Press molding device for ship composite thermal insulation material production

By designing a floating lint collection device and a template adjustment plate for pressing and molding, the problems of the impact of floating matter on health and the limited molding specifications of flexible composite insulation materials during the pressing process were solved. This enabled multi-shape pressing and the collection of floating matter, improving production safety and flexibility.

CN118636561BActive Publication Date: 2026-03-17WUHU DEMING NEW MATERIAL TECH DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-21
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

In existing ship composite insulation material production equipment, during the pressing and molding process, floating materials such as glass fibers of flexible composite insulation material float in the air, affecting the health of workers. Furthermore, the pressing and molding specifications are limited and cannot meet the needs of different shapes.

Method used

A pressing and molding device including a floating lint collection device and a template adjustment plate was designed. The device collects floating objects through an adsorption head and an adsorption conveyor belt, and uses a rotating gear and a flip crank to quickly change the template, thereby achieving pressing and molding of different shapes.

Benefits of technology

It effectively collects the glass fibers floating during the pressing process, protecting the health of workers, and can adapt to the pressing needs of different shapes, improving production flexibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a pressing forming device for ship composite thermal insulation material production, which comprises an equipment support frame, a floating fiber collecting device is mounted on the surface of the equipment support frame, a finished product discharge box is fixedly connected to the top surface of the equipment support frame, a finished product discharge belt is arranged on the inner surface of the finished product discharge box, a material conveying box is arranged on the upper surface of the finished product discharge box, a winding roller is arranged on one end surface of the material conveying box, a forming box is arranged on the upper surface of the material conveying box, a template adjusting disc is arranged on one side surface of the forming box, a pressing mechanism is arranged in the forming box, and a limiting slide rod is movably connected to the upper surface of the forming box, so as to solve the problem that the glass silk and other floating matters in the composite thermal insulation material float in the air when they are broken during the pressing forming of the flexible composite thermal insulation material due to the material quality of the composite thermal insulation material.
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Description

Technical Field

[0001] This invention mainly relates to the field of thermal insulation material production technology, specifically to a pressing and molding device for the production of marine composite thermal insulation materials. Background Technology

[0002] Currently, there are many types of thermal insulation materials, including traditional thermal insulation materials such as fiberglass composites, asbestos composites and other silicate composites, and new thermal insulation materials such as solution aerogel felt and vacuum panels. Ships, due to their long-term need to sail on the water, require thermal insulation materials to be bonded to the cabins for insulation. Existing ship composite thermal insulation materials require molding of composite thermal insulation raw materials of different shapes during the production process.

[0003] In the invention patent application CN202221348778.8, filed on May 31, 2022, entitled "A Fabric Cutting Machine", a frame is included. The frame is equipped with a cutting mechanism for cutting fabric. The cutting mechanism includes a support plate, a die, and a pressure head. The support plate is horizontally arranged on the frame, and the pressure head is arranged above the support plate. The pressure head can move in a direction close to or away from the support plate. The die is located between the support plate and the pressure head for cutting the fabric. The support plate is provided with several sets of positioning components for positioning the stacked fabric. The several sets of positioning components are arranged around the periphery of the fabric. By setting a fixing component, when the positioning block slides to abut against the edge of the fabric, the fixing component fixes the positioning block on the support plate. During the fabric cutting process, multiple neatly stacked fabrics are difficult to move relative to each other, thereby improving the cutting quality of the fabric.

[0004] During the operation of specific embodiments, the inventors discovered the following defects: the device can only press and shape fabrics, but when pressing and shaping flexible composite insulation materials, due to the material of the composite insulation materials, floating objects such as glass fibers in the composite insulation materials will float in the air when broken, which will affect the health of the workers. In addition, the pressing and shaping equipment has a single pressing style and molding specification, and can only press and shape fixed shapes. Summary of the Invention

[0005] 1. The technical problem that the invention aims to solve:

[0006] The present invention provides a pressing and molding device for the production of ship composite insulation materials, which solves the problem that the above-mentioned background technology can only press and mold fabrics. However, when pressing and molding flexible composite insulation materials, due to the material of the composite insulation materials, floating objects such as glass fibers in the composite insulation materials will float in the air when they break, which will affect the health of the workers. In addition, the pressing and molding equipment has a limited pressing style and molding specifications, and can only press and mold fixed shapes.

[0007] 2. Technical Solution:

[0008] To achieve the above objectives, the technical solution provided by the present invention is as follows: It includes an equipment support frame, a lint collection device installed on the surface of the equipment support frame, a finished product discharge box fixedly connected to the top surface of the equipment support frame, a finished product discharge belt provided on the inner surface of the finished product discharge box, a material transport box provided on the upper surface of the finished product discharge box, a winding roller provided on one end surface of the material transport box, a forming box provided on the upper surface of the material transport box, a template adjustment plate provided on one side surface of the forming box, a pressing mechanism provided inside the forming box, and a limit sliding rod movably connected above the template adjustment plate to the surface of the forming box.

[0009] Furthermore, the lint collection device is connected to the lower end of the finished product discharge box and the upper end of the material transport box, and a trough for pressing is provided between the finished product discharge box and the material transport box.

[0010] Furthermore, the fluff collection device includes a collection box located at the bottom of the finished product discharge box. A transport chute is provided on one side of the collection box, and a fluff accumulation box is provided on the other side of the transport chute. A collection funnel is provided on the top surface of the fluff accumulation box. An adsorption conveyor belt is provided inside the collection box, and rubber hooks are provided on the surface of the adsorption conveyor belt. A discharge hook is provided at one end of the transport chute inside the finished product discharge box. A transmission pipe is fixedly connected to the other side of the collection box, and an adsorption head is installed on one end of the transmission pipe. An exhaust fan is provided on one side of the collection box.

[0011] Furthermore, a drive motor is provided on one side of the collection box, the adsorption conveyor belt and the drive motor form a transmission structure, and the rubber hook forms a rotating and moving structure inside the collection box through the adsorption conveyor belt. The surface of the exhaust fan is provided with ventilation ducts, which are respectively connected to the collection box and the lint accumulation box. The adsorption head is installed inside the finished product discharge box and the material transport box, and the collection funnel is set inside the finished product discharge box.

[0012] Furthermore, the template adjustment plate includes an outer end plate, an adjustment motor is provided on the lower surface of the outer end plate, a rotating gear is provided on the upper surface of the outer end plate, a rotating disk is drivenly connected to the upper end of the rotating gear, a flipping crank is movably connected to the surface of the rotating disk, a torque spring is sleeved and connected to the connection between the flipping crank and the rotating disk, a shrinking groove is provided on the surrounding surface of the rotating disk, a push-and-unfold rod is provided on the upper surface of the flipping crank, a pressing template is provided on the inner surface of the flipping crank, and a pressing blade is provided on the upper surface of the pressing template.

[0013] Furthermore, a transmission gear is provided on one side of the adjusting motor, and the rotating gear meshes with the transmission gear to form a transmission structure. The rotating disk forms a transmission structure with the adjusting motor through the rotating gear, and forms a rotating structure on the surface of the outer end plate. The flipping crank and the pressing template form a rotating structure inside the finished product discharge box through the rotating disk. The flipping crank and the pressing template form an elastic structure on the surface of the rotating disk through a torque spring. The flipping crank unfolds on the surface of the rotating disk under the push of the limiting slide rod through its surface push unfolding rod. Several pressing templates are provided on the surface of the rotating disk, and pressing templates of different shapes can be replaced according to requirements.

[0014] Furthermore, the pressing mechanism includes a telescopic hydraulic cylinder disposed inside the forming box, a pressing block being movably connected to the lower end surface of the telescopic hydraulic cylinder, material rollers being disposed inside the material transport box, a template adjustment window being disposed on one side surface of the finished product discharge box, a fixed base being disposed inside the finished product discharge box, and a sliding groove being disposed on the surface of the fixed base.

[0015] Furthermore, the rotating crank and pressing template on the surface of the rotary disk are positioned between the pressing block and the fixed base through the template adjustment window. A finished product discharge belt is provided below the sliding groove. The pressing block forms a lifting structure inside the forming box through a telescopic hydraulic cylinder.

[0016] 3. Beneficial effects:

[0017] Compared with the prior art, the technical solution provided by this invention has the following advantages:

[0018] This invention is rationally designed. During the pressing and molding process for producing composite insulation materials for ships, the raw insulation material is installed onto the surface of the take-up roller via the finished product discharge box. The take-up roller moves the raw material inside the finished product discharge box. Simultaneously, the adjusting motor in the template adjusting plate is activated, causing the adjusting motor to drive the rotating gear and rotating plate to rotate on the outer end plate surface. This drives the flipping crank into the template adjusting window, inserting the limiting slide rod into the molding box. The limiting slide rod contacts the pushing unfolding rod on the surface of the flipping crank. The rotation of the rotating plate causes the flipping crank and the pressing template to extend from the shrinkage groove and unfold between the fixed base and the pressing block, providing a shape template for pressing the composite insulation material. When different shapes of the composite insulation material are needed, the limiting slide rod is pulled out, and the flipping crank and pressing template retract into the shrinkage groove under the action of the torque spring. Finally, the adjusting motor is activated to rotate the rotating plate, causing the flipping crank at one end of the pressing template of different shapes to enter the template adjusting window, achieving the purpose of pressing and molding different shapes.

[0019] During the pressing and molding process, the telescopic hydraulic cylinder inside the molding box is activated. The telescopic hydraulic cylinder moves the pressing block downwards, pressing the raw insulation material onto the surface of the pressing template. The pressing blades on the surface of the pressing template then cut and press the raw insulation material. Finally, the formed raw insulation material slides down the sliding groove on the surface of the fixed base onto the surface of the finished product discharge belt, which carries it out of the finished product discharge box.

[0020] During the pressing and molding process, the exhaust fan and drive motor are started. The exhaust fan sucks up the floating objects from the broken ends of the pressed insulation material raw materials through the collection box, transmission pipe, and suction head, absorbing the floating objects into the collection box and adsorbing them onto the surface of the conveyor belt. Rubber hooks on the conveyor belt surface prevent the floating objects from overflowing inside the collection box. Finally, the floating objects are scraped off the surface of the conveyor slide by the material discharge hook at one end of the conveyor slide and then slide into the collection box. At the same time, the collection funnel at the top of the collection box adsorbs the glass filaments that are broken during the pressing and molding process and puts them into the collection box. This avoids the situation where glass filaments and other floating objects in the composite insulation material float in the air when they break, which could affect the health of the workers. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the structure of the present invention;

[0022] Figure 2 This is a schematic diagram of the fluff collection device of the present invention.

[0023] Figure 3 This is a three-dimensional structural diagram of the template adjustment disc of the present invention;

[0024] Figure 4This is a three-dimensional schematic diagram of the template adjustment disc of the present invention;

[0025] Figure 5 This is a top view of the template adjustment disc of the present invention;

[0026] Figure 6 This is a three-dimensional schematic diagram of the shrinkage groove of the present invention;

[0027] Figure 7 This is a planar schematic diagram of the pressing mechanism of the present invention.

[0028] Figure label:

[0029] 1. Equipment support frame; 2. Fluff collection device; 201. Collection box; 202. Conveyor chute; 203. Fluff accumulation box; 204. Collection funnel; 205. Adsorption conveyor belt; 206. Rubber hook; 207. Discharge hook; 208. Transmission pipe; 209. Adsorption head; 210. Exhaust fan; 3. Finished product discharge box; 4. Finished product discharge belt; 5. Material transport box; 6. Rewinding roller; 7. Forming box; 8. Template adjustment plate; 801. 802. Outer end plate; 803. Adjusting motor; 804. Rotating gear; 805. Rotating disk; 806. Tilting crank; 807. Contraction groove; 808. Pushing and unfolding rod; 809. Pressing template; 810. Pressing blade; 9. Pressing mechanism; 901. Telescopic cylinder; 902. Pressing block; 903. Material roller; 904. Template adjustment window; 905. Fixed base; 906. Slide groove; 10. Limiting slide bar. Detailed Implementation

[0030] To facilitate understanding of the present invention, a more complete description of the invention will be given below with reference to the accompanying drawings, which illustrate several embodiments of the invention. However, the invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that the disclosure of the invention will be more thorough and complete.

[0031] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "page," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0032] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.

[0033] In this invention, unless otherwise explicitly specified and limited, the terms "installed," "connected," "linked," "fixed," and "equipped" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances. Example

[0034] See attached document Figure 1-7 The device includes an equipment support frame 1, a lint collection device 2 mounted on the surface of the equipment support frame 1, a finished product discharge box 3 fixedly connected to the top surface of the equipment support frame 1, a finished product discharge belt 4 provided on the inner surface of the finished product discharge box 3, a material transport box 5 provided on the upper surface of the finished product discharge box 3, a winding roller 6 provided on one end surface of the material transport box 5, a forming box 7 provided on the upper surface of the material transport box 5, a template adjustment plate 8 provided on one side surface of the forming box 7, a pressing mechanism 9 provided inside the forming box 7, a limiting slide rod 10 movably connected above the template adjustment plate 8 to the surface of the forming box 7, the lint collection device 2 being connected to the lower end of the finished product discharge box 3 and the upper end of the material transport box 5 respectively, and a trough for pressing being provided between the finished product discharge box 3 and the material transport box 5. This device collects floating objects such as glass fibers generated during the pressing process through the lint collection device 2, and quickly adjusts and replaces pressing templates 809 of different shapes through the template adjustment plate 8, thus achieving the purpose of pressing and forming different shapes.

[0035] The fluff collection device 2 includes a collection box 201 located at the bottom of the finished product discharge box 3. A transport chute 202 is provided on one side of the collection box 201, and a fluff accumulation box 203 is provided on the other side of the transport chute 202. A collection funnel 204 is provided on the top surface of the fluff accumulation box 203. An adsorption conveyor belt 205 is provided inside the collection box 201, and rubber hooks 206 are provided on the surface of the adsorption conveyor belt 205. A discharge hook 207 is provided at one end of the transport chute 202 inside the finished product discharge box 3. A transmission pipe 208 is fixedly connected to the other side of the collection box 201. An adsorption head 209 is installed on one end of the surface of the 08. An exhaust fan 210 is provided on one side of the surface of the collection box 201. A drive motor is provided on one side of the collection box 201. The adsorption conveyor belt 205 and the drive motor form a transmission structure. The rubber hook 206 forms a rotating and moving structure inside the collection box 201 through the adsorption conveyor belt 205. The surface of the exhaust fan 210 is provided with ventilation ducts, which are respectively connected to the collection box 201 and the lint accumulation box 203. The adsorption head 209 is installed inside the finished product discharge box 3 and the material transport box 5. The collection funnel 204 is set inside the finished product discharge box 3.

[0036] In this embodiment, during the pressing and molding process, the exhaust fan 210 and the drive motor are started. The exhaust fan, on the one hand, uses the collection box 201, the transmission pipe 208, and the adsorption head 209 to suction the floating objects from the broken ends of the pressed insulation material raw materials, absorbing the floating objects into the collection box 201 and adsorbing them onto the surface of the conveyor belt 205. The rubber hooks 206 on the surface of the conveyor belt 205 prevent the floating objects inside the collection box 201 from overflowing. Finally, the material is scraped off the surface of the conveyor chute 202 by the material discharge hook 207 at one end of the conveyor chute 202 and then slides into the collection box 201. At the same time, the collection funnel 204 at the upper end of the collection box 201 adsorbs the glass filaments that are broken during the pressing and molding process and puts them into the collection box 201. This avoids the situation where glass filaments and other floating objects in the composite insulation material float in the air when they break, which could affect the health of the workers.

[0037] The template adjustment plate 8 includes an outer end plate 801. An adjustment motor 802 is mounted on the lower surface of the outer end plate 801. A rotating gear 803 is mounted on the upper surface of the outer end plate 801. A rotating disk 804 is connected to the upper end of the rotating gear 803. A rotating crank 805 is movably connected to the surface of the rotating disk 804. A torque spring 806 is sleeved at the connection between the rotating crank 805 and the rotating disk 804. Shrinking grooves 807 are provided on the surrounding surface of the rotating disk 804. A push-and-unfold rod 808 is provided on the upper surface of the rotating crank 805. A pressing template 809 is provided on the inner surface of the rotating crank 805. A pressing blade 810 is provided on the upper surface of the pressing template 809. A transmission mechanism is provided on one side of the adjustment motor 802. The rotating gear 803 meshes with the transmission gear to form a transmission structure. The rotating disk 804 forms a transmission structure with the adjusting motor 802 through the rotating gear 803, and forms a rotating structure on the surface of the outer end plate 801. The flipping crank 805 and the pressing template 809 form a rotating structure inside the finished product discharge box 3 through the rotating disk 804. The flipping crank 805 and the pressing template 809 form an elastic structure on the surface of the rotating disk 804 through the torque spring 806. The flipping crank 805 unfolds on the surface of the rotating disk 804 under the push of the limiting slide rod 10 through the pushing unfolding rod 808 on its surface. Several pressing templates 809 are provided on the surface of the rotating disk 804, and pressing templates 809 of different shapes can be replaced according to requirements.

[0038] In this embodiment, during the pressing process, the telescopic cylinder 901 inside the molding box 7 is activated. The telescopic cylinder 901 drives the pressing block 902 to move downward. The pressing block 902 presses the insulation material raw material onto the surface of the pressing template 809. The pressing blade 810 on the surface of the pressing template 809 cuts the insulation material raw material. Finally, the formed insulation material raw material slides down the sliding groove 906 on the surface of the fixed base 905 onto the surface of the finished product discharge belt 4, and is carried out of the finished product discharge box 3 by the finished product discharge belt 4.

[0039] The pressing mechanism 9 includes a telescopic cylinder 901 disposed inside the forming box 7. A pressing block 902 is movably connected to the lower surface of the telescopic cylinder 901. Material rollers 903 are disposed inside the material transport box 5. A template adjustment window 904 is disposed on one side surface of the finished product discharge box 3. A fixed base 905 is disposed inside the finished product discharge box 3. A sliding groove 906 is disposed on the surface of the fixed base 905. The rotating crank 805 on the surface of the rotating disk 804 and the pressing template 809 are disposed between the pressing block 902 and the fixed base 905 through the template adjustment window 904. A finished product discharge belt 4 is disposed below the sliding groove 906. The pressing block 902 forms a lifting structure inside the forming box 7 through the telescopic cylinder 901.

[0040] In this embodiment,

[0041] This invention is rationally designed. During the pressing and molding process for producing composite thermal insulation materials for ships, the raw materials for the thermal insulation material are installed onto the surface of the take-up roller 6 via the finished product discharge box 3. The take-up roller 6 drives the raw materials to move inside the finished product discharge box 3. Simultaneously, the adjusting motor 802 in the template adjusting plate 8 is activated, causing the adjusting motor 802 to drive the rotating gear 803 and the rotating plate 804 to rotate and move on the surface of the outer end plate 801. This causes the flipping crank 805 to enter the template adjusting window 904, inserting the limiting slide rod 10 into the molding box 7. The limiting slide rod 10 contacts the pushing and unfolding rod 808 on the surface of the flipping crank 805, and the rotating plate 804... The rotation of the rotating crank 805 and the pressing template 809 extend from the shrinkage groove 807 and unfold between the fixed base 905 and the pressing block 902, providing a shape template for pressing the composite insulation material. When different shapes of the composite insulation material need to be changed, the limiting slide bar 10 is pulled out, and the rotating crank 805 and the pressing template 809 retract into the shrinkage groove 807 under the action of the torque spring 806. Finally, the adjusting motor 802 is started to drive the rotating disk 804 to rotate, so that the rotating crank 805 at one end of the pressing template 809 of different shapes enters the template adjusting window 904, realizing the purpose of pressing and forming different shapes.

[0042] The above-described embodiments are merely illustrative of certain implementations of the present invention, and are described in a relatively specific and detailed manner. However, they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of the present invention, and these modifications and improvements are all within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the appended claims.

Claims

1. A press molding device for producing a marine composite thermal insulation material, characterized by: The utility model provides a device support frame (1) including, the device support frame (1) surface mounting has the floccus collection device (2), the device support frame (1) top surface fixedly connected with finished product discharge box (3), the finished product discharge box (3) inside surface is provided with finished product discharge belt (4), the finished product discharge box (3) top surface is provided with material transport box (5), the material transport box (5) one end surface is provided with winding roller (6), the material transport box (5) top surface is provided with forming box (7), the forming box (7) one side surface is provided with template adjustment disc (8), the forming box (7) inside is provided with pressing mechanism (9), the template adjustment disc (8) top surface of forming box (7) is movably connected with the limiting slide rod (10) of surface; The template adjustment disc (8) includes an outer end plate (801), the outer end plate (801) is provided with an adjusting motor (802) at the lower end surface, the outer end plate (801) is provided with a rotating gear (803) at the upper end surface, the rotating gear (803) is drivingly connected with a rotating disc (804) at the upper end, the rotating disc (804) is movably connected with a turnover crank (805) at the surface, the turnover crank (805) is connected with the rotating disc (804) at the connection part and is sleeved with a torque spring (806), the rotating disc (804) is provided with a contraction groove (807) at the surface around, the turnover crank (805) is provided with a pushing and unfolding rod (808) at the upper surface, the turnover crank (805) is provided with a pressing template (809) at the inner side surface, the pressing template (809) is provided with a pressing knife edge (810) at the upper surface. The adjusting motor (802) is provided with a transmission gear at one side, and the rotating gear (803) is meshingly connected with the transmission gear and constitutes a transmission structure, the rotating disc (804) constitutes a transmission structure with the adjusting motor (802) through the rotating gear (803), and constitutes a rotating structure at the surface of the outer end plate (801), the turnover crank (805) and the pressing template (809) constitute a rotating structure inside the finished product discharge box (3) through the rotating disc (804), the turnover crank (805) and the pressing template (809) constitute an elastic structure at the surface of the rotating disc (804) through the torque spring (806), the turnover crank (805) is unfolded at the surface of the rotating disc (804) under the pushing of the limiting slide rod (10) through the pushing and unfolding rod (808) at the surface thereof, and a plurality of pressing templates (809) are arranged at the surface of the rotating disc (804), and different shapes of pressing templates (809) can be replaced according to requirements.

2. The press molding device for producing a marine composite thermal insulation material according to claim 1, characterized in that: The finished product discharge box (3) and the material transport box (5) are provided with a hollow groove for pressing.

3. The press molding device for producing a marine composite thermal insulation material according to claim 1, characterized in that: The floating collection device (2) includes a collection box (201) arranged at the bottom of the finished product discharge box (3), one side surface of the collection box (201) is provided with a conveying slide (202), the other side of the conveying slide (202) is provided with a floating accumulation box (203), the top surface of the floating accumulation box (203) is provided with a collection funnel (204), the inside of the collection box (201) is provided with an adsorption conveying belt (205), the surface of the adsorption conveying belt (205) is provided with a rubber hook (206), one end of the conveying slide (202) is provided with a discharging hook (207) in the finished product discharge box (3), then the rubber hook (206) on the surface of the adsorption conveying belt (205) prevents the floating objects in the collection box (201) from overflowing, the floating objects are scraped off by the discharging hook (207) at one end of the conveying slide (202) to the surface of the conveying slide (202) and finally slide into the inside of the collection box (201), the other side surface of the collection box (201) is fixedly connected with a conveying pipe (208), one end surface of the conveying pipe (208) is installed with an adsorption head (209), and one side surface of the collection box (201) is provided with an exhaust fan (210).

4. The press molding device for producing a marine composite thermal insulation material according to claim 3, characterized in that: One side of the collection box (201) is provided with a transmission motor, the adsorption conveying belt (205) and the transmission motor form a transmission structure, and the rubber hook (206) forms a rotary moving structure in the collection box (201) through the adsorption conveying belt (205), the surface of the exhaust fan (210) is provided with a ventilation pipe and is connected with the collection box (201) and the floating accumulation box (203) respectively, the adsorption head (209) is installed in the finished product discharge box (3) and the material conveying box (5), and the collection funnel (204) is arranged in the finished product discharge box (3).

5. The press molding device for producing a marine composite thermal insulation material according to claim 1, characterized in that: The pressing mechanism (9) includes a telescopic oil cylinder (901) arranged in the forming box (7), the lower end surface of the telescopic oil cylinder (901) is movably connected with a pressing block (902), the inside of the material conveying box (5) is provided with a material roller (903), one side surface of the finished product discharge box (3) is provided with a template adjusting window (904), the inside of the finished product discharge box (3) is provided with a fixed base (905), and the surface of the fixed base (905) is provided with a lower sliding groove (906).

6. The press molding device for producing a marine composite thermal insulation material according to claim 5, characterized in that: The turning crank (805) on the surface of the rotating disc (804) and the pressing template (809) are arranged between the pressing block (902) and the fixed base (905) through the template adjusting window (904), the finished product discharge belt (4) is arranged below the lower sliding groove (906), and the pressing block (902) forms a lifting structure in the forming box (7) through the telescopic oil cylinder (901).

Citation Information

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