Konjac money belly forming device

By combining the glue injection and air blowing mechanisms, the konjac tripe is separated from the upper mold base, solving the problem of the product being difficult to separate from the molding components after molding and maintaining the integrity of the product.

CN223585234UActive Publication Date: 2025-11-25SICHUAN ORIENTAL MAGIC BIOTECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423224008.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-11-25
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

In existing konjac forming devices, konjac gel is difficult to separate from the forming components after forming.

Method used

The solution is delivered to the injection space by the injection mechanism and gelled. The injection space is then blasted by the air blowing mechanism to separate the konjac tripe from the upper mold base. The unidirectional air intake and air delivery structure of the air blowing mechanism are combined to achieve the separation of the product from the upper mold base by air pressure.

Benefits of technology

This effectively solves the problem of separation between konjac tripe and the molding components, maintaining the integrity of the product.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223585234U_ABST
    Figure CN223585234U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of konjak product processing, and discloses a konjak money belly forming device which comprises a lower die holder placed on a horizontal plane; the upper mold base is mounted on the lower mold base, and a glue injection space is formed between the lower mold base and the upper mold base; the air blowing mechanism is mounted on the upper mold base and is used for blowing air into the glue injection space; and the glue injection mechanism is mounted on the upper mold base. According to the utility model, the prepared solution is conveyed into the glue injection space by the glue injection mechanism, the solution is gelatinized after standing for a period of time and forms the amorphophallus konjac belly, the upper die holder is separated from the lower die holder, the amorphophallus konjac belly synchronously moves along with the upper die holder, and then the air blowing mechanism blows air into the glue injection space, so that the amorphophallus konjac belly is separated from the upper die holder; and the integrity of the product can be kept, and the problem that the formed product is difficult to separate from the forming assembly is solved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to konjak product processing technical field, concretely relates to a konjak money belly forming device. BACKGROUND

[0002] In some konjak product processing technology, konjak powder is dissolved in water to form a solution, and alkali water is added to the solution and poured into a forming device (such as a mold). The solution gels and forms konjak money belly. The existing forming device includes a conveyor belt for conveying. The top of the conveyor belt is provided with a plurality of forming assemblies for shaping the konjak gel. The forming assembly includes a plurality of limiting plates for separation. Two limiting plates are connected and fixedly connected with a profiling plate for shaping the konjak gel. The top of the conveyor belt is provided with a pressing plate for pressing the konjak gel during shaping. The bottom of the limiting plate is provided with a scraping plate for scraping the gel adhered to the top of the limiting plate.

[0003] The existing forming device has the following problems: after the konjak gel is plasticized in the forming assembly, it is difficult to separate the shaped product from the forming assembly.

[0004] Based on the above situation, a konjak money belly forming device is needed to solve the problem of difficulty in separating the shaped product from the forming assembly. INVENTION CONTENTS

[0005] The utility model aims at: for the existing forming device, the konjak gel is plasticized in the forming assembly, and it is difficult to separate the shaped product from the forming assembly, which solves the problem of difficulty in separating the shaped product from the forming assembly.

[0006] The technical scheme of the utility model is as follows:

[0007] A konjak money belly forming device includes:

[0008] A lower mold base is placed on a horizontal surface.

[0009] An upper mold base is installed on the lower mold base, and a glue injection space is formed between the lower mold base and the upper mold base.

[0010] An air blowing mechanism is installed on the upper mold base and used for blowing air into the glue injection space.

[0011] A glue injection mechanism is installed on the upper mold base.

[0012] The existing forming device, the konjac gel is plastic in the forming assembly, it is difficult to separate the formed product from the forming assembly, in the scheme, the prepared solution is delivered to the glue injection space by the glue injection mechanism, and gelation occurs after a period of standing to form a konjac money belly, the upper die holder is separated from the lower die holder, and the konjac money belly moves synchronously with the upper die holder, and then the air blowing mechanism blows air into the glue injection space, so that the konjac money belly is separated from the upper die holder, and the integrity of the product can be maintained, and the problem that it is difficult to separate the formed product from the forming assembly is solved.

[0013] Further, the specific structure of the air blowing mechanism is not uniquely limited, wherein one possible solution is that the air blowing mechanism comprises a cavity and a gas sending structure connected with the cavity, and a one-way air inlet structure is arranged on the cavity. When this solution is adopted, air is one-way delivered into the cavity through the cooperation of the gas sending structure and the one-way air inlet structure, and then the air in the cavity is one-way delivered to the glue injection space, which is more conducive to the separation of the product from the upper die holder under the action of air pressure.

[0014] Further, the specific structure of the air blowing mechanism is not uniquely limited, wherein one possible solution is that the air blowing mechanism comprises a cavity and a gas sending structure connected with the cavity, and a one-way air inlet structure is arranged on the cavity. When this solution is adopted, air is one-way delivered into the cavity through the cooperation of the gas sending structure and the one-way air inlet structure, and then the air in the cavity is one-way delivered to the glue injection space, which is more conducive to the separation of the product from the upper die holder under the action of air pressure.

[0015] Further, in order to facilitate automatic air blowing, one possible solution is that the gas sending structure further comprises a gas pump in communication with the cavity. When this solution is adopted, air is directly delivered from the cavity to the glue injection space by the gas pump.

[0016] Further, the specific structure of the air blowing mechanism is not uniquely limited, wherein one possible solution is that the air blowing mechanism comprises a cavity and a gas sending structure connected with the cavity, and a one-way air inlet structure is arranged on the cavity. When this solution is adopted, air is one-way delivered into the cavity through the cooperation of the gas sending structure and the one-way air inlet structure, and then the air in the cavity is one-way delivered to the glue injection space, which is more conducive to the separation of the product from the upper die holder under the action of air pressure.

[0017] Further, the specific structure of the air blowing mechanism is not uniquely limited, wherein one possible solution is that the air blowing mechanism comprises a cavity and a gas sending structure connected with the cavity, and a one-way air inlet structure is arranged on the cavity. When this solution is adopted, air is one-way delivered into the cavity through the cooperation of the gas sending structure and the one-way air inlet structure, and then the air in the cavity is one-way delivered to the glue injection space, which is more conducive to the separation of the product from the upper die holder under the action of air pressure.

[0018] The beneficial effects of the utility model compared with the prior art are:

[0019] I. The solution configured is delivered into the glue injection space by the glue injection mechanism, gelling and forming konjak money belly after standing for a period of time, the upper die holder is separated from the lower die holder and the konjak money belly moves synchronously with the upper die holder, air is blown into the glue injection space by the air blowing mechanism, so that the konjak money belly is separated from the upper die holder, and the integrity of the product can be maintained, and the problem that the formed product is difficult to separate from the forming assembly is solved.

[0020] II. Since the air blowing mechanism comprises a cavity and a gas feeding structure connected with the cavity, a one-way air inlet structure is arranged on the cavity, air is one-way delivered into the cavity by the cooperation of the gas feeding structure and the one-way air inlet structure, and then the air in the cavity is one-way delivered into the glue injection space, which is more conducive to the separation of the product from the upper die holder under the action of air pressure.

[0021] III. Since the gas feeding structure comprises a piston mounted in the cavity and an operating rod connected with the piston, the piston is pulled by the operating rod to suck air into the cavity, the air in the cavity is delivered into the glue injection space by pressing the operating rod, and the reciprocation is repeated. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a first perspective structural schematic view of the embodiment of the utility model as a whole.

[0023] Figure 2 It is a second perspective structural schematic view of the embodiment of the utility model as a whole.

[0024] Figure 3 It is a half-section schematic view of the embodiment of the utility model.

[0025] Figure 4 It is an enlarged view of A in Figure 2

[0026] Figure 5 It is an enlarged view of B in Figure 3

[0027] Figure 6 It is an enlarged view of C in Figure 3

[0028] REFERENCE SIGNS:

[0029] 1, lower die holder; 2, upper die holder; 3, glue injection space; 4, air blowing mechanism; 5, glue injection mechanism;

[0030] 21, sealing ring; 22, overflow hole;

[0031] ​​​41, cavity; 42, one-way air inlet structure; 43, piston; 44, operating rod; 45, air pump;

[0032] 421, mounting frame; 422, elastic valve disc;

[0033] 51, delivery pipe; 52, valve; 53, measuring cylinder. DETAILED DESCRIPTION

[0034] It should be noted that the relational terms herein, such as first and second, and the like, are used solely to distinguish one from another entity or action, without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.

[0035] The features and performance of the present application will be further described in detail below in conjunction with the embodiments.

[0036] Embodiment:

[0037] Please refer to Figure 1 and Figure 3 A konjac money-belly forming device, comprising:

[0038] A lower mold base 1 is placed on a horizontal surface;

[0039] An upper mold base 2 is installed on the lower mold base 1, and a glue injection space 3 is formed between the lower mold base 1 and the upper mold base 2, and the upper mold base 2 is formed with a money-belly pattern (not shown in the figure);

[0040] An air blowing mechanism 4 is installed on the upper mold base 2 and is used to blow air into the glue injection space 3;

[0041] A glue injection mechanism 5 is installed on the upper mold base 2.

[0042] The existing forming device, the konjac gel is plastic in the forming assembly, it is difficult to separate the formed product from the forming assembly, in the scheme, the injection mechanism 5 is used to transport the prepared solution to the injection space 3, and the gelation occurs after a period of standing and the konjac money belly is formed, the upper mold base 2 is separated from the lower mold base 1 and the konjac money belly moves synchronously with the upper mold base 2, and then the air blowing mechanism 4 blows air into the injection space 3, so as to separate the konjac money belly from the upper mold base 2, and the integrity of the product can be maintained, and the problem that it is difficult to separate the formed product from the forming assembly is solved.

[0043] With reference to Figure 5 , the specific structure of the air blowing mechanism 4 is not uniquely limited, and one of the feasible schemes is that the air blowing mechanism 4 comprises a cavity 41 and a gas feeding structure connected with the cavity 41, the cavity 41 is provided with a one-way air inlet structure 42, when this scheme is adopted, the air is one-way fed into the cavity 41 through the cooperation of the gas feeding structure and the one-way air inlet structure 42, and then the air in the cavity 41 is one-way fed into the injection space 3, which is more conducive to the separation of the product from the upper mold base 2 under the action of air pressure.

[0044] With reference to Figure 3 and Figure 5 , the specific structure of the air blowing mechanism 4 is not uniquely limited, and one of the feasible schemes is that the air blowing mechanism 4 comprises a cavity 41 and a gas feeding structure connected with the cavity 41, the cavity 41 is provided with a one-way air inlet structure 42, when this scheme is adopted, the air is one-way fed into the cavity 41 through the cooperation of the gas feeding structure and the one-way air inlet structure 42, and then the air in the cavity 41 is one-way fed into the injection space 3, which is more conducive to the separation of the product from the upper mold base 2 under the action of air pressure.

[0045] In order to facilitate automatic air blowing, one of the feasible schemes is that the gas feeding structure further comprises a gas pump 45 in communication with the cavity 41, when this scheme is adopted, the air is directly fed into the injection space 3 through the cavity 41 by the gas pump 45.

[0046] With reference to Figure 5 , the specific structure of the air blowing mechanism 4 is not uniquely limited, and one of the feasible schemes is that the air blowing mechanism 4 comprises a cavity 41 and a gas feeding structure connected with the cavity 41, the cavity 41 is provided with a one-way air inlet structure 42, when this scheme is adopted, the air is one-way fed into the cavity 41 through the cooperation of the gas feeding structure and the one-way air inlet structure 42, and then the air in the cavity 41 is one-way fed into the injection space 3, which is more conducive to the separation of the product from the upper mold base 2 under the action of air pressure.

[0047] With reference to Figure 2 , Figure 4 and Figure 6The present scheme does not limit the specific structure of the glue injection mechanism 5, the glue injection mechanism 5 comprises a delivery pipe 51 mounted on the upper die holder 2, and the delivery pipe 51 is provided with a valve 52, the upper die holder 2 is provided with an overflow hole 22, and a sealing ring 21 is arranged between the upper die holder 2 and the lower die holder 1, when the valve 52 is opened, the solution flows into the glue injection space 3 through the delivery pipe 51, and when the solution flows out of the overflow hole 22, it indicates that the glue injection space 3 is filled with the solution, the valve 52 is closed and the solution is allowed to gel.

[0048] Preferably, in order to reduce the overflow amount, in the present embodiment, the delivery pipe 51 is connected with a measuring cylinder 53, when the measuring cylinder 53 is used to measure a specified volume of solution and then deliver it into the glue injection space 3, the overflow amount can be reduced and the cost can be saved.

[0049] In order to solve the problem that it is difficult to separate the molded product from the molding assembly, in the present scheme, the prepared solution is delivered into the glue injection space 3 by the glue injection mechanism 5, and after a period of time, the solution gels and forms the konjac money bag, the upper die holder 2 is separated from the lower die holder 1 and the konjac money bag moves synchronously with the upper die holder 2, and then air is blown into the glue injection space 3 by the air blowing mechanism 4, so that the konjac money bag is separated from the upper die holder 2, and the integrity of the product can be maintained, and the problem that it is difficult to separate the molded product from the molding assembly is solved.

[0050] In order to facilitate the separation of the product from the upper die holder 2, in the present scheme, since the air blowing mechanism 4 comprises a cavity 41 and a gas feeding structure connected with the cavity 41, the cavity 41 is provided with a one-way air inlet structure 42, air is one-way delivered into the cavity 41 through the cooperation of the gas feeding structure and the one-way air inlet structure 42, and then the air in the cavity 41 is one-way delivered into the glue injection space 3, which is more conducive to the separation of the product from the upper die holder 2 under the action of air pressure.

[0051] In order to deliver air into the glue injection space 3, in the present scheme, since the gas feeding structure comprises a piston 43 mounted in the cavity 41 and an operating rod 44 connected with the piston 43, the piston 43 is pulled by the operating rod 44 to suck air into the cavity 41, and the operating rod 44 is pressed to deliver the air in the cavity 41 into the glue injection space 3, and the reciprocation is repeated.

[0052] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A konjac konjaku forming device, characterized by, The utility model relates to a rubber injection molding machine, which comprises the following parts: a lower die base (1) placed on a horizontal plane; a upper die base (2) installed on the lower die base (1), and a glue injection space (3) formed between the lower die base (1) and the upper die base (2); an air blowing mechanism (4) installed on the upper die base (2) and used for blowing air into the glue injection space (3); a glue injection mechanism (5) installed on the upper die base (2).

2. The konjak gomtang forming device according to claim 1, wherein The air blowing mechanism (4) comprises a cavity (41) and a gas feeding structure connected with the cavity (41), and a one-way air inlet structure (42) is arranged on the cavity (41).

3. The konjak gomtang forming device according to claim 2, wherein The gas feeding structure comprises a piston (43) installed in the cavity (41) and an operating rod (44) connected with the piston (43).

4. The konjak gomtang forming device according to claim 3, wherein The gas feeding structure further comprises a gas pump (45) in communication with the cavity (41).

5. The konjak gomtang forming device according to claim 2, wherein The one-way air inlet structure (42) comprises two mounting racks (421), and elastic valve clack (422) are installed on the mounting racks (421).

6. The konjak gomme shaped device according to claim 1, wherein The glue injection mechanism (5) comprises a conveying pipe (51) installed on the upper die base (2), and a valve (52) is installed on the conveying pipe (51); an overflow hole (22) is formed on the upper die base (2); and a sealing ring (21) is arranged between the lower die base (1) and the upper die base (2).