Device for obtaining and assembling water stop clamp
By designing the supporting frame and cylinder-driven water clamping material pickup assembly mechanism, the complex assembly operation of water clamping and short conduits is solved, and efficient and precise assembly effect is achieved.
Patent Information
- Application Number
- CN202422366481.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-27
AI Technical Summary
The existing water stop clamping and short catheter assembly devices are complex in operation and the assembly effect needs to be improved.
A water clamping and material removal assembly mechanism that includes a support frame and a cylinder drive is designed. Through the cooperation of the cylinder and the slider, the precise material removal and assembly of the water clamping is achieved, and the assembly accuracy is ensured by using the limiting mechanism and the dual-right mechanism.
It realizes efficient assembly of water clamping and short catheters, and improves the pass rate of assembled finished products.
Smart Images

Figure CN223114524U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a device for obtaining a stop clamp and assembling the same. Background Art
[0002] In current clinical infusion therapy, stop clamps are often used in conjunction with infusion devices such as infusion sets and blood transfusion sets. It is necessary to assemble the stop clamps with short catheters so as to control the on / off of the catheters through the stop clamps. At present, there are already some devices for assembling stop clamps with short catheters in order to improve the assembly efficiency. In the devices for assembling stop clamps with short catheters, there are related devices for obtaining stop clamps and then assembling them with short catheters. However, the existing related devices have some disadvantages: for example, the operation is complex and the assembly effect needs to be improved, etc. Content of the Utility Model
[0003] In order to solve the problems existing in the prior art, the present application provides a device for obtaining a stop clamp and assembling the same.
[0004] To achieve the above object, the present application provides a device for obtaining a hemostat clip and assembling it, which includes a support frame. The support frame includes a first bottom plate. Two first vertical plates are oppositely arranged on the upper surface of the first bottom plate, and the tops of the two first vertical plates are connected to a first top plate. The middle part of the first top plate is hollow and in the shape of a "hui" character. On the upper surface of the first top plate, a first cylinder is provided via a first support plate. The telescopic rod of the first cylinder is connected to a hemostat clip picking and assembling mechanism via a first connector. The hemostat clip picking and assembling mechanism is also connected to a first slider, and the first slider is used in cooperation with a first slide rail arranged on the first top plate in the front-back direction. The first cylinder can move the hemostat clip picking and assembling mechanism in the front-back direction. The structure of the hemostat clip picking and assembling mechanism is as follows: It includes a first mounting plate. The lower surface of the first mounting plate is connected to the first slider, and the first mounting plate can move in the front-back direction under the action of the first cylinder. The first mounting plate is connected to two relatively arranged second vertical plates, and the lower ends of the two second vertical plates are connected to a second mounting plate. The second mounting plate is in a U shape, including a bottom side plate and two side plates. On the upper surface of the bottom side plate of the second mounting plate, a second cylinder is provided via a second support plate. The telescopic rod of the second cylinder is connected to a first slide plate via a connector. The lower surface of the first slide plate is connected to two second sliders, and the two second sliders are correspondingly used in cooperation with two second slide rails arranged on the two side plates of the second mounting plate in the front-back direction. Under the action of the second cylinder, the first slide plate can move in the front-back direction. The first slide plate is connected to a material picking needle seat plate via a vertical transfer plate. The vertical transfer plate is located between the two side plates, and the material picking needle seat plate is located below the second mounting plate. N hemostat clip picking needles are spacedly arranged at the rear end face of the material picking needle seat plate, where N is a positive integer. A third cylinder is provided on the lower surface of the bottom side plate of the second mounting plate. The telescopic rod of the third cylinder passes through a through hole provided on the vertical transfer plate and is connected to a connecting plate via a second connector. Linear bearings are provided on the lower surfaces of the two side plates of the second mounting plate, and guide shafts used in cooperation with the corresponding linear bearings are connected to the connecting plate. The two guide shafts are respectively arranged on the left and right sides of the telescopic rod of the third cylinder. The connecting plate is connected to a discharging push plate via a horizontal transfer plate. N needle-passing holes are spacedly arranged on the discharging push plate in the left-right direction, and the rear ends of each hemostat clip picking needle can pass through the corresponding needle-passing hole. Under the action of the third cylinder, the discharging push plate can move in the front-back direction.
[0005] In some embodiments, limiting mechanisms are provided at both the front end and the rear end of the first top plate to limit the moving stroke of the hemostat clip picking and assembling mechanism in the front-back direction, and a warning light is also provided on the first top plate.
[0006] The beneficial effect of the solution of this application lies in the above-mentioned device for obtaining a water stop clip and assembling it. The structure is ingeniously designed. It can obtain the water stop clip through the water stop clip picking needle and can move with the water stop clip to the short catheter clamped by the double positive positioning mechanism to realize the assembly of the water stop clip and the short catheter, and the qualified rate of the assembled finished product is relatively high. BRIEF DESCRIPTION OF THE DRAWINGS
[0007] Figure 1 FIG. shows the structural schematic diagram of the device for obtaining a water stop clip and assembling it in the embodiment.
[0008] Figure 2 FIG. shows the schematic diagram of the support frame and related structures in the embodiment.
[0009] Figure 3 FIG. shows the structural schematic diagram of the water stop clip picking and assembling mechanism in the embodiment.
[0010] Figure 4 FIG. shows the exploded structural schematic diagram of the water stop clip picking and assembling mechanism in the embodiment.
[0011] Reference numerals: 3 - support frame, 6 - water stop clip picking and assembling mechanism, 7 - double positive positioning mechanism, 301 - first bottom plate, 302 - first vertical plate, 303 - first top plate, 304 - first support plate, 305 - first cylinder, 306 - first connector, 307 - first slide rail, 308 - first slider, 309 - first limiting mechanism, 3010 - second limiting mechanism, 3011 - third limiting mechanism, 3012 - warning light, 601 - first mounting plate, 602 - second vertical plate, 603 - second mounting plate, 604 - second support plate, 605 - second cylinder, 606 - first slide plate, 607 - vertical adapter plate, 608 - picking needle seat plate, 609 - water stop clip picking needle, 6010 - third cylinder, 6011 - second connector, 6012 - connecting plate, 6013 - horizontal adapter plate, 6014 - unloading push plate, 6015 - second slide rail, 6016 - second slider, 6017 - linear bearing, 6018 - guide shaft, A - water stop clip. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0012] The following further describes the specific embodiments of the present application with reference to the drawings.
[0013] In the description of the present application, it should be understood that the terms "first", "second", etc. are used to distinguish similar objects, rather than to describe or indicate a specific order or sequence. The terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.
[0014] As Figures 1 to 4 shown, the device for obtaining and assembling a hemostatic clip according to the present application includes a support frame 3. The support frame 3 includes a first bottom plate 301. Two first vertical plates 302 are oppositely provided on the upper surface of the first bottom plate 301. The tops of the two first vertical plates 302 are both connected to a first top plate 303. The middle part of the first top plate 303 is hollow and in the shape of a "hui" character. A first cylinder 305 is provided on the upper surface of the first top plate 303 via a first support plate 304. The telescopic rod of the first cylinder 305 is connected to a hemostatic clip picking and assembling mechanism 6 via a first connector 306. The hemostatic clip picking and assembling mechanism 6 is also connected to a first slider 308. The first slider 308 is used in cooperation with a first slide rail 307 arranged on the first top plate 303 along the front-rear direction. The first cylinder 305 can be used to move the hemostatic clip picking and assembling mechanism 6 along the front-rear direction. In this embodiment, two mutually parallel first slide rails 307 are spaced on the first top plate 303. Limit mechanisms are provided at both the front end and the rear end of the first top plate 303 for limiting the moving stroke of the hemostatic clip picking and assembling mechanism 6 along the front-rear direction. The limit mechanism may include a limit plate and a limit post provided on the limit plate. Specifically, a limit mechanism is provided at the rear end of the first top plate 303, denoted as the first limit mechanism 309. The first limit mechanism 309 is located between the two first slide rails 307. Two limit mechanisms are provided at the front end of the first top plate 303, denoted as the second limit mechanism 3010 and the third limit mechanism 3011 respectively. The second limit mechanism 3010 and the third limit mechanism 3011 are respectively arranged on the left and right sides of the first cylinder 305. A warning lamp 3012 may also be provided on the first top plate 303.
[0015] The structure of the water stop clamping material assembly mechanism 6 is as follows: it includes a first mounting plate 601, the lower surface of the first mounting plate 601 is connected to the first slider 308, the first mounting plate 601 can move along the front-back direction under the action of the first cylinder 305, the first mounting plate 601 is connected to two second vertical plates 602 arranged opposite to each other, the lower ends of the two second vertical plates 602 are connected to the second mounting plate 603, the second mounting plate 603 is U-shaped, including a bottom edge plate and two side plates, at the upper surface of the bottom edge plate of the second mounting plate 603 A second cylinder 605 is provided through the second support plate 604, and the telescopic rod of the second cylinder 605 is connected to the first slide plate 606 through a connector, and the lower surface of the first slide plate 606 is connected to two second sliders 6016, and the two second sliders 6016 are used in conjunction with two second slide rails 6015 provided on the two side plates of the second mounting plate 603 along the front-to-back direction. Under the action of the second cylinder 605, the first slide plate 606 can move along the front-to-back direction, and the first slide plate 606 is connected to the material taking needle seat plate 608 through the vertical adapter plate 607. The vertical adapter plate 607 is located between the two side plates, the material collection needle seat plate 608 is located below the second mounting plate 603, and the rear end surface of the material collection needle seat plate 608 is provided with N water stop clamp material collection needles 609 at intervals, where N is a positive integer; a third cylinder 6010 is provided on the lower surface of the bottom plate of the second mounting plate 603, and the telescopic rod of the third cylinder 6010 passes through the through hole provided on the vertical adapter plate 607 and is connected to the connecting plate 6012 via the second connector 6011, and a linear axis is provided on the lower surface of the two side plates of the second mounting plate 603 Bearing 6017, a guide shaft 6018 used in conjunction with the corresponding linear bearing 6017 is connected to the connecting plate 6012, and the two guide shafts 6018 are disposed on the left and right sides of the telescopic rod of the third cylinder 6010. The connecting plate 6012 is connected to the unloading push plate 6014 via a horizontal adapter plate 6013. The unloading push plate 6014 is provided with N needle holes spaced along the left and right directions, and the rear end of each water stop clamping needle 609 can pass through the corresponding needle hole. Under the action of the third cylinder 6010, the unloading push plate 6014 can move along the front and rear directions.
[0016] During the specific use process, control the movement of the second cylinder 605 to enable each water stop clamping and picking needle 609 to pass through the corresponding needle-passing hole, and then the rear end portions of the water stop clamping and picking needles 609 pass through the corresponding water stops at other workstations to complete the picking operation; then drive the first cylinder 305 to move, so that the water stop clamping and picking and assembling mechanism 6 moves backward and approaches the double correct-positioning mechanism 7. The double correct-positioning mechanism 7 clamps the short conduit. The water stop clamping and picking and assembling mechanism 6 moves backward until each water stop clamping and picking needle 609 penetrates into the corresponding short conduit. Then, make the lower correct-positioning fork plate and the upper correct-positioning fork plate at the front side in the double correct-positioning mechanism 7 move away from each other, drive the third cylinder 6010 to move, so that the unloading push plate 6014 moves backward, pushing each water stop to be assembled with the corresponding short conduit. Then, drive the third cylinder 6010 to move, so that the unloading push plate 6014 returns to its original position, and make the lower correct-positioning fork plate and the upper correct-positioning fork plate at the front side in the double correct-positioning mechanism 7 cooperate to clamp each short conduit, thus completing the assembly of the water stop and the short conduit. Then, make the water stop clamping and picking and assembling mechanism 6 return to its original position, and each water stop clamping and picking needle 609 is withdrawn from the corresponding short conduit.
[0017] The device for obtaining a water stop and assembling it involved in the present application has a clever structural design. It can obtain the water stop through the water stop clamping and picking needle, and can move with the water stop to the short conduit clamped by the double correct-positioning mechanism to realize the assembly of the water stop and the short conduit, and the qualified rate of the assembled finished product is relatively high.
[0018] The above is only the preferred specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application, according to the technical solution and its concept of the present application, makes equivalent replacements or changes, and should be covered within the protection scope of the present application.
Claims
1. A device for obtaining a hemostat and assembling it, characterized in that: It includes a support frame, and the support frame includes a first bottom plate. Two first vertical plates are oppositely provided on the upper surface of the first bottom plate. The tops of the two first vertical plates are both connected to a first top plate. The middle part of the first top plate is hollow and in a "return" shape. On the upper surface of the first top plate, a first cylinder is provided via a first support plate. The telescopic rod of the first cylinder is connected to a water stop clamping and feeding assembly mechanism via a first connector. The water stop clamping and feeding assembly mechanism is also connected to a first slider. The first slider is used in cooperation with a first slide rail arranged on the first top plate along the front-back direction. The first cylinder can make the water stop clamping and feeding assembly mechanism move along the front-back direction. The structure of the water stop clamping and feeding assembly mechanism is as follows: It includes a first mounting plate. The lower surface of the first mounting plate is connected to the first slider. The first mounting plate can move along the front-back direction under the action of the first cylinder. The first mounting plate is connected to two relatively arranged second vertical plates. The lower ends of the two second vertical plates are both connected to a second mounting plate. The second mounting plate is in a U shape and includes a bottom plate and two side plates. On the upper surface of the bottom plate of the second mounting plate, a second cylinder is provided via a second support plate. The telescopic rod of the second cylinder is connected to a first slide plate via a connector. The lower surface of the first slide plate is connected to two second sliders. The two second sliders are correspondingly used in cooperation with two second slide rails arranged on the two side plates of the second mounting plate along the front-back direction. Under the action of the second cylinder, the first slide plate can move along the front-back direction. The first slide plate is connected to a material taking needle seat plate via a vertical transfer plate. The vertical transfer plate is between the two side plates. The material taking needle seat plate is below the second mounting plate. N water stop clamping and feeding needles are provided at intervals on the rear end face of the material taking needle seat plate, where N is a positive integer. A third cylinder is provided on the lower surface of the bottom plate of the second mounting plate. The telescopic rod of the third cylinder passes through a through hole provided on the vertical transfer plate and is connected to a connecting plate via a second connector. Linear bearings are provided on the lower surfaces of the two side plates of the second mounting plate. Guide shafts used in cooperation with the corresponding linear bearings are connected to the connecting plate. The two guide shafts are respectively arranged on the left and right sides of the telescopic rod of the third cylinder. The connecting plate is connected to a discharging push plate via a horizontal transfer plate. N needle passing holes are provided at intervals on the discharging push plate along the left-right direction. The rear ends of the respective water stop clamping and feeding needles can pass through the corresponding needle passing holes. Under the action of the third cylinder, the discharging push plate can move along the front-back direction.
2. The device for obtaining a hemostat clip and assembling the same according to claim 1, characterized in that: Limit mechanisms are provided at both the front end and the rear end of the first top plate to limit the moving stroke of the water stop clamping and feeding assembly mechanism along the front-back direction. A warning lamp is also provided on the first top plate.