CN117163699A - Loading and unloading system for wine box manufacturing - Google Patents

Loading and unloading system for wine box manufacturing Download PDF

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Publication number
CN117163699A
CN117163699A CN202311441874.6A CN202311441874A CN117163699A CN 117163699 A CN117163699 A CN 117163699A CN 202311441874 A CN202311441874 A CN 202311441874A CN 117163699 A CN117163699 A CN 117163699A
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China
Prior art keywords
adsorption
fixedly connected
tail
head
rubber cover
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CN202311441874.6A
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Chinese (zh)
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CN117163699B (en
Inventor
徐建平
杨庆荣
冯小军
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Taiyuan Wenbo Elaboration Packaging Color Printing Co ltd
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Taiyuan Wenbo Elaboration Packaging Color Printing Co ltd
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Application filed by Taiyuan Wenbo Elaboration Packaging Color Printing Co ltd filed Critical Taiyuan Wenbo Elaboration Packaging Color Printing Co ltd
Priority to CN202311441874.6A priority Critical patent/CN117163699B/en
Publication of CN117163699A publication Critical patent/CN117163699A/en
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Publication of CN117163699B publication Critical patent/CN117163699B/en
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Abstract

The invention provides a feeding and discharging system for wine box manufacturing, which belongs to the technical field of wine box manufacturing and comprises a conveying assembly, wherein an inner concave frame is arranged on the left side of the top of the conveying assembly, an assembly sheet is arranged on the head of the inner concave frame, a pair of rod bases are arranged at the tail of the assembly sheet, a screw thread bar is screwed between the pair of rod bases, a motor I is arranged on the rod base on the right side, and a rotary rod of the motor I is fixedly connected with one end of the screw thread bar. The invention solves the problems that the operator is easy to fatigue and the efficiency is low because the paper sheets are manually placed on the transport assembly during the paper sheet treatment.

Description

Loading and unloading system for wine box manufacturing
Technical Field
The invention belongs to the technical field of wine box manufacturing, and particularly relates to a loading and unloading system for wine box manufacturing.
Background
The wine box is a packing box for packing wine bottles, and firstly reflects the wine box which is usually placed in order and is covered by an eye curtain on a store shelf with full eyes in the tourmaline, so that the wine box packing plays a very important role in selling wine.
The wine box is characterized in that raw paper sheets are required to be taken for a series of post-treatment such as printing, gold stamping and the like during the manufacturing process, the paper sheets are usually transported through a transport assembly, the paper sheets are enabled to change the orientation between equipment capable of carrying out post-treatment on the paper sheets, the equipment capable of carrying out post-treatment on the paper sheets is usually arranged at two sides of the transport assembly, the paper sheets are placed on the transport assembly in the initial stage of the paper sheet treatment, and the paper sheets are usually placed manually, so that the fatigue of operators is easy to cause, the efficiency is low, and a loading and unloading system for manufacturing the wine box is provided.
Disclosure of Invention
The invention provides a loading and unloading system for manufacturing a wine box, and aims to solve the problems that in the initial stage of paper sheet processing, paper sheets are manually placed on a conveying assembly, so that operators are easy to fatigue and the efficiency is low.
The embodiment of the invention provides a loading and unloading system for wine box manufacturing, which comprises a transportation assembly, wherein an inner concave frame is arranged on the left side of the top of the transportation assembly, an assembly sheet is arranged on the head of the inner concave frame, a pair of rod bodies seats are arranged at the tail of the assembly sheet, a wire tooth bar is rotatably connected between a pair of rod bodies, a first motor is arranged on the rod bodies positioned on the right side, a rotary rod of the first motor is fixedly connected with one end of the wire tooth bar, a wire on the wire tooth bar is connected with a displacement table, an electric push rod is arranged at the tail of the displacement table, a movable end of the electric push rod is fixedly connected with a moving table, a plurality of supporting legs are arranged on the left side of the transportation assembly, a plurality of supporting legs are arranged at the top of the first supporting leg, a guide sheet is arranged on the right side of the transportation assembly, a storage box is arranged on the second supporting leg, a moving table is arranged at the tail of the storage box, a rotary rod of the first motor is fixedly connected with one end of the wire tooth bar, a movable table is fixedly connected with the top of the copper bar, the top of the copper bar is fixedly connected with the top of the copper bar, the copper bar is movably connected with the top of the copper bar is correspondingly, the copper bar is fixedly connected with the top of the copper bar is correspondingly in the copper bar is mounted, the copper bar is fixedly connected with the copper bar is correspondingly in the copper bar, the copper bar is mounted with the copper bar is.
Further, a second trigger point is arranged on the upper side of the first trigger point, and the head of the second trigger point is fixedly connected with the inside of the assembly table.
Further, the second trigger point is electrically connected with the PLC single-chip microcomputer through an electric wire, and cooling oil is added into the cooling chamber.
Further, the inside of the moving table is connected to the inside of the hollow chamber via the first connecting channel, and the head of the hollow chamber is connected to the inside of the hose and the negative pressure pump.
Further, the adsorption part comprises a connecting piece, the wall surface of the connecting piece is fixedly connected with the inside of the bearing table through a double-joint rod, the inner wall of the connecting piece is fixedly connected with a first rubber cover, a rubber ball body is arranged in the first rubber cover, the tail part of the connecting piece is fixedly connected with an adsorption piece, the head part of the adsorption piece is fixedly connected with the tail part of the first rubber cover, and an adsorption unit is arranged in a cavity formed by the first rubber cover.
Further, the adsorption unit comprises an evacuation channel, the head part of the evacuation channel sequentially passes through the first rubber cover, the connecting piece and the cooling chamber, the head part of the evacuation channel is communicated with the tail part of the first connecting channel, and the tail part of the evacuation channel is communicated with the check switch.
Further, the tail part of the adsorption sheet is fixedly connected with an adsorption cover, and the inside of the adsorption cover is communicated with a cavity formed by a hose II and a rubber cover I.
Further, the adsorption cover comprises a second rubber cover, an adsorption port is reserved in the second rubber cover, the head of the adsorption port is communicated with the tail of the second hose, and a groove body is reserved in the tail of the second rubber cover.
The beneficial effects of the invention are as follows:
1. the invention makes the displacement table shift and pull the electric push rod to the head of the wine box paper sheet through the rotation of the motor first traction screw bar, then makes the electric push rod drive the moving table to descend, makes the bearing table pull the top bar to move towards the head when touching the paper sheet, makes the trigger point be pulled towards the head by the top bar when the adsorption part in the bearing table touches the wall surface of the paper sheet, makes the trigger point first and the trigger point second touch comprehensively, makes the negative pressure pump operate at this moment, discharges the air flow in the adsorption part through the connecting channel first, makes the adsorption part adsorb the paper sheet at this moment, makes the trigger point first and the trigger point second separate due to the weight of the paper sheet after the adsorption is completed, makes the operation of the negative pressure pump end, compared with the prior art, when the adsorption part in the moving table adsorbs the paper sheet, the adsorption part touches the paper sheet, the bearing table receives the pressure, the pressing top bar is pressed to move towards the head in the assembly table, when the adsorption part in the bearing table touches the wall surface of the paper sheet, the triggering point is pulled by the top bar to move towards the head for a while, the first triggering point and the second triggering point are comprehensively touched, the PLC SCM enables the negative pressure pump to operate, air flow in the adsorption part is discharged through the first connecting channel, the adsorption part adsorbs the paper sheet and enables the paper sheet to move to one end of the transportation assembly, 5 pairs of the first triggering point and the second triggering point in the triggering part are arranged, when the first triggering point and the second triggering point are comprehensively touched, the PLC SCM can only control the negative pressure pump to suck the air flow in the adsorption part, the phenomenon that the adsorption part is not firm in adsorption during the process of adsorbing the paper sheet of the wine box is avoided, the paper sheet is dropped and damaged, when the paper sheet is conveyed, the adsorption part adsorbs the paper sheet firmly, and the adsorption part is under the action of the weight of the paper sheet itself, the trigger point I and the trigger point II in the trigger part are separated, the negative pressure pump in the moving table does not operate, vibration and noise are weakened by the negative pressure pump in the operation, the stability of carrying is ensured, the negative pressure pump does not operate, the energy loss can be reduced, the transport assembly can be matched with and does not operate when the negative pressure pump is carried to the left head part of the transport assembly, the electric push rod drives the moving table to descend, thereby the adsorption part can prevent paper sheets from being on the transport assembly and suffer compression, the trigger point I in the trigger part and the trigger point II are in double touch, the negative pressure pump is controlled, air flow is input into the adsorption part, the separation of the paper sheets is more rapid, the stability of paper sheet placement is ensured, the temperature-reducing oil in the temperature-reducing chamber can be used for carrying the adsorption part during the paper sheet carrying process, and the application time of the adsorption part is prolonged.
2. When the adsorption part comprehensively touches the paper sheets, the negative pressure pump discharges the air flow in the adsorption part through the first connecting channel, the pressure in the cavity formed by the first rubber cover is reduced, the adsorption cover stably adsorbs the paper sheets, when the negative pressure pump discharges the air flow in the adsorption part through the first connecting channel, the first rubber cover in the adsorption unit controls the circulation of the air flow, the pressure in the cavity formed by the first rubber cover is reduced, the negative pressure pump is not operated, the adsorption unit ensures the small pressure in the cavity formed by the first rubber cover, ensures firm adsorption paper sheets of the adsorption cover, avoids the air flow from returning to the cavity formed by the first rubber cover, and after the adsorption part adsorbs the paper sheets, the negative pressure pump operates the adsorption unit again to recharge the cavity formed by the first rubber cover, so that the paper sheets are separated more quickly, 6 adsorption units are arranged, the air flow in the cavity formed by the first rubber cover is ensured, the adsorption and separation of the paper sheets are operated more quickly and efficiently, the recovery of the negative pressure of the first rubber cover is stronger, the air flow in the adsorption unit is prevented from being discharged excessively, the first rubber cover is damaged, and the operation duration of the adsorption unit is shortened.
3. When the adsorption part touches the paper sheets, the rubber cover II in the adsorption cover and the paper sheets are pressed mutually, the shape of the rubber cover II is changed, the adsorption port discharges air flow in a cavity formed by the rubber cover II and the paper sheets, the rubber cover II in the adsorption cover has recoverability, the paper sheets are prevented from being damaged when the adsorption cover and the paper sheets are pressed mutually, a plurality of groups of adsorption ports in the adsorption cover are arranged, the paper sheets can be rapidly adsorbed, and when the adsorption port discharges air flow in the cavity formed by the rubber cover II and the paper sheets, the adsorption port ensures that the load at the touch position of the paper sheets is uniform, and the situation that part of the air flow bears larger load to cause the unsmooth paper sheets is avoided, so that the paper sheets are not usable is avoided.
Additional features and advantages of the invention will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. The objectives and other advantages of the invention may be realized and attained by the structure particularly pointed out in the written description and drawings.
Drawings
The accompanying drawings are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate the invention and together with the embodiments of the invention, serve to explain the invention. In the drawings:
FIG. 1 is a schematic diagram of an embodiment of the present invention;
FIG. 2 is a schematic cross-sectional view of a moving table according to an embodiment of the present invention;
FIG. 3 is a schematic view of a moving part according to an embodiment of the present invention;
FIG. 4 is a schematic diagram of an adsorption unit according to an embodiment of the present invention;
FIG. 5 is a schematic diagram of an adsorption cover according to an embodiment of the invention;
FIG. 6 is a schematic view of a transport assembly according to an embodiment of the present invention;
FIG. 7 is a schematic view of a structure of a belt according to an embodiment of the present invention;
FIG. 8 is a schematic diagram of a switch-on assembly according to an embodiment of the present invention;
FIG. 9 is a schematic view of a traction portion according to an embodiment of the present invention;
FIG. 10 is a schematic view of a sprocket I, a chain, and a sprocket II according to an embodiment of the present invention;
FIG. 11 is an exploded view of a displacement assembly according to an embodiment of the present invention;
FIG. 12 is a schematic diagram showing a combination of displacement assemblies according to an embodiment of the present invention;
reference numerals: 1. a transport assembly; 2. an electric push rod; 3. a concave frame; 4. assembling the sheet; 5. a rod body seat; 6. a first motor; 7. a screw thread bar; 8. placing the sheet; 9. the first supporting leg is; 10. a storage box; 11. a guide piece; 12. supporting the second leg; 13. an oscillator; 14. a displacement table; 16. a moving table; 164. rotating the rod; 1642. a negative pressure pump; 1643. a second motor; 165. a moving part; 1652. an assembly table; 1653. a trigger part; 16532. a top rod; 16533. spiral beryllium copper wire; 16534. triggering a first point; 16535. triggering a second point; 1654. a carrying platform; 1655. a hollow chamber; 1656. a temperature reducing chamber; 1657. a first connecting channel; 166. an adsorption unit; 1662. a connecting piece; 1663. a first rubber cover; 1664. rubber spheres; 1665. an adsorption sheet; 1666. an adsorption unit; 16662. an evacuation channel; 16663. a non-return switch; 1667. an adsorption cover; 16672. a second rubber cover; 16673. an adsorption port; 16674. a tank body; 112. a conveyor belt; 113. a first roller; 114. an auxiliary drum; 115. a supporting seat; 116. a variable movement port; 117. an adjustment assembly; 118. a motor A; 119. a sprocket I; 1110. a chain; 1121. a second chain wheel; 1122. a coupling table; 1123. switching on the assembly; 1124. a change component; 1125. a first screw bar; 1126. a silk mouth sleeve; 1127. a second connecting channel; 1128. a rotating disc with reserved tooth openings; 1129. an assembly seat; 1130. a handle; 1131. a second screw rod; 1132. the first station is connected; 1133. the second station is connected; 1134. switching on the first channel; 1135. the second channel is communicated; 1136. a first variable sheet; 1137. pressing the first rod; 1138. a connecting rod; 1139. a second variable sheet; 1140. pressing the second rod; 1141. the third channel is communicated; 1142. a third variable piece; 1143. pressing the third rod; 1144. the fourth channel is communicated; 1145. a displacement assembly; 1146. assembling a shell; 1147. a screw rod; 1148. a top platform; 1149. a follower stage; 1150. a displacement cylinder; 1151. and (5) displacing the ditch.
Detailed Description
In order to make the objects, technical solutions and advantages of the technical solutions of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of specific embodiments of the present invention. Like reference numerals in the drawings denote like parts. It should be noted that the described embodiments are some, but not all embodiments of the present invention. All other embodiments, which can be made by a person skilled in the art without creative efforts, based on the described embodiments of the present invention fall within the protection scope of the present invention.
Referring to fig. 1-12, an embodiment of the invention provides a feeding and discharging system for wine box manufacturing, which comprises a transportation assembly 1, wherein an inner concave frame 3 is arranged at the left side of the top of the transportation assembly 1, an assembly sheet 4 is arranged at the head of the inner concave frame 3, a pair of rod bases 5 are arranged at the tail of the assembly sheet 4, a first motor 6 is arranged on the rod base 5 positioned at the right side, a rotary rod of the first motor 6 is fixedly connected with one end of the first screw 7, a displacement table 14 is arranged on the first screw 7, an electric push rod 2 is arranged at the tail of the displacement table 14, a moving table 16 is fixedly connected with the movable end of the electric push rod 2, a plurality of first supporting legs 9 are arranged at the left side of the transportation assembly 1, a holding sheet 8 is arranged at the top of the first supporting legs 9, a guide sheet 11 is arranged at the right side of the transportation assembly 1, a plurality of second supporting legs 12 are arranged at the right side of the transportation assembly 1, a storage box 10 is arranged on the second supporting legs 12, the oscillator 13 is installed at the tail of the storage box 10, the negative pressure pump 1642 and the motor two 1643 are installed in the moving table 16, the moving part 165 is installed at the tail of the moving table 16, the moving part 165 comprises an assembling table 1652, the head of the assembling table 1652 is connected with the motor two 1643 in a rotating mode, the trigger part 1653 is connected in a changing mode inside the assembling table 1652, the tail of the trigger part 1653 is fixedly connected with the carrying table 1654, a hollow chamber 1655 and a cooling chamber 1656 are reserved inside the carrying table 1654, the tail of the carrying table 1654 is fixedly connected with the adsorption part 166, the trigger part 1653 comprises a top rod 16532, the wall surface of the top rod 16532 is connected with the inside of the assembling table 1652 in a changing mode, the head of the top rod 16532 is fixedly connected with the spiral beryllium copper wire 16533, the tail of the spiral beryllium copper wire 16533 is fixedly connected with the inside of the assembling table 1652, and the head of the top rod 16532 is fixedly connected with the trigger point one 16534.
The upper side of the first trigger point 16534 is provided with a second trigger point 16535, and the head of the second trigger point 16535 is fixedly connected with the inside of the assembly table 1652.
The inside of the trigger point two 16535 is electrically connected with the PLC single chip by a wire.
Cooling oil is added to the cooling chamber 1656.
The inside of the transfer table 16 is connected to the inside of the hollow chamber 1655 via a first connecting channel 1657, and the head of the hollow chamber 1655 is connected to the inside of the negative pressure pump 1642 via a hose.
When the device is used, the motor 6 can be utilized to pull the screw 7 to rotate so that the displacement table 14 changes, then the screw 7 drives the moving table 16 to fall down, the moving part 165 is utilized to absorb the wine box paper sheets to enable the wine box paper sheets to be displaced to the top of the conveying component 1, then the conveying component 1 conveys the wine box paper sheets, processing equipment can be arranged on the side of the conveying component 1, the paper sheets processed by the processing equipment fall into the storage box 10 through the guide piece 11, the oscillator 13 oscillates, the paper sheets can be stacked in order, the conveying component 1 can be transported in a variable span mode, and the number of the processing equipment arranged on the side of the conveying component 1 can be controlled.
In use, the displacement table 14 is driven by the rotation of the screw 7 to displace and pull the electric push rod 2 to the head of the wine box paper sheet, then the electric push rod 2 drives the moving table 16 to descend, when the carrying table 1654 touches the paper sheet, the pressure is exerted, the carrying table 1654 pulls the top rod 16532 to move towards the head, when the adsorption part 166 in the carrying table 1654 touches the wall surface of the paper sheet, the first trigger point 16534 is pulled towards the head by the top rod 16532 to displace, the first trigger point 16534 and the second trigger point 16535 are fully touched, at this time, the PLC singlechip enables the negative pressure pump 1642 to operate, the air flow in the adsorption part 166 is discharged through the connection channel one 1657, at this time, the adsorption part 166 adsorbs the paper sheet, after the adsorption is completed, the adsorption part 166 is separated from the second trigger point 16535 due to the action of the weight of the paper sheet itself, the operation of the negative pressure pump 1642 is finished, and when the paper sheet is adsorbed by the moving part 165, when the adsorption part 166 in the bearing table 1654 touches the paper, the bearing table 1654 is pressed by the paper to press the top rod 16532 to move towards the head inside the assembly table 1652, when the adsorption part 166 in the bearing table 1654 touches the wall surface of the paper, the first trigger point 16534 is pulled by the top rod 16532 to move towards the head, the first trigger point 16534 and the second trigger point 16535 are fully touched, the PLC singlechip enables the negative pressure pump 1642 to operate, the air flow in the adsorption part 166 is discharged through the first connection channel 1657, the adsorption part 166 adsorbs the paper and enables the paper to move to one end of the transport assembly 1, 5 pairs of the first trigger point 16534 and the second trigger point 16535 in the trigger part 1653 are arranged, the PLC can only control the negative pressure pump 1642 when the first trigger point 16534 and the second trigger point 16535 are fully touched, the air flow in the adsorption part 166 is sucked out, the phenomenon that the adsorption part 166 adsorbs the paper is not firmly adsorbed during the wine box is avoided, when the paper sheets are carried, after the adsorption part 166 adsorbs the paper sheets firmly, the adsorption part 166 is separated from the trigger point one 16534 and the trigger point two 16535 in the trigger part 1653 due to the action of the weight of the paper sheets, the negative pressure pump 1642 in the moving table 16 is not operated, the negative pressure pump 1642 is not operated to weaken vibration and noise, the carrying stability is ensured, the negative pressure pump 1642 is not operated to reduce energy consumption, when the paper sheets are carried to the left head part of the transport assembly 1, the transport assembly 1 can be matched to be not operated, the electric push rod 2 drives the moving table 16 to descend, so that the adsorption part 166 can prevent the paper sheets from being on the transport assembly 1 and is pressed, the trigger point one 16534 and the trigger point two 16535 in the trigger part 1653 are re-touched, the negative pressure pump 1642 is controlled, air flow is input into the adsorption part 166, the separation of the paper sheets is more rapid, the stability of the paper sheets is ensured, the cooling oil in the cooling chamber 1656 is ensured to cool the adsorption part 166 during the paper sheets are adsorbed by the adsorption part 166, the cooling energy load can be reduced, and the operation duration of the adsorption part 166 is prolonged.
The adsorption part 166 comprises a connecting piece 1662, wherein the wall surface of the connecting piece 1662 is fixedly connected with the inside of the bearing table 1654 through a double-joint rod, the inner wall of the connecting piece 1662 is fixedly connected with a rubber cover I1663, a rubber ball 1664 is arranged in the rubber cover I1663, the tail part of the connecting piece 1662 is fixedly connected with an adsorption piece 1665, the head part of the adsorption piece 1665 is fixedly connected with the tail part of the rubber cover I1663, and an adsorption unit 1666 is arranged in a cavity formed by the rubber cover I1663.
The adsorption unit 1666 includes an evacuation channel 16662, the head of the evacuation channel 16662 passes through the rubber cap 1663, the coupling piece 1662 and the cooling chamber 1656 in sequence, the head of the evacuation channel 16662 is connected to the tail of the coupling channel 1657, and the tail of the evacuation channel 16662 is connected to the check switch 16663.
The tail of the adsorption piece 1665 is fixedly connected with an adsorption cover 1667, and the inside of the adsorption cover 1667 is communicated with a cavity formed by a hose II and a rubber cover I1663.
During operation, when the adsorption part 166 fully touches the paper, the negative pressure pump 1642 discharges the air flow in the adsorption part 166 through the first 1657 connecting channel, the pressure in the cavity formed by the first 1663 connecting channel is reduced, the stable adsorption paper of the first 1667 connecting channel is adsorbed, when the negative pressure pump 1642 discharges the air flow in the adsorption part 166 through the first 1657 connecting channel, the first 1663 connecting channel is adsorbed in the adsorption unit 1666, the circulation of the air flow is controlled, the pressure in the cavity formed by the first 1663 connecting channel is reduced, the negative pressure pump 1642 is not operated, the adsorption unit 1666 ensures that the pressure in the cavity formed by the first 1663 connecting channel is small, ensures that the firm adsorption paper of the first 1667 connecting channel is adsorbed, the air flow is prevented from returning to the cavity formed by the first 1663 connecting channel, after the adsorption part 166 is adsorbed by the paper, the negative pressure pump 1666 re-operates the adsorption unit 1666 to re-charge the cavity formed by the first 1663 connecting channel, the air flow in the cavity formed by the first 1663 connecting channel is enabled to be separated more rapidly, the adsorption unit 1666 is ensured, the adsorption unit 1666 is enabled to operate the air flow in the cavity formed by the first 1663 connecting channel, the adsorption unit 1663 is enabled to operate more rapidly, the adsorption unit is enabled to operate, the adsorption unit 1664 is enabled to operate more efficiently, and the air flow in the cavity is prevented from being recovered by the suction unit 1666, and the suction unit is protected by the suction unit 166, and the suction unit is protected by the air.
Or the adsorption cover 1667 comprises a second rubber cover 16672, an adsorption port 16673 is reserved in the second rubber cover 16672, the head of the adsorption port 16673 is communicated with the tail of the second hose, and a groove 16674 is reserved at the tail of the second rubber cover 16672.
During operation, when the adsorption part 166 touches the paper, the second rubber cover 16672 in the adsorption cover 1667 and the paper are pressed against each other, the shape of the second rubber cover 16672 is changed, the adsorption port 16673 discharges the air flow in the cavity formed by the second rubber cover 16672 and the paper, the second rubber cover 16672 in the adsorption cover 1667 has the restorability, the paper is prevented from being damaged when the adsorption cover 1667 and the paper are pressed against each other, the adsorption port 16673 in the adsorption cover 1667 is provided with a plurality of groups, the paper can be rapidly adsorbed, and when the adsorption port 16673 discharges the air flow in the cavity formed by the second rubber cover 16672 and the paper, the adsorption port 16673 ensures that the load path at the touch position of the paper is symmetrical, and the situation that a part of load is borne is large to cause the paper to be uneven is avoided, thereby rendering the paper unusable.
The transporting assembly 1 comprises rollers and a transporting belt 112 arranged on the rollers, wherein 4 rollers are arranged, 2 rollers at the top are roller one 113, 2 rollers at the bottom are auxiliary rollers 114,4, the roller one 113 is connected to the top of a supporting seat 115 in a rotating way through two ends, the two ends of the auxiliary roller 114 are connected in a changing opening 116 of the supporting seat 115 in a changing way, the changing opening 116 is vertically arranged, an adjusting assembly 117 for adjusting the span between the roller one 113 and the auxiliary roller 114 together is arranged on the periphery of the supporting seat 115, a motor A118 is arranged on one side of the supporting seat 115, and the motor A118 enables the roller one 113 to operate through a chain wheel one 119, a chain 1110 and a chain wheel two 1121.
During operation, the span between the 2 rollers 113 can be adjusted by the adjusting component 117, and the span between the roller 113 and the auxiliary roller 114 is adjusted, when the span between the roller 113 is reduced, the span between the auxiliary roller 114 is reduced along with the same span between the roller 113, and the span between the roller 113 and the auxiliary roller 114 is increased, so that the tension of the conveyor belt 112 is ensured, the whole span can be adjusted, and the phenomenon that the conveyor belt 112 is loosened during adjustment can be prevented.
The rotation rod of the adjustment assembly 117 is fixedly coupled to a first sprocket 119, the first sprocket 119 is coupled to a second sprocket 1121 via a chain 1110, and the second sprocket 1121 is fixedly coupled to the first roller 113.
During operation, motor A118 starts traction sprocket one 119 to rotate, sprocket one 119 rotates through chain 1110 traction sprocket two 1121, thereby traction roller one 113 rotates, achieving the purpose of changing conveyor belt 112.
The auxiliary roller 114 is rotated to the bonding stage 1122, the wall surfaces of the bonding stage 1122 and the supporting base 115 are touched, and the adjusting unit 117 includes a switching unit 1123 for controlling the switching of the bonding stage 1122, and a switching unit 1124 for controlling the span between the 2 rollers 113, the switching unit 1124 operating the switching unit 1123.
The changing component 1124 includes a first screw rod 1125, two ends of the first screw rod 1125 are connected with a screw mouth sleeve 1126, the other 1 end of the screw mouth sleeve 1126 is fixedly connected with a second connecting channel 1127, the other 1 end of the second connecting channel 1127 is fixedly connected with a first connecting channel 1134 of the connecting component 1123, the other 1 end of the first connecting channel 1134 is fixedly connected with a first connecting platform 1132, the first connecting platform 1132 is fixedly connected with the head of the supporting seat 115, and the first screw rod 1125 is driven to rotate by a traction part.
The traction part comprises a rotating disc 1128 fixedly connected to the middle of a first screw rod 1125 and provided with a tooth mouth, an assembling seat 1129 is arranged at the tail part of the first screw rod 1125, the assembling seat 1129 is in screwed connection with the first screw rod 1125, a handle 1130 is screwed at the tail part of the assembling seat 1129, two ends of the handle 1130 are fixedly connected with a second screw rod 1131, and the second screw rod 1131 is connected with the rotating disc 1128 provided with the tooth mouth.
The connection component 1123 comprises a first connection table 1132 arranged at the top of the supporting seat 115 and a second connection table 1133 arranged at the bottom of the supporting seat 115, wherein the right side and the bottom of the first connection table 1132 are respectively fixedly connected with a first connection channel 1134 and a second connection channel 1135, a first variable sheet 1136 is movably connected in the first connection channel 1134, a first pressing rod 1137 is fixedly connected with the right side of the second connection table 1133, the first pressing rod 1137 is movably connected with the right side of the first connection channel 1134, the right side of the first pressing rod 1137 is screwed with a connecting rod 1138, the connecting rod 1138 is matched with the second connection channel 1127, and the right side of the connecting rod 1138 is fixedly connected with the first screw rod 1125; the second through channel 1135 is movably connected with the second changing piece 1139, the bottom of the second changing piece 1139 is fixedly connected with the second pressing rod 1140, and the bottom of the second pressing rod 1140 is fixedly connected with the connecting table 1122; the head of the second connecting table 1133 is fixedly connected with a third connecting channel 1141, and a third changing sheet 1142 is connected in the third connecting channel 1141 in a changing way; the top of the third variable sheet 1142 is fixedly connected with a third pressing rod 1143, the third pressing rod 1143 is fixedly connected with the connecting table 1122, the right side of the first connecting channel 1134 is connected with the second connecting table 1133 through the fourth connecting channel 1144, the first connecting table 1132 is used for connecting the first connecting channel 1134 with the second connecting channel 1135, and the second connecting table 1133 is used for connecting the third connecting channel 1141 with the fourth connecting channel 1144; the radial span of the first compression rod 1137 does not exceed the radial spans of the second compression rod 1140 and the third compression rod 1143, the radial span of the third variation sheet 1142 does not exceed the radial span of the second variation sheet 1139, and the radial span of the third communication channel 1141 does not exceed the radial span of the second communication channel 1135.
The bottom of the supporting seat 115 is provided with a displacement assembly 1145, the displacement assembly 1145 comprises an assembly shell 1146, the assembly shell 1146 is fixedly connected to the bottom of the supporting seat 115, an assembly chamber is reserved in the assembly shell 1146, the top of the assembly shell 1146 is screwed with a lead screw 1147, the lead screw 1147 is screwed with a top platform 1148, the top of the top platform 1148 is in variable connection with the wall surface of the assembly chamber, the bottom of the top platform 1148 is provided with a slope surface, the bottom of the assembly shell 1146 is provided with a following platform 1149, the top of the following platform 1149 is a slope surface, the bottom of the following platform 1149 is screwed with a plurality of displacement cylinders 1150, and two sides of the following platform 1149 are in variable connection with a displacement channel 1151 on two sides of the assembly shell 1146.
When the adjustment assembly 117 is in use, the mounting housing 1146 must be initially changed from an unchangeable condition to a changeable condition. By rotating the screw rod 1147, the screw rod 1147 can change the top platform 1148 screwed with the screw rod 1147, and during the change of the top platform 1148, the bottom slope of the top platform 1148 slowly presses the slope of the head of the following platform 1149, so that the following platform 1149 slowly moves towards the bottom until the displacement cylinder 1150 at the bottom of the following platform 1149 touches the placement surface, and the assembly housing 1146 is separated from the placement surface. Because the follower table 1149 and the top table 1148 are pressed against each other, the top of the top table 1148 and the top of the assembly chamber touch, and thus the screw 1147 is not easily bent, and the life time becomes long.
Then, the handle 1130 is rotated to rotate the screw rod two 1131, the screw rod two 1131 pulls the rotating disk 1128 with the reserved tooth mouth to rotate, the rotating disk 1128 with the reserved tooth mouth rotates to pull the screw rod one 1125 to rotate together, the screw rod one 1125 is connected with the screw rod sleeve 1126 in a screwed mode, the screw rod sleeves 1126 on two sides of the screw rod one 1125 are moved towards the middle portion together, the screw rod sleeve 1126 is pulled to pull the supporting seat 115 to move towards the middle portion through the connecting hollow column and the connecting channel one 1134, the roller one 113 and the auxiliary roller 114 are moved towards the middle portion together, the assembling seat 1129 is located in the original position during the period, the rotating disk 1128 with the reserved tooth mouth and the screw rod two 1131 are located in the original position, and the screw rod one 1125 rotates compared with the assembling seat 1129.
And when the through passage one 1134, the coupling hollow column and the screw 1147 are displaced toward the middle, the screw first 1125, the coupling rod 1138 and the pressing rod first 1137 are displaced toward the side, that is, toward the inside of the through passage one 1134. The first pressing bar 1137 can pull the first pressing moving bar 1136 to press the lubricating oil in the first connecting channel 1134 located on one side of the first pressing moving bar 1136, so that the lubricating oil on one side of the first connecting channel 1134 moves towards the second connecting channel 1135 through the first connecting table 1132, thereby pressing the second pressing moving bar 1139 in the second connecting channel 1135, and the second pressing bar 1140 is pulled to move towards the bottom together by the second pressing bar 1139, thereby moving the connecting table 1122 fixedly connected with the second pressing bar 1140 towards the bottom, and thus the traction auxiliary roller 114 moves towards the bottom along the moving opening 116 of the supporting seat 115.
During the movement of the coupling table 1122 toward the bottom, the third pressing rod 1143 is pressed, and the third pressing rod 1143 presses the third moving plate 1142, so that the lubricating oil in the third communicating channel 1141 moves toward the other 1 side of the first communicating channel 1134 via the fourth communicating channel 1144. Since the first through-channel 1134, the second through-channel 1135, and the third through-channel 1141 are always filled with lubricating oil, the connecting table 1122 can be ensured to be stable during operation without external influence.
Because the first compression rod 1137 is located on one side of the first variation plate 1136, when the first variation plate 1136 varies over a limited span, the chambers on both sides of the first variation plate 1136 are different, and therefore the radial span of the third through passage 1141 is not longer than the radial span of the second through passage 1135, that is, the displacement passing area of the third through passage 1141 and the first compression rod 1137 is the same as the displacement passing area of the second through passage 1135, so that the displacement span of the second compression rod 1140 and the third compression rod 1143 is the same.
The 2 vertical bars on one side are coupled via a double-bar, which weakens the load carried by the first access channel 1134, the hollow column of the coupling, the wire mouth sleeve 1126, the first wire bar 1125 during the 1-strut 115 movement.
The foregoing has shown and described the basic principles and main features of the present invention and the advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present invention, and various changes and modifications may be made without departing from the spirit and scope of the invention, which is defined in the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. The utility model provides a go up unloading system for wine box preparation, its characterized in that includes transportation subassembly (1), indent frame (3) are installed in the top left side of transportation subassembly (1), assembly piece (4) are installed to the head of indent frame (3), a pair of stick body seat (5) are installed to the afterbody of assembly piece (4), a pair of stick body seat (5) are with rotating wire feed bar (7), are located on the right side install motor one (6) on stick body seat (5), the dwang of motor one (6) links firmly with one end of wire feed bar (7), wire feed bar (7) go up silk and is followed movable table (14), electric push rod (2) are installed to the afterbody of movable end of movable table (14), movable end of movable table (16) are fixed in movable table (1), a plurality of support leg one (9) are installed on the left side of transportation subassembly (1), support leg one (8) are installed on the top of support leg one (9), support piece (12) are installed on the right side of the support leg one (1), support piece (12) are installed on the side (12) are installed on the second side of the support member (12), support piece (12) are installed on the second side (12) are installed on the motor one end (12), the tail of the moving table (16) is provided with a moving part (165), the moving part (165) comprises an assembling table (1652), the head of the assembling table (1652) is connected with a motor II (1643) in a rotating mode, a triggering part (1653) is connected with the inside of the assembling table (1652) in a changing mode, the tail of the triggering part (1653) is fixedly connected with a bearing table (1654), a hollow chamber (1655) and a cooling chamber (1656) are reserved in the bearing table (1654), the tail of the bearing table (1654) is fixedly connected with an adsorption part (166), the triggering part (1653) comprises a top rod (16532), the wall surface of the top rod (16532) is connected with the inside of the assembling table (1652) in a changing mode, the head of the top rod (16532) is fixedly connected with a spiral copper wire (16533), the tail of the spiral beryllium wire (16533) is fixedly connected with the inside of the assembling table (1652), and the head of the top rod (16532) is fixedly connected with a triggering point (16534).
2. The feeding and discharging system for wine box making according to claim 1, wherein: a second trigger point (16535) is arranged on the upper side of the first trigger point (16534), and the head of the second trigger point (16535) is fixedly connected with the inner side of the assembly table (1652).
3. The feeding and discharging system for wine box making according to claim 2, wherein: the inside of the second trigger point (16535) is electrically connected with the PLC single chip through an electric wire, and cooling oil is added into the cooling chamber (1656).
4. The feeding and discharging system for wine box making according to claim 1, wherein: the interior of the transfer table (16) is connected via a connecting channel one (1657) to the interior of the hollow chamber (1655), and the head of the hollow chamber (1655) is connected via a hose to the interior of the vacuum pump (1642).
5. The feeding and discharging system for wine box making according to claim 1, wherein: the adsorption part (166) comprises a connecting piece (1662), the wall surface of the connecting piece (1662) is fixedly connected with the inside of the bearing table (1654) through a double-joint rod, the inner wall of the connecting piece (1662) is fixedly connected with a first rubber cover (1663), a rubber ball (1664) is arranged in the first rubber cover (1663), the tail of the connecting piece (1662) is fixedly connected with an adsorption piece (1665), the head of the adsorption piece (1665) is fixedly connected with the tail of the first rubber cover (1663), and an adsorption unit (1666) is arranged in a cavity formed by the first rubber cover (1663).
6. The feeding and discharging system for wine box making according to claim 5, wherein: the adsorption unit (1666) comprises an evacuation channel (16662), the head of the evacuation channel (16662) sequentially passes through the rubber cover I (1663), the connecting piece (1662) and the cooling chamber (1656), the head of the evacuation channel (16662) is communicated with the tail of the connecting channel I (1657), and the tail of the evacuation channel (16662) is communicated with the check switch (16663).
7. The feeding and discharging system for wine box making according to claim 5, wherein: the tail part of the adsorption sheet (1665) is fixedly connected with an adsorption cover (1667), and the inside of the adsorption cover (1667) is communicated with a cavity formed by a hose II and a rubber cover I (1663).
8. The feeding and discharging system for wine box making according to claim 7, wherein: the adsorption cover (1667) comprises a second rubber cover (16672), an adsorption port (16673) is reserved in the second rubber cover (16672), the head of the adsorption port (16673) is communicated with the tail of the second hose, and a groove (16674) is reserved in the tail of the second rubber cover (16672).
CN202311441874.6A 2023-11-01 2023-11-01 Loading and unloading system for wine box manufacturing Active CN117163699B (en)

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