CN202358745U - Material stacking device - Google Patents

Material stacking device Download PDF

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Publication number
CN202358745U
CN202358745U CN2011205019241U CN201120501924U CN202358745U CN 202358745 U CN202358745 U CN 202358745U CN 2011205019241 U CN2011205019241 U CN 2011205019241U CN 201120501924 U CN201120501924 U CN 201120501924U CN 202358745 U CN202358745 U CN 202358745U
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CN
China
Prior art keywords
track adjusting
adjusting wheel
air port
negative pressure
pressure air
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Expired - Fee Related
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CN2011205019241U
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Chinese (zh)
Inventor
林永华
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Individual
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Individual
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Priority to CN2011205019241U priority Critical patent/CN202358745U/en
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Abstract

The utility model discloses a material stacking device, comprising a conveying mechanism. The conveying mechanism comprises a main conveying unit and further comprises an auxiliary conveying unit and/or a stacking mechanism and a middle conveying unit, the auxiliary conveying unit is provided with a negative pressure air inlet, the stacking mechanism is provided with a negative pressure air inlet, the middle conveying unit is arranged in the motion direction of a bearing surface of the main conveying unit, and the auxiliary conveying unit is further provided with a positive pressure air inlet. All components of the material stacking device move in a matching manner so that materials can be continuously, quickly and stably stacked.

Description

A kind of material stack device
Technical field
The utility model relates to a kind of mass transport collator, particularly relates to a kind of material stack device.
Background technology
Along with the continuous development of material processing industry, the material processing industry to material pile up efficient require increasingly high.The high efficiency of material piles up its course of conveying of requirement and has advantages of higher stability, will guarantee that promptly the material of being carried can not produce fold in course of conveying.Publication number is that the Chinese invention patent of CN101723193A discloses a kind of " negative pressure conveyer for cardboards " on June 9th, 2010, and its technical scheme is: said invention is by drive motor, cardboard load-transfer device, axial flow fan, formations such as opto-electronic pickup.The some small-sized axial flow fans of the arranged beneath of cardboard load-transfer device; The negative pressure that the axial flow fan admission port is formed sees through the cardboard load-transfer device that has mesh and affacts and be transferred on the cardboard; The pressure that utilizes air cardboard is fixed on the cardboard load-transfer device firmly and with one of which with moving, and and load-transfer device between do not produce relative displacement.Its final beneficial effect of realizing is: realize that being transferred press board position in course of conveying does not change, promptly fold can not take place in paper in course of conveying.But, when getting into this conveyer, just fold may take place, and existing scheme can't address this problem for hardness or the bad paper of deflection.
Summary of the invention
The utility model wants the technical solution problem to be, providing a kind of can carry out the device that high speed is piled up to hardness or the not good plate material of deflection.
For solving above technical matters; The technical scheme of the utility model is: a kind of material stack device; Comprise conveying mechanism, said conveying mechanism comprises main supply unit, also comprises auxiliary supply unit that is provided with the negative pressure air port and/or the stacker mechanism that is provided with the negative pressure air port.
Improvement one as the utility model; The negative pressure air port that the said auxiliary supply unit that is provided with the negative pressure air port is provided with is the second negative pressure air port; The said stacker mechanism that is provided with the negative pressure air port comprise cooperatively interact pile up load-carrying unit and auxiliary stackable unit, said auxiliary stackable unit is provided with the 3rd negative pressure air port and/or the 4th negative pressure air port.
Further improve as the utility model; Said auxiliary stackable unit comprises the 3rd track adjusting wheel, the 4th track adjusting wheel, the 5th track adjusting wheel and is installed in second load-transfer device on said three track adjusting wheels that the angle between the plane at the axis place of the plane at the axis place of the axis of said the 3rd track adjusting wheel and said the 4th track adjusting wheel and the axis of said the 3rd track adjusting wheel and said the 5th track adjusting wheel is the obtuse angle.
As the utility model improvement further, the axis of said the 3rd track adjusting wheel is parallel with horizontal surface with the plane at the axis place of said the 4th track adjusting wheel; Said the 3rd track adjusting wheel and said distance of piling up between the load-carrying unit can be adjusted, and said the 4th track adjusting wheel and said distance of piling up between the load-carrying unit also can be adjusted.
Further improve as the utility model, the upside of second spigot surface between said the 3rd track adjusting wheel and said the 4th track adjusting wheel is provided with the three negative pressure air port of opening towards the below again; The upside of the 3rd spigot surface between said the 3rd track adjusting wheel and said the 5th track adjusting wheel is provided with the four negative pressure air port of opening towards the below.
As the improvement two of the utility model, said main supply unit comprises the first negative pressure air port.
Further improve as the utility model, said main supply unit comprises that also first carries carrying surface, said first carry carrying surface below be provided with towards above the said first negative pressure air port.
As the improvement three of the utility model, the negative pressure air port that the said auxiliary supply unit that is provided with the negative pressure air port is provided with is the second negative pressure air port.
Improvement four as the utility model; The said auxiliary supply unit that is provided with the negative pressure air port comprises first track adjusting wheel, second track adjusting wheel and is installed in first load-transfer device on said two track adjusting wheels that the vertical dimension of said first track adjusting wheel is greater than the vertical dimension of said second track adjusting wheel.
As the improvement five of the utility model, the said auxiliary supply unit that is provided with the negative pressure air port is provided with first track adjusting wheel and malleation air port, and said malleation air port is arranged on the top of said first track adjusting wheel.
Through implement the utility model desirable following beneficial effect:
A kind of material stack device comprises conveying mechanism, and conveying mechanism comprises main supply unit, also comprises auxiliary supply unit that is provided with the negative pressure air port and/or the stacker mechanism that is provided with the negative pressure air port; Being provided with the negative pressure air port that the auxiliary supply unit in negative pressure air port is provided with is the second negative pressure air port; The stacker mechanism that is provided with the negative pressure air port comprise cooperatively interact pile up load-carrying unit and auxiliary stackable unit, on auxiliary stackable unit, be provided with the 3rd negative pressure air port and/or the 4th negative pressure air port.The front end of main supply unit can be adsorbed by the first negative pressure air port, and the second negative pressure air port can be adsorbed on the part of supplied materials except that front end on the auxiliary supply unit, and supplied materials can move along with the motion of auxiliary supply unit, finally can be close on the main supply unit; The state of supplied materials can be at first adjusted in the 4th negative pressure air port on the auxiliary stackable unit; Be adsorbed on supplied materials on the 3rd spigot surface and and move along with the motion of the 3rd spigot surface; Can continue when finally arriving second spigot surface to move by the absorption of the 3rd negative pressure air port and along with the motion of second spigot surface; After arriving correct position; The adsorption affinity in the 3rd negative pressure air port reduces, and material will drop on and pile up on the load-carrying unit, and this motion process can thoroughly be stopped owing to the hardness of material or the bad problem that produces fold of deflection.
Auxiliary stackable unit comprises the 3rd track adjusting wheel, the 4th track adjusting wheel, the 5th track adjusting wheel and is installed in second load-transfer device on these three track adjusting wheels that the angle between the plane at the axis place of the plane at the axis place of the axis of the 3rd track adjusting wheel and the 4th track adjusting wheel and the axis of the 3rd track adjusting wheel and the 5th track adjusting wheel is the obtuse angle; The axis of the 3rd track adjusting wheel is parallel with horizontal surface with the plane at the axis place of the 4th track adjusting wheel; The 3rd track adjusting wheel and the distance of piling up between the load-carrying unit can be adjusted, and the 4th track adjusting wheel and the distance of piling up between the load-carrying unit also can be adjusted.Third and fourth guiding takes turns to the distance of piling up load-carrying unit and can adjust according to the height of front end supplied materials and the thickness of supplied materials itself, thereby lets the material that stack equipment can the flexible adaptation different-thickness, makes the field of application of stack equipment more extensive.
The auxiliary supply unit that is provided with the negative pressure air port comprises first track adjusting wheel, second track adjusting wheel and first load-transfer device on two track adjusting wheels is installed; The vertical dimension of first track adjusting wheel is greater than the vertical dimension of second track adjusting wheel; The auxiliary supply unit that is provided with the negative pressure air port is provided with first track adjusting wheel and malleation air port, and the malleation air port is arranged on the top of first track adjusting wheel.The malleation air port can let the front end of supplied materials press close to first carrying surface rapidly and adsorbed by the first negative pressure air port; Because the kinematic velocity of first load-transfer device is faster than the kinematic velocity of supplied materials; The front end of supplied materials can and pull and move by the absorption of main supply unit, thereby guarantees that supplied materials can not pile up with its rear end because of the kinematic velocity that its nose motion speed is lower than its rear end.
Description of drawings
Below in conjunction with Figure of description the utility model is done further detailed explanation:
Fig. 1 is the utility model structure diagram;
Fig. 2 is the utility model block diagram;
Fig. 3 is the utility model master supply unit block diagram;
Fig. 4 is the auxiliary supply unit block diagram of the utility model;
Fig. 5 is the utility model stacker mechanism block diagram.
The specific embodiment
As shown in Figure 1; A kind of material stack device; Comprise conveying mechanism 1; Said conveying mechanism 1 comprises main supply unit 11, also comprises auxiliary supply unit 12 that is provided with the negative pressure air port and the stacker mechanism 2 that is provided with the negative pressure air port, and being provided with the negative pressure air port that the auxiliary supply unit 12 in negative pressure air port is provided with is the second negative pressure air port 121.
In conjunction with Fig. 1, shown in Figure 2; Said conveying mechanism 1 also comprises the middle transport unit 13 that some edges said first carry the sense of motion of carrying surface 112 to be provided with; Second of said some middle transport unit 13 carry carrying surface 131 to increase successively to the vertical distance of the said first conveying carrying surface 112, and the operating speed of main supply unit 13 reduces successively.When material for example single watt of cardboard be transported to 13 last times of middle transport unit by main supply unit 11; Material can drop on the middle transport unit 13; Middle transport unit 13 can be pulled this material and it is transported to next middle transport unit; Because the kinematic velocity of middle transport unit 13 reduces successively, fold so single watt of cardboard can pile one on middle transport unit 13, and enter into stacker mechanism with a folded state.
Like Fig. 1, shown in Figure 3, said main supply unit 11 comprises the first negative pressure air port 111, comprises that also first carries carrying surface 112; Said first carry carrying surface 112 below be provided with towards above the said first negative pressure air port 111.
Like Fig. 1, shown in Figure 4; The said auxiliary supply unit 12 that is provided with the negative pressure air port comprises first track adjusting wheel 123, second track adjusting wheel 125 and is installed in first load-transfer device 124 on said two track adjusting wheels that the vertical dimension of said first track adjusting wheel 123 is greater than the vertical dimension of said second track adjusting wheel 125; The said auxiliary supply unit 12 that is provided with the negative pressure air port is provided with first track adjusting wheel 123 and malleation air port 126, and said malleation air port 126 is arranged on the top of said first track adjusting wheel 123.When the utility model is worked; After the front end of supplied materials arrives the first conveying carrying surface 112; Can carry carrying surface 112 near first rapidly and be adsorbed on said first under the wind effect that blows out in malleation air port 126 and carry on the carrying surface 112 by the first negative pressure air port 111; Because the kinematic velocity of first load-transfer device 124 is faster than the kinematic velocity of supplied materials, the front end of the front end supplied materials of supplied materials can and pull and move by main supply unit 11 absorption.
In conjunction with shown in Figure 5, the said stacker mechanism 2 that is provided with the negative pressure air port comprise cooperatively interact pile up load-carrying unit 22 and auxiliary stackable unit 21, said auxiliary stackable unit 21 is provided with the 3rd negative pressure air port 217 and/or the 4th negative pressure air port 213; Said auxiliary stackable unit 21 comprises the 3rd track adjusting wheel 214, the 4th track adjusting wheel 218, the 5th track adjusting wheel 211 and is installed in second load-transfer device 215 on said three track adjusting wheels, and the angle between the plane that the axis of the plane at the axis place of the axis of said the 3rd track adjusting wheel 214 and said the 4th track adjusting wheel 218 and the axis of said the 3rd track adjusting wheel 214 and said the 5th track adjusting wheel 211 belongs to is the obtuse angle; The axis of said the 3rd track adjusting wheel 214 is parallel with horizontal surface with the plane at the axis place of said the 4th track adjusting wheel 218; Said the 3rd track adjusting wheel 214 and said distance of piling up between the load-carrying unit 22 can be adjusted, and said the 4th track adjusting wheel 218 and said distance of piling up between the load-carrying unit 22 also can be adjusted; The upside of second spigot surface 216 between said the 3rd track adjusting wheel 214 and said the 4th track adjusting wheel 218 is provided with the three negative pressure air port 217 of opening towards the below, and the upside of the 3rd spigot surface 212 between said the 3rd track adjusting wheel 214 and said the 5th track adjusting wheel 211 is provided with the four negative pressure air port 213 of opening towards the below.
With reference to Fig. 2, shown in Figure 5; Supplied materials is during from middle supply unit 13 to auxiliary stackable unit 21; The attitude of supplied materials can be at first adjusted in the 4th negative pressure air port 213; Be adsorbed on supplied materials on the 3rd spigot surface 212 and let supplied materials move, can continue to move when finally arriving second spigot surface 216 by 217 absorption of the 3rd negative pressure air port and along with the motion of second spigot surface 216 along with the motion of the 3rd spigot surface 212, arrive correct position after; The adsorption affinity in the 3rd negative pressure air port 217 reduces, and material will drop on and pile up on the load-carrying unit 22.
Must be pointed out some indefiniteness casehistorys that the foregoing description is just made the utility model.But person of skill in the art will appreciate that under aim that does not depart from the utility model and scope, can make modification, replacement and change to the utility model, these revise, replace and change the protection domain that still belongs to the utility model.

Claims (10)

1. material stack device; Comprise conveying mechanism (1); Said conveying mechanism (1) comprises main supply unit (11), it is characterized in that: said conveying mechanism (1) also comprises auxiliary supply unit (12) that is provided with the negative pressure air port and/or the stacker mechanism (2) that is provided with the negative pressure air port.
2. a kind of material stack device according to claim 1; It is characterized in that: the said stacker mechanism (2) that is provided with the negative pressure air port comprise cooperatively interact pile up load-carrying unit (22) and auxiliary stackable unit (21), said auxiliary stackable unit (21) is provided with the 3rd negative pressure air port (217) and/or the 4th negative pressure air port (213).
3. a kind of material stack device according to claim 2; It is characterized in that: said auxiliary stackable unit (21) comprises the 3rd track adjusting wheel (214), the 4th track adjusting wheel (218), the 5th track adjusting wheel (211) and is installed in second load-transfer device (215) on said three track adjusting wheels that the angle between the plane at the axis place of the plane at the axis place of the axis of said the 3rd track adjusting wheel (214) and said the 4th track adjusting wheel (218) and the axis of said the 3rd track adjusting wheel (214) and said the 5th track adjusting wheel (211) is the obtuse angle.
4. a kind of material stack device according to claim 3; It is characterized in that: the axis of said the 3rd track adjusting wheel (214) is parallel with horizontal surface with the plane at the axis place of said the 4th track adjusting wheel (218); Said the 3rd track adjusting wheel (214) and said distance of piling up between the load-carrying unit (22) can be adjusted, and said the 4th track adjusting wheel (218) and said distance of piling up between the load-carrying unit (22) also can be adjusted.
5. according to claim 3 or 4 any one described a kind of material stack device, it is characterized in that: the upside of second spigot surface (216) between said the 3rd track adjusting wheel (214) and said the 4th track adjusting wheel (218) is provided with the three negative pressure air port (217) of opening towards the below; The upside of the 3rd spigot surface (212) between said the 3rd track adjusting wheel (214) and said the 5th track adjusting wheel (211) is provided with the four negative pressure air port (213) of opening towards the below.
6. a kind of material stack device according to claim 1 is characterized in that: said main supply unit (11) comprises the first negative pressure air port (111).
7. a kind of material stack device according to claim 6; It is characterized in that: said main supply unit (11) comprises that also first carries carrying surface (112), carries the below of carrying surface (112) to be provided with the said first negative pressure air port (111) towards the top said first.
8. a kind of material stack device according to claim 1 is characterized in that: the negative pressure air port that the said auxiliary supply unit (12) that is provided with the negative pressure air port is provided with is the second negative pressure air port (121).
9. according to any one described a kind of material stack device in the claim 1 to 4,6 to 8; It is characterized in that: the said auxiliary supply unit (12) that is provided with the negative pressure air port comprises first track adjusting wheel (123), second track adjusting wheel (125) and is installed in first load-transfer device (124) on said two track adjusting wheels that the vertical dimension of said first track adjusting wheel (123) is greater than the vertical dimension of said second track adjusting wheel (125).
10. according to any one described a kind of material stack device in the claim 1 to 4,6 to 8; It is characterized in that: the said auxiliary supply unit (12) that is provided with the negative pressure air port is provided with first track adjusting wheel (123) and malleation air port (126), and said malleation air port (126) is arranged on the top of said first track adjusting wheel (123).
CN2011205019241U 2011-12-06 2011-12-06 Material stacking device Expired - Fee Related CN202358745U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011205019241U CN202358745U (en) 2011-12-06 2011-12-06 Material stacking device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011205019241U CN202358745U (en) 2011-12-06 2011-12-06 Material stacking device

Publications (1)

Publication Number Publication Date
CN202358745U true CN202358745U (en) 2012-08-01

Family

ID=46569951

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2011205019241U Expired - Fee Related CN202358745U (en) 2011-12-06 2011-12-06 Material stacking device

Country Status (1)

Country Link
CN (1) CN202358745U (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: 20120801

Termination date: 20131206