A molding slurry device

By designing a detachable mold assembly and a thermo-pressed pulp forming device, the problems of low pulp forming efficiency and slow mold replacement were solved, achieving efficient pulp forming and equipment convenience.

CN119900198BActive Publication Date: 2026-03-10NINGBO CHANGYA NEW MATERIAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing pulp forming methods are inefficient, have poor compatibility, and require slow mold replacement, which affects production efficiency and equipment convenience.

Method used

Design a slurry forming device, comprising a detachable first mold assembly and a second mold assembly, combined with a hot pressing assembly, a hot air assembly and a contact assembly, to achieve rapid mold replacement and hot pressing curing, and to achieve efficient slurry forming through sliding linkage.

Benefits of technology

It improves the efficiency of pulp forming and the compatibility of equipment, facilitates mold replacement and maintenance, and enhances the linkage and production efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention provides a pulp forming apparatus, comprising: a main body; a liquid storage component having a first receiving space; the liquid storage component further having a pulp inlet and a pulp outlet; a first mold component disposed in the first receiving space, the first mold component having a first mold position; a second mold component detachably connected to the first mold component, the second mold component having a second mold position; a hot pressing component, the hot pressing component being slidable above the first receiving space to hot press the first receiving space; a touch component disposed at the end position on the sliding path of the hot pressing component; a hot air component, the hot air component being disposed between the first mold component and the second mold component, and the hot air component being signal-connected to the touch component, the hot air component being able to provide hot air; and a liquid level recognition component disposed in the first receiving space, and the liquid level recognition component being signal-connected to the hot pressing component. This invention improves the efficiency of pulp forming as well as the compatibility and convenience of the equipment.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of pulp blank forming, in particular to a forming pulp blank device. BACKGROUND

[0002] With the development of science and technology, different production equipment has gradually emerged. At present, people's life is gradually convenient, and different life products have gradually been developed. In the process of convenient life, paper lunch boxes are often used. Paper lunch boxes refer to the materials used to make paper lunch boxes, which are generally disposable paper lunch boxes. They are convenient to use, low in cost, and have been widely used in the catering industry. Because they are made of paper materials, they can be recycled, and can be treated by burying or burning, without causing serious environmental pollution, and have high environmental value. Among the methods for producing such lunch boxes, one step is to form a paper pulp lunch box. The current forming method is to deposit the paper pulp in the mold, wait for it to form, and then proceed to the next step. The current paper pulp forming is slow, affecting production efficiency, and the compatibility is not strong. When producing other sizes of paper boxes, the mold is slow to replace. SUMMARY

[0003] Therefore, the present application provides a forming pulp blank device, which improves the efficiency, compatibility and convenience of paper pulp forming.

[0004] To solve the above problems, the present application provides a forming pulp blank device, which comprises: a body; a liquid storage assembly provided in the body, and the liquid storage assembly is provided with a first containing space; the liquid storage assembly is also provided with a pulp inlet and a pulp outlet; a first mold assembly provided in the first containing space, the first mold assembly is provided with a first mold position; a second mold assembly, the second mold assembly is detachably connected to the first mold assembly, and the second mold assembly is provided with a second mold position, the second mold position and the first mold position correspond to different products; a hot pressing assembly, the hot pressing assembly is slidingly provided in the body, and the hot pressing assembly can slide above the first containing space to hot press the first containing space; a touch assembly provided at the end position of the sliding path of the hot pressing assembly; a hot air assembly provided in the first mold assembly and the second mold assembly, and the hot air assembly is signal connected to the touch assembly, and the hot air assembly can provide hot air; a liquid level recognition assembly provided in the first containing space, and the liquid level recognition assembly is signal connected to the hot pressing assembly.

[0005] Compared with the prior art, the technical effects achieved by the technical scheme are: by arranging the first mold assembly and the second mold assembly in the liquid storage assembly, and then arranging the first mold assembly and the second mold assembly in a detachable connection, the mold can be replaced more conveniently and quickly when needed subsequently; by arranging the hot-pressing assembly to hot-press the first containing space, i.e., the mold assembly, the pulp is more stably and firmly deposited and attached to the mold, so that the subsequent pulp blank is in a better state, facilitating the subsequent transfer and taking of the pulp blank, improving the efficiency of the pulp blank forming, and further improving the efficiency of the overall production process; by arranging the hot air assembly and the touch assembly, and arranging the touch assembly on the sliding path of the hot-pressing assembly, the touch assembly can be triggered by the sliding of the hot-pressing assembly, so that the hot air assembly can also be triggered according to the sliding of the hot-pressing assembly, the linkage of the overall equipment is better, and the hot air assembly can better heat and form the pulp blank, ensuring the forming efficiency and stability of the pulp blank, and facilitating the subsequent transfer of the pulp blank, thereby improving the production efficiency of the overall equipment.

[0006] In an example of the present application, the first mold assembly and the second mold assembly are the same in structure except that the first mold site and the second mold site are different in structure.

[0007] Compared with the prior art, the technical effects achieved by the technical scheme are: by arranging the first mold assembly and the second mold assembly to be the same in structure except that the two mold sites are different in structure, the production and casting are more convenient and quick, and the stacking and replacement are also more convenient and quick, and the same structure also facilitates subsequent maintenance and repair, thereby saving costs.

[0008] In an example of the present application, the first mold assembly further comprises: a carrier, a plurality of first mold sites are arranged on the carrier, and the plurality of first mold sites are arranged; a hot air assembly is arranged close to the plurality of first mold sites; a first matching part is arranged on the carrier; a first connecting part is arranged on the carrier, and the first connecting part and the first matching part are arranged correspondingly; and a first containing part is arranged on the carrier away from the plurality of first mold sites.

[0009] Compared with the prior art, the technical effects achieved by the technical scheme are: by arranging a plurality of first mold sites on the carrier, the carrier can form a plurality of pulp blanks at a time, improving the production efficiency; by arranging the first matching part and the first connecting part, and arranging them correspondingly on the first mold assembly and the second mold assembly, the stacking and replacement of the first mold assembly and the second mold assembly are more convenient and quick, the connecting structure is simpler, the replacement time is shortened during production, the connection failure is reduced, and the practicability of the equipment is improved; and by arranging the first containing part, the hot air assembly during stacking can be better accommodated, and the sealing effect between the whole is better.

[0010] In an example of the present application, the forming pulp blank device further comprises: defining the first mold assembly arranged above the second mold assembly as a first use state, in the first use state comprising: the first accommodating part arranged on the first mold assembly is used for cooperating with the hot air assembly arranged on the second mold assembly, so that the hot air assembly on the second mold assembly is accommodated by the first accommodating part; the first connecting part arranged on the first mold assembly is used for embedded cooperation with the first matching part arranged on the second mold assembly.

[0011] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: when the first mold assembly is stacked above the second mold assembly, the embedded cooperation of the first connecting part and the corresponding first matching part makes the connection between the first mold assembly and the second mold assembly more convenient and fast, and the embedded cooperation is also more stable, and the hot air assembly on the second mold assembly is accommodated by the first accommodating part, so that the hot air assembly can be better protected.

[0012] In an example of the present application, the hot air assembly further comprises: a housing, the housing is provided with a second accommodating space and a first opening; a first fixing table, the first fixing table is arranged in the second accommodating space; a hot air part, the hot air part is arranged in the first fixing table in an extendable and retractable manner, and the hot air part can at least partially extend out of the first opening; a sealing part, the sealing part is arranged in the first opening in a lifting manner.

[0013] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by arranging the first fixing table in the housing and arranging the hot air part in the first fixing table in an extendable and retractable manner, the hot air part can blow hot air to heat and stabilize the pulp blank, thereby ensuring the forming of the pulp blank, and the extendable and retractable arrangement can protect the hot air part inside the housing when the hot air part is not in use, so that the hot air part is not affected by external paper pulp and the use safety of the hot air part is ensured, and the lifting of the sealing part realizes the internal communication management, thereby improving the practicability of the equipment.

[0014] In an example of the present application, the hot air part further comprises: an extendable and retractable power member; a hot air gun, the hot air gun is connected to the extendable and retractable power member, and the extendable and retractable power member drives the hot air gun to extend and retract along the first fixing table; a rolling member, the rolling member is connected to the hot air gun, and the rolling member cooperates with the extendable and retractable power member to move the hot air gun.

[0015] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by arranging the extendable and retractable power member to connect the hot air gun, the hot air gun can better realize extension and retraction, thereby ensuring that the use of the hot air gun is more convenient, and by arranging the rolling member to connect the hot air gun, the hot air gun can move more smoothly and stably during extension and retraction, thereby ensuring that the air supply function of the hot air gun can be better realized.

[0016] In an example of the present application, the hot air assembly further comprises: a first groove is arranged between the first fixed table and the first opening, and the first groove is used in cooperation with the sealing part; and the first fixed table is arranged to be inclined towards the first groove.

[0017] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by arranging the first groove between the first fixed table and the first opening, the sealing part can better fall into the first groove at the bottom when being lifted, so that the sealing effect is better, the outside pulp cannot enter the inside of the shell, the safety of the internal hot air part can be better ensured, and after the hot air part extends out of the first opening, it can better align the pulp blank for heating, so that the molding of the pulp blank is faster and more stable, and the production efficiency is improved.

[0018] In an example of the present application, the hot pressing assembly further comprises: a first fixed frame; a guide rail arranged on the first fixed frame; a sliding hot pressing part arranged in sliding cooperation with the guide rail; and an energy supply part arranged on a side of the sliding hot pressing part away from the liquid storage assembly, the energy supply part being used to supply energy to the sliding hot pressing part to make the sliding hot pressing part perform hot pressing.

[0019] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by arranging the guide rail on the first fixed frame, and correspondingly arranging the sliding hot pressing part on the guide rail, the sliding of the sliding hot pressing part is more stable and smooth, and the energy supply part is further arranged to supply energy to the sliding hot pressing part, so that the sliding hot pressing part can better provide hot pressing and ensure the molding of the pulp blank.

[0020] In an example of the present application, the sliding hot pressing part comprises: a sliding member; and a plurality of hot pressing members arranged in an array and arranged in correspondence with the first mold position.

[0021] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: by arranging the plurality of hot pressing members in an array and in correspondence with the first mold position, each hot pressing member can better perform hot pressing on the pulp blank in each mold position, so that the hot pressing effect is better, the rapid molding of the pulp blank is ensured, and the overall efficiency of the device is improved.

[0022] After adopting the technical scheme of the present application, the following technical effects can be achieved:

[0023] (1) By setting the first mold assembly and the second mold assembly in the liquid storage assembly, and by detachably connecting the first mold assembly and the second mold assembly, it is more convenient and quick to replace the mold in the future. At the same time, by setting the hot pressing assembly to hot press the first accommodating space, i.e. the mold assembly, the pulp sedimentation adheres to the mold more stably and firmly, which makes the subsequent formed pulp blank state better, which facilitates the subsequent transfer and picking of the pulp blank, improves the efficiency of pulp blank forming, and thus improves the efficiency of the overall production process. At the same time, by setting the hot air assembly and the touch assembly, and setting the touch assembly on the sliding path of the hot pressing assembly, the touch assembly can be triggered by the sliding of the hot pressing assembly, which in turn allows the hot air assembly to be triggered according to the sliding of the hot pressing assembly, making the linkage of the overall equipment better, which allows the hot air assembly to heat and form the pulp blank better, ensuring the forming efficiency and forming stability of the pulp blank, which facilitates the subsequent transfer of the pulp blank, and improves the overall production efficiency of the equipment.

[0024] (2) By setting multiple first mold positions on the carrier, the carrier can form multiple slurry blanks at one time, thereby improving production efficiency. At the same time, the first mating part and the first connecting part are set. Through the corresponding setting on the first mold assembly and the second mold assembly, it is more convenient and faster to stack and replace the first mold assembly and the second mold assembly. At the same time, the connection structure is simpler, which can shorten the replacement time during production and reduce connection failures, thereby improving the practicality of the equipment. At the same time, the first receiving part is set, which can better accommodate the hot air assembly during subsequent stacking, thereby making the sealing effect between the whole is better.

[0025] (3) By setting up a telescopic power component to connect the hot air gun, the hot air gun can be better extended and extended, ensuring that the hot air gun is more convenient to use. At the same time, a rolling component is set up to connect the hot air gun, making the hot air gun smoother and more stable during the extension and retraction process, ensuring that the air supply function of the hot air gun can be better realized. Attached Figure Description

[0026] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings to be used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0027] Figure 1 This is one of the structural schematic diagrams of a molding slurry device provided in an embodiment of the present invention;

[0028] Figure 2 This is a second schematic diagram of a molding slurry device provided in an embodiment of the present invention;

[0029] Figure 3 This is one of the partial structural schematic diagrams of a molding slurry device provided in an embodiment of the present invention;

[0030] Figure 4 This is a second partial structural schematic diagram of a molding slurry device provided in an embodiment of the present invention;

[0031] Figure 5 This is a third partial structural schematic diagram of a molding slurry device provided in an embodiment of the present invention;

[0032] Figure 6 This is the fourth partial structural schematic diagram of a molding slurry device provided in an embodiment of the present invention.

[0033] Explanation of reference numerals in the attached figures:

[0034] 100. Slurry forming device; 110. Body; 120. Liquid storage assembly; 121. First receiving space; 122. Slurry outlet; 123. Slurry inlet; 130. First mold assembly; 131. First mold position; 132. Carrier; 133. First mating part; 134. First connecting part; 135. First receiving part; 140. Hot pressing assembly; 141. First fixing frame; 142. Guide rail; 143. Sliding part; 144. Hot pressing part; 145. Power supply part; 150. Contact assembly; 160. Hot air assembly; 161. Housing; 162. First opening; 163. First fixing platform; 164. Hot air part; 165. Sealing part; 166. Telescopic power part; 167. Hot air gun; 168. Rolling part; 169. First groove. Detailed Implementation

[0035] To make the above-mentioned objectives, features, and advantages of the present invention more apparent and understandable, the technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0036] [First Embodiment]

[0037] See Figures 1-6This invention provides a slurry forming device 100, comprising: a body 110; a liquid storage assembly 120 disposed on the body 110 and having a first receiving space 121; the liquid storage assembly 120 also having a slurry inlet 123 and a slurry outlet 122; a first mold assembly 130 disposed on the first receiving space 121 and having a first mold position 131; and a second mold assembly detachably connected to the first mold assembly 130 and having a second mold position, the second mold position corresponding to the first mold position 131. The products are different; a hot pressing component 140 is slidably disposed on the body 110 and can slide above the first receiving space 121 to perform hot pressing on the first receiving space 121; a touch component 150 is disposed at the end position on the sliding path of the hot pressing component 140; a hot air component 160 is disposed on the first mold component 130 and the second mold component, and the hot air component 160 is signal-connected to the touch component 150 and can provide hot air; and a liquid level recognition component is disposed on the first receiving space 121 and is signal-connected to the hot pressing component 140.

[0038] Specifically, in actual use, the first step is to confirm the required mold size to select the corresponding mold, and multiple molds can be installed. In addition to the first mold assembly 130 and the second mold assembly, there can also be a third mold assembly and a fourth mold assembly, etc. Except for the corresponding mold position size, the rest of the structure can be the same, which facilitates installation and stacking.

[0039] Specifically, after selecting the appropriate mold size, the mold is installed. For example, if the first mold component 130 is selected as the required mold, it is stacked on top of the second mold component. This process is repeated for multiple mold components. The first receiving portion 135 of the first mold component 130 is aligned with the corresponding hot air component 160 on the second mold component, and the first connecting portion 134 on the first mold component 130 is aligned with the corresponding first mating portion 133 on the second mold component. The mold is then inserted to complete the installation.

[0040] Furthermore, the external slurry storage device and absorber are connected to the slurry inlet 123 and the slurry outlet 122 respectively, thereby realizing the flow of slurry. The slurry can be drawn out by negative pressure, and the slurry is drawn out from the liquid storage component 120.

[0041] Further, when slurry blank forming is required, first, the slurry is introduced into the liquid storage component 120 until the slurry reaches the height of the liquid level recognition component. When the liquid level recognition component recognizes that the slurry height meets the standard, the hot pressing component 140 is controlled to start through signal connection. The sliding part 143 in the hot pressing component 140 starts. The sliding between the sliding part 143 and the guide rail 142 can be realized by a motor cooperating with rollers. Program control and signal control are achieved through the motor cooperating with rollers, thereby realizing linkage. The sliding part 143 starts sliding from the initial position, i.e., the end of the guide rail 142 far from the touch component 150, until it slides above the liquid storage component 120. The corresponding position control can be point control by the program according to the distance of the guide rail 142 or identification and positioning by correspondingly setting infrared recognition devices on the sliding part 143 and the first mold component 130. The positioning recognition standard is that multiple hot pressing parts 144 are aligned with multiple mold positions. Among them, the principle of the hot pressing part 144 is to compress hot air and then release hot air, so that the hot air is aligned with the mold position for pressurization, and the slurry is attached to the mold position to achieve preliminary forming.

[0042] Further, after it is recognized that the hot pressing part 144 has completed starting, the slurry is sucked out of the liquid storage component 120, and at the same time, the sliding part 143 starts until the sliding part 143 triggers the touch component 150 arranged on the guide rail 142. The touch component 150 can be a touch switch and is signal-connected to the hot air component 160. After receiving the signal, the hot air component 160 starts, and the telescopic power part 166 starts. The telescopic power part 166 can be a cylinder. After receiving the instruction, the cylinder pushes the hot air gun 167 along the first fixed platform 163. At the same time, the sealing part 165 starts to lift and lower, opening the first opening 162, so that the hot air gun 167 can extend out of the first opening 162. After the cylinder extends and retracts to the specified position, the hot air gun 167 starts to blow air, and the blowing time is defined. The blowing time is adjusted according to the actual situation. After reaching the blowing time, the cylinder retracts until it returns to the initial position. Then, the sealing part 165 starts to lower, closing the first opening 162, and thus one-time slurry blank forming is completed. Among them, all components of the hot air component 160 are waterproof-treated.

[0043] Preferably, by setting the first mold assembly 130 and the second mold assembly within the liquid storage assembly 120, and through the detachable connection between the first mold assembly 130 and the second mold assembly, it is more convenient and quick to change the mold when needed. Simultaneously, by setting the hot-pressing assembly 140 to hot-press the first receiving space 121, i.e., the mold assembly, the pulp sediment adheres more stably and firmly to the mold, resulting in a better state of the subsequently formed pulp blank. This facilitates the subsequent transfer and handling of the pulp blank, improving the efficiency of pulp blank forming and thus enhancing the overall production process efficiency. Furthermore, by setting up a hot air assembly 160 and a touch assembly 150, with the touch assembly 150 positioned on the sliding path of the hot press assembly 140, the touch assembly 150 can be triggered by the sliding of the hot press assembly 140. Consequently, the hot air assembly 160 can also be triggered based on the sliding of the hot press assembly 140, resulting in better overall equipment linkage. This allows the hot air assembly 160 to better heat and shape the slurry blank, ensuring the forming efficiency and stability of the slurry blank, and facilitating subsequent transfer of the slurry blank, thereby improving the overall production efficiency of the equipment.

[0044] Specifically, the first mold assembly 130 and the second mold assembly are identical in structure except for the first mold position 131 and the second mold position.

[0045] Preferably, by setting the first mold assembly 130 and the second mold assembly to have the same structure except for the two mold positions, it is more convenient and faster to produce castings. It is also more convenient and faster to stack and replace them. At the same time, the same structure can also facilitate subsequent maintenance and repair, thereby saving costs.

[0046] Specifically, the first mold assembly 130 further includes: a carrier 132, on which a plurality of first mold positions 131 are provided and arranged in a plurality of first mold positions 131; a hot air assembly 160 disposed near the plurality of first mold positions 131; a first mating part 133 disposed on the carrier 132; a first connecting part 134 disposed on the carrier 132 and the first connecting part 134 and the first mating part 133 are correspondingly disposed; and a first receiving part 135 disposed on the side of the carrier 132 away from the plurality of first mold positions 131.

[0047] Preferably, by providing multiple first mold positions 131 on the carrier 132, the carrier 132 can form multiple slurry blanks at one time, thereby improving production efficiency. At the same time, by providing a first mating part 133 and a first connecting part 134, the corresponding arrangement on the first mold assembly 130 and the second mold assembly makes it more convenient and faster to stack and replace the first mold assembly 130 and the second mold assembly. The connection structure is also simpler, which can shorten the replacement time during production and reduce connection failures, thereby improving the practicality of the equipment. In addition, by providing a first receiving part 135, it can better accommodate the hot air assembly 160 during subsequent stacking, thereby improving the sealing effect between the whole.

[0048] Specifically, the molding slurry device 100 further includes: defining a first use state when the first mold assembly 130 is disposed above the second mold assembly, the first use state including: a first receiving portion 135 disposed on the first mold assembly 130 is used to cooperate with a hot air assembly 160 disposed on the second mold assembly, such that the hot air assembly 160 on the second mold assembly is received by the first receiving portion 135; a first connecting portion 134 disposed on the first mold assembly 130 is used to engage with a first mating portion 133 disposed on the second mold assembly.

[0049] Preferably, when the first mold assembly 130 is stacked on top of the second mold assembly, the first connecting part 134 and the corresponding first mating part 133 are embedded and engaged, making the connection between the first mold assembly 130 and the second mold assembly more convenient and quick, and the fixing of the embedded engagement is more stable. At the same time, the hot air assembly 160 on the second mold assembly is accommodated by the first receiving part 135, so that the hot air assembly 160 can be better protected.

[0050] Specifically, the hot air assembly 160 further includes: a housing 161, which has a second receiving space and a first opening 162; a first fixing platform 163, which is disposed in the second receiving space; a hot air section 164, which is telescopically disposed on the first fixing platform 163 and at least partially extends out of the first opening 162; and a sealing section 165, which is vertically disposed at the first opening 162.

[0051] Preferably, by providing a first fixed platform 163 inside the housing 161, and extending and retracting a hot air section 164 on the first fixed platform 163, the extension and retraction of the hot air section 164 allows the hot air blown out by the hot air section 164 to heat and stabilize the pulp blank, ensuring the formation of the pulp blank. At the same time, the extension and retraction allows the hot air section 164 to be protected inside the housing 161 when not in use, preventing it from being affected by external pulp and ensuring the safe use of the hot air section 164. In addition, the lifting and lowering of the sealing section 165 enables internal communication management, improving the practicality of the equipment.

[0052] Specifically, the hot air unit 164 also includes: a telescopic power member 166; a hot air gun 167, which is connected to the telescopic power member 166 and the telescopic power member 166 drives the hot air gun 167 to extend and retract along the first fixed platform 163; and a rolling member 168, which is connected to the hot air gun 167 and the rolling member 168 cooperates with the telescopic power member 166 to move the hot air gun 167.

[0053] Preferably, by setting the telescopic power component 166 to connect the hot air gun 167, the hot air gun 167 can better achieve telescopic movement, ensuring that the hot air gun 167 is more convenient to use. At the same time, by setting the rolling component 168 to connect the hot air gun 167, the hot air gun 167 can move more smoothly and more stably during telescopic movement, ensuring that the air supply function of the hot air gun 167 can be better realized.

[0054] Specifically, the hot air assembly 160 also includes: a first groove 169 is provided between the first fixed platform 163 and the first opening 162, the first groove 169 is used to cooperate with the sealing part 165; the first fixed platform 163 is inclined toward the first groove 169.

[0055] Preferably, by providing a first groove 169 between the first fixed platform 163 and the first opening 162, the sealing part 165 can better fall into the first groove 169 at the bottom when it is raised and lowered, thereby improving the sealing effect and ensuring that the external pulp will not enter the interior of the housing 161, thus better protecting the safety of the internal hot air part 164. At the same time, by tilting the first fixed platform 163, the hot air part 164 can better align with the pulp blank for heating after extending out of the first opening 162, thereby making the pulp blank form faster and more stable and improving production efficiency.

[0056] Specifically, the hot pressing assembly 140 further includes: a first fixed frame 141; a guide rail 142, the guide rail 142 being disposed on the first fixed frame 141; a sliding hot pressing part, the sliding hot pressing part slidingly engaging with the guide rail 142; and an energy supply part 145, the energy supply part 145 being disposed on the side of the sliding hot pressing part away from the liquid storage assembly 120, the energy supply part 145 being used to supply energy to the sliding hot pressing part, so that the sliding hot pressing part performs hot pressing.

[0057] Preferably, by setting a guide rail 142 on the first fixed frame 141, and then setting a sliding hot pressing part on the guide rail 142, the sliding of the sliding hot pressing part is more stable and smooth. At the same time, an energy supply part 145 is also set to supply energy to the sliding hot pressing part, so that it can better provide hot pressing and ensure the molding of the slurry blank.

[0058] Specifically, the sliding hot pressing part includes: a sliding member 143; a plurality of hot pressing members 144, which are arranged in a row and are correspondingly arranged with the first mold position 131.

[0059] Preferably, by arranging multiple hot pressing components 144 and corresponding to the first mold position 131, each hot pressing component 144 can better hot press the slurry blank in each mold position, resulting in a better hot pressing effect, ensuring rapid molding of the slurry blank, and improving the overall efficiency of the device.

[0060] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. A forming pulp blank apparatus, characterized in that, The forming slurry blank device comprises: a body (110); a liquid storage assembly (120) arranged on the body (110) and provided with a first accommodating space (121); the liquid storage assembly (120) is further provided with a slurry inlet (123) and a slurry outlet (122); a first mold assembly (130) arranged in the first accommodating space (121) and provided with a first mold site (131); a second mold assembly detachably connected to the first mold assembly (130) and provided with a second mold site, the second mold site corresponding to a product different from the first mold site (131); a hot-pressing assembly (140) slidingly arranged on the body (110) and capable of sliding above the first accommodating space (121) to perform hot-pressing on the first accommodating space (121); a touch assembly (150) arranged at an end position on a sliding path of the hot-pressing assembly (140); a hot air assembly (160) arranged on the first mold assembly (130) and the second mold assembly and signal-connected to the touch assembly (150), the hot air assembly (160) being capable of providing hot air; a liquid level recognition assembly arranged in the first accommodating space (121) and signal-connected to the hot-pressing assembly (140); the first mold assembly (130) further comprises: a carrier (132) provided with a plurality of first mold sites (131) arranged thereon; the hot air assembly (160) is arranged close to the plurality of first mold sites (131); a first accommodating portion (135) arranged on a side of the carrier (132) away from the plurality of first mold sites (131); the forming slurry blank device further comprises: a first use state defined when the first mold assembly (130) is arranged above the second mold assembly, in the first use state comprising: the first accommodating portion (135) arranged on the first mold assembly (130) is used to cooperate with the hot air assembly (160) arranged on the second mold assembly, so that the hot air assembly (160) on the second mold assembly is accommodated by the first accommodating portion (135); the hot air assembly (160) further comprises: a housing (161) provided with a second accommodating space and a first opening (162); a first fixing table (163) arranged in the second accommodating space; a hot air portion (164) telescopically arranged in the first fixing table (163) and capable of at least partially extending out of the first opening (162); A sealing part (165) is arranged on the first opening (162) in a lifting manner; The hot air part (164) further comprises a telescopic power member (166), a hot air gun (167) and a rolling member (168); A first groove (169) is arranged between the first fixed table (163) and the first opening (162), and is used for cooperating with the sealing part (165); The first fixed table (163) is arranged in a slanting manner towards the first groove (169).

2. A shaped slurry blank apparatus according to claim 1, wherein, The first mold assembly (130) and the second mold assembly are identical in structure except that the first mold site (131) and the second mold site structure are different.

3. A shaped slurry blank apparatus according to claim 2, wherein, The first mold assembly (130) further comprises: A first matching part (133) is arranged on the carrier (132); A first connecting part (134) is arranged on the carrier (132), and the first connecting part (134) and the first matching part (133) are arranged in a corresponding manner.

4. The forming blank device according to claim 3, wherein The first connecting part (134) arranged on the first mold assembly (130) is used for being embedded and matched with the first matching part (133) arranged on the second mold assembly.

5. The forming blank device according to claim 1, wherein The hot air gun (167) is connected with the telescopic power member (166), and the telescopic power member (166) drives the hot air gun (167) to extend and retract along the first fixed table (163); The rolling member (168) is connected with the hot air gun (167), and the rolling member (168) cooperates with the telescopic power member (166) to move the hot air gun (167).

6. The shaped slurry blank apparatus of claim 1, wherein, The hot pressing assembly (140) further comprises: A first fixed frame (141); A guide rail (142) is arranged on the first fixed frame (141); A sliding hot pressing part is arranged in a sliding manner with the guide rail (142); An energy supply part (145) is arranged on one side of the sliding hot pressing part away from the liquid storage assembly (120), and is used for supplying energy to the sliding hot pressing part to make the sliding hot pressing part perform hot pressing.

7. A shaped slurry blank apparatus according to claim 6, wherein, The sliding hot pressing part comprises: A sliding member (143); A plurality of hot pressing members (144) are arranged in an array manner, and the plurality of hot pressing members (144) are arranged in a corresponding manner with the first mold site (131).

Citation Information

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