Emulsion pump nozzle-pressing intubation device capable of automatically cutting tube

By designing automated cannulation and top-pressure components, the problems of inconsistent cannulation length and low production efficiency in traditional emulsion pump nozzle cannulation devices have been solved. This has achieved uniform cannulation cutting accuracy and assembly consistency, thereby improving production efficiency and reducing labor costs.

CN223876464UActive Publication Date: 2026-02-06SHANTOU MINGXIN IND CO LTD
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Patent Information

Application Number
CN202522722450.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-12-23
Publication Date
2026-02-06
Estimated Expiration
2035-12-23

AI Technical Summary

Technical Problem

Traditional emulsion pump nozzle insertion devices require manual pre-cutting of the tube, resulting in inconsistent insertion lengths, affecting assembly accuracy and consistency, leading to low production efficiency, cumbersome operation procedures, increased labor costs, and error risks.

Method used

Design an automatic tube-cutting emulsion pump nozzle insertion device. The insertion assembly automatically cuts the nozzle immediately after the pump is installed. Combined with the top pressure assembly, it realizes the automated assembly of the nozzle and the pump, eliminating the need for pre-cutting and ensuring cutting accuracy and assembly consistency.

Benefits of technology

This has enabled the standardization of cannula cutting length, improved production efficiency and product consistency, reduced manual operation steps and labor costs, and increased assembly speed and continuity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of nozzle-pressing pipe inserting machines, in particular to an emulsion pump nozzle-pressing pipe inserting device capable of automatically cutting pipes, which comprises a vibrating disc, an electric rotating disc is fixedly mounted on one side of the vibrating disc, and an automatic assembling mechanism used for automatically completing assembly of a pressing pump is arranged on the electric rotating disc. The automatic assembling mechanism comprises a material guide rod which is fixedly installed on the vibration disc and located near the electric rotating disc. The automatic cutting operation is executed in real time through the intubation assembly after the pressing pump completes intubation installation, the pre-independent intubation cutting procedure is omitted, uniform cutting precision of each intubation is guaranteed through automatic cutting, meanwhile, the operation links such as manual measurement, cutting and transferring are reduced, and the production efficiency is improved. The technical problems that according to a traditional emulsion pump nozzle inserting pipe device, an inserting pipe needs to be cut off in advance through an external tool by a worker, the follow-up assembly precision and the product consistency are affected, and the overall production efficiency is low are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of pressing pump nozzle inserting device, specifically relates to a kind of emulsion pump nozzle inserting device of automatic pipe cutting. BACKGROUND

[0002] Emulsion pump is a kind of device specially designed for the extraction and distribution of emulsion, gel and similar fluids, usually used in the field of cosmetics, medicine, daily chemical products, etc., can accurately and hygienically extract liquid from container, and distribute liquid to outside by pressing pump head, and emulsion pump nozzle inserting device is a kind of equipment for automatic assembly of emulsion pump.

[0003] In the operation process of emulsion pump nozzle inserting device, the staff generally needs to cut off the inserting tube in advance by external tools, and then assemble the inserting tube with the required length with the nozzle. Since the length of the inserting tube needs to be measured manually and cut manually in advance, not only additional procedures are increased, but also the length of the inserting tube is inconsistent due to manual operation error, which affects the subsequent assembly accuracy and product consistency. Moreover, the step-by-step operation process is complicated, the position needs to be switched between cutting and assembly, the production cycle is prolonged, the overall production efficiency is reduced, and the high degree of manual participation increases labor cost and operation error risk. Therefore, we propose a kind of emulsion pump nozzle inserting device capable of automatic pipe cutting. SUMMARY

[0004] In view of the above problems, a kind of emulsion pump nozzle inserting device capable of automatic pipe cutting is provided, which performs automatic cutting operation immediately after the inserting tube is installed in the pressing pump, eliminates the independent pipe cutting procedure in advance, ensures the uniformity of the cutting accuracy of each inserting tube through automatic cutting, and reduces the operation links such as manual measurement, cutting and transportation. The technical problems of the traditional emulsion pump nozzle inserting device, which needs to be cut off by the staff in advance with external tools, affect the subsequent assembly accuracy and product consistency, and the overall production efficiency is low.

[0005] To solve the problems in the prior art, the utility model provides a kind of emulsion pump nozzle inserting device capable of automatic pipe cutting, including vibration disc, the side fixed mounting of vibration disc has motorized rotary disc, is provided with the automatic assembly mechanism for automatically completing pressing pump assembly on motorized rotary disc;The automatic assembly mechanism includes: fixed installation in vibration disc and located in the vicinity of motorized rotary disc's guide rod, guide rod is used to neatly guide pressing pump;Positioning slot is opened on motorized rotary disc;Fixedly connected with motorized rotary disc and located outside positioning slot's baffle, baffle is used to prevent pressing pump from separating from positioning slot;Inserting tube assembly is arranged on motorized rotary disc, and inserting tube assembly is used to automatically install inserting tube on pressing pump;Top pressure component is arranged on motorized rotary disc and located in the vicinity of inserting tube assembly, and top pressure component is used to automatically install nozzle on pressing pump.

[0006] Preferably, the intubation assembly comprises a catheter seat, a blade, a guide rod and a first power element; the catheter seat is arranged outside the electric rotary disc, and a through slot is formed in the catheter seat and used for allowing the intubation tube to slide through; the blade is slidably arranged on one side of the catheter seat close to the through slot; the guide rod is slidably arranged in the catheter seat, and one end of the guide rod is fixedly connected with the blade; and the first power element is arranged outside the electric rotary disc, and an output end of the first power element is fixedly connected with the blade.

[0007] Preferably, the intubation assembly further comprises a support plate, a lead screw and a second power element; the support plate is arranged below the catheter seat and the first power element, and an upper side of the support plate is fixedly connected with the catheter seat and the first power element; the lead screw is rotatably arranged on the electric rotary disc, and the lead screw is threadedly connected with the support plate; and the second power element is fixedly installed on the electric rotary disc, and an output end of the second power element is fixedly connected with the lead screw.

[0008] Preferably, the intubation assembly further comprises a first guide seat and a first guide rail; the first guide seat is fixedly connected with one side of the support plate; and the first guide rail is fixedly installed on one side of the electric rotary disc close to the first guide seat, and the first guide rail is in sliding fit with the first guide seat.

[0009] Preferably, the intubation assembly further comprises a first guide seat and a first guide rail; the first guide seat is fixedly connected with one side of the support plate; and the first guide rail is fixedly installed on one side of the electric rotary disc close to the first guide seat, and the first guide rail is in sliding fit with the first guide seat.

[0010] Preferably, the intubation assembly further comprises a first guide seat and a first guide rail; the first guide seat is fixedly connected with one side of the support plate; and the first guide rail is fixedly installed on one side of the electric rotary disc close to the first guide seat, and the first guide rail is in sliding fit with the first guide seat.

[0011] Preferably, the intubation assembly further comprises a first guide seat and a first guide rail; the first guide seat is fixedly connected with one side of the support plate; and the first guide rail is fixedly installed on one side of the electric rotary disc close to the first guide seat, and the first guide rail is in sliding fit with the first guide seat.

[0012] The beneficial effects of the utility model compared with prior art are:

[0013] 1. The intubation assembly can perform automatic cutting operation immediately after the intubation tube is installed by the pressing pump, so that the independent pipe cutting process is omitted, the cutting precision of each intubation tube is uniform through automatic cutting, manual measurement, cutting and transportation and other operation links are reduced, the technical problems that the traditional emulsion pump nozzle intubation device needs to be cut by an external tool by a worker in advance, the subsequent assembly precision and product consistency are affected, and the overall production efficiency is low are solved.

[0014] 2. The down pressure and rotation actions are synchronously performed by the top pressure assembly, the press button and the pressing pump are automatically assembled and locked, the automatic assembly operation of the press button and the pressing pump is realized, and the technical problems of low assembly efficiency and high labor intensity caused by the manual step-by-step pressing and locking operation in the assembly process of the emulsion pump press button are solved. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a stereogram of a vibrating disc and an electric rotary disc of an emulsion pump press button pipe inserting device capable of automatically cutting pipe of the utility model application;

[0016] Figure 2 is a stereogram of a down pressure piece and a third power piece of an emulsion pump press button pipe inserting device capable of automatically cutting pipe of the utility model application;

[0017] Figure 3 is a stereogram of a guide pipe seat and a first power piece of an emulsion pump press button pipe inserting device capable of automatically cutting pipe of the utility model application;

[0018] Figure 4 is a stereogram of a guide pipe seat and a blade of an emulsion pump press button pipe inserting device capable of automatically cutting pipe of the utility model application;

[0019] Figure 5 is Figure 2 an enlarged schematic view of A in FIG. 1;

[0020] Figure 6 is Figure 3 an enlarged schematic view of B in FIG. 1;

[0021] Figure 7 is Figure 2 an enlarged schematic view of C in FIG. 1.

[0022] The reference signs in the drawing are as follows: 1, vibrating disc; 11, electric rotary disc; 12, material guiding rod; 13, positioning clamping groove; 14, baffle; 2, guide pipe seat; 21, blade; 22, guide rod; 23, first power piece; 24, support plate; 25, screw rod; 26, second power piece; 27, first guide seat; 28, first guide rail; 3, down pressure piece; 31, third power piece; 32, upper top piece; 33, fourth power piece; 34, second guide seat; 35, second guide rail. DETAILED DESCRIPTION

[0023] In order to further understand the features, technical means and specific purposes and functions achieved by the utility model, the utility model is described in further detail below in combination with the drawings and specific embodiments.

[0024] Referring to Figures 1-3As shown, an emulsion pump with automatic pipe cutting press nozzle pipe device includes a vibrating disc 1, one side of the vibrating disc 1 is fixedly installed with an electric rotating disc 11, the electric rotating disc 11 is provided with an automatic assembly mechanism for automatically completing the assembly of the press pump; the automatic assembly mechanism comprises: a material guiding rod 12 fixedly installed on the vibrating disc 1 and located near the electric rotating disc 11, the material guiding rod 12 is used for guiding the press pump in order; a positioning clamping groove 13 opened on the electric rotating disc 11; a baffle 14 fixedly connected to the electric rotating disc 11 and located outside the positioning clamping groove 13, the baffle 14 is used for preventing the press pump from separating from the positioning clamping groove 13; a pipe inserting assembly provided on the electric rotating disc 11, the pipe inserting assembly is used for automatically installing the pipe on the press pump; a pressing assembly provided on the electric rotating disc 11 and located near the pipe inserting assembly, the pressing assembly is used for automatically installing the press nozzle on the press pump.

[0025] Specifically, when the emulsion pump press nozzle pipe device is put into use, the vibrating disc 1 is started, the vibrating disc 1 guides the press pump in order to the material guiding rod 12, and the press pump is accurately conveyed to the positioning clamping groove 13 at the starting end of the baffle 14 by the material guiding rod 12. At the same time, the electric rotating disc 11 is started, and the press pump is driven to move towards the pressing assembly by the positioning clamping groove 13, and in the moving process, the staff places the press nozzle on the press pump.

[0026] When the press pump carrying the press nozzle moves to the working position corresponding to the pressing assembly, the pressing assembly is started, and the pressing assembly synchronously performs the actions of pressing down and rotating, drives the press nozzle and the press pump to be automatically assembled and locked, and realizes the automatic assembly operation of the press nozzle and the press pump. Without manually performing the pressing and locking operations step by step, the assembly cycle of a single set of products is greatly shortened, the operation links such as manual pressing and manual locking are reduced, the dependence on the skill proficiency of the operator is reduced, labor input is reduced, and labor cost is reduced.

[0027] After the press nozzle and the press pump are assembled, the electric rotating disc 11 continues to rotate, and the press pump is transferred to the pipe inserting assembly working position by the positioning clamping groove 13. After the pipe inserting assembly is started, the pipe is driven to move upwards and is accurately inserted with the press pump, and then the pipe cutting operation is automatically completed. It can ensure that the cutting length of the pipe is uniform, which not only guarantees the assembly fit of the pipe and the press pump, but also improves the size consistency of the product and reduces the quality problems caused by manual operation errors; at the same time, manual product transfer or equipment switching is not required, which effectively improves the production continuity and overall operation efficiency.

[0028] Reference Figures 2-5As shown, the intubation assembly comprises a catheter seat 2, a blade 21, a guide rod 22 and a first power member 23; the catheter seat 2 is arranged outside the electric rotary disc 11, and a through slot is formed in the catheter seat 2 for the intubation tube to slide through; the blade 21 is slidably arranged on one side of the catheter seat 2 close to the through slot; the guide rod 22 is slidably arranged in the catheter seat 2, and one end of the guide rod 22 is fixedly connected with the blade 21; the first power member 23 is arranged outside the electric rotary disc 11, and an output end of the first power member 23 is fixedly connected with the blade 21; the intubation assembly further comprises a support plate 24, a lead screw 25 and a second power member 26; the support plate 24 is arranged below the catheter seat 2 and the first power member 23, and an upper side of the support plate 24 is fixedly connected with the catheter seat 2 and the first power member 23; the lead screw 25 is rotatably arranged on the electric rotary disc 11, and the lead screw 25 is threadedly connected with the support plate 24; the second power member 26 is fixedly installed on the electric rotary disc 11, and an output end of the second power member 26 is fixedly connected with the lead screw 25; the intubation assembly further comprises a first guide seat 27 and a first guide rail 28; the first guide seat 27 is fixedly connected with one side of the support plate 24; the first guide rail 28 is fixedly installed on one side of the electric rotary disc 11 close to the first guide seat 27, and the first guide rail 28 is in sliding fit with the first guide seat 27.

[0029] Specifically, the first power member 23 is preferably a pneumatic cylinder. The second power member 26 is preferably a servo motor. The first guide seat 27 and the first guide rail 28 form a sliding guide pair. An intubation tube is arranged in the through slot of the catheter seat 2, and a section of the intubation tube below the blade 21 is in extrusion fit with the inner wall of the through slot.

[0030] When the press pump is assembled with the presser and is transported to the intubation assembly station, the lower end of the press pump is precisely aligned with the through slot of the catheter seat 2. The second power member 26 is started, the output end of the second power member 26 drives the lead screw 25 to rotate, the sliding guide pair formed by the first guide seat 27 and the first guide rail 28 limits the support plate 24 to rotate synchronously with the lead screw 25, and then the support plate 24 drives the first power member 23 and the catheter seat 2 to move upward as a whole. By virtue of the extrusion fit between the intubation tube and the inner wall of the through slot, the catheter seat 2 drives the intubation tube to move upward synchronously, so that the intubation tube is extrusion butted with the lower end of the press pump, and the intubation operation is completed.

[0031] Subsequently, the second power member 26 drives the lead screw 25 to rotate reversely, and the support plate 24 drives the catheter seat 2 and the first power member 23 to move downward. At this time, the extrusion force between the intubation tube and the lower end of the press pump is greater than the extrusion force between the intubation tube and the inner wall of the through slot, so as to ensure that the intubation tube is always in butt state with the press pump, and meanwhile, the section of the intubation tube below the press pump slides along the through slot. When the length of the intubation tube extending out of the through slot reaches a preset value, i.e. when the support plate 24 drives the catheter seat 2 to move downward to a preset position, the first power member 23 is started, the output end of the first power member 23 pushes the blade 21 to cut the section of the intubation tube in the catheter seat 2, and the automatic cutting operation after the intubation tube is inserted into the press pump is realized.

[0032] Referring to Figures 1-3 、 Figure 6 and Figure 7 , the top pressing assembly includes a lower pressing piece 3 and a third power piece 31; the lower pressing piece 3 is arranged on one side of the electric rotating disc 11 close to the catheter seat 2; the third power piece 31 is fixedly installed on one side of the electric rotating disc 11 close to the lower pressing piece 3, and the output end of the third power piece 31 is fixedly connected with the lower pressing piece 3; the top pressing assembly further includes an upper pressing piece 32 and a fourth power piece 33; the upper pressing piece 32 is arranged below the lower pressing piece 3; the fourth power piece 33 is fixedly installed on one side of the electric rotating disc 11 close to the upper pressing piece 32, and the output end of the fourth power piece 33 is fixedly connected with the upper pressing piece 32; the lower pressing piece 3 and the upper pressing piece 32 are respectively fixedly connected with a second guide seat 34, one side of the electric rotating disc 11 close to the second guide seat 34 is fixedly installed with a second guide rail 35, and the second guide seat 34 and the second guide rail 35 are in sliding fit.

[0033] Specifically, the lower pressing piece 3 is composed of an electric rotating table and a support, one side of the electric rotating table is fixedly connected with the output end of the third power piece 31, and the rotating end of the electric rotating table is fixedly connected with the support; a cylindrical protrusion is arranged in the middle of the support, and three supporting rods are arranged outside the protrusion. The upper pressing piece 32 is composed of an electric rotating table and a support pipe, one side of the electric rotating table is fixedly connected with the output end of the fourth power piece 33, and the rotating end of the electric rotating table is fixedly connected with the support pipe. The third power piece 31 and the fourth power piece 33 are preferably air cylinders, and the second guide seat 34 and the second guide rail 35 form a sliding guide pair.

[0034] When the pressing pump carrying the presser is moved to the corresponding position of the top pressing assembly, the third power piece 31 and the fourth power piece 33 are started synchronously. The third power piece 31 drives the lower pressing piece 3 to move downward, so that the cylindrical protrusion of the support is extruded and fitted with the upper side of the presser, and at the same time, the three supporting rods of the support are arranged around the outside of the presser nozzle, forming a circumferential limiting structure; the fourth power piece 33 drives the upper pressing piece 32 to move upward, so that the support pipe is extruded and fitted with the lower end of the pressing pump, realizing upward and downward positioning.

[0035] Subsequently, the electric rotating table of the lower pressing piece 3 and the electric rotating table of the upper pressing piece 32 are started synchronously, respectively driving the support and the support pipe to rotate reversely, driving the presser and the pressing pump to rotate and tighten through the rotating torque, and finally realizing the pressing and locking assembly of the presser and the pressing pump, and guaranteeing the stability of the assembled structure.

[0036] Working principle: start the vibration disc 1, the vibration disc 1 will be pressed pump neatly guide guide rod 12, by guide rod 12 will be pressed pump to the positioning slot 13 in.Simultaneously start the electric rotary disc 11, through the positioning slot 13 drive press pump to the direction of the top pressure assembly movement, in the moving process, the staff will be placed on the press pump, when the press pump carries the press to move to the top pressure assembly corresponding station, the third power piece 31 and the fourth power piece 33 synchronous start, realize the press of press and press pump lock tight assembly, press the press pump assembly after completion, the electric rotary disc 11 continues to rotate, let the press pump lower end and the through slot of guide pipe base 2 alignment, start the second power piece 26, make the cannula and press pump lower end extrusion butt joint, then, the second power piece 26 drive screw 25 reverse rotation, when the cannula length that stretches out the through slot reaches the preset value, start the first power piece 23, let blade 21 cut the section of cannula located in guide pipe base 2, realize the automatic cutting operation of cannula and press pump insertion.

[0037] The above embodiments only express one or several embodiments of the present application, and the description is more specific and detailed, but it can not be understood as the limitation of the scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of variations and improvements can be made, which belong to the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the appended claims.

Claims

1. An emulsion pump nozzle tube device capable of automatic cutting of the tube, comprising a vibrating disc (1), one side of the vibrating disc (1) being fixedly provided with an electric rotating disc (11), characterized in that; The electric rotary disc (11) is provided with an automatic assembly mechanism for automatically completing the assembly of the pressing pump; the automatic assembly mechanism comprises a material guiding rod (12) fixedly installed on the vibrating disc (1) and located near the electric rotary disc (11), the material guiding rod (12) being used for guiding the pressing pump in order; a positioning clamping groove (13) opened on the electric rotary disc (11); a baffle (14) fixedly connected to the electric rotary disc (11) and located outside the positioning clamping groove (13), the baffle (14) being used for preventing the pressing pump from being separated from the positioning clamping groove (13); a pipe inserting assembly provided on the electric rotary disc (11), the pipe inserting assembly being used for automatically installing a pipe on the pressing pump; and a pressing assembly provided on the electric rotary disc (11) and located near the pipe inserting assembly, the pressing assembly being used for automatically installing a nozzle on the pressing pump.

2. An emulsion pump with a self-cutting nozzle spout device according to claim 1, characterized in that, The pipe inserting assembly comprises a pipe seat (2), a blade (21), a guide rod (22) and a first power member (23); the pipe seat (2) is provided outside the electric rotary disc (11), and a through groove is formed in the pipe seat (2) and used for allowing the pipe to slide through; the blade (21) is slidably arranged on one side of the pipe seat (2) close to the through groove; the guide rod (22) is slidably arranged in the pipe seat (2), and one end of the guide rod (22) is fixedly connected with the blade (21); and the first power member (23) is provided outside the electric rotary disc (11), and an output end of the first power member (23) is fixedly connected with the blade (21).

3. An automatically tube-cutting emulsion pump nozzle tube insertion device according to claim 2, wherein, The pipe inserting assembly further comprises a supporting plate (24), a lead screw (25) and a second power member (26); the supporting plate (24) is arranged below the pipe seat (2) and the first power member (23), and an upper side of the supporting plate (24) is fixedly connected with the pipe seat (2) and the first power member (23); the lead screw (25) is rotatably arranged on the electric rotary disc (11), and the lead screw (25) is threadedly connected with the supporting plate (24); and the second power member (26) is fixedly installed on the electric rotary disc (11), and an output end of the second power member (26) is fixedly connected with the lead screw (25).

4. An automatically tube-cutting nozzle-insertion-tube device for a cream pump according to claim 3, characterized in that The pipe inserting assembly further comprises a first guide seat (27) and a first guide rail (28); the first guide seat (27) is fixedly connected with one side of the supporting plate (24); and the first guide rail (28) is fixedly installed on one side of the electric rotary disc (11) close to the first guide seat (27), and the first guide rail (28) is slidably matched with the first guide seat (27).

5. An automatically tube-cutting emulsion pump nozzle tube insertion device according to claim 2, wherein, The pressing assembly comprises a pressing member (3) and a third power member (31); the pressing member (3) is arranged on one side of the electric rotary disc (11) close to the pipe seat (2); and the third power member (31) is fixedly installed on one side of the electric rotary disc (11) close to the pressing member (3), and an output end of the third power member (31) is fixedly connected with the pressing member (3).

6. An automatically tube-cutting emulsion pump nozzle tube insertion device according to claim 5, wherein, The pressing assembly further comprises an upper pressing member (32) and a fourth power member (33); the upper pressing member (32) is arranged below the pressing member (3); and the fourth power member (33) is fixedly installed on one side of the electric rotary disc (11) close to the upper pressing member (32), and an output end of the fourth power member (33) is fixedly connected with the upper pressing member (32).

7. An automatically tube-cutting emulsion pump nozzle tube insertion device according to claim 6, wherein, The lower pressing piece (3) and the upper pressing piece (32) are respectively fixedly connected with a second guide base (34), and the electric rotating disc (11) is fixedly installed with a second guide rail (35) on the side close to the second guide base (34), and the second guide base (34) is in sliding fit with the second guide rail (35).