Seam beautifying agent mixing pipe vibrator

By designing a seam-applied agent mixing pipe vibrator including a frame, a carrier frame, a vibration motor and a vacuum pump, the problem of bubbles being unable to be discharged is solved, the stability of the rubber output ratio and the reliable bearing of the cover are achieved, and the efficiency of seam-applied agent is improved.

CN223221025UActive Publication Date: 2025-08-15WEIFANG ANCAI NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202422741242.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-08-15
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

During the use of existing seam-applied agent mixing tubes, there are problems such as bubbles that cannot be effectively discharged, resulting in unstable glue ratio, unstable lid bearing and inconvenient opening of the lid.

Method used

A seam-applied agent mixing pipe vibrator including a frame, a carrier rack, a vibration motor, a material box and a vacuum pump is designed. The box cover is reliably load-bearing and conveniently opened by rotating the hoisting mechanism and the vacuum pump, and combined with the vibration motor to eliminate air bubbles in the hose.

Benefits of technology

The effective discharge of bubbles in the hose is achieved, the stability of the rubber output ratio is ensured, and the service life and operation convenience of the lid are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a seam beautifying agent mixing pipe vibrator which comprises a machine frame, the machine frame is elastically connected with a bearing frame through a plurality of first compression springs, the bearing frame is fixedly connected with a plurality of anti-disengaging rods penetrating through the first compression springs and the upper portion of the machine frame, the bearing frame is provided with a vibration motor and a material box, and the material box comprises a box body. The bearing frame is rotationally connected with a box cover capable of getting close to the box downwards and getting away from the box upwards through a rotary hoisting mechanism, the box cover is clamped to the upper portion of the box through a clamping piece to seal the box, a storage mechanism is arranged in the box, the box cover is provided with a vacuum pump, the lower portion of the box is connected with an air pipe in a sealed mode, and a hand valve is arranged on the side, located outside the box, of the air pipe. And reliable bearing can be provided for the box cover by rotating the hoisting mechanism. An operator puts a plurality of materials on the material storage mechanism, and after discharging is completed, the rotating hoisting mechanism is operated to enable the box cover to seal the box body. The vacuum pump is used for vacuumizing, the vibration motor is used for vibrating the bearing frame and the material box, and bubbles in the rubber pipe move upwards and are finally discharged from the seam beautifying agent in the rubber pipe.
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Description

Technical Field

[0001] The utility model relates to the technical field of caulking agent processing equipment, in particular to a caulking agent mixing tube vibrating machine. Background Art

[0002] Caulking agent is a decorative material used on ceramic tiles, marble tiles, and other surfaces. It fills the gaps between adjacent tiles, enhancing their appearance and preventing dirt from tarnishing the gaps. Caulking agent is a semi-fluid liquid formed by a mixture of polymers and pigments. It comes in both single-component and two-component varieties. Two-component caulking agents utilize two adhesive components: a resin and a curing agent. These two components are contained in a dedicated hose, which consists of two parallel tubes. The hose is then squeezed out simultaneously with a glue gun, mixed in proportion at the outlet, and then filled into the tile joints. There are recessed glue holes near the glue outlet in the two hoses. When pouring glue, the glue is injected into the hose and covers the glue hole, which will cause the air in the glue hole to remain in the hole and cannot be discharged. The problem caused is that it affects the glue discharge ratio of the two components. The glue discharge ratio of the two components is unstable when the glue starts to be discharged. In order to solve this problem during construction, the freshly squeezed caulking agent is not used to fill the brick joints until the bubbles in the hose are completely discharged and the resin and curing agent are mixed in proportion to discharge glue. Then the brick joints are filled. The length of this part of the unused caulking agent can reach several meters or even longer, resulting in waste of caulking agent.

[0003] Chinese utility model patent with authorization publication number CN221605424U discloses a device for eliminating bubbles in printed metallic ink. This device involves adding flowing ink to a housing and then vibrating to eliminate bubbles. Bubbles in caulking agent hoses are generated after the caulking agent is injected into the hose. To eliminate bubbles in batches, several hoses filled with caulking agent must be placed in a container, typically a barrel or box with a lid. The lid and its components are heavy, so opening the lid requires considerable effort. If the lid is hinged to the barrel or box via a hinged shaft, the shaft is subject to significant forces, making it susceptible to damage after repeated use. Therefore, there is an urgent need for a vibrating machine for caulking agent mixing hoses that can eliminate bubbles in hoses, reliably support the lid, and facilitate lid opening. Utility Model Content

[0004] The technical problem to be solved by the utility model is to provide a vibrating machine for a seam-beautifying agent mixing tube which can eliminate bubbles in a rubber tube, reliably support a cover and conveniently open the cover.

[0005] In order to solve the above technical problems, the utility model includes a frame, which is elastically connected to a supporting frame through a number of first compression springs, and the supporting frame is fixed with a number of anti-drop rods that can pass through the first compression springs and the upper part of the frame. The supporting frame is provided with a vibration motor and a material box, and the material box includes a box body arranged on the supporting frame, and the supporting frame is rotatably connected to a box cover that can move downward toward and upward away from the box body through a rotating lifting mechanism. The box cover is clamped on the upper part of the box body by a clamping piece to achieve sealing of the box body. A storage mechanism for carrying a number of materials is provided inside the box body, and the box cover is provided with a vacuum pump that can evacuate the closed environment formed by the box body and the box cover. The lower part of the box body is sealed and connected with an air pipe that can connect the inside of the box body with the external environment, and a hand valve is provided on the side of the air pipe located outside the box body.

[0006] With the above structure, the operator first unlocks the clamping member and moves the lid upward, initially moving it away from the box body. The operator then operates the rotating lifting mechanism to rotate the lid further away from the box body. This allows the lid to be sufficiently away from the box body, making it easier for the operator to subsequently place materials into the box body and open the lid conveniently. The rotating lifting mechanism provides reliable support for the lid. The operator then places some materials onto the storage mechanism. After placing the materials, the operator operates the rotating lifting mechanism to rotate the lid closer to the box body. The operator then moves the lid downward, further approaching the box body. Finally, the clamping member locks the lid onto the box body, sealing the box body. The sealed environment formed by the box body and lid is then evacuated using a vacuum pump. Finally, the support frame and material box are vibrated by a vibration motor. The hose carrying the material also vibrates along with the box and storage mechanism. The bubbles in the hose move upward and are eventually expelled from the caulking agent inside the hose. After the box is evacuated, the air pressure of the bubbles is greater than the air pressure in the sealed environment formed by the box body and lid, ensuring the smooth expulsion of the bubbles, thereby eliminating the bubbles in the hose. To remove the material after the bubbles are removed, the vacuum pump is turned off and the hand valve is slowly opened. External air slowly enters the sealed environment formed by the box body and lid through the air pipe. When the air pressure in the sealed environment formed by the box body and lid is roughly the same as the external pressure, the lid is removed by operating the clamps and rotating the lifting mechanism. Finally, the operator can remove the material from the storage mechanism. The anti-drop rod limits the position of the first compression spring and the support frame to ensure overall stability during use.

[0007] Furthermore, the rotating hoisting mechanism includes a support frame fixed to the carrier frame, the top of the support frame is provided with an installation chamber, the bottom of the installation chamber is provided with a planar thrust bearing and a support rod passing through the planar thrust bearing, the top of the planar thrust bearing is abutted against a second compression spring sleeved on the support rod, the support rod is rotatably connected to a rotating sleeve whose bottom abuts against the top of the second compression spring, the outer surface of the rotating sleeve is clearance-fitted with the installation chamber, the rotating sleeve is connected to the box cover via a connecting frame, and the support rod is provided with an anti-slip member that can limit the position of the rotating sleeve in the vertical direction after the second compression spring returns to its original position. By setting up the rotating hoisting mechanism, the rotation of the box cover drives the rotating sleeve and the second compression spring to rotate through the connecting frame, the planar thrust bearing bears the pressure from the second compression spring and can rotate upward under the drive of the second compression spring, and the support rod limits the position of the planar thrust bearing and the second compression spring. When the box cover, the connecting frame or the rotating sleeve is pressed downward, the second compression spring can be compressed, and the box cover can be close to the box body and locked on the box body through the clamping piece; when the box cover is unlocked from the box body, the second compression spring resets and rebounds, and the box cover can move upward away from the box body, and the anti-slip piece prevents the rotating sleeve from flying upward out of the installation chamber under the reset and rebound action of the second compression spring.

[0008] Furthermore, the anti-slip member comprises a threaded rod screwed onto the upper portion of the support rod, with a horizontally mounted anti-slip block fixed to the top of the threaded rod. The threaded rod and anti-slip block create a T-shaped anti-slip member. The threaded rod allows for easy removal of the anti-slip member, while the anti-slip block provides a reliable barrier to the upward movement of the rotating sleeve.

[0009] Furthermore, the material storage mechanism includes a first placement plate disposed at the bottom of the inner cavity of the box, a second placement plate and a third placement plate located above the first placement plate are hingedly connected to the left and right side walls of the inner cavity of the box, a first pressure plate is disposed on the right side of the second placement plate, a second pressure plate is disposed on the left side of the third placement plate and can press against the first pressure plate, the bottom of the third placement plate is elastically connected to the box body via a tension spring, the first placement plate, the second placement plate, and the third placement plate are each provided with a plurality of clamping seats for clamping materials, a tightening block is fixed to the box body and can abut against the bottom of the second and third placement plates, and the second and third placement plates are each provided with a plurality of air holes extending vertically therethrough. By providing the material storage mechanism, the second and third placement plates improve the utilization rate of the box body; the tension spring applies a certain tension to the third placement plate, ensuring that the second pressure plate is pressed against the first pressure plate, thereby ensuring that the second and third placement plates can stably abut against the tightening block, the clamping seats provide reliable clamping for the materials, and the air holes ensure the flow of air in the box body.

[0010] Furthermore, the clamping seat includes a hollow seat body, the outer diameter of the upper portion of which gradually decreases from top to bottom, and a rubber sleeve is provided on the inner side of the seat body to frictionally contact the outer side of the material. By arranging the seat body and the rubber sleeve, the upper portion of the seat body forms a bell-shaped mouth, which is convenient for inserting materials, and the rubber sleeve can clamp the materials and provide a reliable clamping effect on the materials.

[0011] Furthermore, the second placement plate and the third placement plate are respectively screwed with a lifting handle. By providing the lifting handle, the operator can hold the lifting handle to conveniently flip the second placement plate and the third placement plate upwards.

[0012] Furthermore, the inner cavity of the box is symmetrically provided with a working platform, each of which has a threaded hole for screwing a lifting handle. After the two lifting handles are detached from the second and third placement plates and screwed onto the two working platforms, they can respectively support the bottom of the second and third placement plates that have been flipped up. By providing the working platform, the operator can screw the lifting handles onto the working platform after flipping the second and / or third placement plates upward, thereby locking the flipped second and / or third placement plates. The operator does not need to constantly hold the second and / or third placement plates, thereby ensuring safe operation and reducing the workload of the operator.

[0013] Furthermore, a plurality of handles are symmetrically provided on the top of the box cover. By providing the plurality of handles, the operator can operate the box cover conveniently, reducing the operator's workload.

[0014] Furthermore, the frame is provided with a plurality of lifting lugs for lifting, and a plurality of counterweights are provided on a side of the carrier frame away from the support frame. The provision of the lifting lugs enables the device to be lifted stably and safely, and the provision of the counterweights balances the weight of the device, ensuring stability during lifting.

[0015] Furthermore, a slot is provided at the bottom of the box cover to catch the top of the box body, and a sealing ring is provided at the top of the slot, through which the box cover is sealed to the box body. The sealing ring ensures the sealing between the box cover and the box body.

[0016] In summary, the utility model has the advantages of being easy to use and having a reasonable structure. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the structure of the utility model in a half-section effect in the main view state;

[0018] Figure 2 yes Figure 1 A partial enlarged view of area A in the middle;

[0019] Figure 3 It is a structural diagram of the box cover;

[0020] Figure 4 This is a structural diagram of the lifting handle in use on the working table;

[0021] Figure 5 It is a structural diagram of the clamp seat;

[0022] Figure 6 This is a schematic diagram of the main structure of the hose;

[0023] Figure 7 It is a schematic diagram of the structure of the hose from a top view;

[0024] In the figure: 1. Frame; 11. First compression spring; 12. Lifting lug; 2. Carrying frame; 21. Counterweight; 3. Anti-drop rod; 4. Vibration motor; 5. Material box; 51. Box body; 511. Air pipe; 5111. Hand valve; 512. Working table; 52. Box cover; 521. Handle; 522. Slot; 523. Sealing ring; 6. Rotating lifting mechanism; 61. Support frame; 611. Mounting chamber; 62. Planar thrust bearing; 63 , support rod; 64, second compression spring; 65, rotating sleeve; 66, connecting frame; 67, anti-slip part; 671, threaded rod; 672, anti-slip block; 7, material storage mechanism; 71, first placement plate; 72, second placement plate; 721, first pressure plate; 73, third placement plate; 731, second pressure plate; 74, tension spring; 75, clamping seat; 751, seat body; 752, rubber sleeve; 76, tightening block; 8, vacuum pump; 9, lifting handle. DETAILED DESCRIPTION

[0025] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. These drawings are simplified schematic diagrams that only illustrate the basic structure of the present invention in a schematic manner, and therefore only show the components related to the present invention. For ease of understanding, Figure 1 The left side is the left side of the utility model, Figure 1 The right side is the right side of the utility model, Figure 1 The upper side is the upper side of the utility model, Figure 1 The lower side is the lower side of the present invention. Figure 6 and Figure 7 The material is a hose filled with caulking agent.

[0026] Reference Figure 1 and Figure 3The utility model includes a frame 1, which is elastically connected to a carrier frame 2 through a plurality of first compression springs 11. The carrier frame 2 is fixed with a plurality of anti-slip rods 3 that can pass through the first compression springs 11 and the upper part of the frame 1. The number of anti-slip rods 3 corresponds to the number of first compression springs 11. One anti-slip rod 3 passes through one first compression spring 11. One end of the first compression spring 11 rests on the frame 1 and the other end rests on the carrier frame 2. An anti-slip pin can be provided at the lower part of the anti-slip rod 3. The axis of the anti-slip pin is perpendicular to the axis of the anti-slip rod 3. The length of the anti-slip pin is greater than the outer diameter of the anti-slip rod 3. The frame 1 is made of multiple square plates welded together. The anti-slip pin is located below the upper part of the frame 1. The anti-slip pin can prevent the anti-slip rod 3 from falling upward out of the frame 1. The carrier frame 2 is provided with a vibration motor 4 and a material box 5. The material box 5 includes a box body 51 provided on the carrier frame 2. The carrier frame 2 is rotatably connected to a box cover 52 that can move downward toward or upward away from the box body 51 through a rotating hoisting mechanism 6. The box cover 52 is secured to the upper portion of the box body 51 by a fastener, which can be a buckle. A sealed connection is provided to the lower portion of the box body 51, connecting the interior of the box body 51 with the external environment. A hand valve 5111 is located on one side of the air pipe 511, located outside the box body 51. Several handles 521 are symmetrically positioned on the top of the box cover 52. These handles allow operators to easily operate the box cover 52, reducing their workload. The box cover 52 is equipped with a vacuum pump 8, which evacuates the sealed environment formed by the box body 51 and the cover 52. A slot 522 is located at the bottom of the box cover 52, securing the top portion of the box body 51. A sealing ring 523 is located at the top of the slot 522, sealing the box cover 52 to the box body 51. The sealing ring 523 can be a rubber ring, ensuring a tight seal between the box cover 52 and the box body 51.

[0027] Reference Figure 1 and Figure 2The rotating hoisting mechanism 6 includes a support frame 61 fixed to the carrier frame 2, and a mounting chamber 611 is provided on the top of the support frame 61. A planar thrust bearing 62 and a support rod 63 passing through the planar thrust bearing 62 are provided at the bottom of the mounting chamber 611. The top of the planar thrust bearing 62 is abutted with a second compression spring 64 sleeved on the support rod 63. The support rod 63 is rotatably connected to a rotating sleeve 65 whose bottom is abutted against the top of the second compression spring 64. The outer surface of the rotating sleeve 65 is clearance-fitted with the mounting chamber 611. The rotating sleeve 65 is connected to the box cover 52 through a connecting frame 66. The support rod 63 is provided with an anti-slip component 67 that can limit the position of the rotating sleeve 65 in the upper and lower directions after the second compression spring 64 is reset and rebounded. The rotation of the box cover 52 drives the rotating sleeve 65 and the second compression spring 64 to rotate via the connecting bracket 66. The planar thrust bearing 62 bears the pressure from the second compression spring 64 and can rotate its upper portion under the drive of the second compression spring 64. The upper portion of the planar thrust bearing 62 serves as a rotatable moving ring, and the support rod 63 limits the position of the planar thrust bearing 62 and the second compression spring 64. When the box cover 52, the connecting bracket 66, or the rotating sleeve 65 is pressed downward, the second compression spring 64 is compressed, allowing the box cover 52 to approach the box body 51 and be locked to the box body 51 via the clamping member. When the box cover 52 is released from the box body 51, the second compression spring 64 returns to its original position, allowing the box cover 52 to move upward away from the box body 51. The anti-slip member 67 prevents the rotating sleeve 65 from flying upward from the installation chamber 611 due to the return and rebound action of the second compression spring 64. The anti-slip member 67 comprises a threaded rod 671 screwed onto the upper portion of the support rod 63, with a horizontal anti-slip block 672 fixed to the top of the threaded rod 671. The anti-slip member 67 is generally T-shaped. The threaded rod 671 allows for easy removal of the anti-slip member 67, while the anti-slip block 672 provides a reliable barrier to the upward movement of the rotating sleeve 65.

[0028] Reference Figure 1 、 Figure 4 and Figure 5, a storage mechanism 7 for carrying a plurality of materials is provided inside the box body 51, and the storage mechanism 7 includes a first placing plate 71 provided at the bottom of the inner cavity of the box body 51, and the left and right side walls of the inner cavity of the box body 51 are hinged with a second placing plate 72 and a third placing plate 73 located above the first placing plate 71, a first pressing plate 721 is provided on the right side of the second placing plate 72, and a second pressing plate 731 is provided on the left side of the third placing plate 73 that can press on the first pressing plate 721, and the bottom of the third placing plate 73 is elastically connected to the box body 51 by a tension spring 74, and the first placing plate 71, the second placing plate 72 and the third placing plate 73 are respectively provided with a plurality of clamping seats 75 for clamping materials, and the box body 51 is fixed with a tightening block 76 that can resist the bottom of the second placing plate 72 and the third placing plate 73, and the second placing plate 72 and the third placing plate 73 are respectively provided with a plurality of air holes that pass through the upper and lower parts. The second and third placement plates 72 and 73 improve the utilization of the box 51. A tension spring 74 applies tension to the third placement plate 73, ensuring that the second pressure plate 731 presses against the first pressure plate 721, thereby ensuring that the second and third placement plates 72 and 73 are stably supported against the clamping block 76. The clamping base 75 provides a secure grip on the material, and air holes ensure the flow of air within the box 51. The clamping base 75 comprises a hollow base 751, the outer diameter of which gradually decreases from top to bottom. A rubber sleeve 752 is provided on the inner surface of the base 751, which frictionally contacts the outer surface of the material. The rubber sleeve 752 can be made of silicone, rubber, or polyurethane. The inner surface of the rubber sleeve 752 may be patterned or embossed to increase friction and thus ensure grip. The rubber sleeve 752 exhibits a certain degree of elasticity, and when attached to the base 751, its minimum outer diameter is slightly smaller than the maximum outer diameter of the material, thereby enabling frictional grip. The upper portion of the seat body 751 is in the form of a bell mouth, which is convenient for placing materials, and the rubber sleeve 752 can clamp the materials and thus provide reliable clamping for the materials.

[0029] As a preference, refer to Figure 1 and Figure 4The second placement plate 72 and the third placement plate 73 are each screwed with a lifting handle 9. The operator can grasp the lifting handle 9 to conveniently flip the second placement plate 72 and the third placement plate 73 upward. The inner cavity of the box body 51 is provided with a working platform 512 symmetrically. The working platform 512 has a threaded hole for screwing the lifting handle 9. After the two lifting handles 9 are detached from the second placement plate 72 and the third placement plate 73 and screwed onto the two working platforms 512, they can respectively support the bottom of the second placement plate 72 and the third placement plate 73 that have been flipped upward. After flipping the second placement plate 72 and / or the third placement plate 73 upward, the operator can screw the lifting handle 9 onto the working platform 512, thereby locking the second placement plate 72 and / or the third placement plate 73 that have been flipped upward. The operator does not need to constantly hold the second placement plate 72 and / or the third placement plate 73, ensuring operational safety and reducing the operator's workload. The frame 1 is provided with a plurality of lifting lugs 12 for lifting, and a plurality of counterweights 21 are provided on the side of the carrier frame 2 away from the support frame 61. The provision of the lifting lugs 12 enables the device to be lifted stably and safely, and the provision of the counterweights 21 balances the weight of the device, ensuring stability during lifting.

[0030] When using the present invention, the operator first unlocks the clamping member and moves the box cover 52 upward, initially moving the box cover 52 away from the box body 51. Then, by operating the rotating hoisting mechanism 6, the box cover 52 is further rotated away from the box body 51. The box cover 52 can be sufficiently away from the box body 51, making it convenient for the operator to subsequently place materials into the box body 51 and to conveniently open the cover. The rotating hoisting mechanism 6 can provide a reliable support for the box cover 52. The operator then places some materials on the storage mechanism 7. After the materials are placed, the operator operates the rotating hoisting mechanism 6 to rotate the box cover 52 closer to the box body 51. The operator then moves the box cover 52 downward to further move it closer to the box body 51. Finally, the clamping member locks the box cover 52 on the box body 51 to achieve a seal on the box body 51. Then, the sealed environment formed by the box body 51 and the box cover 52 is evacuated by the vacuum pump 8. Finally, the support frame 2 and the material box 5 are vibrated by the vibration motor 4. The hose serving as the material also vibrates along with the material box 5 and the storage mechanism 7. The bubbles in the hose move upward and are eventually discharged from the caulking agent in the hose. After the material box 5 is evacuated, the air pressure of the bubbles is greater than the air pressure of the sealed environment formed by the box body 51 and the box cover 52, ensuring the smooth discharge of the bubbles, thereby eliminating the bubbles in the hose. When it is necessary to take the material with the bubbles discharged, the vacuum pump 8 is turned off and the hand valve 5111 is slowly opened. External air slowly enters the sealed environment formed by the box body 51 and the box cover 52 through the air pipe 511. When the air pressure in the sealed environment formed by the box body 51 and the box cover 52 is approximately the same as the external environment pressure, the box cover 52 is removed by operating the clamping member and rotating the lifting mechanism 6. Finally, the operator can take the material from the storage mechanism 7. The positions of the first compression spring 11 and the supporting frame 2 are limited by the anti-drop rod 3 to ensure the stability of the whole during use.

[0031] The above content is merely an example and explanation of the structure of the utility model. Technicians in this technical field may make various modifications or additions to the specific embodiments described or replace them in a similar manner. As long as they do not deviate from the structure of the utility model or exceed the scope defined by the claims of this patent, they should all fall within the scope of protection of the utility model.

Claims

1. A vibrating machine for mixing tubes of caulking agents, characterized by: The invention comprises a frame (1), wherein the frame (1) is elastically connected to a carrier frame (2) via a plurality of first compression springs (11), the carrier frame (2) is fixed with a plurality of anti-drop rods (3) capable of passing through the first compression springs (11) and the upper portion of the frame (1), the carrier frame (2) is provided with a vibration motor (4) and a material box (5), the material box (5) comprises a box body (51) provided on the carrier frame (2), the carrier frame (2) is rotatably connected to a box cover (52) capable of moving downward toward and upward away from the box body (51) via a rotating hoisting mechanism (6), and the The box cover (52) is clamped on the upper part of the box body (51) by a clamping piece to achieve sealing of the box body (51). The box body (51) is provided with a storage mechanism (7) for carrying a plurality of materials. The box cover (52) is provided with a vacuum pump (8) capable of evacuating the closed environment formed by the box body (51) and the box cover (52). The lower part of the box body (51) is sealedly connected to an air pipe (511) capable of connecting the interior of the box body (51) with the external environment. A hand valve (5111) is provided on one side of the air pipe (511) located outside the box body (51).

2. The vibrating machine for mixing seam sealant according to claim 1, characterized in that: The rotating hoisting mechanism (6) includes a support frame (61) fixed to the carrier frame (2), a mounting chamber (611) is provided on the top of the support frame (61), a plane thrust bearing (62) and a support rod (63) passing through the plane thrust bearing (62) are provided on the bottom of the mounting chamber (611), the top of the plane thrust bearing (62) is abutted against a second compression spring (64) sleeved on the support rod (63), the support rod (63) is rotatably connected to a rotating sleeve (65) whose bottom abuts against the top of the second compression spring (64), the outer side surface of the rotating sleeve (65) is gap-fitted with the mounting chamber (611), the rotating sleeve (65) is connected to the box cover (52) through a connecting frame (66), and the support rod (63) is provided with an anti-slip component (67) that can limit the position of the rotating sleeve (65) in the vertical direction after the second compression spring (64) is reset and rebounded.

3. The vibrating machine for mixing seam sealant according to claim 2, characterized in that: The anti-slip member (67) comprises a threaded rod (671) screwed to the upper portion of the support rod (63), and a horizontally arranged anti-slip block (672) is fixed to the top of the threaded rod (671).

4. The vibrating machine for mixing seam sealant according to claim 1, characterized in that: The material storage mechanism (7) includes a first placement plate (71) arranged at the bottom of the inner cavity of the box body (51), and the left and right side walls of the inner cavity of the box body (51) are respectively hinged with a second placement plate (72) and a third placement plate (73) located above the first placement plate (71), the right side of the second placement plate (72) is provided with a first pressing plate (721), and the left side of the third placement plate (73) is provided with a second pressing plate (731) that can press on the first pressing plate (721), and the bottom of the third placement plate (73) is elastically connected to the box body (51) through a tension spring (74), and the first placement plate (71), the second placement plate (72) and the third placement plate (73) are respectively provided with a plurality of clamping seats (75) for clamping materials, and the box body (51) is fixed with a tightening block (76) that can resist the bottom of the second placement plate (72) and the third placement plate (73), and the second placement plate (72) and the third placement plate (73) are respectively provided with a plurality of air holes that pass through from top to bottom.

5. The vibrating machine for mixing seam sealant according to claim 4, characterized in that: The clamping seat (75) comprises a hollow seat body (751), the outer diameter of the upper portion of the seat body (751) gradually decreases from top to bottom, and the inner side surface of the seat body (751) is provided with a rubber sleeve (752) capable of frictionally contacting the outer side surface of the material.

6. The vibrating machine for mixing seam sealant according to claim 4, characterized in that: The second placement plate (72) and the third placement plate (73) are respectively screwed with a lifting handle (9).

7. The vibrating machine for mixing seam sealant according to claim 6, characterized in that: The inner cavity of the box body (51) is symmetrically provided with an action platform (512), and the action platform (512) is provided with a threaded hole for screwing the pulling handle (9). After the two pulling handles (9) are detached from the second placement plate (72) and the third placement plate (73) respectively and screwed to the two action platforms (512), they can respectively support the bottom of the second placement plate (72) and the third placement plate (73) that are turned upward.

8. The vibrating machine for mixing seam sealant according to claim 1, characterized in that: A plurality of handles (521) are symmetrically provided on the top of the box cover (52).

9. The vibrating machine for mixing seam sealant according to claim 2, characterized in that: The frame (1) is provided with a plurality of lifting lugs (12) for lifting, and a plurality of counterweights (21) are provided on a side of the bearing frame (2) away from the supporting frame (61).

10. The vibrating machine for mixing seam sealant according to any one of claims 1 to 9, characterized in that: The bottom of the box cover (52) is provided with a slot (522) capable of locking the top of the box body (51), and the top of the slot (522) is provided with a sealing ring (523). The box cover (52) is sealedly connected to the box body (51) via the sealing ring (523).

Citation Information

Patent Citations

  • Device for eliminating printing ink bubbles of printing metal

    CN221605424U