CN221067344U - Push-out mechanism - Google Patents

Push-out mechanism Download PDF

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Publication number
CN221067344U
CN221067344U CN202323121606.4U CN202323121606U CN221067344U CN 221067344 U CN221067344 U CN 221067344U CN 202323121606 U CN202323121606 U CN 202323121606U CN 221067344 U CN221067344 U CN 221067344U
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CN
China
Prior art keywords
plate
pushing
push
landslide
processed
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Active
Application number
CN202323121606.4U
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Chinese (zh)
Inventor
胡纯军
黄正烈
张双印
董阳
程义
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Sinotecho Wuhan Intelligent Technology Co Ltd
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Sinotecho Wuhan Intelligent Technology Co Ltd
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Abstract

The utility model relates to the technical field of box making machinery, in particular to a push-out mechanism. Comprising the following steps: a receiving plate; the receiving plate is in butt joint with a discharge hole of the landslide blanking mechanism, a horizontal pushing mechanism is arranged at the discharge hole of the landslide blanking mechanism, and the horizontal pushing mechanism pushes materials to be processed at the discharge hole of the landslide blanking mechanism onto the receiving plate one by one for arrangement; a push plate; the pushing plate is used for pushing the material to be processed on the receiving plate into the next production section, and an adjusting assembly and a telescopic plate are arranged on the pushing plate; the adjusting component is connected with the expansion plate and drives the expansion plate to move along the length direction of the push plate. The pushing mechanism can enable materials to be processed on the receiving plate to be continuously arranged, and production efficiency is improved.

Description

Push-out mechanism
Technical Field
The utility model relates to the technical field of box making machinery, in particular to a push-out mechanism.
Background
After the facial tissues and the box body are adhered to form the packaging box, the four sides of the packaging box are required to be pressed by a pressing machine so as to remove bubbles between the facial tissues and the box body. The packaging box is conveyed to the landslide blanking mechanism by the material conveying belt to stand, the packaging box enters a material preparation area of the bubble pressing machine by the landslide blanking mechanism after the posture of the packaging box is adjusted, the packaging boxes are sequentially arranged on a receiving plate of the material preparation area, finally, the packaging box on the receiving plate is pushed into a turnover mechanism of the bubble pressing machine by a pushing plate of the material preparation area, the turnover mechanism of the bubble pressing machine turns over and presses the packaging box for a plurality of times until the four sides of the packaging box are completely pressed, and the packaging box is conveyed to the next production link from the bubble pressing machine.
When the receiving plate is fully connected with the whole row of boxes to be fed, the push plate pushes the whole row of boxes to the second station. However, in the period of pushing out and recovering the push plate, the landslide blanking mechanism needs to stop working and continues working after the push plate is recovered, so that the production time is wasted. Thus, a solution is needed.
The foregoing is provided merely to facilitate an understanding of the principles of the utility model and is not intended to constitute an admission that the foregoing is of the closest prior art.
Disclosure of utility model
The utility model aims to solve the technical problem of providing a pushing mechanism which can enable materials to be processed on a receiving plate to be continuously arranged, so that the production efficiency is improved.
In order to achieve the above object, the present utility model provides a push-out mechanism comprising: a receiving plate; the receiving plate is in butt joint with a discharge hole of the landslide blanking mechanism, a horizontal pushing mechanism is arranged at the discharge hole of the landslide blanking mechanism, and the horizontal pushing mechanism pushes materials to be processed at the discharge hole of the landslide blanking mechanism onto the receiving plate one by one for arrangement;
A push plate; the pushing plate is used for pushing the material to be processed on the receiving plate into the next production section, and an adjusting assembly and a telescopic plate are arranged on the pushing plate; the adjusting component is connected with the expansion plate and drives the expansion plate to move along the length direction of the push plate.
Preferably, one end of the push plate, which is close to a discharge port of the landslide blanking mechanism, is a material receiving end; the telescopic plate and the material receiving end of the push plate form nested matching.
Preferably, the adjusting component comprises a horizontal sliding rail, a driving cylinder and a fixed block; the horizontal sliding rail is connected with the back surface of the expansion plate in a bonding way; the fixed block is arranged on the back of the push plate and is in sliding connection with the horizontal sliding rail; the driving cylinder is arranged on the back of the push plate, and the telescopic rod of the driving cylinder is connected with one end of the horizontal sliding rail.
Preferably, the device also comprises a supporting frame, a connecting part and a pushing cylinder; the top of connecting portion is connected with the telescopic link of promotion cylinder perpendicularly, and sliding connection's both sides and support frame constitution at connecting portion top, and the bottom of connecting portion is connected perpendicularly with the back of push pedal.
Preferably, the device further comprises a pressing part; the pressing part is arranged above the receiving plate in parallel, the top of the pressing part is fixedly connected with the top end of the supporting frame, and the bottom of the pressing part is provided with a brush which is used for propping against the top of the material to be processed.
Preferably, a baffle is arranged at the other end of the receiving plate; the baffle is opposite to the discharge hole of the landslide blanking mechanism, and an arrangement area of materials to be processed is formed between the baffle and the discharge hole of the landslide blanking mechanism.
The beneficial effects of the utility model are as follows:
(1) According to the pushing mechanism, the length of the pushing plate is changed, so that the pushing plate can push and avoid materials to be processed on the receiving plate, the foam pressing boxes to be processed on the receiving plate can be continuously arranged, and the production efficiency is improved.
(2) By means of the arrangement, the length of the push plate can be lengthened according to the pushing requirement, the flatness of the contact surface of the push plate and the material to be processed is not affected, and all the material to be processed can move synchronously when the push plate pushes the material to be processed.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
Figure 2 is a rear view of the push plate of the present utility model.
Reference numerals illustrate:
10. A landslide blanking mechanism; 20. a horizontal pushing mechanism; 30. a receiving plate; 31. a baffle;
41. A push plate; 411. a telescoping plate; 412. a driving cylinder; 413. a fixed block;
414. A horizontal slide rail; 42. a pressing part; 43. a support frame; 44. a connection part;
441. a U-shaped notch; 45. pushing the cylinder.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and fully with reference to the accompanying drawings, in which it is evident that the embodiments described are only some, but not all embodiments of the utility model. Embodiments of the utility model and features of the embodiments may be combined with each other without conflict. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1
See fig. 1-2:
The present utility model provides an ejector mechanism comprising: a receiving plate 30; one end of the receiving plate 30 is in butt joint with a discharge hole of the landslide blanking mechanism 10, and a baffle 31 is arranged at the other end of the receiving plate 30. The baffle 31 is opposite to the discharge hole of the landslide blanking mechanism 10, and an arrangement area of materials to be processed is formed between the baffle 31 and the discharge hole of the landslide blanking mechanism 10. The horizontal pushing mechanism 20 is arranged at the discharge hole of the landslide blanking mechanism 10, and the horizontal pushing mechanism 20 pushes materials to be processed at the discharge hole of the landslide blanking mechanism 10 onto the receiving plate 30 one by one for arrangement.
A push plate 41; the pushing plate 41 is used for pushing the material to be processed on the receiving plate 30 into the next production section, and the pushing plate 41 is provided with an adjusting component and a telescopic plate 411; the adjusting component is connected with the telescopic plate 411 and drives the telescopic plate 411 to move along the length direction of the push plate 41.
One end of the push plate 41 close to the discharge port of the landslide blanking mechanism 10 is provided with a material receiving end; the expansion plate 411 and the receiving end of the push plate 41 form a nested fit.
Through such design mode, when the materials to be processed on the receiving plate 30 are arranged, the expansion plate 411 on the pushing plate 41 is driven by the adjusting component to move along the length direction of the pushing plate 41, so that the total length of the pushing plate 41 is lengthened until the total length of the pushing plate 41 is the same as the length of the receiving plate 30. The lengthened push plate 41 pushes the material to be processed on the receiving plate 30 into the next production section and returns, and in the returning process, the telescopic plate 411 on the push plate 41 is driven by the adjusting component to shrink along the length direction of the push plate 41, so that the total length of the push plate 41 is shortened, the push plate 41 pushes and avoids the material to be processed on the receiving plate 30, the material to be processed on the receiving plate 30 can be continuously arranged, and the production efficiency is improved.
The adjusting assembly mainly comprises a horizontal sliding rail 414, a driving cylinder 412 and a fixed block 413.
The horizontal sliding rail 414 is connected with the back surface of the expansion plate 411 in a bonding way; the fixed block 413 is mounted on the back of the push plate 41, and the fixed block 413 and the horizontal slide rail 414 form a sliding connection. The driving cylinder 412 is mounted on the back of the push plate 41, and a telescopic rod of the driving cylinder 412 is connected with one end of the horizontal sliding rail 414.
The telescopic rod of the driving cylinder 412 drives the telescopic plate 411 to move, so that the device is simple and efficient.
Also included are a support bracket 43, a connection 44 and a push cylinder 45. The top of the connecting part 44 is vertically connected with the telescopic rod of the pushing cylinder 45, two sides of the top of the connecting part 44 are slidably connected with the supporting frame 43, and the bottom of the connecting part 44 is vertically connected with the back of the pushing plate 41. The connecting portion 44 is provided with a U-shaped notch 441, the notch is located at the joint of the connecting portion 44 and the push plate 41, and the U-shaped notch 441 forms a channel for driving the telescopic rod of the air cylinder 412 and the horizontal sliding rail 414 to move.
The pressing part 42 is arranged above the receiving plate 30 in parallel, the top of the pressing part 42 is fixedly connected with the top end of the supporting frame 43, and a brush which is propped against the top of the material to be processed is arranged at the bottom of the pressing part 42.
Through the soft material of brush class, increased the direct frictional force of pressing part 42 and the object that waits to process, avoid waiting to process the object and empty at the in-process of arranging.
It should be noted that, in the embodiment of the present utility model, directional indications such as up, down, left, right, front, and rear … … are referred to merely for explaining a relative positional relationship, a movement condition, and the like between the components in a specific posture as shown in the drawings, and if the specific posture is changed, the directional indication is changed accordingly.
In addition, if there is a description of "first", "second", etc. in the embodiments of the present utility model, the description of "first", "second", etc. is for descriptive purposes only and is not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defining "a first" or "a second" may explicitly or implicitly include at least one such feature. In addition, the meaning of "and/or" as it appears throughout includes three parallel schemes, for example "A and/or B", including the A scheme, or the B scheme, or the scheme where A and B are satisfied simultaneously. In addition, "a plurality of" means two or more. In addition, the technical solutions of the embodiments may be combined with each other, but it is necessary that the combination of the technical solutions should be regarded as not existing when the combination of the technical solutions contradicts or cannot be realized on the basis of the realization of those skilled in the art.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, alternatives, and improvements that fall within the spirit and scope of the utility model.

Claims (6)

1. An ejector mechanism, comprising:
A receiving plate (30); the receiving plate (30) is in butt joint with a discharge hole of the landslide blanking mechanism (10), a horizontal pushing mechanism (20) is arranged at the discharge hole of the landslide blanking mechanism (10), and the horizontal pushing mechanism (20) pushes materials to be processed at the discharge hole of the landslide blanking mechanism (10) onto the receiving plate (30) one by one for arrangement;
A push plate (41); the pushing plate (41) is used for pushing the material to be processed on the receiving plate (30) into the next production section, and the adjusting component and the expansion plate (411) are arranged on the pushing plate (41); the adjusting component is connected with the expansion plate (411) and drives the expansion plate (411) to move along the length direction of the push plate (41).
2. The pushing mechanism according to claim 1, wherein one end of the pushing plate (41) close to the discharge port of the landslide blanking mechanism (10) is a material receiving end; the telescopic plate (411) and the material receiving end of the push plate (41) form nested matching.
3. The ejection mechanism of claim 2, wherein the adjustment assembly includes a horizontal slide rail (414), a drive cylinder (412), and a fixed block (413); the horizontal sliding rail (414) is connected with the back surface of the expansion plate (411) in a bonding way; the fixed block (413) is arranged on the back surface of the push plate (41), and the fixed block (413) and the horizontal sliding rail (414) form sliding connection; the driving cylinder (412) is arranged on the back of the push plate (41), and a telescopic rod of the driving cylinder (412) is connected with one end of the horizontal sliding rail (414).
4. A push-out mechanism according to claim 3, further comprising a support frame (43), a connecting portion (44) and a push cylinder (45); the top of the connecting part (44) is vertically connected with a telescopic rod of the pushing cylinder (45), two sides of the top of the connecting part (44) are in sliding connection with the supporting frame (43), and the bottom of the connecting part (44) is vertically connected with the back of the pushing plate (41).
5. The push-out mechanism of claim 4, further comprising a pressing portion (42); the pressing part (42) is arranged above the receiving plate (30) in parallel, the top of the pressing part (42) is fixedly connected with the top end of the supporting frame (43), and a hairbrush which is used for propping against the top of the material to be processed is arranged at the bottom of the pressing part (42).
6. -A push-out mechanism according to any one of claims 1 to 5, characterised in that the other end of the receiving plate (30) is provided with a baffle (31); the baffle (31) is opposite to the discharge port of the landslide blanking mechanism (10), and an arrangement area of materials to be processed is formed between the baffle (31) and the discharge port of the landslide blanking mechanism (10).
CN202323121606.4U 2023-11-16 Push-out mechanism Active CN221067344U (en)

Publications (1)

Publication Number Publication Date
CN221067344U true CN221067344U (en) 2024-06-04

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