CN220055753U - Feeding table of bonding machine - Google Patents

Feeding table of bonding machine Download PDF

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Publication number
CN220055753U
CN220055753U CN202321097279.0U CN202321097279U CN220055753U CN 220055753 U CN220055753 U CN 220055753U CN 202321097279 U CN202321097279 U CN 202321097279U CN 220055753 U CN220055753 U CN 220055753U
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CN
China
Prior art keywords
machine
long
rotating shaft
short
conveying belt
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CN202321097279.0U
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Chinese (zh)
Inventor
温凡
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Jiangsu Weishi Intelligent Equipment Co ltd
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Jiangsu Weishi Intelligent Equipment Co ltd
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Priority to CN202321097279.0U priority Critical patent/CN220055753U/en
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Abstract

The utility model discloses a feeding table of a bonding machine, which comprises a first machine table, a second machine table and a feeding assembly, wherein the width of the first machine table is larger than that of the second machine table, the second machine table is fixed at the center position of one end of the first machine table, the feeding assembly comprises a long conveying belt and two short conveying belts, one end of the long conveying belt is in rotating fit connection with one end of the first machine table far away from the second machine table, the other end of the long conveying belt is in rotating fit connection with one end of the second machine table far away from the first machine table, the two short conveying belts are respectively arranged on two sides of the long conveying belt, and two ends of the short conveying belt are respectively in rotating fit connection with two ends of the first machine table, so that labor cost required by the feeding table of the bonding machine is reduced.

Description

Feeding table of bonding machine
Technical Field
The utility model relates to the technical field of bonding machines, in particular to a feeding table of a bonding machine.
Background
The feeding table of the bonding machine is a feeding device in a cloth processing production line and mainly used for conveying semi-finished products or finished products to a specific station.
The existing feeding table of the bonding machine is used for conveying a plurality of fabrics simultaneously, a widened machine design mode is adopted, the width of the machine is large in this mode, a plurality of fabrics can be conveyed simultaneously, a plurality of workers are required to work normally due to the large width of the machine, the workers can work normally at the same time, one worker stands on the left side and the right side of the machine generally, one worker stands in the middle of the front end of the machine, all fabrics conveyed on the surface of the machine can be monitored simultaneously, and if only two workers stand on the two sides of the machine for operation respectively, the middle part of the machine cannot be monitored.
In this way, a plurality of workers are required to operate simultaneously, and the labor cost is high.
Disclosure of Invention
Based on the above-mentioned problems existing in the prior art, an object of an embodiment of the present utility model is to: the utility model provides a bonder feeding table, reduces the cost of labor of bonder feeding table.
The technical scheme adopted for solving the technical problems is as follows: the utility model provides an adhesive machine pay-off platform, includes board one, board two and pay-off subassembly, board one's width is greater than board two's width, just board two is fixed in the centre position of board one-to-one, the pay-off subassembly includes long conveyer belt and two weak point conveyer belts, long conveyer belt one end with board one keep away from board two's one end normal running fit links to each other, long conveyer belt the other end with board two keep away from board one's one end normal running fit links to each other, two weak point conveyer belts are located respectively the both sides of long conveyer belt, the both ends of weak point conveyer belt respectively with board one's both ends normal running fit links to each other.
Further, the feeding assembly comprises a short rotating shaft, a first long rotating shaft and a second long rotating shaft, one end of the first long conveying belt is sleeved on the short rotating shaft, one end of the second long conveying belt, which is far away from the short rotating shaft, is sleeved on the middle position of the second long rotating shaft, the first long rotating shaft penetrates through the first long conveying belt, two ends of the second short conveying belt are sleeved on the first long rotating shaft and the end of the second long rotating shaft respectively, a first pair of through holes and a second pair of through holes are formed in the first machine, two ends of the first long rotating shaft penetrate through the first through holes, two ends of the second long rotating shaft penetrate through the second through holes, a third pair of through holes are formed in the second machine, and two ends of the short rotating shaft penetrate through the third through holes.
Further, the feeding assembly comprises a pair of baffle rods, wherein the baffle rods are arranged between the long conveying belt and the short conveying belt, and two ends of the baffle rods are fixedly connected with the first long rotating shaft and the second long rotating shaft respectively.
Further, a first long carrier plate, a second long carrier plate and a small carrier plate are fixed on the first machine, the first long carrier plate, the second long carrier plate and the small carrier plate pass through the long conveying belt and the short conveying belt, a first short carrier plate and a second short carrier plate are fixed on the second machine, and the first short carrier plate and the second short carrier plate pass through the long conveying belt.
Further, a first support is arranged on the first machine, a second support is arranged on the second machine, a gear is arranged on the second support, the gear is connected with the second support in a rotating fit mode, a middle rotating shaft is arranged at the joint of the first machine and the second machine, one end of the middle rotating shaft is connected with the first support in a rotating fit mode, and the other end of the middle rotating shaft is connected with the second support in a rotating fit mode.
Further, a pair of first protecting sleeves and second protecting sleeves are arranged on the first machine, the first protecting sleeves are fixed on the first machine and sleeve the end parts of the first long rotating shaft and the second long rotating shaft inside, the second protecting sleeves are fixed on the first machine and sleeve the end parts of the middle rotating shaft inside, the first protecting sleeves are connected with the second protecting sleeves, the connecting parts of the first protecting sleeves and the second protecting sleeves are communicated, a pair of third protecting sleeves, a fourth protecting sleeves and a fifth protecting sleeves are arranged on the second machine, the third protecting sleeves are fixed on the second machine and sleeve the end parts of the short rotating shaft inside, the fourth protecting sleeves are fixed on the second machine and sleeve the end parts of the long conveying belt inside, and the fifth protecting sleeves are fixed on the second machine and sleeve the gear inside.
Compared with the prior art, the utility model has the following beneficial effects:
1. the feeding table of the bonding machine is arranged in a segmented mode of the first machine table and the second machine table, the width of the second machine table is smaller than that of the first machine table, and the first machine table and the second machine table are arranged at the middle position of one end of the first machine table, so that a similar step structure exists between the first machine table and the second machine table;
2. the baffle rod is arranged between the long conveying belt and the short conveying belt, so that the long conveying belt and the short conveying belt are not easy to interfere with each other when the cloth is conveyed, and the long conveying belt and the short conveying belt can independently convey different kinds of cloth;
3. the first long carrier plate, the second long carrier plate and the small carrier plate are arranged on the first machine table, and the first short carrier plate and the second short carrier plate are arranged on the second machine table, so that after cloth is placed on the long conveying belt and the short conveying belt, the first long carrier plate, the second long carrier plate, the small carrier plate, the first short carrier plate and the second short carrier plate are used for supporting, the long conveying belt and the short conveying belt are not deformed to an excessive extent due to the compression of the cloth, and the long conveying belt, the short conveying belt and parts in the machine table are prevented from being rubbed or clamped with each other;
4. the gear is connected with one end of the short rotating shaft in a chain transmission mode, the gear is connected with the intermediate rotating shaft support in a chain transmission or belt transmission mode, the short rotating shaft and the intermediate rotating shaft can synchronously rotate, at the moment, one end of the intermediate rotating shaft and one end of the long rotating shaft are connected in a chain transmission or belt transmission mode, the intermediate rotating shaft and the long rotating shaft can synchronously rotate, namely, the synchronous rotation of the short rotating shaft and the long rotating shaft is realized, the long conveying belt and the short conveying belt can run at the same movement speed, the cloth conveying efficiency is kept consistent, and the follow-up uniform treatment of the cloth is facilitated.
Drawings
The utility model is further described below with reference to the drawings and examples.
In the figure:
FIG. 1 is a schematic perspective view of a bonder feeding station in accordance with the present utility model;
FIG. 2 is an exploded view of the bonder feeder station of the present utility model;
FIG. 3 is a schematic perspective view of the first and second machines in FIG. 1;
FIG. 4 is an exploded view of the first and second tools of FIG. 1;
FIG. 5 is an enlarged schematic view of portion A of FIG. 4;
FIG. 6 is an enlarged schematic view of portion B of FIG. 4;
FIG. 7 is a schematic perspective view of the feed assembly of FIG. 1;
FIG. 8 is an exploded view of the feed assembly of FIG. 1;
in the figure:
11. a first machine; 12. a second machine; 13. a feeding assembly;
111. a first protective sleeve; 112. a second protective sleeve; 113. a long carrier plate I; 114. a long carrier plate II; 115. a small carrier plate; 116. a first bracket; 117. a middle rotating shaft;
1101. perforating first; 1102. punching a second 1102;
121. a third protective sleeve; 122. a protective sleeve IV; 123. a fifth protective sleeve; 124. a short carrier plate I; 125. a second short carrier plate; 126. a second bracket;
1201. perforating third;
1261. a gear;
131. a long conveyor belt; 132. a short conveyor belt; 133. a short rotating shaft; 134. a long rotating shaft I; 135. a second long rotating shaft; 136. a gear lever.
Detailed Description
The present utility model will now be described in detail with reference to the accompanying drawings. The figure is a simplified schematic diagram illustrating the basic structure of the utility model only by way of illustration, and therefore it shows only the constitution related to the utility model.
Referring to fig. 1-8, the present utility model provides the following technical solutions: a feeding table of an adhesive machine comprises a first table 11, a second table 12 and a feeding assembly 13.
The first machine 11 is provided with a first pair of protective sleeves 111, a second protective sleeve 112, a first long carrier plate 113, a second long carrier plate 114, a small carrier plate 115 and a first bracket 116, and the first machine 11 is provided with a first pair of perforations 1101 and a second pair of perforations 1102.
The first protective sleeve 111 is connected with the second protective sleeve 112, and the connection part of the first protective sleeve 111 and the second protective sleeve 112 is communicated.
The width of the first machine 11 is larger than that of the second machine 12, and the second machine 12 is fixed at the center of one end of the first machine 11.
One end of the long conveying belt 131 is connected with one end of the first machine 11, which is far away from the second machine 12, in a rotating fit manner, the other end of the long conveying belt 131 is connected with one end of the second machine 12, which is far away from the first machine 11, in a rotating fit manner, two short conveying belts 132 are respectively arranged on two sides of the long conveying belt 131, and two ends of the short conveying belt 132 are respectively connected with two ends of the first machine 11 in a rotating fit manner.
The second machine 12 is provided with a pair of third protective sleeves 121, fourth protective sleeves 122, fifth protective sleeves 123, a first short carrier plate 124, a second short carrier plate 125, a second bracket 126, and the second machine 12 is provided with a pair of third through holes 1201.
The junction of board one 11 and board two 12 is equipped with the jackshaft 117, and the one end of jackshaft 117 links to each other with support one 116 normal running fit, and the other end of jackshaft 117 links to each other with support two 126 normal running fit.
The second bracket 126 is provided with a gear 1261, and the gear 1261 is connected with the second bracket 126 in a rotating fit manner.
The feeding assembly 13 includes a long conveyor belt 131, two short conveyor belts 132, a short rotating shaft 133, a long rotating shaft one 134, a long rotating shaft two 135, and a pair of levers 136.
One end of the long conveying belt 131 is sleeved on the short rotating shaft 133, one end of the long conveying belt 131 far away from the short rotating shaft 133 is sleeved on the middle position of the long rotating shaft II 135, the long rotating shaft I134 penetrates through the long conveying belt 131, and two ends of the short conveying belt 132 are sleeved on the ends of the long rotating shaft I134 and the long rotating shaft II 135 respectively.
Two ends of the first long rotating shaft 134 are arranged in the first perforation 1101 in a penetrating manner, two ends of the second long rotating shaft 135 are arranged in the second perforation 1102 in a penetrating manner, two ends of the short rotating shaft 133 are arranged in the third perforation 1201 in a penetrating manner, the baffle rod 136 is arranged between the long conveying belt 131 and the short conveying belt 132, and two ends of the baffle rod 136 are fixedly connected with the first long rotating shaft 134 and the second long rotating shaft 135 respectively.
The long carrier plate 113, the long carrier plate 114 and the small carrier plate 115 pass through the long conveying belt 131 and the short conveying belt 132, and the short carrier plate 124 and the short carrier plate 125 pass through the long conveying belt 131.
The first protecting sleeve 111 is fixed on the first machine 11, the ends of the first long rotating shaft 134 and the second long rotating shaft 135 are sleeved inside, the second protecting sleeve 112 is fixed on the first machine 11, the end of the middle rotating shaft 117 is sleeved inside, the third protecting sleeve 121 is fixed on the second machine 12, the end of the short rotating shaft 133 is sleeved inside, the fourth protecting sleeve 122 is fixed on the second machine 12, the end of the long conveying belt 131 is sleeved inside, and the fifth protecting sleeve 123 is fixed on the second machine 12, and the gear 1261 is sleeved inside.
The feeding tables of the bonding machine are arranged in a segmented mode of the first machine table 11 and the second machine table 12, the second machine table 12 is smaller than the first machine table 11 in width and is arranged in the middle of one end of the first machine table 11, a step-like structure exists between the first machine table 11 and the second machine table 12, in this mode, only two workers need to stand at the joint of the second machine table 12 and the first machine table 11 respectively, and the long conveying belt 131 and the cloth on the two short conveying belts 132 can be operated at the same time, so that labor cost is reduced.
By providing the stopper 136 between the long and short conveyor belts 131 and 132, the long and short conveyor belts 131 and 132 are not easily interfered with each other when transporting cloth, and the long and short conveyor belts 131 and 132 can independently transport different kinds of cloth.
By arranging the first long carrier plate 113, the second long carrier plate 114 and the second small carrier plate 115 on the first machine 11 and arranging the first short carrier plate 124 and the second short carrier plate 125 on the second machine 12, after the cloth is placed on the long conveying belt 131 and the short conveying belt 132, the first long carrier plate 113, the second long carrier plate 114, the second small carrier plate 115, the first short carrier plate 124 and the second short carrier plate 125 are supported, and the long conveying belt 131 and the short conveying belt 132 are not deformed to an excessive extent due to the compression of the cloth, so that the mutual friction or clamping of the long conveying belt 131, the short conveying belt 132 and parts in the machine is avoided.
The gear 1261 is connected with one end of the short rotating shaft 133 in a chain transmission mode, the gear 1261 is connected with the support of the middle rotating shaft 117 in a chain transmission or belt transmission mode, so that the short rotating shaft 133 and the middle rotating shaft 117 can synchronously rotate, at the moment, one end of the middle rotating shaft 117 and one end of the long rotating shaft 134 are connected in a chain transmission or belt transmission mode, and the middle rotating shaft 117 and the long rotating shaft 134 can synchronously rotate, namely, the synchronous rotation of the short rotating shaft 133 and the long rotating shaft 134 is realized, the long conveying belt 131 and the short conveying belt 132 can operate at the same movement speed, the cloth conveying efficiency is kept consistent, and the subsequent uniform treatment of the cloth is facilitated.
While the foregoing is directed to the preferred embodiment of the present utility model, other and further embodiments of the utility model may be devised without departing from the basic scope thereof, and the scope thereof is determined by the claims that follow. The technical scope of the present utility model is not limited to the description, but must be determined according to the scope of claims.

Claims (6)

1. The utility model provides a bonder feeding platform which characterized in that: the feeding device comprises a first machine table, a second machine table and a feeding component, wherein the width of the first machine table is larger than that of the second machine table, the second machine table is fixed at the center of one end of the first machine table, the feeding component comprises a long conveying belt and two short conveying belts, one end of the long conveying belt is far away from one end of the second machine table in a rotating fit manner, the other end of the long conveying belt is far away from one end of the first machine table in a rotating fit manner, the two short conveying belts are respectively arranged on two sides of the long conveying belt, and two ends of the short conveying belts are respectively connected with two ends of the first machine table in a rotating fit manner.
2. The bonding machine feeding table according to claim 1, wherein: the feeding assembly comprises a short rotating shaft, a long rotating shaft I and a long rotating shaft II, one end of the long conveying belt is sleeved on the short rotating shaft, one end of the long conveying belt, which is far away from the short rotating shaft, is sleeved on the middle position of the long rotating shaft II, the long rotating shaft I penetrates through the long conveying belt, two ends of the short conveying belt are sleeved on the end parts of the long rotating shaft I and the long rotating shaft II respectively, a pair of first perforation and a pair of second perforation are formed in the machine platform I, two ends of the long rotating shaft I penetrate through the first perforation, two ends of the long rotating shaft II penetrate through the second perforation, a pair of third perforation is formed in the machine platform II, and two ends of the short rotating shaft penetrate through the third perforation.
3. The bonding machine feeding table according to claim 2, wherein: the feeding assembly comprises a pair of baffle rods, wherein the baffle rods are arranged between the long conveying belt and the short conveying belt, and two ends of the baffle rods are fixedly connected with the first long rotating shaft and the second long rotating shaft respectively.
4. A bonder feeding station as claimed in claim 3, wherein: the long carrier plate I, the long carrier plate II and the small carrier plate pass through the long conveying belt and the short conveying belt, the short carrier plate I and the short carrier plate II are fixed on the machine platform II, and the short carrier plate I and the short carrier plate II pass through the long conveying belt.
5. The bonding machine feeding table according to claim 2, wherein: the machine is characterized in that a first support is arranged on the first machine, a second support is arranged on the second machine, a gear is arranged on the second support, the gear is connected with the second support in a rotating fit mode, a middle rotating shaft is arranged at the joint of the first machine and the second machine, one end of the middle rotating shaft is connected with the first support in a rotating fit mode, and the other end of the middle rotating shaft is connected with the second support in a rotating fit mode.
6. The bonding machine feeding table according to claim 5, wherein: the machine is characterized in that a pair of first protective sleeves and second protective sleeves are arranged on the first machine, the first protective sleeves are fixed on the first machine, the first long rotating shaft and the second long rotating shaft are sleeved at the end parts of the first long rotating shaft, the second protective sleeves are fixed on the first machine, the second medium rotating shaft is sleeved at the end parts of the first medium rotating shaft, the first protective sleeves are connected with the second protective sleeves, the connection part of the first protective sleeves and the second protective sleeves is communicated, a pair of third protective sleeves, a fourth protective sleeves and a fifth protective sleeve are arranged on the second machine, the third protective sleeves are fixed on the second machine, the end parts of the short rotating shaft are sleeved in the third protective sleeves, the fourth protective sleeves are fixed on the second machine, the end parts of the long conveying belt are sleeved in the fourth protective sleeves, and the fifth protective sleeves are fixed on the second machine, and the gear is sleeved in the fifth protective sleeve.
CN202321097279.0U 2023-05-09 2023-05-09 Feeding table of bonding machine Active CN220055753U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321097279.0U CN220055753U (en) 2023-05-09 2023-05-09 Feeding table of bonding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321097279.0U CN220055753U (en) 2023-05-09 2023-05-09 Feeding table of bonding machine

Publications (1)

Publication Number Publication Date
CN220055753U true CN220055753U (en) 2023-11-21

Family

ID=88750890

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321097279.0U Active CN220055753U (en) 2023-05-09 2023-05-09 Feeding table of bonding machine

Country Status (1)

Country Link
CN (1) CN220055753U (en)

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