A profile connection kit conveying device

By designing a profile connection kit conveying device, utilizing the automated assembly of the annular extrusion section and the protrusion structure, combined with the guide groove and conveying components, the problem of high physical labor consumption during the high-pressure hose assembly process is solved, achieving an efficient and economical assembly method.

CN116674216BActive Publication Date: 2026-05-26NINGBO PEHEL HYDRAULIC MFG
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
NINGBO PEHEL HYDRAULIC MFG
Filing Date
2023-07-18
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The current high-pressure hose assembly process requires manual installation of sleeves and connecting pipes, resulting in high physical exertion, low work efficiency, and the need to move the high-pressure hose multiple times, increasing labor intensity.

Method used

Design a profile connection kit conveying device, including clamping components, support components and guide components. Automated assembly is achieved by using an annular extrusion part and a protrusion structure to reduce manual operation, and efficient conveying is achieved by combining guide grooves and conveying components.

Benefits of technology

It achieves time and labor saving in high-pressure hose assembly, improves assembly efficiency, simplifies procedures, reduces manual labor intensity, and has a simple structure that is economical and practical.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116674216B_ABST
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Abstract

This application relates to the field of high-pressure hose assembly, and more specifically to a profile connecting kit conveying device, wherein the profile connecting kit conveying device includes: a clamping assembly, on which a plurality of profile connecting kits are disposed at the bottom; a support assembly, one end of which is fixedly connected to the clamping assembly; and a guide assembly, the guide assembly including a support, the support being disposed on the ground, one side of which is fixedly connected to the other end of the support assembly, and the side of the support facing away from the support assembly having a guide groove, both ends of which communicate with the outside, and the top of which faces one of the profile connecting kits, and the wall surface of the guide groove being curved. This invention can achieve the advantages of convenient, time-saving, labor-saving, and high-efficiency assembly of external high-pressure hoses by effectively utilizing its own structural configuration.
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Description

Technical Field

[0001] This application relates to the field of high-pressure hose assembly, and more specifically to a profile connection kit conveying device. Background Technology

[0002] Existing crimping machines require manual installation of a sleeve on the end of the high-pressure hose before crimping the sleeve. After installing the sleeve, a connecting tube is manually installed. Then, the end of the high-pressure hose with the sleeve and connecting tube is crimped. The same steps are repeated for the other end of the high-pressure hose. It can be seen that the above process is quite cumbersome. The high-pressure hose itself is heavy, and it is physically demanding to lift the high-pressure hose when installing the sleeve and connecting tube. Furthermore, the user needs to move the end of the high-pressure hose to a predetermined position when assembling the other end, which also consumes physical strength. As a result, the worker's work efficiency will be greatly reduced after a long period of work. Therefore, it is necessary to improve the above assembly method. Hence, a conveying device is designed to eliminate the need to move the high-pressure hose during the manual assembly process.

[0003] Therefore, there is a need for a profile connection kit conveying device that provides convenient, time-saving, labor-saving, and highly efficient assembly of external high-pressure hoses. Summary of the Invention

[0004] The main objective of this application is to provide a profile connecting kit conveying device, wherein the profile connecting kit conveying device can effectively utilize its own structural configuration to achieve the advantages of saving time and effort and high assembly efficiency.

[0005] Another objective of this application is to provide a profile connection kit, wherein the profile connection kit includes an opening and a first cavity, the opening being connected to the first cavity, and both the opening and the first cavity being connected to the outside. The side wall forming the first cavity has an annular extrusion portion, the annular extrusion portion being close to the opening, and one end of an external high-pressure hose being placed inside the first cavity and abutting against the bottom wall forming the first cavity. The end of the external hose that contacts the bottom wall forming the first cavity is also close to the opening. The side wall forming the first cavity also has a first annular protrusion, a second annular protrusion, and a plurality of third annular protrusions.

[0006] Another objective of this application is to provide a profile connecting kit conveying device, wherein the conveying device includes a clamping assembly, on the bottom of which a plurality of profile connecting kits are disposed; a support assembly, one end of which is fixedly connected to the clamping assembly; and a guide assembly, the guide assembly including a base, the base being disposed on the ground, one side of which is fixedly connected to the other end of the support assembly, and the side of the base facing away from the support assembly having a guide groove, both ends of which communicate with the outside, and the top of which faces one of the profile connecting kits, and the wall surface of the guide groove being curved. The conveying device is configured to convey the profile connecting kits and then mate them with the end of an external high-pressure hose, thereby reducing assembly steps, saving labor, and improving assembly efficiency.

[0007] Another objective of this application is to provide a profile connecting kit conveying device, wherein the profile connecting kit conveying device has a simple structure, is easy to operate, does not involve complex manufacturing processes and expensive materials, has high economic efficiency, and is easy to promote and use.

[0008] To achieve at least one of the above-mentioned objectives, this application provides a profile connection kit, wherein the profile connection kit includes:

[0009] The device comprises an opening and a first cavity, the opening being connected to the first cavity and both the opening and the first cavity being connected to the outside. The sidewall forming the first cavity has an annular extrusion portion near the opening, and one end of an external high-pressure hose is placed inside the first cavity and abuts against the bottom wall forming the first cavity. The end of the external hose that contacts the bottom wall forming the first cavity is also close to the opening. The sidewall forming the first cavity also has a first annular protrusion, a second annular protrusion, and a plurality of third annular protrusions. The first annular protrusion is located on the side of the annular extrusion portion away from the opening and is spaced at a predetermined distance. The second annular protrusion is located on the side of the first annular protrusion away from the annular extrusion portion and is spaced at a predetermined distance. The plurality of third annular protrusions are all located on the side of the second annular protrusion away from the first annular protrusion.

[0010] To achieve at least one of the above-mentioned objectives, this application provides a profile connecting kit conveying device, wherein the profile connecting kit conveying device includes:

[0011] A clamping assembly, wherein a plurality of the profile connecting kits are disposed at the bottom of the clamping assembly;

[0012] A support assembly, one end of which is fixedly connected to the clamping assembly; and

[0013] A guide assembly includes a support, which is disposed on the ground and one side of the support is fixedly connected to the other end of the support assembly. The side of the support away from the support assembly has a guide groove, the two ends of the guide groove are connected to the outside, and the top of the guide groove is directly opposite one of the profile connecting kits. In addition, the wall surface forming the guide groove is curved.

[0014] In one or more embodiments of this application, the clamping assembly includes a first driving component and a clamping disk. The first driving component has a first rotating shaft, one end of which is connected to the first driving component, and the other end of which is connected to the clamping disk. The clamping disk has a plurality of evenly distributed first mounting slots on the side opposite to the first rotating shaft, and each bottom wall forming the first mounting slot has a first insertion hole. The first insertion hole penetrates the clamping disk and is connected to the outside and the first mounting slot, respectively.

[0015] In one or more embodiments of this application, the clamping assembly further includes a plurality of second driving components, each of which corresponds one-to-one with a plurality of first insertion holes. Each second driving component has a first telescopic rod. The second driving component is located near the side of the clamping plate near the first rotating shaft. Each second driving component is directly opposite the corresponding first insertion hole, and the first telescopic rod passes through the corresponding first insertion hole and is placed in the corresponding first mounting groove.

[0016] In one or more embodiments of this application, each of the first telescopic rods has two second mounting slots on the bottom wall of the first mounting slot. The two second mounting slots are arranged opposite to each other, and a telescopic component is also provided in each second mounting slot. The telescopic component is configured to extend and retract to a predetermined length. Each telescopic component includes a movable member and an elastic member. One end of the elastic member is fixedly connected to the bottom wall forming the second mounting slot, and the other end is fixedly connected to the movable member. One end of the movable member is placed in the second mounting slot, and the other end is placed outside.

[0017] In one or more embodiments of this application, the profile connecting kit is placed in the first mounting groove, the first telescopic rod passes through the opening and is placed in the first cavity, the opposite ends of the two moving parts are placed on the bottom wall forming the first cavity, and the maximum distance between the two moving parts is greater than the size of the opening, thereby confining the profile connecting kit to the corresponding first telescopic rod.

[0018] In one or more embodiments of this application, the guide assembly further includes a connecting plate having two connecting walls and an extension wall. The two connecting walls are arranged opposite to each other, and the sides of the two connecting walls that are close to each other are fixedly connected to both sides of the support. The two ends of the extension wall are respectively connected to the ends of the two connecting walls that are away from the support. The extension wall is spaced apart from the side of the support where the guide groove is provided by a predetermined distance. The distance between the extension wall and the support decreases continuously from the top to the bottom. In addition, the bottom wall forming the guide groove is provided with a plurality of evenly distributed rolling shafts.

[0019] In one or more embodiments of this application, the profile connecting kit conveying device further includes a first conveying component and a second conveying component. The first conveying component is located on the side of the support away from the support component and facing the guide groove. An external high-pressure hose is placed on the first conveying component. In addition, the first conveying component and the second conveying component are arranged opposite to each other and spaced apart by a predetermined distance. The first conveying component and the second conveying component are rotatably connected on the side that is close to each other.

[0020] In one or more embodiments of this application, the first conveying assembly includes a support frame and a rotating frame. The support frame is placed on the ground, and the end of the support frame facing away from the ground is in contact with the rotating frame. The support frame is composed of multiple support rods, and the rotating frame is concave. The side of the rotating frame facing away from the support frame has a placement groove, and the bottom wall forming the placement groove has a second insertion hole. The second insertion hole penetrates the rotating frame and is close to the support. In addition, the first conveying assembly also includes a third driving component and a fourth driving component. The third driving component is fixedly connected to the bottom of the rotating frame and faces the second insertion hole. The third driving component has a second telescopic rod that passes through the second insertion hole and is placed in the placement groove. The cross-section of the second telescopic rod is T-shaped. The fourth driving component is fixedly connected to the support frame, and the fourth driving component has a third telescopic rod. The end of the third telescopic rod facing away from the fourth driving component is in contact with the bottom of the rotating frame and is close to the side of the rotating frame facing away from the second conveying assembly.

[0021] In one or more embodiments of this application, at least one fixed rod and at least one rotating rod are provided on the side of the first conveying component and the second conveying component that are close to each other. One end of the rotating rod is fixedly connected to the side of the rotating frame that is close to the second conveying component, and the other end is hinged to the fixed rod. The end of the fixed rod that is away from the rotating rod is fixedly connected to the second conveying component. When the fourth driving component operates, the third telescopic rod extends a predetermined length, thereby causing the end of the rotating frame that is away from the second conveying component to tilt up, so that the external high-pressure hose placed in the placement groove can fall onto the second conveying component. Attached Figure Description

[0022] These and / or other aspects and advantages of this application will become clearer and more readily understood from the following detailed description of embodiments of this application taken in conjunction with the accompanying drawings, wherein:

[0023] Figure 1 The figure shows a structural schematic diagram of a profile connection kit conveying device.

[0024] Figure 2 The figure shows a structural schematic diagram of a profile connection kit.

[0025] Figure 3 The diagram illustrates the structure of the clamping assembly.

[0026] Figure 4 The diagram shows a partial structural schematic of the clamping assembly.

[0027] Figure 5 The figure shows a partial structural diagram of a profile connection kit conveying device. Figure 1 .

[0028] Figure 6 The diagram shows... Figure 5 A magnified view of A in the middle.

[0029] Figure 7 The diagram shows a partial schematic of the support.

[0030] Figure 8 The diagram shows a partial schematic of the connecting plate.

[0031] Figure 9 The figure shows a partial structural diagram of a profile connection kit conveying device. Figure 2 .

[0032] Figure 10 The illustration shows a partial schematic diagram of the first conveying assembly and the second conveying assembly. Detailed Implementation

[0033] The terms and words used in the following specification and claims are not limited to their literal meaning, but are used solely by the inventors to enable a clear and consistent understanding of this application. Therefore, it will be apparent to those skilled in the art that the following description of various embodiments of this application is provided for illustrative purposes only and not for the purpose of limiting the application as defined in the appended claims and their equivalents.

[0034] It is understood that the term "a" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple, and the term "a" should not be understood as a limitation on the number.

[0035] While ordinal numbers such as "first," "second," etc., will be used to describe various components, this does not limit which components are used. The term is used only to distinguish one component from another. For example, a first component may be referred to as a second component, and similarly, a second component may be referred to as a first component, without departing from the teachings of the inventive concept. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0036] The terminology used herein is for the purpose of describing various embodiments only and is not intended to be limiting. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. It will also be understood that the terms “comprising” and / or “having” as used in this specification specify the presence of the described features, numbers, steps, operations, components, elements or combinations thereof, without excluding the presence or addition of one or more other features, numbers, steps, operations, components, elements or groups thereof.

[0037] Schematic profile connection kit conveyor

[0038] refer to Figures 1 to 10 According to a preferred embodiment of the invention, the profile connecting kit is configured to connect to an external high-pressure hose. Those skilled in the art will understand that existing hoses and kits are connected via an external crimping machine, and before crimping, a portion of the outer adhesive of the existing hose is peeled off using an external peeling machine; that is, the existing hose undergoes an outer adhesive peeling process before crimping. However, when the profile connecting kit of the present invention is crimped to the external hose, the outer adhesive of the external hose does not need to be peeled off; it can be crimped directly, thereby reducing process steps, improving processing efficiency, and reducing manufacturing costs. The profile connecting kit will be described in detail below to facilitate understanding.

[0039] Among them, such as Figure 2As shown, the profile connecting kit 10 has an opening 101 and a first cavity 102. The opening 101 is connected to the first cavity 102, and both the opening 101 and the first cavity 102 are connected to the outside.

[0040] It should be noted that the sidewall forming the first cavity 102 has an annular extrusion portion 11, which is close to the opening 101. One end of the external high-pressure hose is placed inside the first cavity 102 and abuts against the bottom wall forming the first cavity 102. The end of the external hose that is in contact with the bottom wall forming the first cavity 102 is also close to the opening 101.

[0041] Furthermore, the sidewall forming the first cavity 102 also has a first annular protrusion 12, a second annular protrusion 13, and a plurality of third annular protrusions 14. The first annular protrusion 12 is located on the side of the annular extrusion portion 11 opposite to the opening 101 and is spaced at a predetermined distance. The second annular protrusion 13 is located on the side of the first annular protrusion 12 opposite to the annular extrusion portion 11 and is also spaced at a predetermined distance. All of the plurality of third annular protrusions 14 are located on the side of the second annular protrusion 13 opposite to the first annular protrusion 12. The plurality of third annular protrusions 14 are spaced at a predetermined distance. Furthermore, the size of each third annular protrusion 14 gradually decreases from the side closest to the second annular protrusion 13 to the other side, and the size of each third annular protrusion 14 is smaller than the size of the first annular protrusion 12, which is smaller than the size of the second annular protrusion 13. Additionally, the dimensions of the first annular protrusion 12, the second annular protrusion 13, and the third annular protrusion 14 are also specified. It should also be noted that the first annular protrusion 12, the second annular protrusion 13, and the plurality of third annular protrusions 14 all have a tip. Therefore, when the external high-pressure hose and the profile connecting kit 10 are assembled, the external crimping machine applies force to the outer wall of the profile connecting kit 10, causing the profile connecting kit 10 to deform under pressure. That is, the wall surfaces forming the first cavity 102 and the opening 101 move closer towards the external high-pressure hose, meaning the size of the opening 101 and the first cavity 102 begins to decrease. Furthermore, the profile connecting kit 10 also mates with an external insert (connecting tube). One end of the external insert passes through the opening 101 and is placed inside the external high-pressure hose, causing the wall surface forming the opening 101 to contact the surface of the external insert. Simultaneously, the annular extrusion block, the first annular protrusion 12, the second annular protrusion 13, and the plurality of third annular protrusions 14 compress the surface of the external high-pressure hose, causing the high-pressure hose to deform. It should also be noted that because the external high-pressure hose in this invention does not peel off the outer rubber, the annular extrusion block, the first annular protrusion 12, the second annular protrusion 13, and the plurality of third annular protrusions 14 will not undergo significant deformation. Furthermore, those skilled in the art should understand that the high-pressure hose includes an outer rubber layer, a steel wire layer, and an inner rubber layer. Compared to the prior art, the annular extrusion block, the first annular protrusion 12, the second annular protrusion 13, and the plurality of third annular protrusions 14 of this invention are longer in size, thus allowing them to interfere with the steel wire layer located between the outer rubber layer and the inner rubber layer, thereby causing deformation of the steel wire layer.It should also be noted that, with the outer tubing size of 52mm, the cross-sectional thickness of the second annular protrusion is 5mm, the size of the first annular protrusion 12 is 4.8mm, and the sizes of the multiple third annular protrusions 14 from largest to smallest are 4.7mm, 4.5mm, and 4.2mm.

[0042] The conveying device will now be described in detail to facilitate understanding of the present invention.

[0043] Specifically, the profile connecting kit conveying device includes a clamping assembly 20, which includes a first driving component 21 and a clamping disk 22. The first driving component 21 has a first rotating shaft, one end of which is connected to the first driving component 21, and the other end of which is connected to the clamping disk 22. The first driving component 21 is configured to drive the first rotating shaft to rotate, and the clamping disk 22 rotates along with the first rotating shaft. The first driving component 21 and the first rotating shaft can be implemented as motors.

[0044] Furthermore, the clamping disk 22 has a plurality of evenly distributed first mounting grooves 2201 on the side opposite to the first rotating shaft, and each bottom wall forming the first mounting groove 2201 has a first insertion hole 2202. The first insertion hole 2202 penetrates the clamping disk 22 and is connected to the outside and the first mounting groove 2201 respectively.

[0045] It is worth mentioning that the clamping assembly 20 also includes a plurality of second driving components 23, each corresponding to a plurality of first insertion holes 2202. Each second driving component 23 has a first telescopic rod 231. The second driving component 23 is located near the side of the clamping plate 22 closest to the first rotating shaft. Each second driving component 23 faces the corresponding first insertion hole 2202, and the first telescopic rod 231 passes through the corresponding first insertion hole 2202 and is placed within the corresponding first mounting groove 2201. It should be noted that the first telescopic rod 231 is extendable by a predetermined length, allowing it to retract back into the corresponding first insertion hole 2202.

[0046] It should be noted that each of the first telescopic rods 231 has two second mounting grooves 23101 on the bottom wall of the first mounting groove 2201. The two second mounting grooves 23101 are arranged opposite to each other, and a telescopic component is also provided in each second mounting groove 23101. The telescopic component is designed to extend or retract by a predetermined length. Each telescopic component includes a movable member 300 and an elastic member 200. One end of the elastic member 200 is fixedly connected to the bottom wall forming the second mounting groove 23101, and the other end is fixedly connected to the movable member 300. One end of the movable member 300 is placed inside the second mounting groove 23101, and the other end is placed outside. The movable member 300 can be subjected to an external force and move a predetermined distance towards the second mounting groove 23101, while the elastic member 200 deforms. Conversely, when the movable member 300 is not subjected to an external force, it returns to its original position. It should be noted that the connection between the elastic element 200 and the movable element 300 can be an adhesive connection, and the connection between the elastic element 200 and the second mounting groove 23101 can also be an adhesive connection.

[0047] It is worth mentioning that the profile connecting kit 10 is placed in the first mounting slot 2201, meaning that the user can place one of the profile connecting kits 10 into any of the first mounting slots 2201. It should be noted that when the profile connecting kit 10 is placed in the first mounting slot 2201, the first telescopic rod 231 passes through the opening 101 and is placed within the first cavity 102. It is worth mentioning that when the profile connecting kit 10 is engaged with the first telescopic rod 231, the wall surface forming the opening 101 presses against the ends of the two moving parts 300, thereby causing the two moving parts 300 to move a predetermined distance toward each other. At the same time, the two elastic members 200 deform. Furthermore, when the two moving parts 300 pass through the opening 101, the ends of the two moving parts 300 are no longer pressed by the wall surface forming the opening 101. As a result, the ends of the two moving parts 300 that are opposite to each other are placed on the bottom wall forming the first cavity 102. That is, the maximum distance between the two moving parts 300 is greater than the size of the opening 101, thereby confining the profile connecting kit 10 to the corresponding first telescopic rod 231. The other two moving parts 300 each have an annular pressure surface at their opposite ends. When the second driving component 23 drives the first telescopic rod 231 to retract a predetermined distance, the bottom wall of the first cavity 102 presses against the annular pressure surface, causing the two moving parts 300 to move a predetermined distance toward each other until the telescopic assembly disengages from the opening 101, thereby causing the profile connecting kit 10 to disengage from the corresponding first telescopic rod 231.

[0048] It should also be noted that the profile connecting kit conveying device further includes a guide assembly 30 and a support assembly 40. The guide assembly 30 is placed on the ground, and the clamping assembly 20 is located on the side of the guide assembly 30 facing away from the ground, that is, the clamping assembly 20 is located directly above the guide assembly 30. Furthermore, one side of the guide assembly 30 is fixedly connected to the support assembly 40, and the other end is connected to the first driving component 21 of the clamping assembly 20, thereby defining the position of the clamping assembly 20.

[0049] It should be noted that the guide assembly 30 includes a support 31, which is disposed on the ground, and the side of the support 31 opposite to the support assembly 40 has a guide groove 3101, the two ends of which communicate with the outside. Figure 5 As shown, the wall surface forming the guide groove 3101 is an arc surface, that is, the arc surface is a concave surface.

[0050] It should also be noted that one of the first mounting slots 2201 is directly opposite the guide slot 3101. Specifically, when the clamping plate 22 rotates at a predetermined angle, one of the first mounting slots 2201 is directly opposite the guide slot 3101, and the second drive component 23 directly opposite the guide slot 3101 operates, that is, the first telescopic rod 231 retracts to a predetermined length, thereby causing the profile connecting kit 10 placed in the first mounting slot 2201 to disengage from the first mounting slot 2201, and thereby causing the top of the guide slot 3101 to disengage from the guide slot 3101 along the wall of the guide slot 3101.

[0051] In addition, the guide assembly 30 further includes a connecting plate 32, which has two connecting walls and an extension wall. The two connecting walls are arranged opposite to each other, and the sides of the two connecting walls that are close to each other are fixedly connected to the two sides of the support 31. The connection between the connecting walls and the support 31 can be a screw connection, thereby defining the position of the two connecting walls. Furthermore, both ends of the extension wall are respectively connected to the ends of the two connecting walls that are away from the support 31. That is, the two connecting walls and the extension wall are integrally formed, and the extension wall is spaced a predetermined distance from the side of the support 31 where the guide groove 3101 is located. It should also be noted that the distance between the extension wall and the support 31 gradually decreases from top to bottom. It should be noted that if the profile connecting kit 10 entering the guide groove 3101 is too large, when the profile connecting kit 10 is about to detach from the guide groove 3101, the extension wall will block the profile connecting kit 10 due to its large size, thus preventing the profile connecting kit 10 from detaching from the guide groove 3101. Additionally, it should be noted that there is a notch at the end of the extension wall near the ground, one end of which connects to the outside and penetrates the extension wall. Furthermore, the size of the notch is larger than the size of the guide groove 3101, and a rotating plate 33 is provided within the notch. Two support members 34 are also provided on the rotating plate 33, one end of which penetrates the rotating plate 33 and is located on the side of the rotating plate 33 away from the guide groove 3101. The other ends of both support members 34 engage with the wall surface of the support 31 where the guide groove 3101 is located. The support member 34 includes a pin 341 and a nut 342. One end of the pin 341 passes through the rotating plate 33, and the other end is placed on the wall surface of the support 31 where the guide groove 3101 is provided (specifically, the wall surface of the support 31 where the guide groove 3101 is provided has two oppositely arranged mounting holes, and the end of the pin 341 is placed in the mounting hole). The nut 342 is threadedly connected to the pin 341 and abuts against the side of the rotating plate 33 near the support 31. Thus, when the profile connecting kit 10 is stuck by the rotating plate 33, the user can manually open the rotating plate 33 to remove the profile connecting kit 10 placed in the guide groove 3101.

[0052] It should also be noted that the bottom wall forming the guide groove 3101 is provided with a plurality of evenly distributed rolling shafts 35, thereby facilitating the profile connecting kit 10 to disengage from the guide groove 3101. In a specific embodiment, the bottom wall forming the guide groove 3101 has a plurality of evenly distributed third mounting grooves, and each of the third mounting grooves is provided with the rotating shaft.

[0053] It should be noted that the profile connecting kit conveying device further includes a first conveying component 50 and a second conveying component 60. The first conveying component 50 is located on the side of the support 31 away from the support component 40 and is directly opposite the guide groove 3101. The user can place an external high-pressure hose on the first conveying component 50. In addition, the first conveying component 50 and the second conveying component 60 are arranged opposite each other and spaced at a predetermined distance. The sides of the first conveying component 50 and the second conveying component 60 that are close to each other are rotatably connected, that is, connected by at least one fixed rod 400 and at least one rotating rod 500.

[0054] Further, the first conveying assembly 50 includes a support frame 51 and a rotating frame 52. The support frame 51 is placed on the ground, and the end of the support frame 51 facing away from the ground is in contact with the rotating frame 52. It should also be noted that the support frame 51 is composed of multiple support rods, and the rotating frame 52 is concave, meaning that the side of the rotating frame 52 facing away from the support frame 51 has a placement 5201, and the bottom wall forming the placement 5201 has a second insertion hole 5202. The second insertion hole 5202 penetrates the rotating frame 52 and is close to the support 31. Additionally, the first conveying assembly 50 also includes a third driving component 53 and a fourth driving component 54. The third driving component 53 is fixedly connected to the bottom of the rotating frame 52 and faces the second insertion hole 5202. The third driving component 53 has a second telescopic rod 531, which passes through the second insertion hole 5202 and is placed within the placement 5201. It should be noted that the cross-section of the second telescopic rod 531 is T-shaped. Furthermore, the fourth driving component 54 is fixedly connected to the support frame 51, and the fourth driving component 54 has a third telescopic rod 541. The end of the third telescopic rod 541 facing away from the fourth driving component 54 contacts the bottom of the rotating frame 52 and is located near the side of the rotating frame 52 facing away from the second conveying assembly 60. It should be noted that one end of the rotating rod 500 is fixedly connected to the side of the rotating frame 52 near the second conveying assembly 60, and the other end is hinged to the fixed rod 400. The end of the fixed rod 400 facing away from the rotating rod 500 is fixedly connected to the second conveying assembly 60. When the fourth driving component 54 operates, the third telescopic rod 541 extends a predetermined length, causing the end of the rotating frame 52 facing away from the second conveying assembly 60 to tilt upwards, allowing the external high-pressure hose placed in the placement 5201 to fall onto the second conveying assembly 60. It should also be noted that, since the end of the second telescopic rod 531 facing away from the third driving component 53 is placed inside the placement 5201, when the external high-pressure hose contacts the second telescopic rod 531, as... Figure 9-10As shown, the end of the outer, higher hose that contacts the second telescopic rod 531 will bend up, so that when the profile connecting kit 10 disengages from the guide groove 3101, the profile connecting kit 10 will engage with the raised end of the outer high-pressure hose, allowing the profile connecting kit 10 to mate with the outer high-pressure hose. At this time, the rotating frame 52 is flipped, thereby placing the outer high-pressure hose with the profile connecting kit 10 on it into the second conveying assembly 60. It should also be noted that the second conveying assembly 60 has a conveyor belt, allowing the outer high-pressure hose with the profile connecting kit 10 to reach a predetermined position via the conveyor belt. Furthermore, when the outer high-pressure hose with the profile connecting kit 10 is placed on the conveyor belt, the user can assemble an external insert (connecting tube) at a designated position. It should be noted that the direction of the conveyor belt is away from the support 31, so that the user can mate the profile connecting kit 10 with the other end of the external high-pressure hose. That is, the structure of the second conveying component is basically the same as that of the first conveying component. The second conveying component does not have the aforementioned third driving component, and a third conveying component is provided on the side of the second conveying component away from the first conveying component. When the conveyor belt transports the external high-pressure hose to the predetermined position, the second conveying component flips, thereby placing the external high-pressure hose onto the third conveying component. The structure of the third conveying component is basically the same as that of the first conveying component, but the third conveying component does not have the aforementioned fourth driving component, and the third conveying component is also facing another guide component, so that both ends of the external high-pressure hose can be fitted with the profile connecting kit 10.

[0055] In summary, the profile connecting kit conveying device based on the embodiments of this application is explained, which provides the profile connecting kit conveying device with advantages such as convenient assembly of external high-pressure hoses, saving time and effort, and high assembly efficiency.

[0056] It is worth mentioning that, in this embodiment, the profile connecting kit conveying device has a simple structure, does not involve complex manufacturing processes or expensive materials, and is highly economical. At the same time, for manufacturers, the profile connecting kit conveying device provided in this application is easy to produce and inexpensive, which is more conducive to controlling production costs and further facilitates product promotion and use.

[0057] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are merely examples and do not limit the present invention. The objectives of the present invention have been fully and effectively achieved. The functional and structural principles of the present invention have been demonstrated and explained in the embodiments, and any modifications or variations of the embodiments of the present invention may be made without departing from these principles.

Claims

1. A profile connecting kit conveying device for conveying profile connecting kits, characterized in that, The profile connecting kit conveying device includes: A clamping assembly, wherein a plurality of the profile connecting kits are disposed at the bottom of the clamping assembly; A support assembly, one end of which is fixedly connected to the clamping assembly; and A guide assembly includes a base, which is disposed on the ground and one side of the base is fixedly connected to the other end of a support assembly. The side of the base away from the support assembly has a guide groove, both ends of which are connected to the outside. The top of the guide groove is directly opposite one of the profile connecting kits. The wall surface forming the guide groove is curved. The guide assembly also includes a connecting plate, which has two connecting walls and an extension wall. The two connecting walls are arranged opposite each other, and the sides of the two connecting walls that are close to each other are fixedly connected to both sides of the base. The two ends of the extension wall are respectively connected to the ends of the two connecting walls that are away from the base. The extension wall is spaced a predetermined distance from the side of the base where the guide groove is located. The distance between the extension wall and the base decreases from top to bottom. The bottom wall forming the guide groove is provided with a plurality of evenly distributed rolling shafts. A first conveying component; and A second conveying assembly is provided, with the first conveying assembly located on the side of the support away from the supporting assembly and facing the guide groove. An external high-pressure hose is placed on the first conveying assembly. The first and second conveying assemblies are arranged opposite each other at a predetermined distance, and are rotatably connected on their adjacent sides. The first conveying assembly includes a support frame and a rotating frame. The support frame is placed on the ground, and the end of the support frame away from the ground contacts the rotating frame. The support frame is composed of multiple support rods, and the rotating frame is concave. The side of the rotating frame away from the support frame has a placement groove, and the bottom wall forming the placement groove has a second insertion point. The first conveying assembly includes a second insertion hole that penetrates the rotating frame and is close to the support. Additionally, the first conveying assembly includes a third driving component and a fourth driving component. The third driving component is fixedly connected to the bottom of the rotating frame and faces the second insertion hole. The third driving component has a second telescopic rod that passes through the second insertion hole and is placed in the placement slot. The cross-section of the second telescopic rod is T-shaped. The fourth driving component is fixedly connected to the support frame and has a third telescopic rod. The end of the third telescopic rod facing away from the fourth driving component contacts the bottom of the rotating frame and is close to the side of the rotating frame facing away from the second conveying assembly.

2. The profile connecting kit conveying device according to claim 1, wherein the clamping assembly includes a first driving component and a clamping plate, the first driving component has a first rotating shaft, one end of the first rotating shaft is connected to the first driving component, and the other end of the first rotating shaft is connected to the clamping plate, the clamping plate has a plurality of evenly distributed first mounting grooves on the side opposite to the first rotating shaft, and each bottom wall forming the first mounting groove has a first insertion hole, the first insertion hole penetrates the clamping plate, and the first insertion hole is connected to the outside and the first mounting groove respectively.

3. The profile connecting kit conveying device according to claim 2, wherein the clamping assembly further includes a plurality of second driving components, the plurality of second driving components corresponding one-to-one with a plurality of first insertion holes, the second driving component having a first telescopic rod, the second driving component being close to the side of the clamping plate close to the first rotating shaft, each second driving component being directly opposite the corresponding first insertion hole, and the first telescopic rod passing through the corresponding first insertion hole and being placed in the corresponding first mounting groove.

4. The profile connecting kit conveying device according to claim 3, wherein each of the first telescopic rods has two second mounting slots on the bottom wall of the first mounting slot, the two second mounting slots are arranged opposite to each other, and a telescopic component is further provided in each second mounting slot, the telescopic component is provided to be telescopically extendable to a predetermined length, each telescopic component includes a movable member and an elastic member, one end of the elastic member is fixedly connected to the bottom wall forming the second mounting slot, the other end is fixedly connected to the movable member, and one end of the movable member is placed in the second mounting slot, and the other end is placed outside.

5. The profile connecting kit conveying device according to claim 4, wherein the profile connecting kit is placed in the first mounting groove, and the profile connecting kit has an opening and a first cavity, the first telescopic rod passes through the opening and is placed in the first cavity, one end of each of the two moving parts is placed on the bottom wall forming the first cavity, and the maximum distance between the two moving parts is greater than the size of the opening, thereby confining the profile connecting kit to the corresponding first telescopic rod.

6. The profile connecting kit conveying device according to claim 5, wherein at least one fixed rod and at least one rotating rod are provided on the side of the first conveying component and the second conveying component that are close to each other, one end of the rotating rod is fixedly connected to the side of the rotating frame that is close to the second conveying component, and the other end is hinged to the fixed rod, and the end of the fixed rod that is away from the rotating rod is fixedly connected to the second conveying component, wherein when the fourth driving component operates, the third telescopic rod extends out a predetermined length, thereby causing the end of the rotating frame that is away from the second conveying component to tilt up, thereby allowing the external high-pressure hose placed in the placement groove to fall onto the second conveying component.