CN204038625U - The lifting mechanism of stacking device - Google Patents

The lifting mechanism of stacking device Download PDF

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Publication number
CN204038625U
CN204038625U CN201420446127.1U CN201420446127U CN204038625U CN 204038625 U CN204038625 U CN 204038625U CN 201420446127 U CN201420446127 U CN 201420446127U CN 204038625 U CN204038625 U CN 204038625U
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CN
China
Prior art keywords
lifting mechanism
link span
winding plant
walker
natural number
Prior art date
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Expired - Fee Related
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CN201420446127.1U
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Chinese (zh)
Inventor
郝忠良
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XINYANG XIONGSHI EQUIPMENT TECHNOLOGY CO., LTD.
Original Assignee
XINYANG XIONGSHI BUILDING MATERIAL EQUIPMENT MANUFACTURE CO Ltd
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Priority to CN201420446127.1U priority Critical patent/CN204038625U/en
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Abstract

The utility model provides a kind of lifting mechanism of stacking device, comprise walker, winding plant, actuating device and link span, described winding plant and described actuating device are arranged on described walker respectively, described actuating device drives the reel of described winding plant, on the reel of described winding plant, volume is provided with steel rope, and described steel rope is connected with described link span.Described lifting mechanism also comprises the N group service hoisting cylinder be fixed on described walker, and piston rod and the described link span of described service hoisting cylinder are hinged, and N is natural number.Described lifting mechanism drives described link span to move up and down by described winding plant, ensures that described lifting mechanism is reliable, accurate positioning.Described service hoisting cylinder provides pulling force straight up, thus realizes moving up and down with the heavier mechanism of less power driven, can realize the object of efficient energy-saving, improve the stability of piling up operation simultaneously, ensure that piled bricks piles up quality.

Description

The lifting mechanism of stacking device
Technical field
The utility model relates to green brick stacking device, particularly relates to a kind of lifting mechanism of green brick stacking device.
Background technology
In brick and tile production technology, adobe goods need be piled up on request and carry out drying and sintering on kiln car, this operation by code stamp device realize.The lifting mechanism piled up in device of current domestic use usually adopts cantilevered connecting rod lifting structure, hydraulic ram lifting mechanism or adds counterweight block-type lifting mechanism.But the hoisting capacity of these lifting structures and finite rate, can only be used for small-sized section kiln.
In addition, the complicated in mechanical structure of piling up the lifting mechanism in device used at present, the problem such as fault rate is high, degree of automation is low, can not meet the needs piled up in time goods in middle high yield production process.
Utility model content
By Given this, in order to overcome existing technical matters, the necessary lifting mechanism that a kind of stacking device is provided of the utility model.
The technical scheme that the utility model provides is: a kind of lifting mechanism of stacking device, comprise walker, winding plant, actuating device and link span, described winding plant and described actuating device are arranged on described walker respectively, described actuating device drives the reel of described winding plant, on the reel of described winding plant, volume is provided with steel rope, and described steel rope is connected with described link span.
Described link span is provided with movable pulley, and described steel rope is connected with described link span by described movable pulley.Wherein, described movable pulley is provided with Connection Block, this Connection Block is fixed on described link span.
Described lifting mechanism also comprises N group service hoisting cylinder, and the cylinder body of described service hoisting cylinder is fixed on described walker, and piston rod and the described link span of described service hoisting cylinder are hinged, and N is natural number.Described N group described service hoisting cylinder is evenly distributed on the surrounding of described winding plant, N be not less than 1 natural number.
Described lifting mechanism also comprises M assembly guidance, described guide piece comprises the spacing orienting sleeve that lower end is fixed on the vertical guidepost on described link span and is vertically arranged on described walker, and described vertical guidepost is plugged in described spacing orienting sleeve, M is natural number.The described guide piece of M group is evenly distributed on the surrounding of described winding plant, M be not less than 1 natural number.
Described lifting mechanism also comprises M assembly guidance, described guide piece also can be comprise lower end to be fixed on upright guide rail on described link span and to be arranged on the upright slide block on described walker, and described upright slide block and described upright guide rail sliding block joint, M is natural number.The described guide piece of M group is evenly distributed on the surrounding of described winding plant, M be not less than 1 natural number.
Compared with prior art, the lifting mechanism that the utility model provides drives described link span to move up and down by described winding plant, ensures that described lifting mechanism is reliable, accurate positioning; Described service hoisting cylinder provides pulling force straight up, thus realizes moving up and down with the heavier mechanism of less power driven, can realize the object of efficient energy-saving, improve the stability of piling up operation simultaneously, ensure that piled bricks piles up quality; Described service hoisting cylinder adopts N group service hoisting cylinder to replace the balance that clump weight regulates described link span, can avoid potential safety hazard, reduce and pile up working environment danger coefficient; As can be seen here, described lifting mechanism has higher degree of automation, needs the requirement of piling up in time goods in meeting in high yield production process; In addition, described lifting mechanism also has the advantages such as structure is simple, failure rate is low.
Accompanying drawing explanation
Fig. 1 is the structural representation of the lifting mechanism that the utility model embodiment provides.
Wherein, the element numbers in figure: 1, walker, 2, service hoisting cylinder, 21, cylinder block, 22, cylinder piston rod, 23, cylinder hinged seat, 3, winding plant, 31, reel, 32, steel rope, 33, Connection Block, 4, actuating device, 5, guide piece, 51, vertically guidepost, 52, spacing orienting sleeve, 6, link span.
Detailed description of the invention
Below by detailed description of the invention, the technical solution of the utility model is described in further detail.
Refer to Fig. 1, the utility model embodiment provides a kind of lifting mechanism of stacking device, and this lifting structure comprises walker 1, N group service hoisting cylinder 2, winding plant 3, actuating device 4, M assembly guidance 5 and link span 6.Wherein, described actuating device 4 to be arranged on described walker 1 and to drive described winding plant 3, described N group service hoisting cylinder 2, described winding plant 3 and described M assembly guidance 5 are arranged on described walker 1 and described link span 6, and described N group service hoisting cylinder 2 and described M assembly guidance 5 are that center of symmetry is symmetrical on described walker 1 and described link span 6 with described winding plant 3 respectively.Described lifting mechanism is mainly used for being elevated described link span 6, adobe to be piled up appropriate height.
Described N group service hoisting cylinder 2 is evenly distributed on the surrounding of described winding plant 3.Described N group service hoisting cylinder 2 is symmetrical on described walker 1, for providing balancing force upwards, to alleviate the load of described winding plant 3 and to provide balancing force for described link span 6.In the present embodiment, described N group service hoisting cylinder 2 is two groups of service hoisting cylinders 2, often organize the cylinder hinged seat 23 that service hoisting cylinder 2 comprises the cylinder block 21 be fixed on described walker 1, cylinder piston rod 22 and is fixed on described link span 6, this cylinder piston rod 22 is hinged with described link span 6 by described cylinder hinged seat 23.Described cylinder block 21 forms rod chamber, passes into pressurized air in this bar chamber, produces pulling force upwards, so can alleviate the load of described winding plant 3.By controlling quantity and the air pressure of the cylinder in described service hoisting cylinder 2, the balancing force of different size can be produced, meet the requirements of counterbalance effect.Described service hoisting cylinder 2 is for while described lifting mechanism provides pulling force upwards, can also ensure that described link span 6 is in state of equilibrium, realize moving up and down with the heavier mechanism of less power driven, the object of efficient energy-saving can be reached, so, described service hoisting cylinder 2 can improve the stability of piling up operation, ensures that piled bricks piles up quality.
Be appreciated that the concrete structure of described service hoisting cylinder is not limit, as long as its cylinder body is fixed on described walker, its piston rod and described link span hinged, e.g., described service hoisting cylinder 2 also can replace with hydraulic actuating cylinder or electric cylinder.In addition, the selection of the quantity of described service hoisting cylinder 2 is mainly used for the balance regulating described link span 6, so the quantity of service hoisting cylinder 2 is N, N is natural number.When N is the natural number being not less than 1, N group described service hoisting cylinder is evenly distributed on the surrounding of described winding plant 3.The concrete quantity of described service hoisting cylinder 2 can be determined according to actual demand.
Described winding plant 3 is mainly used for being elevated described link span 6, and it mainly comprises reel 31 and steel rope 32, and this steel rope 32 is connected with described link span 6.Described reel 31 drives by described actuating device 4 and rotates, and is arranged on the top of described walker 1, and wherein, described actuating device 4 includes motor and speed reducer.One end of described steel rope 32 is wound on reel 31, and the other end is fixed on described winding plant 3 or described walker 1 through after pulley.Described pulley is arranged on described link span 6.Described link span 6 is fixed with Connection Block 33.Described pulley is connected with described link span 6 by described Connection Block 33.Described reel 31, under the driving of described actuating device 4, according to cw or left-hand revolution, makes described steel rope 32 drive link span 6 to move up and down by described pulley and described Connection Block 33.In the present embodiment, one end of described steel rope 32 is wound on reel 31, the other end is fixed on described reel 31 through after pulley, described reel 31 is positioned in the symmetric position of described N group service hoisting cylinder 2 on described walker 1, and described Connection Block 33 is positioned in the symmetric position of described N number of cylinder piston rod 22 and described N number of cylinder hinged seat 23.Alternatively, described N group service hoisting cylinder 2 is symmetrical centered by described reel 31 on described walker 1, and described N group service hoisting cylinder 2 is symmetrically distributed on described link span 6 centered by described Connection Block 33.
Described M assembly guidance 5 is evenly distributed on the surrounding of described winding plant.Particularly, described M assembly guidance 5 is symmetrical arranged centered by described reel 31 on described walker 1, and is symmetrical arranged on described link span 6 centered by the Connection Block 33 of described winding plant 3.Described M assembly guidance 5 is fixed on the outside of described N group service hoisting cylinder 2.In the present embodiment, described M assembly guidance 5 is two assembly guidances 5, and each guide piece 5 comprises vertical guidepost 51 and is enclosed within the spacing orienting sleeve 52 of this vertical guidepost 51 outside face.The lower end of described vertical guidepost 51 is fixed on described link span 6.Described spacing orienting sleeve 52 is fixed on described walker 1.Described vertical guidepost 51 vertically can slide and form slide guide device in described spacing orienting sleeve 52, thus ensures that described link span can do vertical displacement movement reposefully.
The concrete structure of described guide piece 5 is not limited to the structure of foregoing description, only has it to be mainly used for guiding the movement technique of described link span 6, and guarantees what described link span 6 in the vertical direction moved up and down.As, described guide piece 5 can also draw together upright guide rail and upright slide block, and described upright guide rail vertically can slide on described upright slide block, and described upright guide rail is fixed on described link span, and described upright slide block is arranged on described walker.The quantity M of the described guide piece 5 in described lifting mechanism does not limit, and M is natural number, when M is the natural number being not less than 1, as long as described M assembly guidance 5 can be evenly distributed on the surrounding of described winding plant 3.
When described lifting mechanism work, described actuating device 4 drives described reel 31 along cw or left-hand revolution, described steel rope 32 to be wrapped on described reel 31 or to free from this reel 31 and drives described link span 6 and described vertical guidepost 51 to move in described spacing orienting sleeve 52, thus makes described link span 6 do vertical displacement movement under the guiding of described guide piece 5.While described link span 6 moves up and down, control number of cylinders and the air pressure of described service hoisting cylinder 2, and pressurized air is passed into provide pulling force straight up in the bar chamber of described cylinder block 21, while the described link span 6 of guarantee balances, alleviate the load of described hoisting mechanism 3, therefore, under the effect of described service hoisting cylinder 2, described link span 6 is in state of equilibrium all the time, also make described lifting mechanism realize realizing dipping and heaving with the heavier mechanism of less power driven simultaneously, the object of efficient energy-saving can be realized, improve the stability of piling up operation simultaneously, ensure that piled bricks piles up quality.
Therefore, the lifting mechanism that the utility model embodiment provides drives the dipping and heaving of described link span 6 by described winding plant 3, ensures that described lifting mechanism is reliable, accurate positioning.In addition, described service hoisting cylinder adopts a plurality of cylinders to replace clump weight of the prior art, can avoid potential safety hazard, reduces the danger coefficient piling up working environment; The lifting mechanism that the utility model embodiment provides has higher degree of automation, the needs piled up in time goods in high yield production process in meeting.Described lifting mechanism also has the advantages such as structure is simple, failure rate is low.
Finally should be noted that: above embodiment is only in order to illustrate that the technical solution of the utility model is not intended to limit; Although be described in detail the utility model with reference to preferred embodiment, those of ordinary skill in the field have been to be understood that: still can modify to detailed description of the invention of the present utility model or carry out equivalent replacement to portion of techniques feature; And not departing from the spirit of technical solutions of the utility model, it all should be encompassed in the middle of the technical scheme scope of the utility model request protection.

Claims (10)

1. the lifting mechanism of a stacking device, comprise walker and link span, it is characterized in that: it also comprises and is arranged on winding plant on described walker and actuating device respectively, described actuating device drives the reel of described winding plant, on the reel of described winding plant, volume is provided with steel rope, and described steel rope is connected with described link span.
2. lifting mechanism as claimed in claim 1, is characterized in that: described link span is provided with movable pulley, and described steel rope is connected with described link span by described movable pulley.
3. lifting mechanism as claimed in claim 1 or 2, it is characterized in that: it also comprises N group service hoisting cylinder, the cylinder body of described service hoisting cylinder is fixed on described walker, and piston rod and the described link span of described service hoisting cylinder are hinged, and N is natural number.
4. lifting mechanism as claimed in claim 3, is characterized in that: N group described service hoisting cylinder is evenly distributed on the surrounding of described winding plant, N be not less than 1 natural number.
5. lifting mechanism as claimed in claim 3, it is characterized in that: it also comprises M assembly guidance, described guide piece comprises the spacing orienting sleeve that lower end is fixed on the vertical guidepost on described link span and is vertically arranged on described walker, wherein, described vertical guidepost is plugged in described spacing orienting sleeve, and M is natural number.
6. lifting mechanism as claimed in claim 5, is characterized in that: M assembly guidance is evenly distributed on the surrounding of described winding plant, M be not less than 1 natural number.
7. lifting mechanism as claimed in claim 1 or 2, it is characterized in that: it also comprises M assembly guidance, described guide piece comprises the spacing orienting sleeve that lower end is fixed on the vertical guidepost on described link span and is vertically arranged on described walker, wherein, described vertical guidepost is plugged in described spacing orienting sleeve, and M is natural number.
8. lifting mechanism as claimed in claim 7, is characterized in that: M assembly guidance is evenly distributed on the surrounding of described winding plant, M be not less than 1 natural number.
9. lifting mechanism as claimed in claim 1 or 2, it is characterized in that: it also comprises M assembly guidance, described guide piece comprises the upright slide block that lower end is fixed on the upright guide rail on described link span and is vertically arranged on described walker, wherein, described upright slide block and described upright guide rail sliding block joint, M is natural number.
10. lifting mechanism as claimed in claim 9, is characterized in that: M assembly guidance is evenly distributed on the surrounding of described winding plant, M be not less than 1 natural number.
CN201420446127.1U 2014-08-08 2014-08-08 The lifting mechanism of stacking device Expired - Fee Related CN204038625U (en)

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CN201420446127.1U CN204038625U (en) 2014-08-08 2014-08-08 The lifting mechanism of stacking device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420446127.1U CN204038625U (en) 2014-08-08 2014-08-08 The lifting mechanism of stacking device

Publications (1)

Publication Number Publication Date
CN204038625U true CN204038625U (en) 2014-12-24

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104150229A (en) * 2014-08-08 2014-11-19 信阳雄狮建材设备制造有限公司 Lifting mechanism of automatic stacking device
CN109279340A (en) * 2018-09-04 2019-01-29 广州华智汽车部件有限公司 A kind of automotive seat coil inserting apparatus
CN114348911A (en) * 2021-10-29 2022-04-15 河南省机械设计研究院有限公司 Lifting device of stacker crane

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104150229A (en) * 2014-08-08 2014-11-19 信阳雄狮建材设备制造有限公司 Lifting mechanism of automatic stacking device
CN109279340A (en) * 2018-09-04 2019-01-29 广州华智汽车部件有限公司 A kind of automotive seat coil inserting apparatus
CN109279340B (en) * 2018-09-04 2024-03-08 广州华智汽车部件有限公司 Automobile seat offline device
CN114348911A (en) * 2021-10-29 2022-04-15 河南省机械设计研究院有限公司 Lifting device of stacker crane

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C14 Grant of patent or utility model
GR01 Patent grant
C56 Change in the name or address of the patentee
CP01 Change in the name or title of a patent holder

Address after: 464000 Xinyang industrial city, Henan Province, No. nine, No. 18

Patentee after: XINYANG XIONGSHI EQUIPMENT TECHNOLOGY CO., LTD.

Address before: 464000 Xinyang industrial city, Henan Province, No. nine, No. 18

Patentee before: Xinyang Xiongshi Building Material Equipment Manufacture Co., Ltd.

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: 20141224

Termination date: 20190808