processing device

By designing a processing device that includes transportation, arrangement, and integration components, the automated arrangement and integration of small, irregular materials is achieved, improving processing efficiency and solving the problem of low efficiency caused by manual operation in existing technologies.

CN116002331BActive Publication Date: 2026-02-06ZHUHAI GREE INTELLIGENT EQUIP CO LTD +1
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Patent Information

Application Number
CN202211666010.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-23
Publication Date
2026-02-06
Estimated Expiration
2042-12-23

AI Technical Summary

Technical Problem

Existing technologies have low efficiency in arranging and sorting small, irregularly shaped materials, relying mainly on manual operation, which leads to low processing efficiency.

Method used

Design a processing device including a transport component, an arrangement component, a pushing component, and an integration component. Through the vibration of the transport component and the extension and retraction of the pushing component, the automatic arrangement and integration of materials are achieved, ensuring that the materials are distributed along a preset direction.

Benefits of technology

It improves the efficiency of material arrangement and integration, solves the problem of low processing efficiency of irregular materials, and realizes automated material arrangement and integration.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN116002331B_ABST
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Abstract

The application provides a processing device which comprises a conveying assembly, an arrangement component, a pushing component and an integration assembly with an integration space, the conveying assembly comprises a first conveying component and a second conveying component; the arrangement component comprises a first trough and a second trough which are arranged at intervals along a preset direction, and the first conveying component and the second conveying component are arranged correspondingly with the first trough and the second trough; at least part of the pushing component is arranged telescopically along a direction perpendicular to the preset direction; a discharging port of the first conveying component, the pushing component and a discharging port of the second conveying component are arranged at intervals along the preset direction; the conveying assembly, the arrangement component and the integration assembly are arranged in sequence along the direction perpendicular to the preset direction; and the arrangement component is arranged movably along the preset direction between a first position and a second position. The processing device solves the problem of low processing efficiency of arrangement and arrangement of irregular materials in the prior art.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of mechanical equipment, in particular to a processing device. BACKGROUND

[0002] At present, the arrangement and arrangement of small irregular shaped materials (such as common plastic clips) is mainly relied on manpower, which leads to low processing efficiency. SUMMARY

[0003] The main purpose of the present application is to provide a processing device to solve the problem of low processing efficiency of irregular material arrangement and arrangement in the prior art.

[0004] In order to achieve the above purpose, the present application provides a processing device, which comprises: a conveying assembly, the conveying assembly comprising a first conveying component and a second conveying component; an arrangement component, the arrangement component comprising a trough group, the trough group comprising a first trough and a second trough arranged at intervals along a predetermined direction, the first conveying component and the second conveying component being arranged correspondingly with the first trough and the second trough; a pushing component, at least part of the pushing component being arranged telescopically along a direction perpendicular to the predetermined direction; the discharge port of the first conveying component, the pushing component and the discharge port of the second conveying component being arranged at intervals along the predetermined direction; an integration assembly having an integration space; wherein the conveying assembly, the arrangement component and the integration assembly are sequentially distributed along a direction perpendicular to the predetermined direction; the arrangement component is movably arranged between a first position and a second position along the predetermined direction; when the arrangement component is in the first position, the discharge port of the first conveying component and the first trough are arranged oppositely, the pushing component and the second trough are arranged oppositely, and the discharge port of the second conveying component and the body of the arrangement component are arranged oppositely, so that the pushing component pushes the material in the second trough into the integration space; when the arrangement component is in the second position, the discharge port of the first conveying component and the body of the arrangement component are arranged oppositely, the pushing component and the first trough are arranged oppositely, and the discharge port of the second conveying component and the second trough are arranged oppositely, so that the pushing component pushes the material in the first trough into the integration space.

[0005] Further, the integration assembly comprises two integration components arranged at intervals along the predetermined direction to form an integration space between the two integration components; at least part of each integration component is arranged telescopically along the predetermined direction to integrate the material in the integration space.

[0006] Further, the processing device further comprises: a fixedly arranged support frame; a slide rail part, the slide rail part being fixedly arranged on the support frame, the slide rail part being arranged extending along the predetermined direction; a sliding part, the sliding part being slidably arranged on the slide rail part, the sliding part being fixedly connected with the arrangement component.

[0007] Further, the conveying assembly comprises two conveying components, which are a first conveying component and a second conveying component respectively; the conveying component comprises: a vibrating disc, the vibrating disc has a containing cavity for containing materials and a spiral track in communication with the containing cavity; a linear track, a feeding port of the linear track is connected and communicated with an output port of the spiral track, and a discharging port of the linear track is a discharging port of the conveying component.

[0008] Further, the conveying component further comprises a blocking part, the blocking part is fixedly arranged above the spiral track, a through opening is arranged between the blocking part and a conveying surface of the spiral track, a vertical height of the through opening is a preset height; wherein, when the materials are in a preset form, a maximum vertical height of the materials is less than the preset height, so that the materials in the preset form pass through the through opening; when the materials are in a non-preset form, a vertical height of the materials is greater than the preset height, so that the blocking part blocks the materials in the non-preset form, and the materials in the non-preset form are vibrated into the containing cavity under the vibration.

[0009] Further, the blocking part is a plurality of blocking parts, the plurality of blocking parts are arranged at intervals along an extension direction of the spiral track; the non-preset form of the materials is a plurality of non-preset forms, the plurality of blocking parts are arranged in one-to-one correspondence with the plurality of non-preset forms, and each blocking part blocks the materials in the corresponding non-preset form.

[0010] Further, the conveying assembly, the trough group and the pushing component are a plurality of, the plurality of conveying assemblies are arranged in one-to-one correspondence with the plurality of trough groups, the plurality of conveying assemblies are arranged in one-to-one correspondence with the plurality of pushing components, and the plurality of trough groups are arranged at intervals along the preset direction.

[0011] Further, along the preset direction, the integration space comprises a specified position; the processing device further comprises: a receiving component, a top surface of the receiving component is a receiving surface thereof; along a direction perpendicular to the preset direction, the receiving component is arranged on a side of the integration assembly away from the arranging component; the receiving component is located at the specified position to receive the materials output from the specified position.

[0012] Further, the processing device further comprises: a second driving member, along a direction perpendicular to the preset direction, the second driving member is located on a side of the integration assembly away from the receiving component; an output shaft of the second driving member is arranged in an extendable manner along the direction perpendicular to the preset direction and is arranged opposite to the specified position, so as to push the materials at the specified position to the receiving component.

[0013] Further, the processing device further comprises: a sliding part, a top surface of the sliding part is arranged in an inclined manner relative to a horizontal plane, and the top surface of the sliding part has oppositely arranged input and output ends; the input end of the top surface of the sliding part is connected with the output end of the receiving surface of the receiving component, so that the materials on the receiving surface of the receiving component are output to the top surface of the sliding part and slide down along the top surface of the sliding part.

[0014] The application discloses a processing device and a processing method thereof.

[0015] The arrangement component is reciprocally arranged along the preset direction between the first position and the second position. When the arrangement component is in the first position, the discharging port of the first conveying component and the first trough are oppositely arranged, the pushing component and the second trough are oppositely arranged, and the discharging port of the second conveying component and the body of the arrangement component are oppositely arranged, so that the material at the discharging port of the first conveying component is conveyed into the first trough, the pushing component pushes the material in the second trough into the integrated space, and the body of the arrangement component stops the material at the discharging port of the second conveying component.

[0016] In the implementation, the material output from the discharging port of the first conveying component is the first material, and the material output from the discharging port of the second conveying component is the second material; after a predetermined amount of the first material and a preset amount of the second material are output from the discharging ports of the first conveying component and the second conveying component into the integration space, the predetermined amount of the first material and the preset amount of the second material in the integration space can be integrated to form an integrated material, and the integrated material can be output from the integration space. According to the matching mode of the arrangement component and the pushing component, the predetermined amount of the first material and the preset amount of the second material are distributed along a preset direction in the integration space, so the predetermined amount of the first material and the preset amount of the second material in the integrated material must be distributed along the preset direction. It can be seen that the processing device can automatically arrange and integrate multiple different materials as needed, improves the arrangement and integration efficiency of the materials, thereby improving the processing efficiency of the materials, and solves the problem of low processing efficiency of irregular material arrangement and integration in the prior art. BRIEF DESCRIPTION OF DRAWINGS

[0017] The accompanying drawings, which form a part of the specification, are included to provide a further understanding of the application and are incorporated herein in conjunction with the description of the application. The embodiments of the present application, illustrated in the drawings, and their description thereof are presented to explain the present application and are not intended to limit the present application in any manner.

[0018] Figure 1 A structural schematic diagram of a processing device according to the present application is shown;

[0019] Figure 2 A structural schematic diagram of an arrangement component, a support frame, a sliding rail part and a first driving part of the processing device in Figure 1 is shown;

[0020] Figure 3 A structural schematic diagram of an integration assembly of the processing device in Figure 1 is shown;

[0021] Figure 4 A structural schematic diagram of a conveying component of the processing device in Figure 1 is shown;

[0022] Figure 5 A structural schematic diagram of a linear rail of the conveying component of the processing device in Figure 1 is shown.

[0023] In the above drawings, the following reference signs are used:

[0024] 10, conveying assembly; 101, conveying component; 11, first conveying component; 12, second conveying component; 13, vibrating disc; 131, accommodating cavity; 132, spiral rail; 14, linear rail; 141, linear vibrating component;

[0025] 20, arranging member; 21, trough; 211, first trough; 212, second trough; 22, support frame; 23, slide rail part; 25, first driving member;

[0026] 30, pushing member;

[0027] 40, integrated assembly; 41, integrated member; 42, integrated space; 421, designated position; 43, mounting frame;

[0028] 50, receiving member; 51, side plate; 60, second driving member; 70, sliding part. DETAILED DESCRIPTION

[0029] It should be noted that the embodiments and features of the embodiments in the present application can be combined with each other without conflict. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.

[0030] It should be noted that the following detailed description is exemplary and is intended to provide further explanation of the present application. Unless otherwise indicated, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs.

[0031] It should be noted that the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, the singular form is intended to include the plural form unless the context clearly indicates otherwise, and it should also be understood that when the terms "comprise" and / or "include" are used in the specification, there is a presence of a feature, step, operation, device, component and / or combinations thereof.

[0032] The present application provides a processing device, please refer to Figures 1 to 5The processing device comprises a conveying assembly 10, an arranging component 20, a pushing component 30 and an integrating assembly 40. The conveying assembly 10 comprises two conveying components 101, each of which is used for conveying materials, and each of which has a discharging port. The two conveying components 101 are a first conveying component 11 and a second conveying component 12, respectively. The arranging component 20 comprises a trough set, which comprises two troughs 21 arranged at intervals along a preset direction. The two troughs 21 are a first trough 211 and a second trough 212, respectively. The first conveying component 11 and the second conveying component 12 are arranged correspondingly with the first trough 211 and the second trough 212, respectively. At least part of the pushing component 30 is arranged telescopically along a direction perpendicular to the preset direction. The discharging port of the first conveying component 11, the pushing component 30 and the discharging port of the second conveying component 12 are arranged at intervals along the preset direction. The integrating assembly 40 has an integrating space 42. The conveying assembly 10, the arranging component 20 and the integrating assembly 40 are arranged in sequence along the direction perpendicular to the preset direction.

[0033] The arranging component 20 is arranged reciprocally between a first position and a second position along the preset direction. When the arranging component 20 is in the first position, the discharging port of the first conveying component 11 and the first trough 211 are arranged oppositely, the pushing component 30 and the second trough 212 are arranged oppositely, and the discharging port of the second conveying component 12 and the body of the arranging component 20 are arranged oppositely, so as to convey the materials at the discharging port of the first conveying component 11 into the first trough 211, push the materials in the second trough 212 into the integrating space 42 by the pushing component 30, and stop the materials at the discharging port of the second conveying component 12 by the body of the arranging component 20. When the arranging component 20 is in the second position, the discharging port of the first conveying component 11 and the body of the arranging component 20 are arranged oppositely, the pushing component 30 and the first trough 211 are arranged oppositely, and the discharging port of the second conveying component 12 and the second trough 212 are arranged oppositely, so as to push the materials in the first trough 211 into the integrating space 42 by the pushing component 30, convey the materials at the discharging port of the second conveying component 12 into the second trough 212, and stop the materials at the discharging port of the first conveying component 11 by the body of the arranging component 20.

[0034] In the implementation process, the material output from the discharging port of the first conveying component 11 is the first material, and the material output from the discharging port of the second conveying component 12 is the second material; after a predetermined amount of the first material and a preset amount of the second material are output from the discharging ports of the first conveying component 11 and the second conveying component 12 into the integration space 42, the predetermined amount of the first material and the preset amount of the second material in the integration space 42 can be integrated to form an integrated material, and the integrated material can be output from the integration space 42. According to the matching mode of the arrangement component 20 and the pushing component 30, it can be known that the predetermined amount of the first material and the preset amount of the second material are distributed along a preset direction in the integration space 42, so the predetermined amount of the first material and the preset amount of the second material in the integrated material must be distributed along the preset direction. It can be seen that the processing device of the present application can realize automatic arrangement and integration of multiple different materials according to needs, improve the arrangement and integration efficiency of the materials, and thus improve the processing efficiency of the materials; when the material is an irregularly shaped material, the processing device of the present application solves the problem of low processing efficiency of the arrangement and integration of irregular materials (i.e., irregularly shaped materials) in the prior art.

[0035] Specifically, the pushing component 30 is a pneumatic cylinder.

[0036] Optionally, the material conveyed by the conveying component 101 is an irregularly shaped material.

[0037] Optionally, the multiple different materials can be materials of different colors; for example, the first material and the second material are different in color.

[0038] In the embodiment, the integration assembly 40 includes two integration components 41 distributed at intervals along a preset direction to form an integration space 42 between the two integration components 41; at least part of each integration assembly 40 is arranged to be telescopic along the preset direction to integrate the material in the integration space 42.

[0039] Specifically, the predetermined amount of the first material and the preset amount of the second material in the integration space 42 are integrated together by extending the two integration components 41 to form an integrated material. That is, the automatic integration of the material is realized by the arrangement of the two integration components 41.

[0040] Specifically, the integration component 41 is a pneumatic cylinder.

[0041] Specifically, the integration assembly 40 further includes a mounting frame 43, and the two integration components 41 are mounted on the mounting frame 43, and the integration space 42 is located on the mounting frame 43.

[0042] In the embodiment, the processing device further comprises a fixed support frame 22, and the arrangement component 20 is slidably arranged on the support frame 22 along the preset direction to realize the movement of the arrangement component 20 along the preset direction between the first position and the second position.

[0043] Specifically, the processing device further comprises a sliding rail part 23 and a sliding part, the sliding rail part 23 is fixedly arranged on the support frame 22 and extends along the preset direction, and the sliding part is slidably arranged on the sliding rail part 23 and is fixedly connected with the arrangement component 20, so that the sliding part slides along the sliding rail part 23 when the arrangement component 20 moves along the preset direction between the first position and the second position.

[0044] Specifically, the processing device further comprises a first driving member 25, and an output shaft of the first driving member 25 is fixedly connected with the sliding part or the arrangement component 20 to drive the arrangement component 20 to move along the preset direction.

[0045] Optionally, the first driving member 25 is a pneumatic cylinder.

[0046] In the embodiment, the specific structure of each transport component 101 is as follows: the transport component 101 comprises a vibrating disc 13 and a linear track 14, the vibrating disc 13 has a containing cavity 131 for containing materials and a spiral track 132 in communication with the containing cavity 131, and a feeding port of the linear track 14 is connected and communicated with an output port of the spiral track 132, and a discharging port of the linear track 14 is a discharging port of the transport component 101. A plurality of materials in the containing cavity 131 are sequentially conveyed to the discharging port of the linear track 14 through the vibrating disc 13 and the linear track 14.

[0047] Specifically, the bottom of the linear track 14 is provided with a linear vibrating component 141 to convey the materials in the linear track 14 in a vibrating manner. Optionally, the linear vibrating component 141 is a linear feeding vibrating disc.

[0048] In the embodiment, in each conveying component 101, the conveying component 101 further comprises a blocking part fixedly arranged above the spiral track 132, a through opening is arranged between the blocking part and the conveying surface of the spiral track 132, and the vertical height of the through opening is a preset height; when the material is in the preset form, the maximum vertical height of the material is less than the preset height, so that the material in the preset form passes through the through opening; when the material is not in the preset form, the vertical height of the material is greater than the preset height, and the material not in the preset form cannot pass through the through opening, at this time, the blocking part blocks the material not in the preset form, and the material not in the preset form is vibrated into the accommodating cavity 131 under the vibration, that is, the material not in the preset form returns to the accommodating cavity 131. For each conveying component 101, the blocking part is arranged to make the material conveyed to the discharging port of the conveying component 101 be in the preset form, so as to ensure the unity of the posture of the material conveyed to the discharging port of the conveying component 101, and then facilitate the arrangement of the material.

[0049] It should be noted that the top surface of the spiral track 132 is the conveying surface thereof; when the material is not in the preset form, the material is not in the preset form.

[0050] Optionally, the blocking part is a plate structure.

[0051] Specifically, the blocking part is a plurality of blocking parts, the plurality of blocking parts are arranged at intervals along the extension direction of the spiral track 132; the non-pre-set form of the material is a plurality of non-pre-set forms, the plurality of blocking parts are arranged in one-to-one correspondence with the plurality of non-pre-set forms, and each blocking part blocks the material in the corresponding non-pre-set form. For each conveying component 101, a plurality of blocking parts are arranged to block all the materials in the non-pre-set forms except the preset form, so as to further ensure that the material conveyed to the discharging port of the conveying component 101 is in the preset form.

[0052] Optionally, a through opening is arranged between each blocking part and the conveying surface of the spiral track 132, that is, there are a plurality of through openings; the preset heights of any two through openings are the same or different; when the material is in the preset form, the maximum vertical height of the material is less than the preset height of each through opening.

[0053] Preferably, the preset heights of the plurality of through openings are all different.

[0054] In the embodiment, the plurality of conveying assemblies 10, the plurality of trough groups and the plurality of pushing components 30 are arranged one-to-one. The plurality of trough groups are arranged along the preset direction. The discharge port of the first conveying component 11 of each conveying assembly 10, the corresponding pushing component 30 and the discharge port of the second conveying component 12 of the conveying assembly 10 are arranged along the preset direction.

[0055] When the arrangement component 20 is in the first position, the discharge port of the first conveying component 11 of each conveying assembly 10 is arranged opposite to the first trough 211 of the corresponding trough group, the pushing component 30 is arranged opposite to the second trough 212 of the corresponding trough group, and the discharge port of the second conveying component 12 of each conveying assembly 10 is arranged opposite to the body of the arrangement component 20, so that the material at the discharge port of the first conveying component 11 of each conveying assembly 10 is conveyed into the first trough 211 of the corresponding trough group, the pushing component 30 pushes the material in the second trough 212 of the corresponding trough group into the integration space 42, and the body of the arrangement component 20 stops the material at the discharge port of the second conveying component 12 of each conveying assembly 10.

[0056] When the arrangement component 20 is in the second position, the discharge port of the first conveying component 11 of each conveying assembly 10 is arranged opposite to the body of the arrangement component 20, the pushing component 30 is arranged opposite to the first trough 211 of the corresponding trough group, and the discharge port of the second conveying component 12 of each conveying assembly 10 is arranged opposite to the second trough 212 of the corresponding trough group, so that the pushing component 30 pushes the material in the first trough 211 of the corresponding trough group into the integration space 42, the material at the discharge port of the second conveying component 12 of each conveying assembly 10 is conveyed into the second trough 212 of the corresponding trough group, and the body of the arrangement component 20 stops the material at the discharge port of the first conveying component 11 of each conveying assembly 10.

[0057] By arranging the plurality of conveying assemblies 10, the plurality of trough groups and the plurality of pushing components 30, different materials can be output into the integration space 42 and distributed along the preset direction, so that the different materials can be integrated in the preset direction. The number of each material can be set as needed.

[0058] In the embodiment, the integration space 42 comprises a designated position 421 along the preset direction; the materials in the integration space 42 are concentrated at the designated position 421 by the two integration components 41, and the integration is performed at the designated position 421; the processing device further comprises a receiving component 50, a top surface of the receiving component 50 being a receiving surface thereof; the receiving component 50 is arranged at a side of the integration assembly 40 away from the arrangement component 20 along a direction perpendicular to the preset direction; and the receiving component 50 is located at the designated position 421 to receive the integrated materials output from the designated position 421.

[0059] Specifically, the two integration components 41 are extended to push the materials in the integration space 42 to the designated position 421.

[0060] Optionally, the receiving component 50 is fixedly connected with the mounting frame 43.

[0061] Optionally, the receiving surface of the receiving component 50 has a receiving end close to the integration assembly 40 and an output end away from the integration assembly 40 along the direction perpendicular to the preset direction; a vertical height of the receiving end of the receiving surface of the receiving component 50 is less than or equal to a vertical height of the bearing surface at the designated position 421, so that the materials at the designated position 421 are output onto the receiving surface of the receiving component 50; and a top surface of the designated position 421 is a bearing surface thereof.

[0062] Optionally, the receiving component 50 is in a plate structure, and an upper plate surface of the receiving component 50 is the receiving surface thereof.

[0063] Specifically, the processing device further comprises two side baffles 51 arranged at two sides of the receiving component 50 along the preset direction respectively to stop and position the materials on the receiving component 50 in the preset direction.

[0064] Optionally, the two side baffles 51 and the receiving component 50 are in an integral structure.

[0065] In the embodiment, the processing device further comprises a second driving member 60; the second driving member 60 is located at a side of the integration assembly 40 away from the receiving component 50 along the direction perpendicular to the preset direction; and an output shaft of the second driving member 60 is arranged extendably and oppositely to the designated position 421 along the direction perpendicular to the preset direction to push the integrated materials at the designated position 421 to the receiving component 50.

[0066] Specifically, the second driving member 60 is a pneumatic cylinder.

[0067] In the embodiment, the processing device further comprises a sliding part 70, a top surface of the sliding part 70 is arranged to be inclined relative to a horizontal plane, the top surface of the sliding part 70 has oppositely arranged input and output ends, the higher end of the top surface of the sliding part 70 is the input end, and the lower end of the top surface of the sliding part 70 is the output end; the input end of the top surface of the sliding part 70 is connected with the output end of the receiving surface of the receiving component 50, so that the integrated material on the receiving surface of the receiving component 50 is output to the top surface of the sliding part 70 and slides along the top surface of the sliding part 70.

[0068] Specifically, the output shaft of the second driving member 60 pushes the integrated material at the specified position 421 to the receiving component 50 and transfers the integrated material on the receiving component 50 to the top surface of the sliding part 70.

[0069] Optionally, the sliding part 70 is a plate structure, and an upper plate surface of the sliding part 70 is arranged to be inclined relative to a horizontal plane.

[0070] Specifically, the integrated material sliding from the top surface of the sliding part 70 is subjected to subsequent processing or packaging.

[0071] From the above description, it can be seen that the above-mentioned embodiments of the present application achieve the following technical effects:

[0072] In the processing device provided by the present application, the processing device comprises a conveying assembly 10, an arrangement component 20, a pushing component 30 and an integration assembly 40. The conveying assembly 10 comprises two conveying components 101, each conveying component 101 is used for conveying material, each conveying component 101 has a discharging port, and the two conveying components 101 are a first conveying component 11 and a second conveying component 12. The arrangement component 20 comprises a trough group, the trough group comprises two troughs 21 arranged in a preset direction, the two troughs 21 are a first trough 211 and a second trough 212, and the first conveying component 11 and the second conveying component 12 are arranged correspondingly with the first trough 211 and the second trough 212. At least part of the pushing component 30 is arranged to be retractable in a direction perpendicular to the preset direction; the discharging port of the first conveying component 11, the pushing component 30 and the discharging port of the second conveying component 12 are arranged in the preset direction. The integration assembly 40 has an integration space 42. The conveying assembly 10, the arrangement component 20 and the integration assembly 40 are distributed in sequence in the direction perpendicular to the preset direction.

[0073] The arrangement component 20 is arranged reciprocally between the first position and the second position along the preset direction. When the arrangement component 20 is in the first position, the discharge port of the first conveying component 11 and the first chute 211 are arranged oppositely, the pushing component 30 and the second chute 212 are arranged oppositely, and the discharge port of the second conveying component 12 and the body of the arrangement component 20 are arranged oppositely, so that the material at the discharge port of the first conveying component 11 is conveyed into the first chute 211, the pushing component 30 pushes the material in the second chute 212 into the integration space 42, and the body of the arrangement component 20 stops the material at the discharge port of the second conveying component 12. When the arrangement component 20 is in the second position, the discharge port of the first conveying component 11 and the body of the arrangement component 20 are arranged oppositely, the pushing component 30 and the first chute 211 are arranged oppositely, and the discharge port of the second conveying component 12 and the second chute 212 are arranged oppositely, so that the pushing component 30 pushes the material in the first chute 211 into the integration space 42, the material at the discharge port of the second conveying component 12 is conveyed into the second chute 212, and the body of the arrangement component 20 stops the material at the discharge port of the first conveying component 11.

[0074] In the implementation process, the material output from the discharge port of the first conveying component 11 is the first material, and the material output from the discharge port of the second conveying component 12 is the second material. After a predetermined number of the first material and a preset number of the second material are output from the discharge port of the first conveying component 11 and the discharge port of the second conveying component 12 into the integration space 42, the predetermined number of the first material and the preset number of the second material in the integration space 42 can be integrated to form an integrated material, and the integrated material can be output from the integration space 42. According to the cooperation mode of the arrangement component 20 and the pushing component 30, the predetermined number of the first material and the preset number of the second material are distributed along the preset direction in the integration space 42, so the predetermined number of the first material and the preset number of the second material in the integrated material must be distributed along the preset direction. It can be seen that the processing device of the present application can automatically arrange and integrate multiple different materials according to needs, improve the arrangement and integration efficiency of the materials, and improve the processing efficiency of the materials, thereby solving the problem of low processing efficiency of irregular material arrangement and integration in the prior art.

[0075] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting. It will be apparent to those skilled in the art that various modifications and variations can be made to the present application without departing from the spirit or scope of the application. Thus, it is intended that the present application cover modifications and variations of this application provided they come within the scope of the appended claims and their equivalents.

[0076] Spatially relative terms, such as "beneath", "below", "lower", "above", "upper" and the like, can be used herein for ease of description to describe one element or feature's relationship to another element(s) or feature(s) as illustrated in the figures. It will be understood that the spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the figures. For example, if a device described is turned over in use, a downwardly position element or feature can then be oriented upwardly. Thus, the example term "below" can encompass both an orientation of below and above. The device can be otherwise oriented (rotated 90 degrees or at other orientations) and the spatially relative descriptors used herein interpreted accordingly. The terms "first", "second", "third", etc. can be used herein to describe various elements, regions, layers and / or sections but are not intended to be used to designate a particular order or sequence unless otherwise specifically indicated.

[0077] The specific embodiments of the present application have been shown and described in order to illustrate the application. It will be understood by those skilled in the art that various modifications can be made to the embodiments without departing from the scope of the present application. Thus, the present application is not intended to be limited to the embodiments described herein but is to be accorded the full scope of the claims, and legal equivalents thereof, encompassing any modifications made available by the application.

Claims

1. A processing apparatus characterized by comprising: The processing device comprises: a conveying assembly (10) comprising a first conveying component (11) and a second conveying component (12); an arrangement component (20) comprising a trough group, the trough group comprising a first trough (211) and a second trough (212) arranged at intervals along a preset direction, the first conveying component (11) and the second conveying component (12) being arranged correspondingly with the first trough (211) and the second trough (212) respectively; a pushing component (30), at least a part of the pushing component (30) being arranged telescopically along a direction perpendicular to the preset direction; a discharging port of the first conveying component (11), the pushing component (30) and a discharging port of the second conveying component (12) being arranged at intervals along the preset direction; an integration assembly (40) having an integration space (42); wherein the conveying assembly (10), the arrangement component (20) and the integration assembly (40) are sequentially distributed along a direction perpendicular to the preset direction; the arrangement component (20) being movably arranged between a first position and a second position along the preset direction; when the arrangement component (20) is in the first position, the discharging port of the first conveying component (11) and the first trough (211) are arranged oppositely, the pushing component (30) and the second trough (212) are arranged oppositely, and the discharging port of the second conveying component (12) and the body of the arrangement component (20) are arranged oppositely, so that the pushing component (30) pushes the material in the second trough (212) into the integration space (42); when the arrangement component (20) is in the second position, the discharging port of the first conveying component (11) and the body of the arrangement component (20) are arranged oppositely, the pushing component (30) and the first trough (211) are arranged oppositely, and the discharging port of the second conveying component (12) and the second trough (212) are arranged oppositely, so that the pushing component (30) pushes the material in the first trough (211) into the integration space (42).

2. The processing apparatus of claim 1, wherein the integration assembly (40) comprising two integration components (41) arranged at intervals along the preset direction to form the integration space (42) between the two integration components (41); at least a part of each integration component (40) is arranged telescopically along the preset direction to integrate the material in the integration space (42).

3. The apparatus of claim 1 wherein, The processing device further comprises: a fixedly arranged support frame (22); a slide rail portion (23) fixedly arranged on the support frame (22), the slide rail portion (23) being arranged extending along the preset direction; a sliding portion slidably arranged on the slide rail portion (23), the sliding portion being fixedly connected with the arrangement component (20).

4. The apparatus of claim 1 wherein, The conveying assembly (10) comprises two conveying components (101), which are respectively the first conveying component (11) and the second conveying component (12); the conveying component (101) comprises: a vibrating disc (13) having a containing cavity (131) for containing materials and a spiral track (132) in communication with the containing cavity (131); a linear track (14) having a feeding port connected and communicated with an output port of the spiral track (132), and a discharging port being a discharging port of the conveying component (101).

5. The apparatus of claim 4, wherein, The conveying component (101) further comprises: a blocking part fixedly arranged above the spiral track (132), and a through opening is arranged between the blocking part and a conveying surface of the spiral track (132), and a vertical height of the through opening is a preset height; wherein, when the materials are in a preset form, a maximum vertical height of the materials is less than the preset height, so that the materials in the preset form pass through the through opening; when the materials are in a non-pre-set form, a vertical height of the materials is greater than the preset height, so that the blocking part blocks the materials in the non-pre-set form, and the materials in the non-pre-set form are vibrated into the containing cavity (131) under the vibration.

6. The processing apparatus of claim 5, wherein The blocking part is a plurality of blocking parts, and the plurality of blocking parts are arranged at intervals along an extension direction of the spiral track (132); the non-pre-set form of the materials is a plurality of non-pre-set forms, and the plurality of blocking parts are arranged one-to-one corresponding to the plurality of non-pre-set forms, and each blocking part blocks the materials in the corresponding non-pre-set form.

7. The processing apparatus according to any one of claims 1 to 6, characterized by The conveying assembly (10), the trough group, and the pushing component (30) are a plurality of, the plurality of conveying assemblies (10) are arranged one-to-one corresponding to the plurality of trough groups, the plurality of conveying assemblies (10) are arranged one-to-one corresponding to the plurality of pushing components (30), and the plurality of trough groups are arranged at intervals along the preset direction.

8. The apparatus of claim 2 wherein, Along the preset direction, the integrated space (42) comprises a specified position (421); the processing device further comprises: a receiving component (50) having a top surface as a receiving surface; along a direction perpendicular to the preset direction, the receiving component (50) is arranged on a side of the integrated assembly (40) away from the arrangement component (20); the receiving component (50) is located at the specified position (421) to receive the materials output from the specified position (421).

9. The processing apparatus of claim 8, wherein, The processing device further comprises: a second driving member (60) located on a side of the integrated assembly (40) away from the receiving component (50) along a direction perpendicular to the preset direction; an output shaft of the second driving member (60) is arranged extendably along a direction perpendicular to the preset direction and is arranged opposite to the specified position (421) to push the materials at the specified position (421) to the receiving component (50).

10. The processing apparatus of claim 8, wherein, The processing device further comprises: A sliding part (70) whose top surface is arranged to be inclined relative to the horizontal plane, and has an input end and an output end arranged oppositely; the input end of the top surface of the sliding part (70) is connected with the output end of the receiving surface of the receiving part (50), so that the material on the receiving surface of the receiving part (50) is output to the top surface of the sliding part (70) and slides along the top surface of the sliding part (70).

Citation Information

Patent Citations

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