Vitamin K1 microencapsulation packaging device

By combining the limiting and intercepting devices of the conveying device with the pressure monitoring device, the problems of insufficient continuous operation and automatic material discharge in the vitamin K1 microencapsulation packaging device have been solved, and a highly efficient and precise packaging process has been achieved.

CN224045573UActive Publication Date: 2026-03-27SHANDONG GUANGTONGBAO PHARMA
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing vitamin K1 microencapsulation equipment is inadequate in terms of continuous operation capability and automatic discharge, resulting in low processing efficiency.

Method used

A conveying device is used to limit and transport the mold, an intercepting device is used to limit and intercept the product, and a sensing device is used to monitor pressure changes during the interception process, so as to achieve precise and fast packaging operations.

Benefits of technology

It improves the positioning accuracy and automation of the packaging process, reduces the labor intensity of operators, and enhances the practicality and automation of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of microcapsule packaging, in particular to a vitamin K1 microencapsulation packaging device which is used for limiting and conveying a mold through a conveying device and limiting and intercepting a product through an intercepting device so as to facilitate accurate and rapid packaging operation. The pressure change in the intercepting process is monitored through the sensing device, so that the position accuracy and practicability of intercepting and positioning are improved; comprising a conveying device, an intercepting device and a sensing device, the intercepting device is installed on the conveying device, and the sensing device is installed on the intercepting device.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of microcapsule packaging, particularly to a vitamin K1 microencapsulation packaging device. BACKGROUND

[0002] Vitamin K1 is a kind of fat-soluble vitamin, and its figure can be found in green vegetables and edible vegetable oil in nature, it is a kind of plant menadione chlorophyllin active substance, and it is a substance necessary for the synthesis of blood coagulation factor in human body, and it is called coagulation vitamin;Due to the fat-soluble property of vitamin K1 and the degradation characteristics of being easily affected by ultraviolet rays, the nutritional fortification work of vitamin K1 is difficult to carry out, and it is difficult to be applied to health food, infant formula milk powder and daily dietary supplements, if not properly added, not only the effect of nutritional fortification cannot be achieved, but harmful substances are easily produced, and the effect is opposite, and therefore the vitamin K1 microencapsulation can effectively overcome the problem.

[0003] The prior art of the application number CN202210015352.9 Chinese utility model patent relates to a food-grade vitamin K1 microencapsulation packaging process and packaging device, which comprises a supporting platform, an extruding mechanism, a filling mechanism, a slide, a pushing cylinder, a rotating mechanism, a lifting mechanism and a packaging mechanism, etc., which can cooperate with the rotating mechanism and the lifting mechanism on the filling mechanism to facilitate the packaging operation of the material, facilitate the unloading in the later period, and facilitate the use of workers.

[0004] However, the above-mentioned device has insufficient continuous operation ability in actual use, and has insufficient automatic discharging capacity for the finished products. UTILITY MODEL CONTENTS

[0005] To solve the above technical problems, the utility model provides a kind of vitamin K1 microencapsulation packaging device, which is limited and transported to mold by conveying device, and is limited and intercepted to product by intercepting device, to facilitate accurate and rapid packaging operation, and the position accuracy and practicality of intercepting positioning are improved by monitoring the pressure change in the intercepting process by inductive device.

[0006] The utility model relates to a kind of vitamin K1 microencapsulation packaging device;Including conveying device, intercepting device and inductive device, intercepting device is installed on conveying device, inductive device is installed on intercepting device;Mold is limited and transported by conveying device, product is limited and intercepted by intercepting device, to facilitate accurate and rapid packaging operation, and the position accuracy and practicality of intercepting positioning are improved by monitoring the pressure change in the intercepting process by inductive device.

[0007] Preferably, the conveying device comprises a conveying frame, conveying rollers, a conveying belt, a speed reducer motor, a limiting strip, a connecting hole, a lower mold frame and a connecting protrusion, a plurality of groups of conveying rollers are horizontally installed on the conveying frame, the conveying belt is sleeved on the plurality of groups of conveying rollers, a group of speed reducer motors are installed on the side surface of the conveying frame, the output end of the speed reducer motor is connected with the edge group of conveying rollers, a plurality of groups of limiting strips are uniformly arranged on the upper end surface of the conveying belt, a plurality of groups of connecting holes are arranged on the limiting strips, a plurality of groups of connecting protrusions are arranged on the lower end surface of the front part of the lower mold frame, and the plurality of groups of connecting protrusions can be inserted into the plurality of groups of connecting holes on the limiting strips; the position of the lower mold frame on the conveying belt is assisted and positioned through the limiting strip, the connecting hole and the plurality of groups of connecting protrusions on the lower mold frame, the displacement of the lower mold frame caused by vibration during transportation is reduced, the influence on the filling process is reduced, the speed reducer motor is started to transmit power to the conveying belt through the conveying rollers to drive the lower mold frame on the conveying belt to move, and when the limiting strip moves to the forefront of the conveying belt, the limiting strip rotates downward with the conveying belt, so that the connecting protrusion is separated from the connecting hole, thereby reducing the time required for the separation process by manual operation, reducing the labor intensity of the operator, and improving the automation degree and practicality of the device.

[0008] Preferably, it also comprises an extrusion module, a spring pipe, a first electric cylinder, a second electric cylinder and a packaging mold, two groups of gantries are arranged on the upper end surface of the conveying frame, the first electric cylinder and the second electric cylinder are respectively installed on the two groups of gantries, the first electric cylinder is located on the feeding side, the second electric cylinder is close to the discharging side, the moving end of the first electric cylinder extends through the gantry to the lower side of the gantry and is connected with the extrusion module, the input end of the extrusion module is connected with the feeding device through the spring pipe, and the moving end of the second electric cylinder extends through the gantry to the lower side of the gantry and is connected with the packaging mold; the extrusion module is controlled to be close to the upper end surface of the lower mold frame to cooperate with the feeding device to extrude the material on the lower mold frame by elongating the first electric cylinder, the spring pipe is adapted to the lifting process of the extrusion module, the microcapsules are packaged by controlling the second electric cylinder to elongate and drive the packaging mold to press the upper end surface of the lower mold frame, and the practicality of the device is improved.

[0009] Preferably, it also comprises a discharging support plate, and the output end of the conveying frame is obliquely installed with the discharging support plate; the lower mold frame after completing the packaging is supported by the discharging support plate, so that the lower mold frame slides out, and the practicality of the device is improved.

[0010] Preferably, it also comprises an anti-skid strip, and the lower end surface of the lower mold frame is provided with the anti-skid strip; the stability of the lower mold frame on the conveying belt is increased through the anti-skid strip, the influence of the shaking of the lower mold frame itself on the filling and packaging process is reduced, and the practicality of the device is improved.

[0011] Preferably, the intercepting device comprises a rotating shaft base, a servo motor and an intercepting arm, a group of rotating shaft bases are respectively installed on the left and right side surfaces in the conveying frame, the servo motor is installed on the upper end surface of the rotating shaft base, the output end of the servo motor is connected with the rotating shaft of the rotating shaft base, the rotating shaft base is located between the two groups of gantries, the intercepting arm is connected with the side surface of the rotating shaft of the rotating shaft base, a vertical limiting frame is arranged on the rotating shaft base, and the intercepting arm cannot continue to rotate when it is rotated to be perpendicular to the conveying direction of the conveying belt; the servo motor is started to transmit power to the rotating shaft base, the intercepting arm is driven to rotate, the lower mold frame on the conveying belt is limited and intercepted, the lower mold frame is thus stopped at the lower side of the extrusion die set, the lower mold frame that has completed filling is stopped at the lower side of the packaging die, and the practicability of the device is improved.

[0012] Preferably, the sensing device comprises a pressure switch, a spring, a limiting column and an intercepting plate, the rotating end of the intercepting arm is provided with the pressure switch, a circular groove is arranged on the rear end surface of the rotating end of the intercepting arm, the sensing end of the pressure switch extends into the circular groove, one end of the spring is connected with the sensing end of the pressure switch, the other end of the spring is connected with the front end surface of the intercepting plate, the rear end surface of the intercepting plate is provided with the limiting column, and the limiting column can be inserted into the circular groove on the intercepting arm; in the process that the intercepting arm intercepts the lower mold frame, the spring is pressed against the pressure switch when the intercepting plate contacts the lower mold frame, the pressure switch senses that the pressure increases and controls the reduction motor to stop working, so that the lower mold frame is stopped at the lower side of the extrusion die set, the horizontal movement process of the intercepting plate is limited through the limiting column and the circular groove on the intercepting arm, and the practicability of the device is improved.

[0013] Compared with the prior art, the beneficial effects of the utility model are that: the mold is limited and conveyed through the conveying device, the product is limited and intercepted through the intercepting device, so that accurate and rapid packaging work is facilitated, the pressure change in the intercepting process is monitored through the sensing device, and the position accuracy and practicability of intercepting positioning are improved. ACCURACY

[0014] Figure 1 is the axonometric structure schematic view of the utility model;

[0015] Figure 2 is the first cross section structure schematic view of the utility model;

[0016] Figure 3 is the second cross section structure schematic view of the utility model;

[0017] Figure 4 is the third cross section structure schematic view of the utility model;

[0018] Marked in the drawing: 1, conveying frame; 2, conveying roller; 3, conveying belt; 4, speed reducer motor; 5, limiting strip; 6, connecting hole; 7, lower mold frame; 8, connecting protrusion; 9, extrusion die set; 10, spring pipe; 11, first electric cylinder; 12, second electric cylinder; 13, packaging mold; 14, discharging support plate; 15, anti-skid strip; 16, rotating shaft seat; 17, servo motor; 18, intercepting arm; 19, pressure switch; 20, spring; 21, limiting column; 22, intercepting plate. DETAILED DESCRIPTION

[0019] In order to facilitate the understanding of the present application, the present application will be described more fully below with reference to the accompanying drawings. The present application can be realized in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive. EMBODIMENT

[0020] Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 As shown in the figure, the intercepting device is installed on the conveying device, and the sensing device is installed on the intercepting device;

[0021] First, the position of the lower mold frame 7 on the conveying belt 3 is assisted and positioned by the limiting strip 5, the connecting hole 6 and the multiple sets of connecting protrusions 8 on the lower mold frame 7, so as to reduce the displacement of the lower mold frame 7 caused by vibration during transportation and the influence on the filling process. The power is transmitted to the conveying roller 2 through the speed reducer motor 4, and the lower mold frame 7 on the conveying belt 3 is driven to move. The power is transmitted to the rotating shaft seat 16 through the servo motor 17, and the intercepting arm 18 is driven to rotate, so as to limit and intercept the lower mold frame 7 on the conveying belt 3, so that the lower mold frame 7 stays on the lower side of the extrusion die set 9, and the lower mold frame 7 that has completed filling stays on the lower side of the packaging mold 13. Then, the extrusion die set 9 is close to the upper end surface of the lower mold frame 7 by controlling the first electric cylinder 11 to extend, and the material is extruded onto the lower mold frame 7 by cooperating with the feeding equipment. The spring pipe 10 adapts to the lifting process of the extrusion die set 9. The second electric cylinder 12 is controlled to extend, and the packaging mold 13 is pressed to the upper end surface of the lower mold frame 7, so as to package the microcapsules. When the limiting strip 5 moves to the frontmost conveying roller 2 along with the conveying belt 3, the limiting strip 5 rotates downward along with the conveying belt 3, so that the connecting protrusion 8 and the connecting hole 6 are separated;

[0022] The conveying device comprises a conveying frame 1, conveying rollers 2, a conveying belt 3, a speed reducer motor 4, a limiting strip 5, a connecting hole 6, a lower mold frame 7 and a connecting protrusion 8, a plurality of groups of conveying rollers 2 are horizontally installed on the conveying frame 1, the conveying belt 3 is sleeved on the plurality of groups of conveying rollers 2, a group of speed reducer motors 4 are installed on the side surface of the conveying frame 1, the output end of the speed reducer motor 4 is connected with an edge group of conveying rollers 2, a plurality of groups of limiting strips 5 are evenly arranged on the upper end surface of the conveying belt 3, a plurality of groups of connecting holes 6 are arranged on the limiting strip 5, a plurality of groups of connecting protrusions 8 are arranged on the lower end surface of the front part of the lower mold frame 7, and the plurality of groups of connecting protrusions 8 can be inserted into the plurality of groups of connecting holes 6 on the limiting strip 5;

[0023] The extrusion module 9, the spring pipe 10, the first electric cylinder 11, the second electric cylinder 12 and the packaging mold 13 are further included, two groups of door frames are arranged on the upper end surface of the conveying frame 1, the first electric cylinder 11 and the second electric cylinder 12 are respectively installed on the two groups of door frames, the first electric cylinder 11 is located on the feeding side, the second electric cylinder 12 is close to the discharging side, the moving end of the first electric cylinder 11 extends through the door frame to the lower side of the door frame and is connected with the extrusion module 9, the input end of the extrusion module 9 is connected with the feeding device through the spring pipe 10, and the moving end of the second electric cylinder 12 extends through the door frame to the lower side of the door frame and is connected with the packaging mold 13;

[0024] The discharging supporting plate 14 is further included, and the output end of the conveying frame 1 is obliquely installed with the discharging supporting plate 14;

[0025] The anti-skid strip 15 is further included, and the anti-skid strip 15 is arranged on the lower end surface of the lower mold frame 7;

[0026] The intercepting device comprises a rotating shaft seat 16, a servo motor 17 and an intercepting arm 18, a group of rotating shaft seats 16 are respectively installed on the left and right side surfaces in the conveying frame 1, the servo motor 17 is installed on the upper end surface of the rotating shaft seat 16, the output end of the servo motor 17 is connected with the rotating shaft of the rotating shaft seat 16, the rotating shaft seat 16 is located between the two groups of door frames, the intercepting arm 18 is connected with the rotating shaft side surface of the rotating shaft seat 16, a vertical limiting frame is arranged on the rotating shaft seat 16, and the intercepting arm 18 cannot continue to rotate when it is rotated to be perpendicular to the conveying direction of the conveying belt 3;

[0027] The sensing device comprises a pressure switch 19, a spring 20, a limiting column 21 and an intercepting plate 22, the pressure switch 19 is installed on the rotating end of the intercepting arm 18, a circular groove is arranged on the rear end face of the rotating end of the intercepting arm 18, the sensing end of the pressure switch 19 extends into the circular groove, one end of the spring 20 is connected with the sensing end of the pressure switch 19, the other end of the spring 20 is connected with the front end face of the intercepting plate 22, the limiting column 21 is arranged on the rear end face of the intercepting plate 22, the limiting column 21 can be inserted into the circular groove on the intercepting arm 18, the mold is positioned and conveyed through the conveying device, the product is positioned and intercepted through the intercepting device, so that the accurate and rapid packaging operation is facilitated, the pressure change in the intercepting process is monitored through the sensing device, and the position accuracy and practicability of the intercepting positioning are improved.

[0028] As shown in Figures 1 to 4 The utility model discloses a vitamin K1 microencapsulation packaging device, when working, first through the limiting strip 5, the connecting hole 6 and the multiple sets of connecting protrusions 8 on the lower mold frame 7 of auxiliary positioning to the position of lower mold frame 7 on the conveyer belt 3, reduce the vibration in the transportation process to cause the displacement of lower mold frame 7, influence the filling process, open the speed reducer motor 4 and transmit power to the conveyer belt 3 through the conveyer roller 2 and drive the lower mold frame 7 on the conveyer belt 3 to move, open the servo motor 17 and transmit power to the rotating shaft seat 16, drive the intercepting arm 18 to rotate, thereby limiting the intercepting of the lower mold frame 7 on the conveyer belt 3, so that the lower mold frame 7 stays on the downside of the extrusion die group 9, and the lower mold frame 7 that completes filling stays on the downside of the packaging mold 13, then through the control first electric cylinder 11 elongation makes extrusion die group 9 close to the upper end face of lower mold frame 7 and cooperate with the material feeding equipment to extrude the material to the lower mold frame 7, through the spring pipe 10 adaptation extrusion die group 9's lifting process, through the control second electric cylinder 12 elongation drive packaging mold 13 and press to the upper end face of lower mold frame 7 to package microcapsule, then when the limiting strip 5 follows the conveyer belt 3 and moves to the foremost conveyer roller 2, the limiting strip 5 follows the conveyer belt 3 and rotates downward, that is, the connecting protrusion 8 can be separated from the connecting hole 6.

[0029] The speed reducer motor 4, the first electric cylinder 11, the second electric cylinder 12, the packaging mold 13, the extrusion die group 9, the servo motor 17 and the pressure switch 19 of the utility model are purchased on the market, and the technical personnel in the industry only need to install and operate according to the attached instruction manual, without the creative labor of the technical personnel in the field.

[0030] The above only is the preferred implementation of the utility model, should point out, for the ordinary technical personnel of the technology field, on the premise of not departing from the technical principle of the utility model, can also make several improvements and variations, these improvements and variations also should be regarded as the protection range of the utility model.

Claims

1. A vitamin Kl microencapsulated encapsulation device; characterized in that, The device comprises a conveying device, an intercepting device and a sensing device, the intercepting device is installed on the conveying device, and the sensing device is installed on the intercepting device.

2. A vitamin Kl microencapsulated delivery device as claimed in claim 1, wherein, The conveying device comprises a conveying frame (1), conveying rollers (2), a conveying belt (3), a speed reducer motor (4), limiting strips (5), connecting holes (6), a lower mold frame (7) and connecting protrusions (8), a plurality of groups of conveying rollers (2) are horizontally installed on the conveying frame (1), the conveying belt (3) is sleeved on the plurality of groups of conveying rollers (2), a group of speed reducer motors (4) are installed on the side surface of the conveying frame (1), the output end of the speed reducer motor (4) is connected with an edge group of conveying rollers (2), a plurality of groups of limiting strips (5) are uniformly arranged on the upper end surface of the conveying belt (3), a plurality of groups of connecting holes (6) are arranged on the limiting strips (5), a plurality of groups of connecting protrusions (8) are arranged on the lower end surface of the front part of the lower mold frame (7), and the plurality of groups of connecting protrusions (8) can be inserted into the plurality of groups of connecting holes (6) on the limiting strips (5).

3. A vitamin Kl microencapsulated delivery device as claimed in claim 2, wherein, The device further comprises an extrusion module (9), a spring pipe (10), a first electric cylinder (11), a second electric cylinder (12) and a packaging mold (13), two groups of door frames are arranged on the upper end surface of the conveying frame (1), the first electric cylinder (11) and the second electric cylinder (12) are respectively installed on the two groups of door frames, the first electric cylinder (11) is located on the feeding side, the second electric cylinder (12) is close to the discharging side, the moving end of the first electric cylinder (11) extends to the lower side of the door frame through the door frame and is connected with the extrusion module (9), the input end of the extrusion module (9) is connected with a feeding device through the spring pipe (10), and the moving end of the second electric cylinder (12) extends to the lower side of the door frame through the door frame and is connected with the packaging mold (13).

4. A vitamin Kl microencapsulated delivery device as claimed in claim 3, wherein, The device further comprises a discharging receiving plate (14), and the output end of the conveying frame (1) is obliquely installed with the discharging receiving plate (14).

5. A vitamin Kl microencapsulated delivery device as claimed in claim 4, wherein, The device further comprises anti-skid strips (15), and the anti-skid strips (15) are arranged on the lower end surface of the lower mold frame (7).

6. A vitamin Kl microencapsulated delivery device as claimed in claim 5, wherein, The intercepting device comprises a rotating shaft seat (16), a servo motor (17) and an intercepting arm (18), a group of rotating shaft seats (16) are respectively installed on the left and right side surfaces in the conveying frame (1), a servo motor (17) is installed on the upper end surface of the rotating shaft seat (16), the output end of the servo motor (17) is connected with the rotating shaft of the rotating shaft seat (16), the rotating shaft seat (16) is located between the two groups of door frames, the intercepting arm (18) is connected with the rotating shaft side surface of the rotating shaft seat (16), a vertical limiting frame is arranged on the rotating shaft seat (16), and the intercepting arm (18) cannot continue to rotate when it is rotated to be perpendicular to the conveying direction of the conveying belt (3).

7. A vitamin Kl microencapsulated delivery device as claimed in claim 6, wherein, The inductive device comprises a pressure switch (19), a spring (20), a limiting column (21) and an intercepting plate (22), the pressure switch (19) is installed on the rotating end of the intercepting arm (18), a circular groove is arranged on the rear end face of the rotating end of the intercepting arm (18), the inductive end of the pressure switch (19) extends into the circular groove, one end of the spring (20) is connected with the inductive end of the pressure switch (19), the other end of the spring (20) is connected with the front end face of the intercepting plate (22), the limiting column (21) is arranged on the rear end face of the intercepting plate (22), and the limiting column (21) can be inserted into the circular groove on the intercepting arm (18).

Citation Information

Patent Citations

  • A food-grade vitamin K1 microencapsulation process and encapsulation device

    CN114376912B