of material-falling hopper (128) stretches out outside track (11).
4. mineral aggregate aggregate-storing system according to claim 1, is characterized in that: described passive conveying roller (9) is near the inlet point (2) of feed bin (1), and active transportation roller (13) is away from the inlet point (2) of feed bin (1).
5. mineral aggregate aggregate-storing system according to claim 1, it is characterized in that: described feed bin (1) bottom is provided with discharge bucket (3) for V-type and bottom nadir, described discharge bucket (3) bottom sides is hingedly connected with cover plate (5) by connecting panel (4), and cover plate (5) front end is provided with the positioning plate (14) being fixedly connected with discharge bucket (3), on described connecting panel (4), be hingedly connected with cylinder (6), the quantity of discharge bucket (3) can be 1, can be also multiple.
6. mineral aggregate aggregate-storing system according to claim 1, it is characterized in that: the wheel (122) of described lorry (12) bottom is two pairs or more, wherein pair of wheels (122) drives by actuating device, described actuating device comprises drive motor and drive mechanism, described drive mechanism is chain transmission, or gear transmission, or band transmission.
7. mineral aggregate aggregate-storing system according to claim 1, is characterized in that: the inclined-plane, slope that described lorry (12) feed end (124) is located upwards to climb and the angle of horizontal direction are 20 ° ~ 35 °.
8. mineral aggregate aggregate-storing system according to claim 1, is characterized in that: described blanking roller (126) is positioned at load-transfer device (10) below, and described transition roller (127) is positioned at load-transfer device (10) top.
9. mineral aggregate aggregate-storing system according to claim 5, is characterized in that: the V-type angle α of described feed bin (1) bottom is 120 ° ~ 160 °.
10. mineral aggregate aggregate-storing system according to claim 5, it is characterized in that: described cylinder (6) push rod top and connecting panel (4) are articulated and connected, cylinder (6) cylinder body is fixedly connected with discharge bucket (3) by the connecting rod that is fixed on discharge bucket (3) side, and described cylinder (6) is all connected with gas path pipe and master cock.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420270999.7U CN203903492U (en) | 2014-05-24 | 2014-05-24 | Mineral aggregate storage system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420270999.7U CN203903492U (en) | 2014-05-24 | 2014-05-24 | Mineral aggregate storage system |
Publications (1)
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CN203903492U true CN203903492U (en) | 2014-10-29 |
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CN201420270999.7U Expired - Fee Related CN203903492U (en) | 2014-05-24 | 2014-05-24 | Mineral aggregate storage system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105383845A (en) * | 2015-11-12 | 2016-03-09 | 浙江方源建材有限公司 | Warehouse entry stacking and transporting system for sintered product raw material storage warehouses |
-
2014
- 2014-05-24 CN CN201420270999.7U patent/CN203903492U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105383845A (en) * | 2015-11-12 | 2016-03-09 | 浙江方源建材有限公司 | Warehouse entry stacking and transporting system for sintered product raw material storage warehouses |
CN105383845B (en) * | 2015-11-12 | 2017-08-29 | 浙江方源建材有限公司 | A kind of depositing of sintered article raw material storehouse warehouse entry stacks transportation system |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20141029 |
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CF01 | Termination of patent right due to non-payment of annual fee |