Method of assembling a braided hose and jacket assembly and assembly processing apparatus

CN118254370BActive Publication Date: 2026-09-11HEBEI BOTONG RUBBER &PLASTIC PROD CO LTD
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Patent Information

Application Number
CN202410330497.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-03-22
Publication Date
2026-09-11
Estimated Expiration
2044-03-22

AI Technical Summary

Technical Problem

[0004]上述申请具有不足之处,虽然能够不通过传统手工的方式来完成护套和软管的套接安装,但是其装配的各个过程中还是需要人工手动操作或者人工干预控制的,在控制护套固定装置固定好护套后再控制导向杆伸出,护套装配好后也不能及时移走,影响后一管件对接工序的进行

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Abstract

The application discloses a braided hose and sheath assembling method and assembling processing equipment, relates to the technical field of hose processing, and comprises a base, a sheath clamp fixed to the top surface of the base and used for clamping and positioning the sheath, a hose fixing frame located on one side of the sheath clamp and rotationally provided with an anti-slip fading wheel, and a telescopic inserting mechanism located on the other side of the sheath clamp and having a first stroke for passing through the sheath clamp and a second stroke for returning, wherein the telescopic inserting mechanism is provided with transmission members connected with the sheath clamp and the anti-slip fading wheel respectively, and the transmission members are elastically connected with the base. The telescopic inserting mechanism is arranged to pass through the sheath fixed on the sheath clamp, so that the sheath can pass through the sheath with the hose when returning, and when the telescopic inserting mechanism extends towards the sheath, the transmission members are simultaneously moved towards the sheath under the action of elastic force, so that the sheath clamp is gradually clamped.
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Description

Technical Field

[0001] This invention relates to the field of hose processing technology, specifically to a method and equipment for assembling braided hoses and sheaths. Background Technology

[0002] Hoses are an important component in the connection lines of modern industrial equipment. To make the joints more secure or to meet the requirements of the actual use environment, a protective sleeve is usually attached to the hose.

[0003] The existing patent application, with publication number CN106312900B and publication date June 14, 2019, is entitled "A hose sheath installation and positioning device." This patent includes a sheath opening device, a sheath fixing device, a sheath positioning device, and a base. The sheath opening device, the sheath fixing device, and the sheath positioning device are sequentially arranged on the base. The beneficial effect of this invention is that it allows for modification of the sheath tooling according to different shapes of hose sheaths, and adjustment of the position of the hose and sheath according to different locations, meeting the needs of modern factories for batch installation of various types and lengths of sheaths.

[0004] The above application has shortcomings. Although it can complete the splicing and installation of the sheath and hose without traditional manual methods, manual operation or intervention is still required in each process of assembly. After the sheath is fixed by the control device, the guide rod is extended. After the sheath is assembled, it cannot be removed in time, which affects the subsequent pipe fitting docking process. Summary of the Invention

[0005] The purpose of this invention is to provide a method and equipment for assembling braided hoses and sheaths, in order to overcome the shortcomings of the prior art.

[0006] To achieve the above objectives, the present invention provides the following technical solution:

[0007] A braided hose and sheath assembly processing device includes a base, a sheath clamp fixed to the top surface of the base for clamping and positioning the sheath, a hose fixing frame located on one side of the sheath clamp, with an anti-slip material removal wheel rotatably mounted in the hose fixing frame, and a telescopic insertion mechanism located on the other side of the sheath clamp. The telescopic insertion mechanism has a first stroke passing through the sheath clamp and a second stroke resetting and retracting. The telescopic insertion mechanism is equipped with transmission components that are respectively connected to the sheath clamp and the anti-slip material removal wheel, and the transmission components are elastically connected to the base. When the telescopic insertion mechanism is in the first stroke, the transmission component drives the sheath clamp to gradually clamp the sheath under the action of elastic force. When the telescopic insertion mechanism is in the second stroke, it drives the transmission component to open the sheath clamp and drives the anti-slip material removal wheel to rotate in the direction of hose feeding.

[0008] Preferably, the sheath clamp includes a pad fixed to the surface of the base, and a clamping plate is symmetrically and elastically slidably mounted on the top of the pad.

[0009] Preferably, the transmission component includes a push-pull frame that is slidably mounted on the base platform, and compression springs are symmetrically installed between the bottom of the push-pull frame and the base platform. Pressure plates that abut against the clamping plate are fixedly connected to both sides of the inner wall of the push-pull frame, and transmission racks that mesh with the axle of the anti-slip material removal wheel are symmetrically installed on the top of the push-pull frame.

[0010] Preferably, the telescopic insertion mechanism includes a cylinder and a hollow guide rod sleeved with the cylinder. The bottom of the cylinder is fixed to the base, and one end of the hollow guide rod movably passes through the push-pull frame and is fixed with a limit ring.

[0011] Preferably, the top of the hose fixing frame has an arc-shaped groove that is on the same axis as the hollow guide rod, and an arc-shaped pressure plate is elastically connected above the arc-shaped groove on the top of the hose fixing frame.

[0012] Preferably, both sides of the arc-shaped pressure plate are equipped with insert rods that pass through the hose fixing bracket. The insert rods are fitted with top springs, and wedge-shaped blocks are fixedly connected to the bottom of the insert rods. Abutment frames are slidably installed on both sides of the bottom of the hose fixing bracket. One end of the abutment frame abuts against the wedge-shaped block. The inner wall of the push-pull frame is horizontally provided with a guide groove for the other end of the abutment frame to be inserted. When the push-pull frame is pulled by the telescopic insertion mechanism in the second stroke, the abutment frame gradually pushes up the arc-shaped pressure plate under the guidance of the guide groove.

[0013] Preferably, the bottom of the arc-shaped groove is provided with a through groove that matches the anti-slip material removal wheel, and an annular groove is provided on the circumferential surface of the anti-slip material removal wheel, with an anti-slip ring nested in the annular groove.

[0014] Preferably, the clamping plate has holes and slots at both ends for the hollow guide rod to pass through, and the diameter of the hole and slot near the hose fixing frame is larger than the diameter of the hole and slot at the other end.

[0015] Preferably, a storage frame is installed at the bottom of the base below the hose fixing frame.

[0016] The assembly method using the above-mentioned braided hose and sheath assembly processing equipment includes the following steps:

[0017] S1. Place the product sheath into the opened sheath clamp, and place the hose on the hose holder;

[0018] S2. Control the extension and retractable plug-in mechanism to extend, so that one end moves toward the sheath, and at the same time drive the sheath clamp to clamp the sheath through the transmission component.

[0019] S3. After one end of the telescopic plug-in mechanism emerges from the sheath, insert the hose into the telescopic plug-in mechanism from that end.

[0020] S4. Control the telescopic plug mechanism to reset and retract, allowing one end of the telescopic plug mechanism with the hose to pass through the sheath in the sheath clamp in the opposite direction. After passing through, use the transmission component to gradually loosen the sheath clamp, and finally remove the assembled hose with the sheath.

[0021] In the above technical solution, a telescopic plug-in mechanism is set to pass through the sheath fixed on the sheath clamp, so that the flexible hose can pass through the sheath when it moves back. The telescopic plug-in mechanism can also adjust the position of the transmission component when it extends and retracts. When the telescopic plug-in mechanism extends towards the sheath, the transmission component moves towards the sheath under the action of elasticity, forcing the sheath clamp to gradually clamp and preventing the sheath from shifting during insertion. At the same time, when the telescopic plug-in mechanism further passes through the sheath, the position of the transmission component will not change, ensuring the stability of the sheath. When the telescopic plug-in mechanism, which has passed through the sheath, retracts and resets with the flexible hose, the transmission component can gradually open the sheath clamp. After the sheath is nested on the flexible hose, it automatically releases the fixed sheath, and at the same time drives the anti-slip material removal wheel to rotate continuously in the direction of flexible hose feeding. The friction force is used to pull the flexible hose off the flexible hose fixing frame, reducing the number of manual operation steps required by the operator.

[0022] It should be understood that the foregoing general description and the following detailed description are exemplary and illustrative only, and are not intended to limit this disclosure.

[0023] This application provides an overview of various implementations or examples of the technology described in this disclosure, and is not a full disclosure of the entire scope or all features of the disclosed technology. Attached Figure Description

[0024] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this invention. For those skilled in the art, other drawings can be obtained based on these drawings.

[0025] Figure 1 This is a schematic diagram of the overall structure of a braided hose and sheath assembly processing equipment according to the present invention;

[0026] Figure 2 This is a schematic diagram showing the connection between the telescopic insertion mechanism and the transmission component in a braided hose and sheath assembly processing equipment according to the present invention;

[0027] Figure 3 This is a schematic diagram of the transmission components, sheath clamps, and anti-slip material removal wheels in a braided hose and sheath assembly and processing equipment of the present invention;

[0028] Figure 4This is a schematic diagram of the sheath clamp in a braided hose and sheath assembly processing equipment according to the present invention;

[0029] Figure 5 This is a schematic diagram of the transmission component in a braided hose and sheath assembly processing equipment according to the present invention;

[0030] Figure 6 This is a bottom view of a transmission component in a braided hose and sheath assembly processing equipment according to the present invention;

[0031] Figure 7 This is a schematic diagram of the overall structure of the hose fixing frame in the braided hose and sheath assembly processing equipment of the present invention;

[0032] Figure 8 This is an enlarged view of section A of the braided hose and sheath assembly processing equipment of the present invention.

[0033] Explanation of reference numerals in the attached figures:

[0034] 1. Base; 101. Storage frame; 102. Guide rail; 2. Sheath clamp; 201. Pad; 202. Clamping plate; 205. Groove; 206. Slider; 207. Partition; 208. Push spring; 209. Insert; 210. Slide groove; 3. Hoses fixing bracket; 301. Anti-slip material ejector wheel; 303. Arc groove; 304. Arc pressure plate; 305. Insert rod; 306. Top spring; 307. Wedge-shaped 308. Abutment block; 309. Abutment frame; 310. Through groove; 311. Annular groove; 312. Gear; 313. Gasket; 4. Telescopic insertion mechanism; 401. Cylinder; 402. Hollow guide rod; 403. Limiting ring; 404. Hose fixing airbag; 5. Transmission component; 501. Push-pull frame; 502. Compression spring; 503. Pressing plate; 504. Transmission rack; 505. Guide groove; 506. Limiting block. Detailed Implementation

[0035] To make the objectives, technical solutions, and advantages of the embodiments of this disclosure clearer, the technical solutions of the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this disclosure. All other embodiments obtained by those skilled in the art based on the described embodiments of this disclosure without creative effort are within the scope of protection of this disclosure.

[0036] Please see Figure 1-8This invention provides a braided hose and sheath assembly processing device, including a base 1, a sheath clamp 2 fixed to the top surface of the base 1 for clamping and positioning the sheath, a hose fixing frame 3 located on one side of the sheath clamp 2, and an anti-slip material removal wheel 301 rotatably mounted in the hose fixing frame 3, and a telescopic insertion mechanism 4 located on the other side of the sheath clamp 2, having a first stroke passing through the sheath clamp 2 and a second stroke resetting and retracting. The telescopic insertion mechanism 4 is equipped with a transmission component 5 connected to the sheath clamp 2 and the anti-slip material removal wheel 301 respectively, and the transmission component 5 is elastically connected to the base 1. When the telescopic insertion mechanism 4 is in the first stroke, the transmission component 5 drives the sheath clamp 2 to gradually clamp the sheath under the action of elastic force. When the telescopic insertion mechanism 4 is in the second stroke, it drives the transmission component 5 to open the sheath clamp 2 and drive the anti-slip material removal wheel 301 to rotate in the direction of hose feeding.

[0037] Specifically, the hose fixing bracket 3, the sheath clamp 2, and the telescopic insertion mechanism 4 are arranged sequentially along a horizontal line on the base 1. A transmission component 5 is installed on the telescopic insertion mechanism 4. In use, the sheath is placed on the open sheath clamp 2, and the hose to be fitted with the sheath is placed on the hose fixing bracket 3. When the telescopic insertion mechanism 4 extends towards the sheath, the transmission component 5 moves in that direction under elastic force, forcing the sheath clamp 2 to clamp and fix the sheath before the telescopic insertion mechanism 4 passes through it. This eliminates the need to first adjust the sheath clamp 2 to fix the sheath before controlling the telescopic insertion mechanism 4, reducing manual operation and ensuring the stability of the sheath when the telescopic insertion mechanism 4 passes through it. After the telescopic plug-in mechanism 4 passes through the sheath, it aligns with the hose on the hose fixing bracket 3, and the hose is inserted into the telescopic plug-in mechanism 4. When it retracts along the original path, it can carry the hose through the sheath. During the process of the telescopic plug-in mechanism 4 continuing to retract after passing through the sheath, it can drive the transmission component 5 to move back, and open the sheath clamp 2 through the transmission component 5. At the same time, it drives the anti-slip material removal wheel 301 on the hose fixing bracket 3 to rotate. The anti-slip material removal wheel 301 and the hose on the hose fixing bracket 3 are driven by friction. When the anti-slip material removal wheel 301 rotates in the direction of hose feeding, it pulls the hose with the sheath off the hose fixing bracket 3. This allows the workers to only pay attention to putting the hose on in time, without worrying about the work efficiency being reduced due to the hose not being removed in time.

[0038] Compared with the prior art, the embodiments of the present invention use a telescopic insertion mechanism 4 to pass through the sheath fixed on the sheath clamp 2, so that the sheath clamp 2 can pass through the sheath with the hose during retraction. The telescopic insertion mechanism 4 can also adjust the position of the transmission component 5 during telescopic extension. When the telescopic insertion mechanism 4 extends towards the sheath, the transmission component 5 moves towards the sheath under the action of elasticity, forcing the sheath clamp 2 to gradually clamp and prevent the sheath from shifting during insertion. At the same time, when the telescopic insertion mechanism 4 further passes through the sheath, the position of the transmission component 5 does not change, ensuring the stability of the sheath. When the telescopic insertion mechanism 4, which has passed through the sheath, retracts and resets with the hose, the transmission component 5 can gradually open the sheath clamp 2. After the sheath is nested on the hose, it automatically releases the fixed sheath and drives the anti-slip material removal wheel 301 to rotate continuously in the direction of hose feeding, using friction to pull the hose off the hose fixing bracket 3, reducing the number of manual operation steps required by the operator.

[0039] In a further embodiment of the present invention, the sheath clamp 2 includes a pad 201 fixed to the surface of the base 1. A clamping plate 202 is symmetrically and elastically slidably mounted on the top of the pad 201. A slider 206 is fixedly connected to the bottom of the clamping plate 202. A horizontal groove 210 matching the slider 206 is opened on the pad 201. A partition 207 is installed between the two sliders 206 at the bottom of the pad 201. A push spring 208 is also fixedly connected between the partition 207 and the slider 206. Specifically, because the slider 206 at the bottom of the clamping plate 202 and the pad... A push spring 208 is installed between the partition plates 207 at the bottom of plate 201, so that under normal conditions, the clamping plates 202 on both sides of the sheath clamp 2 are always in the open state, allowing the sheath to be easily placed into the space reserved between the two clamping plates 202. At the same time, the clamping plates 202 will not cause the sheath to fall or leave the reserved space, so as to ensure that the telescopic insertion mechanism 4 can properly clamp and fix the sheath during subsequent operation. The sheath installation steps are simple, and no further fixing is required after installation, which facilitates other convenient operations for the staff.

[0040] In a further embodiment of the present invention, the transmission component 5 includes a push-pull frame 501 slidably mounted on the surface of the base 1, and compression springs 502 are symmetrically mounted between the bottom of the push-pull frame 501 and the base 1. Limiting blocks 506 are symmetrically fixedly connected to the bottom of the push-pull frame 501. A guide rail 102 matching the limiting block 506 is provided on the base 1. The compression spring 502 is located inside the guide rail 102. One end of the compression spring 502 is connected to the limiting block 506, and the other end is fixed to the inner wall of the guide rail 102. The length of the guide rail 102 is less than the extension distance of the telescopic insertion mechanism 4. Abutment blocks that abut against the bottom slider 206 of the clamping plate 202 are fixedly connected to both sides of the inner wall of the push-pull frame 501. The pressure plate 503 is inclined on the side near the sheath. A transmission rack 504, meshing with the axle of the anti-slip material removal wheel 301, is symmetrically installed on the top of the push-pull frame 501. A gear 311 matching the transmission rack 504 is fixedly installed at the end of the axle. Specifically, the length of the guide rail 102 is shorter than the extension distance of the telescopic insertion mechanism 4. That is, when the telescopic insertion mechanism 4 extends towards the sheath, the push-pull frame 501 will first move towards the sheath under the force of the compression spring 502. When the limiting block 506 at the bottom of the push-pull frame 501 moves to one end of the guide rail 102 and abuts against it, the push-pull frame 501... If it cannot move further, the telescopic insertion mechanism 4 will extend independently. Under the force of the compression spring 502, the push-pull bracket 501 moves towards the sheath clamp 2, causing the pressure plate 503 inside the push-pull bracket 501 to first tilt and abut against the slider 206 at the bottom of the clamping plate 202, bringing the two clamping plates 202 in the sheath clamp 2 closer together. When the clamping plates 202 fully clamp the sheath, the slider 206 at the bottom of the clamping plate 202 no longer tilts and abuts against the pressure plate 503; instead, their outer walls are in complete contact. Therefore, when the push-pull bracket 501 cannot move further towards the sheath, it will always restrict the clamping plate 202 from clamping the sheath, allowing the telescopic insertion mechanism 4 to pass through... The sheath will not shift during installation, preventing damage to the inner hole of the sheath and ensuring the stability of the assembly. When the telescopic insertion mechanism 4 retracts, it will pull the push-pull bracket 501 back. Only when the telescopic insertion mechanism 4 carrying the hose is completely removed from the sheath will the pressure plate 503 on the push-pull bracket 501 no longer abut against the slider 206 at the bottom of the clamp 202, allowing the sheath clamp 2 to automatically release the sheath assembled with the hose. At the same time, when the push-pull bracket 501 moves back, it will drive the anti-slip material removal wheel 301 to rotate counterclockwise in the direction of hose feeding through the transmission rack 504, so as to facilitate the quick removal of the assembled hose and sheath from the hose fixing bracket 3.

[0041] In a further embodiment of the present invention, the telescopic insertion mechanism 4 includes a cylinder 401 and a hollow guide rod 402 sleeved with the cylinder 401. The bottom of the cylinder 401 is fixed to the base 1. One end of the hollow guide rod 402 movably passes through the push-pull frame 501 and is fixed with a limit ring 403. The limit ring 403 is fixedly sleeved on the outside of the hollow guide rod 402 and abuts against the push-pull frame 501. A guide head (not shown in the figure) is added to the rod head of the hollow guide rod 402. A hose fixing airbag 404 is installed inside the hollow guide rod 402. Specifically, in use, the extension and retraction of the hollow guide rod 402 is controlled by the cylinder 401. The inside of the hollow guide rod 402 is used to insert part of the hose. The limit ring 403 on the hollow guide rod 402 is used to adjust the position of the push-pull frame 501 during the extension and retraction process. When the sleeve moves in the direction of movement, the limiting ring 403 can restrict the movement of the push-pull frame 501, preventing the push-pull frame 501 from moving too fast and causing the two clamps 202 in the sleeve clamp 2 to come together instantly, allowing the staff to safely and accurately place the sleeve in the sleeve clamp 2. When the hollow guide rod 402 passing through the sleeve moves back, the limiting ring 403 can pull the hollow guide rod 402 back to the push-pull frame 501, so that the sleeve clamp 2 can be released after the sleeve and hose are assembled. Before the hollow guide rod 402 passes through the sleeve, a guide head can be inserted at its rod head to allow the hollow guide rod 402 to pass through the sleeve more smoothly. After passing through, the guide head is removed, and the hose fixing airbag 404 is used to fix the part of the hose inserted into the hollow guide rod 402. The hose fixing airbag 404 is inflated when fixing the hose and deflated when releasing the hose.

[0042] In a further embodiment of the present invention, the top of the hose fixing frame 3 is provided with an arc-shaped groove 303 that is coaxial with the hollow guide rod 402. An arc-shaped pressure plate 304 is elastically connected above the arc-shaped groove 303 on the top of the hose fixing frame 3. A gasket 312 is attached to the inner wall of the arc-shaped pressure plate 304. Specifically, the arc-shaped groove 303 and the arc-shaped pressure plate 304 can conveniently place the hose on the hose fixing frame 3. The gasket 312 contacts the hose, and the hose is not easy to slip off the hose fixing frame 3, so that after the hollow guide rod 402 passes through the sheath, the hose can be quickly inserted into the hollow guide rod 402.

[0043] In a further embodiment of the present invention, insert rods 305 penetrating the hose fixing bracket 3 are installed on both sides of the arc-shaped pressure plate 304. A top spring 306 is sleeved on each insert rod 305. A wedge-shaped abutment block 307 is fixedly connected to the bottom of the insert rod 305. One end of the top spring 306 abuts against the top of the inner wall of the hose fixing bracket 3, and the other end abuts against the top of the wedge-shaped abutment block 307. Abutment brackets 308 are slidably installed on both sides of the bottom of the hose fixing bracket 3. One end of each abutment bracket 308 abuts against the wedge-shaped abutment block 307. The inner wall of the push-pull bracket 501 is horizontally provided with a guide groove 505 for the other end of the abutment bracket 308 to be inserted. The guide groove 505 consists of two connected grooves, one of which is closer to the hose fixing bracket 3 than the other. When the push-pull bracket 501 is pulled by the telescopic insertion mechanism 4 in the second stroke, the abutment bracket 308 gradually pushes up the arc-shaped pressure plate 304 under the guidance of the guide groove 505. Specifically, the top spring 306 initially... Finally, the wedge-shaped abutment 307 on the insert rod 305 is pressed downwards, and the elastic force of the top spring 306 enables the arc-shaped pressure plate 304 to adaptively clamp the hose on the hose fixing bracket 3, preventing the hose originally placed on the hose fixing bracket 3 from falling off after the hollow guide rod 402 passes through the sheath. At the same time, it does not cause the hollow guide rod 402 to be unable to pull the hose when it moves back due to excessive clamping. Furthermore, after the hollow guide rod 402 and the hose pass through the sheath, the push-pull bracket 501 is blocked by the hollow guide rod 405. 2. Pulling back changes the position of the guide groove 505, forcing the abutment frame 308 to reach the section of the guide groove 505 near the hose fixing frame 3. The abutment frame 308, which moves inward, pushes up the wedge-shaped abutment block 307, thereby lifting the entire arc-shaped pressure plate 304. This allows the arc-shaped pressure plate 304 to loosen the hose with the sheath installed, making it easier for the anti-slip material removal wheel 301 to quickly remove the finished product and prevent the anti-slip material removal wheel 301 from causing wear on the hose surface.

[0044] In a further embodiment of the present invention, the bottom of the arc-shaped groove 303 is provided with a through groove 309 that matches the anti-slip material removal wheel 301, and an annular groove 310 is provided on the circumferential surface of the anti-slip material removal wheel 301. The opening of the annular groove 310 is located inside the arc-shaped groove 303, and an anti-slip ring is nested inside the annular groove 310. Specifically, the annular groove 310 around the anti-slip material removal wheel 301 corresponds to the arc-shaped groove 303, and the top of the anti-slip material removal wheel 301 directly passes through the through groove 309 and enters the arc-shaped groove 303, which can play an anti-slip role when the hose is placed. When the anti-slip material removal wheel 301 rotates counterclockwise, it can allow the assembled hose to quickly leave the hose fixing frame 3, improving the overall work efficiency and eliminating the need for manual handling of the finished product.

[0045] In a further embodiment of the present invention, the clamping plates 202 are respectively provided with slots 205 at both ends for the hollow guide rod 402 to pass through, and the diameter of the slot 205 near the hose fixing bracket 3 is larger than the diameter of the slot 205 at the other end. The clamping plates 202 are provided with an insertion port 209. When the two clamping plates 202 are opened, the operator can place the sheath between the two clamping plates 202 through the insertion port 209. Specifically, when the two clamping plates 202 are close together, the slots 205 on the two clamping plates 202 are joined together to form a hole for the hollow guide rod 402 to pass through. The slots 205 near the hose fixing bracket 3 of the two clamping plates 202 are larger than the other slot 205, which makes it convenient for the sheath on the hose to be easily removed from the sheath clamp 2 when the sheath clamp 2 is opened after the hose and sheath are assembled, thus avoiding the two clamping plates 202 blocking the sheath and causing the finished product to be obstructed from moving.

[0046] In a further embodiment of the present invention, a storage frame 101 is installed at the bottom of the base 1 below the hose fixing frame 3. Specifically, the storage frame 101 is inserted into one side of the base 1. The assembled finished products that are pushed away by the unloading wheel will fall into the storage frame 101 by themselves for storage, so that they can be carried out in the next processing step in a concentrated manner.

[0047] The assembly method using the above-mentioned braided hose and sheath assembly processing equipment includes the following steps:

[0048] S1. Place the product sheath into the opened sheath clamp 2, and place the hose on the hose fixing bracket 3;

[0049] S2. Control the extension and retraction of the plug-in mechanism 4 to extend, so that one end moves toward the sheath, and at the same time drive the sheath clamp 2 to clamp the sheath through the transmission component 5.

[0050] S3. After one end of the telescopic plug-in mechanism 4 passes through the sheath, insert the hose into the telescopic plug-in mechanism 4 from that end.

[0051] S4. Control the telescopic plug-in mechanism 4 to reset and retract, so that one end of the telescopic plug-in mechanism 4 with the hose passes through the sheath in the sheath clamp 2 in the opposite direction, and after passing through, use the transmission component 5 to gradually loosen the sheath clamp 2, and finally remove the assembled hose with the sheath.

[0052] The foregoing has only described certain exemplary embodiments of the present invention by way of illustration. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the foregoing drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A braided hose and sheath assembly processing equipment, comprising a base (1), characterized in that, Also includes: Sheath clamp (2), the sheath clamp (2) includes a clamp plate (202) that is elastically slidably disposed, which is fixed to the top surface of the base (1) for clamping and positioning the sheath; The hose fixing bracket (3) is located on one side of the sheath clamp (2), and the hose fixing bracket (3) is rotatably installed with an anti-slip material removal wheel (301). Telescopic plug-in mechanism (4), which is located on the other side of the sheath clamp (2), has a first stroke through the sheath clamp (2) and a second stroke for resetting and retracting, and the telescopic plug-in mechanism (4) is equipped with a transmission component (5) that is connected to the sheath clamp (2) and the anti-slip material removal wheel (301) respectively, and the transmission component (5) is elastically connected to the base (1); When the telescopic plug-in mechanism (4) is in the first stroke, the transmission component (5) drives the sheath clamp (2) to gradually clamp the sheath under the action of elastic force. When the telescopic plug-in mechanism (4) is in the second stroke, it drives the transmission component (5) to open the sheath clamp (2) and drives the anti-slip material removal wheel (301) to rotate in the direction of hose feeding. The transmission component (5) includes a push-pull frame (501) that is slidably mounted on the platform (1), and a compression spring (502) is symmetrically mounted between the bottom of the push-pull frame (501) and the platform (1). The inner walls of the push-pull frame (501) are respectively fixedly connected to the pressure plate (503) that abuts against the bottom slider (206) of the clamping plate (202), and the side of the pressure plate (503) near the sheath is inclined. The top of the push-pull frame (501) is symmetrically mounted with a transmission rack (504) that meshes with the axle of the anti-slip material removal wheel (301).

2. The braided hose and sheath assembly processing equipment according to claim 1, characterized in that, The sheath clamp (2) includes a pad (201) fixed to the surface of the base (1), and a clamp (202) is symmetrically and elastically slidably mounted on the top of the pad (201).

3. The braided hose and sheath assembly processing equipment according to claim 1, characterized in that, The telescopic plug-in mechanism (4) includes a cylinder (401) and a hollow guide rod (402) sleeved with the cylinder (401). The bottom of the cylinder (401) is fixed to the base (1). One end of the hollow guide rod (402) movably passes through the push-pull frame (501) and is fixed with a limit ring (403).

4. The braided hose and sheath assembly processing equipment according to claim 3, characterized in that, The top of the hose fixing bracket (3) is provided with an arc-shaped groove (303) that is on the same axis as the hollow guide rod (402), and an arc-shaped pressure plate (304) is elastically connected above the arc-shaped groove (303) on the top of the hose fixing bracket (3).

5. The braided hose and sheath assembly processing equipment according to claim 4, characterized in that, Both sides of the arc-shaped pressure plate (304) are equipped with insert rods (305) that pass through the hose fixing bracket (3). The insert rods (305) are fitted with top springs (306). The bottom of the insert rods (305) is fixedly connected to wedge-shaped blocks (307). Both sides of the bottom of the hose fixing bracket (3) are slidably installed with abutment brackets (308). One end of the abutment bracket (308) abuts against the wedge-shaped blocks (307). The inner wall of the push-pull bracket (501) is horizontally provided with guide grooves (505) for the other end of the abutment bracket (308) to be inserted. When the push-pull bracket (501) is pulled by the telescopic insertion mechanism (4) in the second stroke, the abutment bracket (308) gradually pushes up the arc-shaped pressure plate (304) under the guidance of the guide grooves (505).

6. The braided hose and sheath assembly processing equipment according to claim 4, characterized in that, The bottom of the arc groove (303) is provided with a through groove (309) that matches the anti-slip material removal wheel (301). The circumferential surface of the anti-slip material removal wheel (301) is provided with an annular groove (310), and an anti-slip ring is nested in the annular groove (310).

7. The braided hose and sheath assembly processing equipment according to claim 3, characterized in that, The clamp (202) has holes (205) at both ends for the hollow guide rod (402) to pass through, and the diameter of the hole (205) near the hose fixing bracket (3) is larger than the diameter of the hole (205) at the other end.

8. The braided hose and sheath assembly processing equipment according to claim 1, characterized in that, A storage box (101) is installed at the bottom of the base (1) below the hose fixing frame (3).

9. An assembly method using the braided hose and sheath assembly processing equipment as described in any one of claims 1-8, characterized in that, Includes the following steps: S1. Place the product sheath into the open sheath clamp (2), and place the hose on the hose holder (3); S2. Control the extension and retraction of the plug-in mechanism (4) to extend, so that one end moves toward the sheath, and at the same time drive the sheath clamp (2) to clamp the sheath through the transmission component (5); S3. After one end of the telescopic plug-in mechanism (4) passes through the sheath, insert the hose into the telescopic plug-in mechanism (4) from that end. S4. Control the telescopic plug mechanism (4) to reset and retract, so that one end of the telescopic plug mechanism (4) with the hose passes through the sheath in the sheath clamp (2) in the opposite direction, and after passing through, use the transmission component (5) to gradually loosen the sheath clamp (2), and finally remove the assembled hose with the sheath.

Citation Information

Patent Citations

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