CN206032395U - Ore hoist is used in mine - Google Patents

Ore hoist is used in mine Download PDF

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Publication number
CN206032395U
CN206032395U CN201620942163.6U CN201620942163U CN206032395U CN 206032395 U CN206032395 U CN 206032395U CN 201620942163 U CN201620942163 U CN 201620942163U CN 206032395 U CN206032395 U CN 206032395U
Authority
CN
China
Prior art keywords
ore
support
board
pedestal
mine
Prior art date
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
CN201620942163.6U
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Chinese (zh)
Inventor
钱建农
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wuxi Hengda Mining Machinery Co Ltd
Original Assignee
Wuxi Hengda Mining Machinery 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
Publication date
Application filed by Wuxi Hengda Mining Machinery Co Ltd filed Critical Wuxi Hengda Mining Machinery Co Ltd
Priority to CN201620942163.6U priority Critical patent/CN206032395U/en
Application granted granted Critical
Publication of CN206032395U publication Critical patent/CN206032395U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses an ore hoist is used in mine, including board, support and base, the inner chamber of board is connected with the transmission wheel through the pivot equidistance, the equidistance is connected with ore stop gear on some conveyer belts of surface winding of transmission wheel, the bottom of board links to each other with the support through the shock attenuation supporting mechanism that is equipped with. The utility model discloses can improve holistic anti -seismic performance of lifting machine and stable ability for this lifting machine is durable more durable, has prevented that the lifting machine from receiving the vibrations wearing and tearing when using, when having lengthened the whole life of this lifting machine, can promote the in -process at the ore and carry on spacingly to the ore, avoids the ore to take place to break away from the lifting machine organism when promoting and the circumstances of hurting sb. 's feelings appears pounding, thereby improved the security that this lifting machine used.

Description

A kind of mine ore hoist
Technical field
This utility model is related to mining machinery technical field, specially a kind of mine ore hoist.
Background technology
Elevator is by changing the heavy mechanical equipment transported by potential energy, such as mine hoist, excessively dam elevator etc.. And ore hoist be it is a kind of Ore is lifted, be convenient for the auxiliary equipment of the work such as the broken processing of Ore, with The nowadays progress in market and the continuous development of mining machinery, different types of ore hoist on market, is occurred in that.
But, ore hoist stability at present on the market is poor, can usually produce when Ore is lifted and greatly rock, So that Ore can usually occur disengaging elevator body and occur injuring the situation of people by a crashing object, there is certain potential safety hazard, safety is low, And rocked due to extremely strong so that elevator is integrally given a shock abrasion, so as to have impact on the service life of elevator, contracting The service life of elevator is subtracted, it is difficult to meet the use demand of market and mine operation.
Utility model content
The purpose of this utility model is to provide a kind of mine ore hoist, possesses good stability, safe, knot Real durable, the advantage of long service life, solves that stability is poor, and safety is low, the short problem of service life.
For achieving the above object, this utility model provides following technical scheme:
A kind of mine ore hoist, including board, support and pedestal, the inner chamber of the board is equidistantly connected by rotating shaft Transmission wheel is connected to, one end of the rotating shaft is stretched out the positive position of board and is socketed with pinion, and the outer surface of the transmission wheel is twined Equidistantly be connected with Ore position-limit mechanism on the conveyer belt being wound with, the Ore position-limit mechanism include Ore supporting plate, even block, baffle plate and Circular hole, the side of the Ore supporting plate are connected with belt outer surface by even block, and the opposite side of Ore supporting plate is connected with baffle plate, The surface of Ore supporting plate and baffle plate offers the circular hole of dense distribution.
The front of the board is located at the position of pinion side and is provided with equipment gear, the side of the pinion and auxiliary Gear is meshed, and the bottom of the board is connected with support by the shock-absorbing support mechanism being provided with, the shock-absorbing support mechanism bag Include pole, through hole, gripper shoe, reinforcement block and cushion, the surface of the pole offers the through hole of dense distribution, the one of pole End is connected with board bottom, and the other end of pole is connected with the top of gripper shoe by reinforcement block, the surface of the gripper shoe bottom It is connected with support by cushion.
The side of the support is provided with pedestal, and the top of the pedestal is respectively equipped with motor and riser from bottom to up, described The power transmission shaft outer surface of motor is socketed with and is engaged the driving gear for connecting with equipment gear, and the bottom of the riser is connected with pedestal Tactile position is connected with locating piece, and the top of riser is connected with Ore feeding table, the ore deposit of the Ore feeding table by securing plate Stone exit position is located at the top of pinion.
Preferably, the side of the gripper shoe bottom is connected with particle collection table, and the inwall of particle collection table is provided with resistance to Mill layer.
Preferably, the support body bottom of the support is connected with the inside of non-slipping block, and the support body of support and is equidistantly connected with cross bar.
Preferably, the position that the bottom of the motor is contacted with pedestal is provided with backing plate, and the surface of backing plate bottom is provided with Striped.
Preferably, the position that the inner surface of the securing plate is contacted with Ore feeding table outer surface is provided with protective pad, and adds Gu plate is arranged in a mutually vertical manner with riser.
Compared with prior art, the beneficial effects of the utility model are as follows:
1st, this utility model can increase substantially elevator whole by arranging Ore position-limit mechanism and shock-absorbing support mechanism The anti-seismic performance of body and stability so that the elevator is more durable, largely reduce and are lifted in Ore When the overall vibrations yield of elevator, it is therefore prevented that elevator is given a shock abrasion when in use, effectively extends the elevator whole While body service life, Ore can be carried out in Ore lifting process spacing, it is to avoid Ore occurs to depart from when being lifted Elevator body occurs injuring the situation of people by a crashing object, so as to the safety that the elevator is used is greatly improved, with highly making With value and promotional value.
2nd, this utility model can reduce the vibrations that motor is produced in the running by backing plate, so as to further increase this The anti-seismic performance of elevator, the particle collection table of employing can quickly collect the Ore of Ore supporting plate surface detention, it is to avoid Ore What chip was excessive is trapped on the elevator body, and by the cooperation of non-slipping block and cross bar, it is possible to increase support it is overall with And the stability that elevator is overall, it is to avoid there is the phenomenon of displacement in the elevator when in use, so as to be conducive to the elevator Use, while by the cooperation of equipment gear, driving gear and pinion, it is possible to increase transmission wheel and conveyer belt in the elevator Between the lifting force that produces, so as to be conducive to the lifting operation of Ore.
Description of the drawings
Fig. 1 is this utility model structural representation;
Fig. 2 is structure enlarged diagram at the A of this utility model Fig. 1.
In figure:1 board, 2 rotating shafts, 3 transmission wheels, 4 conveyer belts, 5 equipment gears, 6 pinions, 7 Ore position-limit mechanisms, 71 ore deposits Stone supporting plate, 72 connect block, 73 baffle plates, 74 circular holes, 8 shock-absorbing support mechanisms, 81 poles, 82 through holes, 83 gripper shoes, the collection of 831 particles Platform, 84 reinforcement blocks, 85 cushions, 9 supports, 91 non-slipping blocks, 92 cross bars, 10 pedestals, 11 motors, 111 backing plates, 12 power transmission shafts, 13 Driving gear, 14 risers, 141 locating pieces, 15 securing plates, 151 protective pad, 16 Ore feeding tables.
Specific embodiment
Below in conjunction with the accompanying drawing in this utility model embodiment, the technical scheme in this utility model embodiment is carried out Clearly and completely describe, it is clear that described embodiment is only this utility model a part of embodiment, rather than whole Embodiment.Based on the embodiment in this utility model, those of ordinary skill in the art are not under the premise of creative work is made The every other embodiment for being obtained, belongs to the scope of this utility model protection.
Fig. 1-2 is referred to, a kind of mine ore hoist, including board 1, support 9 and pedestal 10, the inner chamber of board 1 Transmission wheel 3 is equidistantly connected with by rotating shaft 2, one end of rotating shaft 2 is stretched out 1 positive position of board and is socketed with pinion 6, transmission wheel Ore position-limit mechanism 7 is connected with equidistantly on the conveyer belt 4 that 3 outer surface is wound with.
Ore position-limit mechanism 7 includes Ore supporting plate 71, connects block 72, baffle plate 73 and circular hole 74, by Ore supporting plate 71, even block 72nd, baffle plate 73 and circular hole 74, can be carried out to Ore in Ore lifting process spacing, it is to avoid Ore occurs to depart from when being lifted Elevator body occurs injuring the situation of people by a crashing object, so as to the safety that the elevator is used is greatly improved, Ore supporting plate 71 Side is connected with 4 outer surface of conveyer belt by even block 72, and the opposite side of Ore supporting plate 71 is connected with baffle plate 73,71 He of Ore supporting plate The surface of baffle plate 73 offers the circular hole 74 of dense distribution, and the circular hole 74 can strengthen the entirety of Ore supporting plate 71 and baffle plate 73 Intensity.
The front of board 1 is located at the position of 6 side of pinion and is provided with equipment gear 5, the side of pinion 6 and equipment gear 5 are meshed, and the bottom of board 1 is connected with support 9 by the shock-absorbing support mechanism 8 being provided with, and shock-absorbing support mechanism 8 includes pole 81st, through hole 82, gripper shoe 83, reinforcement block 84 and cushion 85, by pole 81, through hole 82, gripper shoe 83, reinforcement block 84 and subtract Shake pad 85, can increase substantially the overall anti-seismic performance of elevator and stability so that the elevator is more solid resistance to With largely reducing the overall vibrations yield of when Ore is lifted elevator, it is therefore prevented that elevator is subject to when in use Vibrations abrasion, effectively extends the elevator whole service life, and the surface of pole 81 offers the through hole 82 of dense distribution, One end of bar 81 is connected with 1 bottom of board, and the other end of pole 81 is connected with the top of gripper shoe 83 by reinforcement block 84, gripper shoe The side of 83 bottoms is connected with particle collection table 831, and the particle collection table 831 of employing can quickly collect 71 surface of Ore supporting plate The Ore of delay, it is to avoid what Ore chip was excessive is trapped on the elevator body, and the inwall of particle collection table 831 is provided with resistance to Mill layer, the wearing layer can reduce the abrasion suffered when particle is derived of particle collection table 831, the surface of 83 bottom of gripper shoe It is connected with support 9 by cushion 85.
The support body bottom of support 9 is connected with the inside of non-slipping block 91, and the support body of support 9 and is equidistantly connected with cross bar 92, passes through The cooperation of non-slipping block 91 and cross bar 92, it is possible to increase the overall stability of 9 entirety of support and elevator, it is to avoid when in use There is the phenomenon of displacement in the elevator, so as to be conducive to the use of the elevator.
The side of support 9 is provided with pedestal 10, and the top of pedestal 10 is respectively equipped with motor 11 and riser 14, motor from bottom to up The position that 11 bottom is contacted with pedestal 10 is provided with backing plate 111, can reduce motor 11 by backing plate 111 and produce in the running Vibrations, so as to further increase the anti-seismic performance of the elevator, and the surface of 111 bottom of backing plate is provided with striped, the striped Can improve stability and steadiness of the backing plate 111 at the top of the pedestal 10,12 outer surface of power transmission shaft of motor 11 be socketed with The driving gear 13 that the engagement of equipment gear 5 connects, by the cooperation of equipment gear 5, driving gear 13 and pinion 6, Neng Gouti The lifting force produced between transmission wheel 3 and conveyer belt 4 in the high elevator, so that be conducive to the lifting operation of Ore.
The position that the bottom of riser 14 is contacted with pedestal 10 is connected with locating piece 141, and locating piece 141 can improve riser The steadiness of 14 entirety, the top of riser 14 are connected with Ore feeding table 16, the Ore of Ore feeding table 16 by securing plate 15 Exit position is located at the top of pinion 6, and the position that the inner surface of securing plate 15 is contacted with 16 outer surface of Ore feeding table sets There is protective pad 151, while protective pad 151 can improve steadiness between Ore feeding table 16 and securing plate 15, can reduce reinforcing Abrasion between plate 15 and Ore feeding table 16, and securing plate 15 is arranged in a mutually vertical manner with riser 14.
During use, start motor 11, Ore is placed on conveyer belt 4 by Ore feeding table 16, by motor 11 Under power transmission shaft 12 drives, the effect connected using the engagement of driving gear 13, equipment gear 5 and pinion 6 drives transmission wheel 3 to realize Circumference rotates, and so as to 4 circumference of driving conveying belt rotates so that Ore supporting plate 71 is moved, and Ore is lifted, is being lifted Process medium-height trestle 9,8 pairs of elevators of shock-absorbing support mechanism integrally carry out damping and increase steady acting on.
In sum:The mine safe durable type ore hoist of good stability, it is spacing by arranging Ore Mechanism 7 and shock-absorbing support mechanism 8, can increase substantially the overall anti-seismic performance of elevator and stability so that this carries The machine of liter is more durable, largely reduces the overall vibrations yield of elevator when Ore is lifted, it is therefore prevented that lifted Machine is given a shock abrasion when in use, while effectively extending the elevator whole service life, can be lifted in Ore Ore is carried out in journey spacing, it is to avoid Ore occurs disengaging elevator body and occurs injuring the situation of people by a crashing object when being lifted, so as to big Amplitude improves the safety that the elevator is used, and with highly use value and promotional value, it is poor to solve stability, peace Full property is low, the short problem of service life.
While there has been shown and described that embodiment of the present utility model, for the ordinary skill in the art, Be appreciated that these embodiments can be carried out various changes in the case of without departing from principle of the present utility model and spirit, repair Change, replace and modification, scope of the present utility model is defined by the appended claims and the equivalents thereof.

Claims (5)

1. a kind of mine ore hoist, including board(1), support(9)And pedestal(10), it is characterised in that:The board (1)Inner chamber pass through rotating shaft(2)Transmission wheel is connected with equidistantly(3), the rotating shaft(2)One end stretch out board(1)Positive position Put and be socketed with pinion(6), the transmission wheel(3)The conveyer belt that is wound with of outer surface(4)On to be equidistantly connected with Ore spacing Mechanism(7), the Ore position-limit mechanism(7)Including Ore supporting plate(71), even block(72), baffle plate(73)And circular hole(74), it is described Ore supporting plate(71)Side by even block(72)With conveyer belt(4)Outer surface is connected, Ore supporting plate(71)Opposite side connection There is baffle plate(73), Ore supporting plate(71)And baffle plate(73)Surface offer the circular hole of dense distribution(74);
The board(1)Front be located at pinion(6)The position of side is provided with equipment gear(5), the pinion(6)One Side and equipment gear(5)It is meshed, the board(1)Bottom by the shock-absorbing support mechanism that is provided with(8)With support(9)Phase Even, the shock-absorbing support mechanism(8)Including pole(81), through hole(82), gripper shoe(83), reinforcement block(84)And cushion (85), the pole(81)Surface offer the through hole of dense distribution(82), pole(81)One end and board(1)Bottom phase Even, pole(81)The other end pass through reinforcement block(84)With gripper shoe(83)Top is connected, the gripper shoe(83)The table of bottom Face passes through cushion(85)With support(9)It is connected;
The support(9)Side be provided with pedestal(10), the pedestal(10)Top be respectively equipped with motor from bottom to up(11) And riser(14), the motor(11)Power transmission shaft(12)Outer surface is socketed with and equipment gear(5)The driving tooth that engagement connects Wheel(13), the riser(14)Bottom and pedestal(10)The position for contacting is connected with locating piece(141), riser(14)Top Portion passes through securing plate(15)It is connected with Ore feeding table(16), the Ore feeding table(16)Ore exit position be located at secondary tooth Wheel(6)Top.
2. a kind of mine ore hoist according to claim 1, it is characterised in that:The gripper shoe(83)Bottom Side is connected with particle collection table(831), and particle collection table(831)Inwall be provided with wearing layer.
3. a kind of mine ore hoist according to claim 1, it is characterised in that:The support(9)Support body bottom Portion is connected with non-slipping block(91), and support(9)Support body on the inside of be equidistantly connected with cross bar(92).
4. a kind of mine ore hoist according to claim 1, it is characterised in that:The motor(11)Bottom with Pedestal(10)The position for contacting is provided with backing plate(111), and backing plate(111)The surface of bottom is provided with striped.
5. a kind of mine ore hoist according to claim 1, it is characterised in that:The securing plate(15)Interior table Face and Ore feeding table(16)The position that outer surface contacts is provided with protective pad(151), and securing plate(15)With riser(14)Mutually It is vertically arranged.
CN201620942163.6U 2016-08-26 2016-08-26 Ore hoist is used in mine Expired - Fee Related CN206032395U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620942163.6U CN206032395U (en) 2016-08-26 2016-08-26 Ore hoist is used in mine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620942163.6U CN206032395U (en) 2016-08-26 2016-08-26 Ore hoist is used in mine

Publications (1)

Publication Number Publication Date
CN206032395U true CN206032395U (en) 2017-03-22

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Application Number Title Priority Date Filing Date
CN201620942163.6U Expired - Fee Related CN206032395U (en) 2016-08-26 2016-08-26 Ore hoist is used in mine

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106241194A (en) * 2016-08-26 2016-12-21 无锡市恒达矿山机械有限公司 A kind of mine ore hoist stone elevator

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106241194A (en) * 2016-08-26 2016-12-21 无锡市恒达矿山机械有限公司 A kind of mine ore hoist stone elevator
CN106241194B (en) * 2016-08-26 2018-07-17 无锡市恒达矿山机械有限公司 A kind of mine ore hoist

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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
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20170322

Termination date: 20170826