Automatic mounting device for hose and connecting seat

By designing an automatic installation device for hoses and connectors, the problem that traditional assembly methods cannot meet the needs of mass production was solved, realizing the automated installation of hoses and connectors and improving production efficiency and assembly accuracy.

CN224183789UActive Publication Date: 2026-05-01JIANGSU CAINA MEDICAL TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU CAINA MEDICAL TECH
Filing Date
2025-05-22
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Traditional manual or semi-automatic assembly methods cannot meet the mass production needs of hoses and connectors, and cannot achieve automated and efficient assembly.

Method used

An automatic installation device for hoses and connectors was designed, including a hose conveying line, a connector supply frame, an installation component, a feeding component, and a clamping component. The device achieves automatic docking and installation of hoses and connectors through an insertion head, a translation mechanism, and a lifting mechanism.

Benefits of technology

It enables automated installation of hoses and connectors, improves production efficiency and assembly accuracy, simplifies the material loading process of connectors, and enhances the level of automated production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of infusion apparatus assembly, and discloses an automatic hose and connecting seat installation device which comprises a hose conveying line, a connecting seat supply frame, an installation assembly, a feeding assembly and a clamping assembly, the installation assembly comprises a plurality of plug-in heads capable of moving axially, and the plug-in heads and the to-be-installed ends of hose workpieces are located on the same axis; the feeding assembly is used for moving the connecting base workpiece to the moving path of the inserting head, so that the inserting head moving towards the hose workpiece is sleeved with the connecting base workpiece. According to the automatic mounting device for the hose and the connecting base, the action that the hose workpiece and the connecting base workpiece are mounted when the hose workpiece flows to the mounting station along with the hose conveying line is achieved, the plug-in mounting head with the translation action and the feeding assembly with the lifting action are designed, the process from feeding to plug-in mounting of the connecting base workpiece is simplified, the automatic production level is improved, and the production efficiency is improved. And the mounting requirements of the hose and the connecting seat are met.
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Description

Technical Field

[0001] This utility model relates to the field of infusion set assembly technology, and in particular to an automatic installation device for hoses and connectors. Background Technology

[0002] Disposable infusion sets are common medical consumables. After sterilization, they establish a channel between a vein and the medication for intravenous infusion. An infusion set typically consists of an intravenous needle or injection needle, needle cap, tubing, medication filter, flow regulator, drip chamber, stopper insert, air filter, injection port, and medication dispensing port. The tubing is connected to the other parts via a connector, which needs to be pre-installed at the end of the tubing.

[0003] To ensure product sterility, current production is increasingly moving towards intelligent and automated processes. The assembly process of hoses and connectors involves actions such as hose loading, connector loading, hose and connector positioning, and hose and connector insertion. When facing mass production, traditional manual or semi-automatic assembly methods cannot meet the requirements and technological improvements are needed. Utility Model Content

[0004] Based on the above problems, the purpose of this utility model is to provide an automatic installation device for hoses and connectors, which can automatically complete the action of installing connectors at the end of hoses and meet the requirements of automated production.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] An automatic hose and connector installation device includes a hose conveyor line, a connector supply frame, an installation assembly, a feeding assembly, and a clamping assembly, wherein:

[0007] The hose conveyor line is equipped with several loading positions, which are arranged at equal intervals along the conveying direction of the hose conveyor line. Each loading position is equipped with a hose workpiece, and the end of the hose workpiece to be installed extends out from the side of the hose conveyor line.

[0008] The number of connector supply racks is the same as the number of hose workpieces. Each connector supply rack is equipped with a feeding trough, in which several connector workpieces are neatly arranged.

[0009] The mounting assembly is located on one side of the hose conveyor line. The mounting assembly includes several insert heads that can move axially. Each insert head corresponds to a hose workpiece, and the insert head and the end of the hose workpiece to be installed are on the same axis.

[0010] The feeding assembly is located at the discharge end of the connector supply frame. The feeding assembly is used to move the connector workpiece onto the moving path of the insert head, so that the connector workpiece is fitted onto the insert head that is moving toward the hose workpiece.

[0011] The clamping assembly is located between the hose delivery line and the mounting assembly, and is used to lock the position of the end of the hose workpiece to be installed.

[0012] As an optional solution, the installation assembly also includes a fixed plate, a first movable block, a translation mechanism, and an insertion mechanism. The fixed plate is provided with a first guide rail arranged towards the hose conveyor line. The first movable block is disposed on the first guide rail and is driven by the translation mechanism to move along the first guide rail. The insertion mechanism is mounted on the first movable block, and the insertion head is mounted on the output end of the insertion mechanism. The insertion mechanism is used to drive the insertion head, which is fitted with the connector workpiece, to be inserted into the end of the hose workpiece to be installed.

[0013] As an alternative, the insertion mechanism includes a first drive cylinder mounted on a first moving block, a first mounting block disposed on the output rod of the first drive cylinder, and a plurality of insertion heads distributed at intervals on the first mounting block.

[0014] As an alternative, the head end of the insertion head extends out of the first mounting block, the tail end of the insertion head extends out of the first moving block, and a buffer spring is provided between the tail end of the insertion head and the first moving block.

[0015] As an alternative, the translation mechanism includes a drive motor, a lead screw, and a nut. The lead screw is rotatably mounted on a fixed plate and arranged parallel to the first guide rail. The drive motor is used to drive the lead screw to rotate in both directions. The nut is mounted on the first moving block and engages with the lead screw for transmission.

[0016] As an alternative, the fixed plate is equipped with a limit switch for controlling the displacement of the insertion head, and the first moving block is equipped with a travel piece for triggering the limit switch.

[0017] As an alternative, the connector supply frame is located below the moving path of the insertion head. The feeding assembly includes a second moving block and a lifting mechanism. The second moving block is located in front of the discharge end of the connector supply frame. The lifting mechanism includes a second drive cylinder, which is mounted upward on the second moving block. A second mounting block is provided on the output rod of the second drive cylinder. Pneumatic fingers are provided on the second mounting block corresponding to the discharge end of each connector supply frame. The pneumatic fingers are used to clamp the connector workpiece.

[0018] As an optional solution, the feeding assembly also includes a base plate and a third drive cylinder. The base plate is provided with a second guide rail arranged towards the connecting seat supply frame. The third drive cylinder is mounted on the base plate. The second moving block is set on the second guide rail and driven by the third drive cylinder to move along the second guide rail. The third drive cylinder is used to adjust the relative position of the pneumatic finger and the discharge end of the connecting seat supply frame.

[0019] As an optional solution, the clamping assembly includes an upper clamping block and a lower clamping block. The upper clamping block is provided with a limiting groove for positioning each hose workpiece, and the lower clamping block is provided with a protrusion that mates with each limiting groove. The upper clamping block and the lower clamping block cooperate to clamp the end of the hose workpiece to be installed.

[0020] As an alternative, the end of the hose workpiece to be installed is pre-coated with glue, and a glue collection box is provided on the lower clamping block. The glue collection box is used to collect the glue dripping from the end of the hose workpiece to be installed and the connector workpiece falling off.

[0021] The beneficial effects of this utility model are:

[0022] This automatic hose and connector installation device enables the hose workpiece to be installed with the connector workpiece when it flows to the installation station along the hose conveyor line. It is designed with a translational insertion head and a lifting feeding component, which simplifies the process of connector workpiece from feeding to insertion, improves the level of automated production, and meets the installation requirements of hose workpiece and connector workpiece. Attached Figure Description

[0023] Figure 1 This is a first-view view of the automatic installation device for hoses and connectors provided in this embodiment of the utility model;

[0024] Figure 2 This is a second-view view of the automatic installation device for hoses and connectors provided in this embodiment of the present invention;

[0025] Figure 3 This is a first structural view of the installation component involved in an embodiment of the present utility model;

[0026] Figure 4 This is a second structural view of the installation component involved in an embodiment of the present utility model;

[0027] Figure 5 This is a first structural view of the feeding assembly involved in an embodiment of the present utility model;

[0028] Figure 6 This is a second structural view of the feeding assembly according to an embodiment of the present utility model;

[0029] Figure 7 This is a schematic diagram of the clamping component involved in an embodiment of the present utility model.

[0030] In the attached image:

[0031] 1. Hose delivery line; 11. Loading position;

[0032] 2. Connecting seat supply frame; 21. Feeding chute;

[0033] 3. Mounting components; 31. Insertion head; 32. Fixing plate; 33. First moving block; 34. Translation mechanism; 341. Drive motor; 342. Lead screw; 343. Nut; 344. Limit switch; 345. Stroke plate; 35. Insertion mechanism; 351. First drive cylinder; 352. First mounting block; 36. First guide rail;

[0034] 4. Feeding assembly; 41. Second moving block; 42. Lifting mechanism; 421. Second drive cylinder; 422. Second mounting block; 43. Pneumatic finger; 44. Base plate; 45. Third drive cylinder; 46. Second guide rail; 47. Photoelectric sensor;

[0035] 5. Clamping assembly; 51. Lower clamping block; 511. Limiting groove; 52. Upper clamping block; 521. Protrusion; 53. Fixing vertical plate; 54. Fourth drive cylinder; 55. Suspension; 56. Fifth drive cylinder; 57. Guide post; 58. Guide sleeve; 59. Glue receiving box;

[0036] 6. Hose components;

[0037] 7. Connecting seat workpiece. Detailed Implementation

[0038] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present invention and not intended to limit it. Furthermore, it should be noted that, for ease of description, the accompanying drawings show only the parts relevant to the present invention, not the entire structure.

[0039] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0040] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0041] In the description of this embodiment, terms such as "upper," "lower," "left," and "right" are based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of description and simplification of operation, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0042] Furthermore, the terms "first" and "second" are merely used to distinguish between different terms in description and do not have any special meaning.

[0043] Please see Figures 1 to 7 As shown, this embodiment provides an automatic installation device for hoses and connectors, including a hose conveyor line 1, a connector supply frame 2, an installation assembly 3, a feeding assembly 4, and a clamping assembly 5, wherein:

[0044] The hose conveyor line 1 is provided with several loading positions 11. Each loading position 11 is arranged at equal intervals along the conveying direction of the hose conveyor line 1. Each loading position 11 is loaded with a hose workpiece 6. The end of the hose workpiece 6 to be installed extends out from the side of the hose conveyor line 1.

[0045] The number of connector supply racks 2 is the same as the number of hose workpieces 6. Each connector supply rack 2 is equipped with a feeding trough 21, and several connector workpieces 7 are neatly arranged in the feeding trough 21. The connector workpieces 7 in the feeding trough 21 can be coordinated with the vibratory plate to be transported to the discharge end in an orderly manner.

[0046] The mounting assembly 3 is located on one side of the hose conveying line 1. The mounting assembly 3 includes several insert heads 31 that can move axially. Each insert head 31 corresponds to each hose workpiece 6, and the insert head 31 and the end of the hose workpiece 6 to be installed are located on the same axis.

[0047] The feeding component 4 is located at the discharge end of the connector supply frame 2. The feeding component 4 is used to move the connector workpiece 7 onto the moving path of the insert head 31, so that the connector workpiece 7 is fitted onto the insert head 31 that is moving toward the hose workpiece 6.

[0048] The clamping assembly 5 is located between the hose conveying line 1 and the mounting assembly 3. The clamping assembly 5 is used to lock the position of the end of the hose workpiece 6 to be installed.

[0049] Thus, the hose workpiece 6 is installed with the connector workpiece 7 when it flows to the installation station along the hose conveyor line 1. The insertion head 31 with translational movement and the feeding assembly 4 with lifting movement are designed to simplify the process of the connector workpiece 7 from feeding to insertion, improve the level of automated production, and meet the installation requirements of the hose workpiece 6 and the connector workpiece 7.

[0050] Optionally, see details. Figure 3 and Figure 4 The installation assembly 3 also includes a fixing plate 32, a first moving block 33, a translation mechanism 34, and an insertion mechanism 35. The fixing plate 32 is provided with a first guide rail 36 arranged towards the hose conveying line 1. The first moving block 33 is disposed on the first guide rail 36 and is driven by the translation mechanism 34 to move along the first guide rail 36. The insertion mechanism 35 is installed on the first moving block 33. The insertion head 31 is installed at the output end of the insertion mechanism 35. The insertion mechanism 35 is used to drive the insertion head 31, which is fitted with the connecting seat workpiece 7, to be inserted into the end of the hose workpiece 6 to be installed.

[0051] Thus, the insertion head 31 is driven to move axially toward the hose workpiece 6 by the translation mechanism 34, and the connecting seat workpiece 7 is put on midway until the connecting seat workpiece 7 reaches the position of the hose workpiece 6 to be installed. At this time, the insertion mechanism 35 precisely controls the feed of the insertion head 31, so that the connecting seat workpiece 7 and the hose workpiece 6 complete the insertion action. The coordinated work of the translation mechanism 34 and the insertion mechanism 35 simplifies the transfer action of the connecting seat workpiece 7 and improves the installation efficiency and accuracy.

[0052] Optionally, the insertion mechanism 35 includes a first drive cylinder 351, which is mounted on a first moving block 33. A first mounting block 352 is provided on the output rod of the first drive cylinder 351, and a plurality of insertion heads 31 are spaced apart on the first mounting block 352.

[0053] Therefore, by extending and retracting the first drive cylinder 351, the forward and backward movements of multiple insertion heads 31 are simultaneously controlled, ensuring that each insertion head 31, carrying the connecting seat workpiece 7, is synchronously inserted into the hose workpiece 6, thereby improving mass production efficiency and assembly accuracy.

[0054] Furthermore, the head end of the insertion head 31 extends through the first mounting block 352, the tail end of the insertion head 31 extends through the first moving block 33, and a buffer spring is provided between the tail end of the insertion head 31 and the first moving block 33.

[0055] Therefore, by using a buffer spring, the impact force when the connector workpiece 7 comes into contact with the hose workpiece 6 is reduced, thus avoiding damage to the finished product and improving the yield rate.

[0056] Optionally, the translation mechanism 34 includes a drive motor 341, a lead screw 342, and a nut 343. The lead screw 342 is rotatably mounted on the fixed plate 32 and arranged parallel to the first guide rail 36. The drive motor 341 is used to drive the lead screw 342 to rotate forward and backward. The nut 343 is mounted on the first moving block 33 and cooperates with the lead screw 342 for transmission.

[0057] Therefore, by controlling the lead screw 342 to rotate through the drive motor 341, the nut 343 and the first moving block 33 are driven to move precisely along the first guide rail 36, ensuring that the insertion head 31 accurately reaches the predetermined position and realizing the precise feeding action of the connecting seat workpiece 7.

[0058] Furthermore, the fixed plate 32 is provided with a limit switch 344 for controlling the displacement of the insertion head 31, and the first moving block 33 is provided with a travel piece 345 for triggering the limit switch 344.

[0059] Therefore, when the first moving block 33 moves to the predetermined position, the travel piece 345 triggers the limit switch 344, immediately stopping the translation mechanism 34, ensuring that the insertion head 31 is accurately positioned, avoiding overfeeding or underfeeding, and further improving assembly accuracy and stability.

[0060] Optionally, the connector supply rack 2 is located below the moving path of the insertion head 31, see details. Figure 5 and Figure 6 The feeding assembly 4 includes a second moving block 41 and a lifting mechanism 42. The second moving block 41 is located in front of the discharge end of the connecting seat supply frame 2. The lifting mechanism 42 includes a second drive cylinder 421, which is mounted on the second moving block 41 facing upward. A second mounting block 422 is provided on the output rod of the second drive cylinder 421. A pneumatic finger 43 is provided on the second mounting block 422 corresponding to the discharge end of each connecting seat supply frame 2. The pneumatic finger 43 is used to clamp the connecting seat workpiece 7.

[0061] Specifically, a photoelectric sensor 47 can be installed at each pneumatic finger 43 to monitor whether it is gripping the workpiece 7 of the connector.

[0062] Thus, by controlling the lifting and lowering of the second moving block 41 through the second drive cylinder 421, the pneumatic finger 43 can pick up the connecting seat workpiece 7 from the discharge end of the connecting seat supply frame 2 and accurately place it on the moving path of the insert head 31. When the insert head 31 feeds, it accurately picks up the connecting seat workpiece 7 and completes the feeding of the connecting seat workpiece 7, which significantly improves the automation level and overall work efficiency of the production line.

[0063] Furthermore, the feeding assembly 4 also includes a base plate 44 and a third drive cylinder 45. The base plate 44 is provided with a second guide rail 46 arranged towards the connecting seat supply frame 2. The third drive cylinder 45 is mounted on the base plate 44. The second moving block 41 is disposed on the second guide rail 46 and is driven by the third drive cylinder 45 to move along the second guide rail 46. The third drive cylinder 45 is used to adjust the relative position of the pneumatic finger 43 and the discharge end of the connecting seat supply frame 2.

[0064] Therefore, by fine-tuning the distance between the pneumatic finger 43 and the discharge end of the connecting seat supply frame 2 through the third drive cylinder 45, it is possible to adapt to different models of connecting seat workpieces 7, ensure that the pneumatic finger 43 can accurately grip, further improve the flexibility and adaptability of the feeding process, and optimize the compatibility of the production line.

[0065] Optionally, see details. Figure 7 The clamping assembly 5 includes an upper clamping block 51 and a lower clamping block 52. The lower clamping block 52 is provided with a limiting groove 511 for positioning each hose workpiece 6. The upper clamping block 51 is provided with a protrusion 521 that cooperates with each limiting groove 511. The upper clamping block 51 and the lower clamping block 52 cooperate to clamp the end of the hose workpiece 6 to be installed.

[0066] Thus, through the precise cooperation of the limiting groove 511 and the protrusion 521, the hose workpiece 6 is reliably fixed, ensuring that the hose workpiece 6 does not shift during the glue application process. Moreover, the clamping method can quickly clamp and release a batch of hose workpieces 6, which is convenient for matching the operation of the hose conveyor line 1.

[0067] Furthermore, the clamping assembly 5 also includes a fixed vertical plate 53 and a fourth drive cylinder 54. The fixed vertical plate 53 is provided with a vertically arranged third guide rail, and the lower clamping block 52 is slidably disposed on the third guide rail and driven by the fourth drive cylinder 54 to slide along the third guide rail.

[0068] Therefore, the fourth drive cylinder 54 controls the lower clamping block 52 to move up and down, and the third guide rail ensures the stability and accuracy of the movement of the lower clamping block 52.

[0069] Furthermore, the clamping assembly 5 also includes a suspension 55 and a fifth drive cylinder 56. The fifth drive cylinder 56 is fixed downward on the suspension 55. The suspension 55 can be fixed on the fixing plate 32. The output end of the fifth drive cylinder 56 is connected to the upper clamping block 51. The upper clamping block 51 is provided with a guide post 57. The suspension 55 is provided with a guide sleeve 58 that cooperates with the guide post 57.

[0070] Therefore, the fifth drive cylinder 56 drives the upper clamping block 51 to move up and down, and the precise cooperation between the guide post 57 and the guide sleeve 58 ensures the smoothness and accuracy of the movement of the upper clamping block 51, further improving the clamping stability.

[0071] In addition, the end of the hose workpiece 6 to be installed is pre-coated with glue, and a glue collection box 59 is provided on the lower clamping block 52. The glue collection box 59 is used to collect the glue dripping from the end of the hose workpiece 6 to be installed and the falling connector workpiece 7.

[0072] Therefore, the glue collection box 59 effectively prevents glue from contaminating the equipment and working environment, while also enabling glue recycling and improving resource utilization. In the event that the connector workpiece 7 is not securely installed and accidentally falls, the glue collection box 59 can also catch it to collect the unassembled connector workpiece 7.

[0073] Specific action process:

[0074] 1) A batch of hose workpieces 6 arrive at the installation station along the hose conveyor line 1. The insertion heads 31 corresponding to the multiple hose workpieces 6 are initially axially aligned with the ends of each hose workpiece 6 to be installed and maintain an appropriate distance.

[0075] 2) The fourth drive cylinder 54 and the fifth drive cylinder 56 of the clamping assembly 5 are activated respectively, controlling the upper clamping block 51 and the lower clamping block 52 to cooperate and clamp the ends of multiple hose workpieces 6 to be installed at the same time.

[0076] 3) The third drive cylinder 45 of the feeding assembly 4 is activated, driving the pneumatic finger 43 to face the discharge end of the connecting seat supply frame 2 to clamp a single connecting seat workpiece 7.

[0077] 4) The second drive cylinder 421 of the feeding assembly 4 is activated, driving the pneumatic finger 43 to carry the connecting seat workpiece 7 up to the moving path of the insertion head 31.

[0078] 5) The drive motor 341 of the mounting component 3 is activated, driving the insertion head 31 to move toward the hose workpiece 6. During the process, the insertion head 31 is inserted into the connector workpiece 7 on the pneumatic finger 43, and the pneumatic finger 43 is reset.

[0079] 6) The insertion head 31 continues to move horizontally with the connector workpiece 7 until the connector workpiece 7 is located at the end port of the hose workpiece 6 to be installed.

[0080] 7) The first drive cylinder 351 of the installation component 3 is activated, driving the insertion head 31 to insert the connector workpiece 7 into the hose workpiece 6, thus completing the insertion of the connector workpiece 7 and the hose workpiece 6.

[0081] 8) After installation, the insertion head 31 is reset to its initial position;

[0082] 9) The upper clamping block 51 and the lower clamping block 52 release the ends of multiple hose workpieces 6 to be installed, and the hose workpieces 6 with the connecting seat workpieces 7 installed leave the installation station along the conveyor line.

[0083] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make various obvious changes, readjustments, and substitutions without departing from the protection scope of this utility model. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.

Claims

1. An automatic installation device for hoses and connectors, characterized in that, It includes a hose conveyor line (1), a connector supply frame (2), an installation assembly (3), a feeding assembly (4), and a clamping assembly (5), wherein: The hose conveying line (1) is provided with a number of loading positions (11). Each loading position (11) is arranged at equal intervals along the conveying direction of the hose conveying line (1). Each loading position (11) is loaded with a hose workpiece (6). The end of the hose workpiece (6) to be installed extends from the side of the hose conveying line (1). The number of the connector supply racks (2) is the same as the number of the hose workpieces (6). Each connector supply rack (2) is provided with a feeding groove (21), and several connector workpieces (7) are neatly arranged in the feeding groove (21). The mounting assembly (3) is located on one side of the hose conveying line (1). The mounting assembly (3) includes a plurality of insert heads (31) that can move axially. Each insert head (31) corresponds to each hose workpiece (6), and the insert head (31) and the end of the hose workpiece (6) to be installed are located on the same axis. The feeding assembly (4) is disposed at the discharge end of the connector supply frame (2). The feeding assembly (4) is used to move the connector workpiece (7) onto the moving path of the insert head (31), so that the connector workpiece (7) is fitted onto the insert head (31) moving toward the hose workpiece (6). The clamping assembly (5) is located between the hose delivery line (1) and the mounting assembly (3), and the clamping assembly (5) is used to lock the position of the end of the hose workpiece (6) to be installed.

2. The automatic installation device for hoses and connectors according to claim 1, characterized in that, The installation assembly (3) further includes a fixing plate (32), a first moving block (33), a translation mechanism (34), and an insertion mechanism (35). The fixing plate (32) is provided with a first guide rail (36) arranged towards the hose conveying line (1). The first moving block (33) is disposed on the first guide rail (36) and is driven by the translation mechanism (34) to move along the first guide rail (36). The insertion mechanism (35) is installed on the first moving block (33). The insertion head (31) is installed at the output end of the insertion mechanism (35). The insertion mechanism (35) is used to drive the insertion head (31) covering the connecting seat workpiece (7) to be inserted into the end of the hose workpiece (6) to be installed.

3. The automatic installation device for hoses and connectors according to claim 2, characterized in that, The insertion mechanism (35) includes a first drive cylinder (351), which is mounted on the first moving block (33). A first mounting block (352) is provided on the output rod of the first drive cylinder (351), and a plurality of insertion heads (31) are spaced apart on the first mounting block (352).

4. The automatic installation device for hoses and connectors according to claim 3, characterized in that, The head end of the insertion head (31) extends out of the first mounting block (352), the tail end of the insertion head (31) extends out of the first moving block (33), and a buffer spring is provided between the tail end of the insertion head (31) and the first moving block (33).

5. The automatic installation device for hoses and connectors according to claim 2, characterized in that, The translation mechanism (34) includes a drive motor (341), a lead screw (342), and a nut (343). The lead screw (342) is rotatably mounted on the fixed plate (32) and arranged parallel to the first guide rail (36). The drive motor (341) is used to drive the lead screw (342) to rotate forward and backward. The nut (343) is mounted on the first moving block (33) and cooperates with the lead screw (342) for transmission.

6. The automatic installation device for hoses and connectors according to claim 5, characterized in that, The fixed plate (32) is provided with a limit switch (344) for controlling the displacement of the insertion head (31), and the first moving block (33) is provided with a travel piece (345) for triggering the limit switch (344).

7. The automatic installation device for hoses and connectors according to claim 1, characterized in that, The connector supply frame (2) is located below the moving path of the insertion head (31). The feeding assembly (4) includes a second moving block (41) and a lifting mechanism (42). The second moving block (41) is located in front of the discharge end of the connector supply frame (2). The lifting mechanism (42) includes a second drive cylinder (421). The second drive cylinder (421) is mounted on the second moving block (41) facing upward. A second mounting block (422) is provided on the output rod of the second drive cylinder (421). A pneumatic finger (43) is provided on the second mounting block (422) corresponding to the discharge end of each connector supply frame (2). The pneumatic finger (43) is used to clamp the connector workpiece (7).

8. The automatic installation device for hoses and connectors according to claim 7, characterized in that, The feeding assembly (4) also includes a base plate (44) and a third drive cylinder (45). The base plate (44) is provided with a second guide rail (46) arranged towards the connecting seat supply frame (2). The third drive cylinder (45) is mounted on the base plate (44). The second moving block (41) is disposed on the second guide rail (46) and is driven by the third drive cylinder (45) to move along the second guide rail (46). The third drive cylinder (45) is used to adjust the relative position of the pneumatic finger (43) and the discharge end of the connecting seat supply frame (2).

9. The automatic installation device for hoses and connectors according to claim 1, characterized in that, The clamping assembly (5) includes an upper clamping block (51) and a lower clamping block (52). The upper clamping block (51) is provided with a limiting groove (511) for positioning each of the hose workpieces (6). The lower clamping block (52) is provided with a protrusion (521) that mates with each of the limiting grooves (511). The upper clamping block (51) and the lower clamping block (52) cooperate to clamp the end of the hose workpiece (6) to be installed.

10. The automatic installation device for hoses and connectors according to claim 9, characterized in that, The end of the hose workpiece (6) to be installed is pre-coated with glue, and a glue receiving box (59) is provided on the lower clamping block (52). The glue receiving box (59) is used to collect the glue dripping from the end of the hose workpiece (6) to be installed and the falling connector workpiece (7).