A rock wool production adhesive spraying device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-19
- Publication Date
- 2026-08-11
AI Technical Summary
传统的岩棉生产喷胶装置存在诸多问题,给生产带来了诸多不便与挑战
(1)本实用新型通过设置稳固组件,其支杆通过安装槽与放置板下方的安装块滑动连接,同时利用压板通过螺杆调节后抵接在安装块上方,当放置板在移动件的带动下移动时,安装块在安装槽内滑动,压板提供的压力能够有效限制安装块的晃动,从而减少放置板的位移和晃动。与传统仅依靠卡接结构的方式相比,本方案分担了卡接结构的负荷,降低了卡接结构因长期受力而弹性衰减的风险;
Smart Images

Figure CN224614096U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of rock wool production equipment, specifically to a rock wool production adhesive spraying device. Background Technology
[0002] In the rock wool production process, the adhesive spraying step plays a crucial role in the quality and performance of the rock wool product. Traditional rock wool production adhesive spraying equipment has many problems, bringing numerous inconveniences and challenges to production.
[0003] In existing glue spraying devices, the fixing method of the placement plate is relatively simple, usually relying on a simple snap-fit structure. This structure only uses a snap-fit rod to engage with a slot at the bottom of the placement plate to fix it (e.g., see patent CN221392453U). After prolonged use, the snap-fit structure is prone to elasticity decay, leading to loosening of the placement plate. This not only affects the stability of the rock wool during the glue spraying process, causing uneven glue application and thus reducing the quality of the rock wool product, but may also cause the placement plate to shift or even fall during movement, affecting the continuity and safety of production. The placement plate is moved using only a simple transmission structure such as a lead screw, which is prone to shaking and instability. This is because the lead screw may become contaminated with glue and other impurities over long-term use, leading to a decrease in transmission accuracy and causing problems such as jamming and shifting when the placement plate moves. Furthermore, during the glue spraying process, the electric push rod is usually directly exposed to the working environment, and glue can easily splash onto the electric push rod. Adhesive is sticky and will gradually accumulate on the surface of the electric linear actuator, which not only affects the appearance of the electric linear actuator, but may also seep into its internal transmission parts and electrical components, leading to accelerated wear, reduced transmission efficiency, and even failure. This requires frequent repairs or replacements, increasing production costs and downtime. Utility Model Content
[0004] The purpose of this invention is to provide a rock wool production adhesive spraying device that reduces the elastic decay of the clamping structure, improves the stability of the placement plate movement, and enhances the painting efficiency.
[0005] This utility model is achieved through the following technical solution: a rock wool production adhesive spraying device, comprising: Bracket; bracket connecting moving parts; The stabilizing components are provided in two sets, with both sets of stabilizing components connected to the upper ends of the bracket. The two sets of stabilizing components include a support rod, a mounting groove, a sliding groove, a T-shaped plate, a mounting plate, a screw, and a pressure plate, respectively. The support rod has an installation groove on one side and a sliding groove on the top. The sliding groove is slidably connected to a T-shaped plate. The top of the T-shaped plate is fixedly connected to an installation plate. The installation plate has two reserved threaded holes, which are threadedly connected to the screw rod. The bottom of the screw rod is rotatably connected to a pressure plate, and the screw rod and the pressure plate correspond one-to-one. And the placement components, connected to the moving parts; The placement assembly includes a placement plate, a vertical plate, a mounting block, a clamping plate, a telescopic plate, and a fixing plate; Vertical plates are fixedly connected to both ends of the upper part of the placement plate, and mounting blocks are fixedly connected to the lower part of the vertical plates respectively. A first electric push rod is fixedly connected to one side of the inner wall of the placement plate. A clamping plate is fixedly connected to the driving end of the first electric push rod. A telescopic plate is fixedly connected to the upper part of the clamping plate. The fixing plate is fixed to the inner wall of the placement plate on the side away from the first electric push rod. The plate is hollow inside and has an opening on one side through which the telescopic plate is slidably connected.
[0006] The working principle of this technical solution is as follows: the support rod provides a sliding track for the mounting block of the component through the mounting groove. The T-shaped plate slides along the groove, driving the mounting plate to move. The screw and the threaded engagement of the mounting plate can adjust the height of the pressure plate, allowing the pressure plate to flexibly tighten or loosen against the mounting block, thereby assisting in fixing the placement plate. The placement plate is used to support rock wool, and the first electric push rod drives the clamping plate to clamp the rock wool. The sliding engagement between the telescopic plate and the fixed plate extends and retracts synchronously with the movement of the clamping plate, which can shield the first electric push rod and avoid glue splashing and contamination.
[0007] To better realize this utility model, the mounting block is further slidably connected in the mounting groove, and the top of the mounting block abuts against the pressure plate.
[0008] To better realize this utility model, the moving part further includes a motor, a threaded rod, a moving plate, a guide rod, a connecting plate, and a locking rod; The motor output shaft is driven to connect one end of a threaded rod, which is threaded to a movable plate. Sliding through holes are provided on both sides of the movable plate, and guide rods are slidably connected to the sliding through holes. The connecting plate is fixedly connected to the top of the movable plate, and a connecting rod is fixedly connected to the top of the connecting plate.
[0009] To better realize this utility model, the motor is further fixedly connected to one end of the bracket, the two ends of the guide rod are respectively fixedly connected to the two sides of the bracket, and the top end of the clamping rod is engaged with the clamping groove at the bottom of the placement plate.
[0010] To better realize this utility model, further, a mounting bracket is fixedly connected to the middle of the bracket, and two second electric push rods are fixedly connected to the bottom of the mounting bracket. The driving ends of the two second electric push rods are jointly fixedly connected to the top of the glue box. Multiple vertical pipes are evenly connected to the bottom of the glue box, and a valve is connected in series in the middle of each vertical pipe. The glue outlet end of the vertical pipe is connected to the glue inlet of the atomizing nozzle.
[0011] To better realize this utility model, further, one end of the connecting hose is connected above the glue box, and the end of the hose away from the glue box passes through the reserved hole and connects with the glue outlet of the storage tank assembly, and the reserved hole is set in the middle of the mounting bracket.
[0012] To better realize this utility model, the length of the slide groove is greater than the length of the T-shaped plate, and the T-shaped plate can slide completely out of the slide groove; the length of the mounting groove is adapted to the moving stroke of the placement plate.
[0013] To better realize this utility model, the edge of the placement plate is provided with an upwardly protruding adhesive-blocking edge, and the adhesive-blocking edge and the placement plate are integrally formed.
[0014] Compared with the prior art, this utility model has the following advantages and beneficial effects: (1) This utility model uses a stabilizing component. The support rod is slidably connected to the mounting block below the placement plate through the mounting groove. At the same time, the pressure plate is adjusted by the screw and abuts against the top of the mounting block. When the placement plate moves under the action of the moving part, the mounting block slides in the mounting groove. The pressure provided by the pressure plate can effectively limit the shaking of the mounting block, thereby reducing the displacement and shaking of the placement plate. Compared with the traditional method that relies solely on the snap-fit structure, this solution shares the load of the snap-fit structure and reduces the risk of elastic decay of the snap-fit structure due to long-term stress. (2) The moving part in this utility model adopts a structure design in which a motor drives a threaded rod to slide the moving plate and a guide rod guides it, making the movement of the placement plate more stable. The output shaft of the motor is connected to one end of the threaded rod through a coupling. The threaded rod is threadedly connected to the moving plate. The sliding through holes on both sides of the moving plate are slidably connected to the guide rod, which can effectively reduce the shaking and offset during the movement process and make the movement accuracy of the placement plate higher. (3) This utility model provides effective protection for the electric push rod by cooperating the telescopic plate and the fixed plate in the placement assembly. The fixed plate is fixed to the side of the inner wall of the placement plate away from the electric push rod. It is hollow inside and has an opening on one side. The telescopic plate is slidably connected to the fixed plate through the opening and fixed above the clamping plate, which greatly reduces the probability of the electric push rod malfunctioning due to glue contamination. (4) The T-shaped plate in the stabilizing component of this utility model can be completely slid out of the groove, which makes it convenient to disassemble and maintain the placement plate. The glue-blocking edge set on the edge of the placement plate can effectively block glue splashing, reduce pollution to the surrounding equipment and working environment, reduce the difficulty and frequency of cleaning work, reduce the amount of maintenance work, and keep the working environment clean. Attached Figure Description
[0015] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a three-dimensional structural diagram of the movable component in this utility model; Figure 3 This is a three-dimensional structural diagram of the stabilizing component in this utility model; Figure 4 This is a three-dimensional structural diagram of the component placement in this utility model.
[0016] Wherein: 1—Bracket, 101—Motor, 102—Threaded rod, 103—Moving plate, 104—Guide rod, 105—Connecting plate, 106—Clamping rod, 2—Support rod, 201—Mounting groove, 202—Slide groove, 203—T-shaped plate, 204—Mounting plate, 205—Threaded rod, 206—Pressure plate, 3—Placement plate, 301—Vertical plate, 302—Mounting block, 303—Clamping plate, 304—Telescopic plate, 305—Fixed plate, 4—Mounting frame, 401—Glue box, 402—Vertical pipe, 403—Atomizing nozzle, 5—Storage tank assembly. Detailed Implementation
[0017] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.
[0018] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing this utility model 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, and therefore should not be construed as a limitation on this utility model. 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 indicated technical features. Therefore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly including one or more of the feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0019] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" 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 utility model based on the specific circumstances.
[0020] Example 1: The main structure of this embodiment is as follows: Figures 1-4 As shown, it includes: Bracket 1; Bracket 1 connects to the moving part; The stabilizing components are provided in two sets, with both sets of stabilizing components connected to the upper ends of the bracket 1. The two sets of stabilizing components include a support rod 2, a mounting groove 201, a sliding groove 202, a T-shaped plate 203, a mounting plate 204, a screw 205, and a pressure plate 206, respectively. The support rod 2 has an installation groove 201 on one side and a sliding groove 202 on the top. The sliding groove 202 is slidably connected to the T-shaped plate 203. The top of the T-shaped plate 203 is fixedly connected to the mounting plate 204. The mounting plate 204 has two reserved threaded holes, which are respectively threaded to the screw rod 205. The bottom end of the screw rod 205 is rotatably connected to the pressure plate 206, and the screw rod 205 and the pressure plate 206 correspond one-to-one. And the placement components, connected to the moving parts; The placement assembly includes a placement plate 3, a vertical plate 301, a mounting block 302, a clamping plate 303, a telescopic plate 304, and a fixing plate 305; Vertical plates 301 are fixedly connected to both ends of the upper part of the placement plate 3. Mounting blocks 302 are fixedly connected to the lower part of the vertical plates 301 respectively. A first electric push rod is fixedly connected to one side of the inner wall of the placement plate 3. A clamping plate 303 is fixedly connected to the driving end of the first electric push rod. A telescopic plate 304 is fixedly connected to the upper part of the clamping plate 303. A fixing plate 305 is fixed to the inner wall of the placement plate 3 on the side away from the first electric push rod. The plate 305 is hollow inside and has an opening on one side through which the telescopic plate 304 is slidably connected.
[0021] The specific implementation method is as follows: The support rods 2 of the two sets of stabilizing components are fixed to the upper ends of the bracket 1, so that the openings of the mounting slots 201 of the support rods 2 face each other; the placement plate 3 of the placement components is connected to the moving part (the specific structure is not detailed, but only serves as a basic connection) through the bottom structure; the mounting block 302 below the vertical plate 301 is aligned with the mounting slots 201 of the support rods 2 and inserted to achieve initial positioning. The T-shaped plate 203 is pushed to slide along the slide groove 202, so that the mounting plate 204 is directly above the mounting block 302; the screw 205 is rotated, and the pressure plate 206 is moved downwards through the threaded transmission until the pressure plate 206 lightly touches the top of the mounting block 302. The rock wool to be sprayed is placed on the placement plate 3, and the first electric push rod is activated. Its driving end drives the clamping plate 303 closer to the rock wool until it clamps the rock wool; at this time, the telescopic plate 304 above the clamping plate 303 extends synchronously along the opening of the fixed plate 305, completely covering the surface of the first electric push rod.
[0022] Example 2: This embodiment, based on the above embodiment, further defines the installation position of the mounting block 302. As shown in the figure, the mounting block 302 is slidably connected within the mounting groove 201, and its upper part abuts against the pressure plate 206. The slidable connection of the mounting block 302 within the mounting groove 201 restricts the horizontal swaying of the placement plate 3. Simultaneously, the pressure plate 206 abuts against the top of the mounting block 302, generating static friction through pressure, further restricting the vertical movement of the placement plate 3. Together with the snap-fit structure, this constitutes a double fixation, improving overall stability.
[0023] In a specific implementation, the mounting block 302 of the placement component is precisely inserted into the mounting groove 201 of the support rod 2, ensuring smooth sliding without significant wobbling. The screw 205 is rotated, causing the pressure plate 206 to move downwards continuously until the pressure plate 206 is tightly abutted against the top of the mounting block 302; at this point, the mounting block 302 is confined between the mounting groove 201 and the pressure plate 206, forming a rigid constraint. The placement plate 3 is manually pushed, and the sliding state of the mounting block 302 within the mounting groove 201 is observed to ensure no jamming or offset, verifying the double-fixing effect. Other parts of this embodiment are the same as those in the above embodiment and will not be repeated.
[0024] Example 3: This embodiment, based on the above embodiments, further defines the structure of the moving part, such as... Figure 2 As shown, the moving component includes a motor 101, a threaded rod 102, a moving plate 103, a guide rod 104, a connecting plate 105, and a locking rod 106; The output shaft of the motor 101 is connected to one end of the threaded rod 102, the threaded rod 102 is threadedly connected to the movable plate 103, and sliding through holes are provided on both sides of the movable plate 103, and the sliding through holes are slidably connected to the guide rod 104. The connecting plate 105 is fixedly connected to the top of the moving plate 103, and the top of the connecting plate 105 is fixedly connected to the clamping rod 106. The torque output by the motor 101 is converted into the linear motion of the moving plate 103 through the threaded rod 102; the guide rod 104 restricts the rotational freedom of the moving plate 103 to ensure that it moves smoothly along a straight line; the connecting plate 105 transmits the motion of the moving plate 103 to the clamping rod 106, which ultimately drives the placement plate 3 to move synchronously.
[0025] The specific implementation method is as follows: Motor 101 is fixed to one end of bracket 1. The output shaft of motor 101 is connected to one end of threaded rod 102 via a coupling. The other end of threaded rod 102 is fixed to the other end of bracket 1 via a bearing seat. Guide rod 104 is fixed at both ends to both sides of bracket 1, parallel to threaded rod 102. Moving plate 103 is fitted into threaded rod 102 through a central threaded hole, and guide rod 104 is fitted into sliding through holes on both sides. A clamping rod 106 is fixed to the top of connecting plate 105, and its bottom end is fixed to the top of moving plate 103. When motor 101 is started, the output shaft of motor 101 drives threaded rod 102 to rotate clockwise. Moving plate 103 moves along guide rod 104 towards the middle of bracket 1 under the action of the thread. When motor 101 reverses direction, moving plate 103 moves towards the end of bracket 1, verifying the direction and stability of movement. Other parts of this embodiment are the same as those in the above embodiment and will not be repeated.
[0026] Example 4: This embodiment, based on the above embodiments, further defines the structure of the moving part, such as... Figure 2 As shown, the motor 101 is fixedly connected to one end of the bracket 1, the two ends of the guide rod 104 are fixedly connected to both sides of the bracket 1, and the top end of the locking rod 106 engages with the slot at the bottom of the placement plate 3. The motor 101 is fixed to the bracket 1 to ensure stable power output, and the fixed ends of the guide rod 104 enhance the guiding rigidity; the engagement of the locking rod 106 with the slot at the bottom of the placement plate 3 enables a detachable connection between the placement plate 3 and the moving part, ensuring both synchronous movement and easy disassembly and cleaning of the placement plate 3.
[0027] The specific implementation process is as follows: Align the slot at the bottom of the placement plate 3 with the top of the locking rod 106, and press the placement plate 3 downwards so that the locking rod 106 is fully engaged in the slot; at this time, the placement plate 3 is rigidly connected to the moving plate 103 through the locking rod 106 and the connecting plate 105. Start the motor 101. When the moving plate 103 moves along the guide rod 104, it drives the placement plate 3 to move synchronously through the connecting plate 105 and the locking rod 106. Observe whether the placement plate 3 and the moving plate 103 maintain the same speed and direction, without relative sliding or jamming. The other parts of this embodiment are the same as those in the above embodiment, and will not be described again.
[0028] Example 5: This embodiment, based on the above embodiment, further adds a structure for the mounting bracket 4, such as... Figure 1As shown, the bracket 1 is fixedly connected to the mounting frame 4 in the middle. Two second electric push rods are fixedly connected to the bottom of the mounting frame 4. The driving ends of the two second electric push rods are jointly fixedly connected to the top of the glue box 401. Multiple vertical pipes 402 are evenly connected to the bottom of the glue box 401. A valve is connected in series in the middle of each vertical pipe 402. The glue outlet of the vertical pipe 402 is connected to the glue inlet of the atomizing nozzle 403. The mounting frame 4 provides support for the glue spraying assembly. The second electric push rods can adjust the height of the glue box 401 to adapt to rock wool of different thicknesses. The multiple vertical pipes 402 are evenly distributed to ensure uniform glue coverage. The valves independently control the on / off of each vertical pipe 402, and the glue spraying range can be adjusted according to the width of the rock wool. The atomizing nozzle 403 atomizes the glue to improve the uniformity of the glue layer.
[0029] The specific implementation process is as follows: Mounting bracket 4 is fixed to the middle of support bracket 1. Two second electric push rods are symmetrically fixed below mounting bracket 4, with their drive ends connected to the top of glue box 401. Multiple vertical pipes 402 are evenly connected along the length of the bottom of glue box 401. Each vertical pipe 402 is connected in series with a valve, and the glue outlet is connected to an atomizing nozzle 403. Based on the rock wool thickness, the second electric push rods are activated, driving the glue box 401 to move up and down, adjusting the distance between the atomizing nozzle 403 and the rock wool surface to the optimal atomization distance of 10-15cm. The valves of the vertical pipes 402 corresponding to the width of the rock wool are opened, allowing glue to enter the atomizing nozzle 403 from the glue box 401 via the vertical pipes 402, and then be evenly sprayed onto the rock wool surface after atomization. Other parts of this embodiment are the same as those in the above embodiment and will not be repeated here.
[0030] Example 6: This embodiment, based on the above embodiments, further defines the structure of the mounting bracket 4, such as... Figure 1 As shown, one end of the flexible hose is connected to the top of the glue box 401. The end of the hose away from the glue box 401 passes through a pre-drilled hole and connects to the glue outlet of the storage tank assembly 5. The pre-drilled hole is located in the middle of the mounting bracket 4. The flexible hose connects the storage tank assembly 5 and the glue box 401 to achieve continuous glue supply. The pre-drilled hole provides a passage for the flexible hose to pass through, preventing the hose from getting tangled or squeezed by moving parts, and ensuring smooth glue supply.
[0031] The specific implementation process is as follows: Connect one end of the hose to the interface on the top of the glue box 401, and pass the other end through the reserved hole in the middle of the mounting bracket 4 to connect to the glue outlet of the storage tank assembly 5; ensure that the hose length is reserved to avoid excessive stretching of the hose when the glue box 401 is raised or lowered. Start the delivery pump of the storage tank assembly 5, and pump the glue into the glue box 401 through the hose. Observe whether the liquid level in the glue box 401 rises steadily, and whether the hose is twisted or leaking, to verify the sealing and smoothness of the glue supply system. The other parts of this embodiment are the same as those in the above embodiment, and will not be repeated.
[0032] Example 7: This embodiment, based on the above embodiments, further defines the structure of the stabilizing component, such as... Figure 3 As shown, the length of the slide groove 202 is greater than the length of the T-shaped plate 203, and the T-shaped plate 203 can slide completely out of the slide groove 202; the length of the mounting groove 201 is adapted to the moving stroke of the placement plate 3. The length of the slide groove 202 is greater than the length of the T-shaped plate 203, ensuring that the T-shaped plate 203 can slide completely out of the slide groove 202, which facilitates the disassembly of the placement plate 3; the length of the mounting groove 201 is adapted to the moving stroke of the placement plate 3, ensuring that the mounting block 302 is always within the mounting groove 201 when the placement plate 3 moves, avoiding wobbling caused by disengaging from the track.
[0033] The specific implementation process is as follows: Measure the length of the slide groove 202 and the length of the T-shaped plate 203 to confirm that the T-shaped plate 203 can slide completely out along the slide groove 202; measure the length of the mounting groove 201 and the travel distance of the placement plate 3 to ensure that when the placement plate 3 moves to its extreme positions at both ends, the mounting block 302 is still located within the mounting groove 201. When it is necessary to disassemble the placement plate 3, rotate the screw 205 to disengage the pressure plate 206 from the mounting block 302, pushing the T-shaped plate 203 to slide out along the slide groove 202 until the mounting plate 204 is completely away from above the mounting block 302. At this point, the placement plate 3 can be easily removed from the locking rod 106. The other parts of this embodiment are the same as those in the above embodiment and will not be described again.
[0034] Example 8: This embodiment further defines the structure of the placement plate 3 based on the above embodiment. The edge of the placement plate 3 is provided with an upwardly protruding adhesive-blocking edge, and the adhesive-blocking edge and the placement plate 3 are integrally formed. The adhesive-blocking edge 306 of the edge of the placement plate 3 is higher than the surface of the placement plate 3, which can physically prevent the atomized adhesive from splashing outward; the integrally formed structure avoids gaps at the connection between the adhesive-blocking edge 306 and the placement plate 3, preventing adhesive from seeping into gaps that are difficult to clean, while also enhancing the structural strength.
[0035] The specific implementation process is as follows: Check whether the adhesive-blocking edge 306 and the placement plate 3 are integrally formed, ensuring there are no welding seams or splicing marks at the connection; measure the height of the adhesive-blocking edge 306 to ensure it is higher than the thickness of the rock wool, preventing adhesive from splashing out from above the rock wool. During the adhesive spraying process, any unabsorbed portion of the atomized adhesive spreads outwards after contacting the rock wool. The adhesive-blocking edge 306 blocks this diffusion within the placement plate 3, reducing adhesive contamination of the bracket 1 and moving parts; after spraying, only the adhesive residue inside the placement plate 3 needs to be cleaned, without cleaning the surrounding components. Other parts of this embodiment are the same as those in the above embodiment and will not be repeated.
[0036] It is understood that the working principle and process of the rock wool production spraying device structure according to one embodiment of the present utility model, such as the motor 101 and the atomizing nozzle 403, are existing technologies and are well known to those skilled in the art, and will not be described in detail here.
[0037] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A rock wool production adhesive spraying device, characterized in that, include: Bracket (1); Bracket (1) connects to moving parts; The stabilizing components are provided in two sets, and both sets of stabilizing components are connected to the upper ends of the bracket (1); The two sets of stabilizing components include a support rod (2), a mounting groove (201), a sliding groove (202), a T-shaped plate (203), a mounting plate (204), a screw (205), and a pressure plate (206); The support rod (2) has an installation groove (201) on one side and a sliding groove (202) on the top. The sliding groove (202) is slidably connected to the T-shaped plate (203). The top of the T-shaped plate (203) is fixedly connected to the mounting plate (204). The mounting plate (204) has two reserved threaded holes. The two reserved threaded holes are threadedly connected to the screw (205) respectively. The bottom end of the screw (205) is rotatably connected to the pressure plate (206). The screw (205) and the pressure plate (206) correspond one-to-one. And the placement components, connected to the moving parts; The placement assembly includes a placement plate (3), a vertical plate (301), a mounting block (302), a clamping plate (303), a telescopic plate (304), and a fixing plate (305). Vertical plates (301) are fixedly connected to both ends of the upper part of the placement plate (3), and mounting blocks (302) are fixedly connected to the lower part of the vertical plates (301). A first electric push rod is fixedly connected to one side of the inner wall of the placement plate (3), and a clamping plate (303) is fixedly connected to the driving end of the first electric push rod. A telescopic plate (304) is fixedly connected to the upper part of the clamping plate (303). A fixing plate (305) is fixed to the inner wall of the placement plate (3) on the side away from the first electric push rod. The plate is hollow inside and has an opening on one side through which the telescopic plate (304) is slidably connected.
2. The rock wool production adhesive spraying device according to claim 1, characterized in that, The mounting block (302) is slidably connected in the mounting groove (201), and the top of the mounting block (302) abuts against the pressure plate (206).
3. A rock wool production adhesive spraying device according to claim 1 or 2, characterized in that, The moving parts include a motor (101), a threaded rod (102), a moving plate (103), a guide rod (104), a connecting plate (105), and a locking rod (106). The output shaft of the motor (101) is connected to one end of the threaded rod (102), and the threaded rod (102) is threaded to the moving plate (103). The moving plate (103) has sliding through holes on both sides, and the sliding through holes are slidably connected to the guide rod (104). The connecting plate (105) is fixedly connected to the top of the movable plate (103), and the top of the connecting plate (105) is fixedly connected to the clamp rod (106).
4. The rock wool production spraying device according to claim 3, characterized in that, The motor (101) is fixedly connected to one end of the bracket (1), the two ends of the guide rod (104) are fixedly connected to the two sides of the bracket (1) respectively, and the top of the clamping rod (106) is engaged with the groove at the bottom of the placement plate (3).
5. A rock wool production spraying device according to claim 4, characterized in that, The bracket (1) is fixedly connected to the mounting frame (4) in the middle. Two second electric push rods are fixedly connected to the bottom of the mounting frame (4). The driving ends of the two second electric push rods are fixedly connected to the top of the glue box (401). Multiple vertical pipes (402) are evenly connected to the bottom of the glue box (401). A valve is connected in series in the middle of each vertical pipe (402). The glue outlet of the vertical pipe (402) is connected to the glue inlet of the atomizing nozzle (403).
6. A rock wool production adhesive spraying device according to claim 5, characterized in that, The glue box (401) is connected to one end of a flexible tube. The end of the flexible tube away from the glue box (401) passes through a reserved hole and is connected to the glue outlet of the storage tank assembly (5). The reserved hole is located in the middle of the mounting bracket (4).
7. A rock wool production adhesive spraying device according to claim 1 or 2, characterized in that, The length of the chute (202) is greater than the length of the T-shaped plate (203), and the T-shaped plate (203) can slide completely out of the chute (202); the length of the mounting groove (201) is adapted to the travel of the placement plate (3).
8. A rock wool production adhesive spraying device according to claim 1, characterized in that, The edge of the placement plate (3) is provided with an upwardly protruding adhesive baffle, and the adhesive baffle and the placement plate (3) are integrally formed.