Vegetable protein compound type low-fat high-fiber sausage forming mold
By introducing structures such as ejector rods and limiting components into the sausage forming mold, the problem of sausages being difficult to demold quickly is solved, achieving rapid ejection and material sealing, thus improving production efficiency and operational stability.
Patent Information
- Application Number
- CN202520955197.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-05-15
AI Technical Summary
The existing sausage forming molds lack an effective sausage ejection and demolding structure, making it difficult for operators to quickly remove the formed sausages, which affects the effectiveness of the equipment and production efficiency.
A plant protein compound low-fat high-fiber sausage forming mold was designed, which includes a lower mold, forming cavity, high-temperature resistant pad, filling inlet, ejector rod, sealing ring and limiting components, etc., to achieve rapid ejection of sausage and effective sealing of material, ensuring that material does not overflow during the forming process.
It improves the production efficiency and stability of sausage forming molds, ensures that sausages can be demolded quickly and avoids material overflow, and enhances the effectiveness and processing efficiency of the equipment.
Smart Images

Figure CN223844886U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to sausage mould technical field, concretely is plant protein compound type low fat high fiber sausage forming mould. BACKGROUND
[0002] Sausage is a necessity in modern daily life, and sausage forming mould is a tool for making sausage. It has multiple purposes, including making baby food, making sausage, etc. It is suitable for families to make healthy food, such as;
[0003] The authorized announcement No. CN212787251U provides a kind of sausage forming mould without clothes, including: mould body, first mould stick and second mould stick;Mould body is equipped with multiple parallel mould cavities, and the both ends of mould cavity are transparent, and mould body is equipped with feed inlet, and feed inlet is waist-shaped hole, and the inner end of each mould cavity is communicated with feed inlet;The number of first mould stick and second mould stick is equal to the number of mould cavity and position one-to-one, and first mould stick and second mould stick are located at the both ends of mould cavity respectively, and first mould stick and second mould stick can be slidably connected with mould cavity, first mould stick slides in mould body, and first mould stick is located at the side of feed inlet away from mould cavity.Production sausage, forming mould is installed in forming machine, first mould stick and second mould stick are driven by telescopic device on forming machine, telescopic device drives first mould stick and second mould stick to move, completes the feeding of mould cavity and the compaction forming work of sausage, to complete the production of sausage, with the benefits of simple structure and convenient to use, provide the production efficiency of sausage, reduce the cost of sausage.
[0004] But the existing sausage forming mould does not set effective sausage ejection demoulding structure in device interior, so that operator is not easy to take out sausage formed in its interior quickly, so that the use effect of device is affected, and the production efficiency of device is reduced;
[0005] Therefore, in view of the above problems, it is urgent to make innovative design on the basis of the original sausage forming mould. Utility model content
[0006] The utility model aims at providing plant protein compound type low fat high fiber sausage forming mould to solve the problems that effective sausage ejection demoulding structure is not set in device interior in the background art, operator is not easy to take out sausage formed in its interior quickly, the use effect of device is affected, and the production efficiency of device is reduced.
[0007] To achieve the above object, the utility model provides the following technical scheme: plant protein compound type low fat high fiber sausage forming mould, including: lower mould, and forming cavity opened in lower mould interior, the upper side of forming cavity is provided with upper mould, and high-temperature-resistant pad is attached in the inside of forming cavity;
[0008] Also include:
[0009] The pouring inlet is installed at the rear side of the forming cavity, and the rear side of the pouring inlet is provided with a one-way intercepting assembly. The lower end of the forming cavity is provided with an ejection rod, and the upper side of the ejection rod is provided with a second sealing rubber ring. The lower end of the ejection rod is connected with a push plate, and the upper side of the push plate is connected with a second spring.
[0010] The steam flow channel is opened at the upper side of the upper mold, and the lower side of the upper mold is provided with a third sealing rubber ring. The outer side of the upper mold is connected with a limiting assembly.
[0011] In a possible implementation, the ejection rod is in sliding connection with the lower mold, and the ejection rod is equidistantly arranged at the upper side of the push plate.
[0012] In a possible implementation, the second sealing rubber ring is in clamping connection with the ejection rod.
[0013] In a possible implementation, the third sealing rubber ring is in clamping connection with the upper mold, and the steam flow channel is equidistantly opened at the upper side of the upper mold.
[0014] In a possible implementation, the one-way intercepting assembly includes a blocking plate installed at the rear side of the pouring inlet, and the outer side of the blocking plate is connected with a first guide rod. The front end of the blocking plate is provided with a first spring, and the rear side of the blocking plate is provided with a first sealing rubber ring.
[0015] The first sealing rubber ring is in clamping connection with the blocking plate, and the blocking plate is in sliding connection with the first guide rod.
[0016] In a possible implementation, the limiting assembly includes a limiting block installed at the outer side of the upper mold, and the outer side of the limiting block is connected with a second guide rod. The middle part of the limiting block is penetrated by a driving rod, and the upper side of the driving rod is connected with a locking rod.
[0017] The limiting block is in clamping connection with the upper mold, and the limiting block is in sliding connection with the second guide rod.
[0018] In a possible implementation, the driving rod is in rotating connection with the lower mold, and the driving rod is in screw connection with the limiting block.
[0019] In a possible implementation, the locking rod is in clamping connection with the driving rod, and the driving rod is symmetrically arranged about the central axis of the lower mold.
[0020] Compared with the prior art, the beneficial effects of this utility model are as follows: This plant protein compound low-fat high-fiber sausage forming mold has an effective sausage ejection and demolding structure inside the device, which makes it easy for operators to quickly remove the formed sausages inside, avoiding any impact on the device's performance and improving its production efficiency. At the same time, an effective one-way feeding structure inside the device prevents material from overflowing to the outside during the forming process, improving the device's stability and resulting in better performance. Specifically, as shown below:
[0021] 1. The first spring, in conjunction with the first guide rod, pushes the blocking plate and the first sealing ring connected to its rear side to move to the rear side, so that the blocking plate, in conjunction with the first sealing ring, blocks the feed inlet, preventing the material poured into the molding cavity and the high-temperature resistant pad from overflowing outward along the filling inlet and the feed inlet, thereby improving the effectiveness of the device.
[0022] 2. The limit block is pushed inward by the drive rod and the second guide rod, so that the limit block limits the upper mold in series. At this time, the sealed space formed by the upper mold and the molding cavity can effectively squeeze and shape the expanded material, and prevent the expanded material from being pushed out of the upper mold and affecting the shaping effect of the device.
[0023] 3. By pushing the upper part of the mold with the push plate, the ejector rod and the second sealing ring connected to the upper part are pushed to move upward. The ejector rod and the second sealing ring that move upward push to eject the sausage that has been formed inside the forming cavity. This makes it easier for the operator to collect the ejected sausage and prevents the formed sausage from sticking to the inside of the forming cavity and the high-temperature resistant pad. This improves the material discharge effect of the device and increases the efficiency of the device. Attached Figure Description
[0024] Figure 1 This is a frontal cross-sectional view of the present invention.
[0025] Figure 2 This is a side view sectional structural diagram of the present invention;
[0026] Figure 3 This utility model Figure 1 Enlarged structural diagram at point A in the middle;
[0027] Figure 4 This utility model Figure 2 Enlarged structural diagram at point B;
[0028] Figure 5 This is a schematic cross-sectional view of the connection between the ejector rod and the push plate of this utility model.
[0029] In the figure: 1, the lower mold; 2, forming cavity; 3, high-temperature pad; 4, filling inlet; 5, feed inlet; 6, blocking plate; 7, the first sealing rubber ring; 8, the first guide rod; 9, the first spring; 10, ejector rod; 11, the second sealing rubber ring; 12, push plate; 13, the second spring; 14, the upper mold; 15, steam flow channel; 16, the third sealing rubber ring; 17, limit block; 18, the second guide rod; 19, drive rod; 20, locking rod. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0031] Please refer to Figures 1-5 The utility model provides a kind of technical scheme: plant protein compound type low-fat high-fiber sausage forming mold, including lower mold 1, forming cavity 2, high-temperature pad 3, filling inlet 4, feed inlet 5, blocking plate 6, the first sealing rubber ring 7, the first guide rod 8, the first spring 9, ejector rod 10, the second sealing rubber ring 11, push plate 12, the second spring 13, the upper mold 14, steam flow channel 15, the third sealing rubber ring 16, limit block 17, the second guide rod 18, drive rod 19 and locking rod 20.
[0032] Specifically as Figure 1 , Figure 2 And Figure 4As shown, before the device is used, by connecting the feeding pipe to the rear end of the feeding port 5 arranged at the rear side of the lower mold 1, the material flowing inside the pipe flows to the inside of the device through the feeding port 5, at this time, the material pushes the blocking plate 6 and the first sealing rubber ring 7 to displace to the front end to extrude the first spring 9, and due to the sliding connection structure of the blocking plate 6 and the first guide rod 8, the blocking plate 6 is guided and limited by the first guide rod 8 during the displacement to the front end, so as to avoid the angle deviation of the blocking plate 6 during the displacement to the front end, at this time, the blocking plate 6 cooperates with the feeding port 5 to relax the blocking of the feeding port 5, so that the material flowing inside the pipe can be conveniently poured into the inside of the device through the feeding port 5 and the pouring port 4, and after the input of the material is completed, the pipe connected to the rear side of the feeding port 5 is pulled to the rear side, at this time, the blocking plate 6 and the first sealing rubber ring 7 lose the pushing of the material, so that the first spring 9 connected to the front end of the blocking plate 6 loses the pressure and generates the rebounding reaction force, at this time, the first spring 9 pushes the blocking plate 6 and the first sealing rubber ring 7 to displace to the rear side along the first guide rod 8 to block the feeding port 5, so that the material poured into the inside of the forming cavity 2 and the high-temperature-resistant pad 3 is not easy to overflow to the outside along the pouring port 4 and the feeding port 5, and the use effect of the device is improved.
[0033] Specifically as Figure 1 , Figure 3 and Figure 5As shown, before the device is used, by installing the upper mold 14 on the upper side of the lower mold 1, so that the upper mold 14 cooperates with the third sealing rubber ring 16 to shield the upper side opening of the forming cavity 2, at this time pull the locking rod 20 outward, and because of the engagement connection structure of the locking rod 20 and the driving rod 19, the outwardly displaced locking rod 20 releases the series limiting of the driving rod 19, facilitating the operator to rotate the driving rod 19 arranged on the left and right sides of the lower mold 1, at this time because of the threaded connection structure of the driving rod 19 and the limiting block 17, the driving rod 19 in the rotating process can effectively push the limiting block 17 connected on the inner side to displace inward, and because of the sliding connection structure of the limiting block 17 and the second guide rod 18, the limiting block 17 is guided and limited by the second guide rod 18 during the inward displacement, avoiding the position deviation of the limiting block 17 during the inward displacement driven by the driving rod 19, at this time because of the engagement connection structure of the limiting block 17 and the upper mold 14, the inwardly displaced limiting block 17 can effectively fix the upper mold 14 and the steam flow groove 15 on the upper side of the lower mold 1, at this time the device is placed in a steamer or other heating machine, at this time the rapidly flowing steam in the machine heats the device, so that the material stored in the device is affected by heat to expand and form, at this time the closed space formed by the upper mold 14 and the forming cavity 2 can effectively extrude and shape the expanded and formed material, so as to complete the rapid shaping work of the material and improve the processing effect of the device; at the same time after the use of the device is completed, the upper mold 14 is taken out upwardly, at this time the push plate 12 is pulled upwardly, and because of the sliding connection structure of the ejector rod 10 and the lower mold 1, the push plate 12 is guided and limited by the lower mold 1 during the upward displacement of the ejector rod 10 connected on the upper side, avoiding the outward deviation of the ejector rod 10 and the push plate 12 during the upward displacement extruding the second spring 13, at this time the second sealing rubber ring 11 of the upwardly displaced ejector rod 10 ejects the formed sausage in the forming cavity 2, facilitating the operator to collect and process the ejected sausage, avoiding the adhesion of the formed sausage in the forming cavity 2 and the high-temperature-resistant pad 3, improving the discharge treatment effect of the device and improving the use efficiency of the device.
[0034] The standard parts used in the utility model can be purchased from the market, and the special-shaped parts can be ordered according to the description and the drawings, and the specific connection mode of each part adopts the conventional means such as bolts, rivets and welding in the prior art, the machinery, parts and equipment adopt conventional models in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, which will not be described in detail here, and the contents not described in detail in the specification belong to the prior art known to the person skilled in the art.
[0035] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A plant protein restructured low-fat high-fiber sausage forming mold comprising: The lower mold (1) and the forming cavity (2) opened in the lower mold (1), the upper side of the forming cavity (2) is provided with an upper mold (14), and the inside of the forming cavity (2) is attached with a high-temperature-resistant pad (3); It is characterized by further comprising: The pouring inlet (4) is installed at the rear side of the forming cavity (2), and the rear side of the pouring inlet (4) is provided with a one-way intercepting assembly, the lower end of the forming cavity (2) is provided with an ejection rod (10), and the upper side of the ejection rod (10) is provided with a second sealing rubber ring (11), the lower end of the ejection rod (10) is connected with a push plate (12), and the upper side of the push plate (12) is connected with a second spring (13); The steam flow channel (15) is opened at the upper side of the upper mold (14), and the lower side of the upper mold (14) is provided with a third sealing rubber ring (16), and the outer side of the upper mold (14) is connected with a limiting assembly.
2. The plant protein reformed low fat high fibre sausage forming mould as claimed in claim 1, wherein: The ejection rod (10) is slidably connected with the lower mold (1), and the ejection rod (10) is arranged at equal intervals on the upper side of the push plate (12).
3. The plant protein reformed low fat high fiber sausage forming mold as claimed in claim 1, wherein: The second sealing rubber ring (11) is connected with the ejection rod (10).
4. The plant protein reformed low fat high fiber sausage forming mold as claimed in claim 1, wherein: The third sealing rubber ring (16) is connected with the upper mold (14), and the steam flow channel (15) is arranged at equal intervals on the upper side of the upper mold (14).
5. The plant protein reformed low fat high fiber sausage forming mold as claimed in claim 1 wherein: The one-way intercepting assembly comprises a blocking plate (6) installed at the rear side of the pouring inlet (4), and the outer side of the blocking plate (6) is connected with a first guide rod (8), the front end of the blocking plate (6) is provided with a first spring (9), and the rear side of the blocking plate (6) is provided with a first sealing rubber ring (7); The first sealing rubber ring (7) is connected with the blocking plate (6), and the blocking plate (6) is slidably connected with the first guide rod (8).
6. The plant protein reformed low fat high fiber sausage forming mold as claimed in claim 1 wherein: The limiting assembly comprises a limiting block (17) installed at the outer side of the upper mold (14), and the outer side of the limiting block (17) is connected with a second guide rod (18), the middle part of the limiting block (17) penetrates a driving rod (19), and the upper side of the driving rod (19) is connected with a locking rod (20); The limiting block (17) is connected with the upper mold (14), and the limiting block (17) is slidably connected with the second guide rod (18).
7. The vegetable protein reconstituted low fat high fibre sausage forming mould according to claim 6, characterized in that: The driving rod (19) is rotatably connected with the lower mold (1), and the driving rod (19) is threadedly connected with the limiting block (17).
8. The plant protein reformed low fat high fiber sausage forming mold as claimed in claim 6, wherein: The locking rod (20) is connected with the driving rod (19), and the driving rod (19) is symmetrically arranged about the center axis of the lower mold (1).
Citation Information
Patent Citations
Sausage forming die without coating
CN212787251U