Integrated glue mixing machine blade coating device for plate construction
The integrated glue mixer and scraper device features vacuum mixing, constant temperature, and roller coating, which solves the problems of uneven glue mixing and insufficient temperature control during board construction, thereby improving construction efficiency and coating quality.
Patent Information
- Application Number
- CN202511195698.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-26
- Publication Date
- 2025-11-07
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing adhesive mixing machines have problems such as generating air bubbles, uneven mixing, and insufficient temperature control during board construction. Furthermore, the separation of construction processes leads to low efficiency and material waste.
An integrated adhesive mixing and coating device was designed, which includes a vacuum mixing mechanism, a constant temperature control and a roller coating mechanism. Combined with the base, it can achieve uniform mixing and temperature control of the adhesive. The limiting component and the coating component can adapt to different board sizes to ensure uniform coating.
It effectively reduces bubble formation, achieves uniform mixing and constant temperature control of the adhesive, improves construction efficiency, avoids material waste and pollution, and ensures uniform coating.
Smart Images

Figure CN120900841A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of mixing, stirring or dissolving, in particular to an integrated glue mixing machine scraping device for plate construction. BACKGROUND
[0002] In the process of plate construction, the mixing quality of glue directly affects the construction effect and performance. Although the traditional glue mixing machine can mix two different glues, it has many shortcomings in actual application. First, the conventional stirring method is easy to produce bubbles, which affects the uniformity of glue mixing and the final bonding strength. Second, the glue mixing process is sensitive to temperature, and different proportions of glue need a specific temperature environment to achieve the best mixing effect, and the existing equipment lacks precise temperature control ability. In addition, the mixing and coating processes are separated in the traditional construction process, which not only increases the equipment area, but also leads to low construction efficiency, and material waste and pollution problems are easy to occur in the glue transfer process. The current market urgently needs a plate construction equipment that integrates constant temperature stirring, vacuum defoaming and automatic scraping functions to solve the above technical problems.
[0003] The existing technology needs to be improved in view of the above problems. SUMMARY
[0004] (I) Technical problems to be solved The problem to be solved by the present application is to provide an integrated glue mixing machine scraping device for plate construction to overcome the defects of glue mixing with bubbles, poor glue mixing effect and uneven scraping of the existing glue mixing machine scraping device.
[0005] (II) Technical solutions To solve the technical problems, the first aspect of the present application provides an integrated glue mixing machine scraping device for plate construction, comprising: a base; a stirring mechanism, the stirring mechanism comprising a stirring shell, a first motor, a transmission rod, a first stirring paddle and a second stirring paddle, the stirring shell being connected with the base, the first motor being connected with the middle end of the top of the stirring shell, the transmission rod being connected with the output end of the first motor, the first stirring paddle and the second stirring paddle being connected with the transmission rod, the first motor driving the first stirring paddle and the second stirring paddle to rotate synchronously; The constant temperature mechanism comprises a constant temperature shell connected with the outer end of the stirring shell and a thermostat comprising a plurality of P-type semiconductors and a plurality of N-type semiconductors, which are distributed at intervals and have a refrigeration end and a heat dissipation end formed at two ends, respectively, the thermostat is divided into a refrigeration cavity and a heat dissipation cavity, and a water pump is arranged in each of the refrigeration cavity and the heat dissipation cavity, the constant temperature shell is connected with the thermostat, when the constant temperature mechanism is heated, the water pump in the heat dissipation cavity operates, and water flows in the constant temperature shell, when the constant temperature mechanism is cooled, the water pump in the refrigeration cavity operates, and water flows in the constant temperature shell; The rolling mechanism is connected with the base, and comprises a rolling seat and a support assembly connected with one side of the rolling seat, and the rolling seat is provided with a rack on both sides.
[0006] The scraping device of the integrated glue mixing machine for plate construction as described above, optionally, the rolling mechanism comprises a limiting assembly, the limiting assembly comprises a first electric push rod, a first limiting plate, a second limiting plate and a second motor, the first electric push rod is arranged on the other side of the rolling seat, the first electric push rod drives the first limiting plate to stretch and retract, the second limiting plate is connected with the two rack gears at both ends, a third motor is arranged at both ends of the second limiting plate, and the third motor drives the second limiting plate to displace along the direction of the rack.
[0007] The scraping device of the integrated glue mixing machine for plate construction as described above, optionally, the support assembly comprises an L-shaped support, a sliding plate and a second electric push rod, the L-shaped support is arranged at one end of the rolling seat, a notch is formed in the L-shaped support, the sliding plate is connected with the notch in a sliding manner, and the second electric push rod drives the sliding plate to slide along the direction of the notch.
[0008] The scraping device of the integrated glue mixing machine for plate construction as described above, optionally, a third electric push rod, a scraping assembly and the sliding plate are sequentially connected, the scraping assembly comprises a scraping shell, a plurality of springs and a scraping plate, the scraping shell is connected with the third electric push rod, the plurality of springs are arranged in the scraping shell, and the scraping plate is connected with the plurality of springs.
[0009] The scraping device of the integrated glue mixing machine for plate construction as described above, optionally, a glue sprayer is connected with the side end of the scraping shell, and the glue sprayer is connected with the top end of the stirring shell.
[0010] The scraping device of the integrated glue mixing machine for plate construction has the beneficial effects as follows.
[0011] The scraping device of the integrated glue mixing machine for plate construction has the beneficial effects as follows.
[0012] The scraping device of the integrated glue mixing machine for plate construction has the beneficial effects as follows.
[0013] The scraping device of the integrated glue mixing machine for plate construction has the beneficial effects as follows.
[0014] (Three) beneficial effects The scraping device of the integrated glue mixing machine for plate construction has the beneficial effects as follows. The scraping device of the integrated glue mixing machine for plate construction has the beneficial effects as follows.
[0015] The scraping device of the integrated glue mixing machine for plate construction has the beneficial effects as follows. BRIEF DESCRIPTION OF DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.
[0017] Figure 1 FIG. 1 is a perspective view of the scraping device of the integrated glue mixing machine for plate construction; Figure 2It is a sectional view of a scraping device of an integrated glue mixing machine for plate construction of the application; Figure 3 It is a sectional view of a scraping device of an integrated glue mixing machine for plate construction of the application; Figure 4 It is a sectional view of a scraping device of an integrated glue mixing machine for plate construction of the application; Figure 5 It is a sectional view of a scraping device of an integrated glue mixing machine for plate construction of the application; Figure 6 It is a sectional view of a scraping device of an integrated glue mixing machine for plate construction of the application.
[0018] Corresponding component names of various reference numerals in the drawings are as follows: 1, base; 2, stirring mechanism; 21, stirring shell; 22, first motor; 23, transmission rod; 24, first stirring paddle; 25, second stirring paddle; 3, constant temperature mechanism; 31, constant temperature shell; 32, thermostat; 33, refrigeration cavity; 34, heat release cavity; 35, water pump; 4, rolling coating mechanism; 41, rolling coating seat; 42, support assembly; 43, rack; 51, first electric push rod; 52, first limiting plate; 53, second limiting plate; 54, second motor; 56, L-shaped support; 57, sliding plate; 58, second electric push rod; 61, third electric push rod; 62, scraping assembly; 63, scraping shell; 64, spring; 65, scraping plate; 66, glue sprayer; 67, first inputter; 68, second inputter; 69, vacuum pump. DETAILED DESCRIPTION
[0019] The application will be described in detail below with reference to the drawings and specific embodiments.
[0020] The embodiments of the application will be described in detail with specific examples. Those skilled in the art can easily understand other advantages and effects of the application from the content disclosed in the specification. Obviously, the described embodiments are only a part of the embodiments of the application, not all the embodiments. The application can also be implemented or applied by other different specific embodiments, and the details in the specification can be modified or changed based on different views and applications without departing from the spirit of the application. It should be noted that the following embodiments and features in the embodiments can be combined with each other without conflict. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the application.
[0021] It is to be appreciated that the various aspects described herein are capable of implementation by various means, and that the claims are not limited to the described aspects, but rather are intended to cover all means falling within the scope of the claims. Numerous specific aspects have been set forth herein, which together with the above general description, explain how the aspects can be implemented. It should be understood, however, that the aspects are not limited to the specific aspects discussed, but rather, aspects are meant to cover all aspects falling within the scope of the claims.
[0022] It is also to be appreciated that the illustrations provided in the following examples are merely schematic and that the actual implementation of the application can vary from the schematic illustrations as described herein. Also, the illustrations are not necessarily drawn to scale.
[0023] In addition, in the following description, numerous specific details are set forth in order to provide a thorough understanding of the examples. However, it will be apparent to one skilled in the art that the examples can be practiced without these specific details.
[0024] The technical solutions provided by the embodiments of the application are described below with reference to the drawings.
[0025] In the prior art, two kinds of glue need to be mixed during the plate construction process to improve the bonding performance. The traditional equipment adopts a split design, which leads to low construction efficiency. The conventional stirring mechanism 2 lacks temperature control function. When different glues are mixed, the molecular activity is affected due to temperature fluctuation, causing uneven mixing or abnormal solidification. The existing roll coating equipment is separately arranged with the glue mixing machine. The plate needs to be transferred and positioned for multiple times, which is easy to cause thickness deviation of the glue layer or surface pollution.
[0026] The application provides an integrated glue mixing machine and scraping coating device for plate construction, which comprises a base 1, a stirring mechanism 2, a constant temperature mechanism 3, and a roll coating mechanism 4. The stirring mechanism 2, the constant temperature mechanism 3, and the roll coating mechanism 4 are all arranged on the base 1. The stirring mechanism 2 is a vacuum stirring mechanism, which can reduce the generation of air bubbles as much as possible during the mixing of glue. At the same time, the constant temperature mechanism 3 controls the temperature of the stirring mechanism 2 by using a semiconductor. This makes the mixing process more effective.
[0027] In Figures 1 to 6In an optional embodiment, the stirring mechanism 2 comprises a stirring shell 21, a first motor 22, a transmission rod 23, a first stirring paddle 24 and a second stirring paddle 25. The stirring shell 21 is connected to the base 1, the first motor 22 is connected to the middle end of the top of the stirring shell 21, the transmission rod 23 is connected to the output end of the first motor 22, the first stirring paddle 24 and the second stirring paddle 25 are connected to the transmission rod 23, and the first motor 22 drives the first stirring paddle 24 and the second stirring paddle 25 to rotate synchronously.
[0028] The size of the first stirring paddle 24 or the second stirring paddle 25 can be determined by experimenters in the art according to the situation. When multiple glues are placed into the stirring shell 21, the cooperation of the two stirring paddles can better mix the glues.
[0029] Further, the top of the stirring shell 21 is provided with a vacuum pump 69. When the first motor 22 drives the transmission rod 23 to drive the first stirring paddle 24 and the second stirring paddle 25 to rotate, the vacuum pump 69 maintains a negative pressure state in the stirring shell 21 to reduce bubbles in the glue mixing.
[0030] In Figures 1 to 6 In an optional embodiment, the constant temperature mechanism 3 comprises a constant temperature shell 31 and a thermostat 32, and the constant temperature shell 31 is connected to the outer end of the stirring shell 21. The constant temperature mechanism 3 can perform constant temperature treatment on the stirring shell 21.
[0031] The thermostat 32 comprises a plurality of P-type semiconductors and a plurality of N-type semiconductors, the plurality of P-type semiconductors and the plurality of N-type semiconductors are distributed at intervals and form a refrigeration end and a heat dissipation end at both ends, the thermostat 32 is divided into a refrigeration cavity 33 and a heat dissipation cavity 34, both the refrigeration cavity 33 and the heat dissipation cavity 34 are provided with a water pump 35, and the constant temperature shell 31 is connected to the thermostat 32.
[0032] Specifically, when the constant temperature mechanism 3 is warmed up, the water pump 35 in the heat dissipation cavity 34 operates, so that the water flow carries the heat generated by the semiconductors to circulate in the constant temperature shell 31, and the heat exchange maintains the optimal reaction temperature of the glue; when the constant temperature mechanism 3 is cooled down, the water pump 35 in the refrigeration cavity 33 operates, and the water flow circulates in the constant temperature shell 31, and the low-temperature water flow is introduced into the circulation system.
[0033] In Figures 1 to 6 In an optional embodiment, the rolling mechanism 4 is connected to the base 1, and the rolling mechanism 4 comprises a rolling seat 41 and a support assembly 42. The support assembly 42 is connected to one side of the rolling seat 41, and the rolling seat 41 is provided with a rack 43 on both sides.
[0034] Further, the rolling mechanism 4 comprises a limiting assembly, which comprises a first electric push rod 51, a first limiting plate 52, a second limiting plate 53, and a second electric motor 54. The first electric push rod 51 is arranged on the other side of the rolling seat 41, and drives the first limiting plate 52 to extend or retract. The two ends of the second limiting plate 53 are connected with the two racks 43 through gears, and the third electric motor is arranged at the two ends of the second limiting plate 53. The third electric motor drives the second limiting plate 53 to displace along the direction of the rack 43.
[0035] Further, the support assembly 42 comprises an L-shaped support 56, a sliding plate 57, and a second electric push rod 58. The L-shaped support 56 is arranged at one end of the rolling seat 41, and a slot is formed in the L-shaped support 56. The sliding plate 57 is connected with the slot in a sliding manner, and the second electric push rod 58 drives the sliding plate 57 to slide along the direction of the slot.
[0036] Specifically, when the plate enters the rolling seat 41, the first electric push rod 51 pushes the first limiting plate 52 to extend to fix one side of the plate, and then the third electric motor drives the second limiting plate 53 to move along the rack 43 to the other side of the plate and complete clamping. Through the cooperation of the extension and retraction of the first limiting plate 52 and the transverse displacement of the second limiting plate 53, the positioning requirement of plates with different widths can be met, and the stability of the plate during the rolling process is ensured.
[0037] Further, the third electric push rod 61, the scraping assembly 62, and the sliding plate 57 are connected in sequence. The scraping assembly 62 comprises a scraping shell 63, springs 64, and a scraping plate 65. The scraping shell 63 is connected with the third electric push rod 61, a plurality of springs 64 are arranged in the scraping shell 63, and the scraping plate 65 is connected with the plurality of springs 64.
[0038] Specifically, when the sliding plate 57 moves along the width direction of the plate under the drive of the support assembly 42, the third electric push rod 61 drives the scraping shell 63 to vertically ascend or descend to adjust the distance between the scraping plate 65 and the surface of the plate. When the scraping plate 65 contacts the surface of the plate, the springs 64 are compressed to generate a reverse force, so that the scraping plate 65 maintains a constant pressure when it rises and falls on the surface of the plate. The plurality of springs 64 are distributed in a matrix in the scraping shell 63, so that the local pressure is prevented from being too large to cause uneven thickness of the glue layer. For example, when a small protrusion exists on the surface of the plate, the compression amount of the springs 64 in the corresponding area increases, while the springs 64 in other areas remain in the original compression state, thereby maintaining the balance of the overall scraping pressure.
[0039] Further, the scraping shell 63 is connected with a glue spraying machine 66 at the side end, and the glue spraying machine 66 is connected with the top end of the stirring shell 21. The mixed glue stirred in the stirring shell 21 is input into the glue spraying machine 66 and sprayed on the surface of the plate.
[0040] Further, the base 1 is provided with a first input device 67 and a second input device 68, which are connected to the top end of the stirring shell 21 and are used to input glue into the stirring shell 21.
[0041] Further, the first motor 22, the transmission rod 23, the first stirring paddle 24 and the second stirring paddle 25 are coaxial.
[0042] Further, the stirring mechanism 2 is provided with a sensor, which is used to detect the situation in the stirring mechanism 2. The control system outside can regulate the constant temperature mechanism 3 according to the feedback of the sensor.
[0043] In the specification, the same or similar parts among various embodiments can be mutually referred to, and each embodiment focuses on the difference from other embodiments.
[0044] The above merely illustrates the specific embodiments of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of the changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. An integrated glue mixing and spreading device for plate construction, characterized in that, Include: Base (1); Stirring mechanism (2), the stirring mechanism (2) includes stirring shell (21), first motor (22), transmission rod (23), first stirring paddle (24) and second stirring paddle (25), the stirring shell (21) is connected with the base (1), the first motor (22) is connected with the middle end of the top of the stirring shell (21), the transmission rod (23) is connected with the output end of the first motor (22), the first stirring paddle (24) and the second stirring paddle (25) are connected with the transmission rod (23), the first motor (22) drives the first stirring paddle (24) and the second stirring paddle (25) synchronous rotation; Constant temperature mechanism (3), the constant temperature mechanism (3) includes constant temperature shell (31) and thermostat (32), the constant temperature shell (31) is connected with the outer end of the stirring shell (21), the thermostat (32) includes a plurality of P-type semiconductor and a plurality of N-type semiconductor, a plurality of P-type semiconductor and a plurality of N-type semiconductor interval distribution, and is formed with refrigeration end and heat release end at both ends, respectively, the thermostat (32) is divided into refrigeration cavity (33) and heat release cavity (34), the water pump (35) is built in the refrigeration cavity (33) and the heat release cavity (34), the constant temperature shell (31) is connected with the thermostat (32), when the constant temperature mechanism (3) is heated, the water pump (35) in the heat release cavity (34) runs, the water flow circulates in the constant temperature shell (31), when the constant temperature mechanism (3) is cooled, the water pump (35) in the refrigeration cavity (33) runs, the water flow circulates in the constant temperature shell (31); Rolling mechanism (4), the rolling mechanism (4) is connected with the base (1), the rolling mechanism (4) includes rolling seat (41) and support assembly (42), the support assembly (42) is connected with one side of the rolling seat (41), the both sides of the rolling seat (41) are provided with rack (43).
2. The integrated glue spreader for sheet material construction of claim 1, wherein, The rolling mechanism (4) includes limiting assembly, limiting assembly includes first electric push rod (51), first limiting plate (52), second limiting plate (53), second motor (54), the first electric push rod (51) is arranged on the other side of the rolling seat (41), the first electric push rod (51) drives the telescopic of the first limiting plate (52), the both ends of the second limiting plate (53) are connected with two rack (43) gear, the second motor (54) is arranged on the both ends of the second limiting plate (53), the second motor (54) drives the second limiting plate (53) displacement along the direction of the rack (43).
3. The integrated glue spreader and applicator device for sheet material construction of claim 1, wherein, The support assembly (42) includes L-shaped support (56), sliding plate (57), second electric push rod (58), the L-shaped support (56) is arranged on one end of the rolling seat (41), the L-shaped support (56) is provided with notch, the sliding plate (57) is connected with notch sliding, the second electric push rod (58) drives the sliding plate (57) along the direction of notch sliding.
4. The integrated glue spreader and applicator device for sheet material construction of claim 3, wherein, Third electric push rod (61), scraping assembly (62) and the sliding plate (57) are sequentially connected, the scraping assembly (62) includes scraping shell (63), spring (64) and scraping plate (65), the scraping shell (63) is connected with the third electric push rod (61), a plurality of spring (64) is arranged in the scraping shell (63), the scraping plate (65) is connected with a plurality of spring (64).
5. The integrated glue spreader and squeegee device for sheet material installation of claim 4, wherein: The side end of the scraping shell (63) is connected with a glue sprayer (66), and the glue sprayer (66) is connected with the top end of the stirring shell (21).
6. The integrated glue spreader and squeegee apparatus for sheet material installation of claim 1, wherein, The base (1) is provided with a first input device (67) and a second input device (68), and the first input device (67) and the second input device (68) are connected with the top end of the stirring shell (21), and the first input device (67) and the second input device (68) input glue into the stirring shell (21).
7. The integrated glue spreader and squeegee apparatus for sheet material installation of claim 1, wherein, The top of the stirring shell (21) is provided with a vacuum pump (69).
8. The integrated glue spreader and squeegee device for sheet material installation of claim 1, wherein: The first motor (22), the transmission rod (23), the first stirring paddle (24) and the second stirring paddle (25) are coaxial.
9. The integrated glue spreader and squeegee device for sheet material installation of claim 1, wherein, The stirring mechanism (2) is provided with a sensor for detecting the situation in the stirring mechanism (2).