Slurry Coating Mechanism, Slurry Coating Device and Bonding Equipment for Toilet Production Line

By designing an automated slurry coating mechanism, using swing brackets and multiple sets of slurry components, the problem of low manual slurry coating efficiency in traditional toilet production is solved, efficient automatic slurry coating and simplified handling is achieved, and the production efficiency of toilets is improved.

CN111873155BActive Publication Date: 2025-07-11GUANGDONG JINMA LEADING INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202010815338.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-08-13
Publication Date
2025-07-11
Estimated Expiration
2040-08-13

AI Technical Summary

Technical Problem

In the production of traditional toilets, the slurry coating process relies on manual operations, resulting in high labor costs and low efficiency, and the handling process after slurry coating is complicated, affecting the bonding efficiency.

Method used

A slurry coating mechanism is designed, including a swing bracket and a drive member, to automatically slurry coating through a slurry assembly, and after slurry coating is completed, the toilet body can be avoided, the handling path is simplified, and multiple sets of slurry assembly are used to improve reliability and efficiency.

Benefits of technology

It realizes automatic slurry coating, reduces labor costs, improves slurry efficiency, simplifies the handling process of toilet blank after slurry coating, and improves the bonding efficiency and reliability of the slurry coating mechanism.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application provides a slurry coating mechanism, a slurry coating device and a bonding device for a toilet production line, belonging to the technical field of toilet production equipment. The slurry coating mechanism includes a frame and at least one group of slurry components. Each group of slurry components has a swing bracket, a driving member and a slurry member; the first end of the swing bracket is rotatably connected to the frame. The driving member is connected between the frame and the swing bracket and is used to drive the swing bracket to rotate. The slurry member is fixed to the second end of the swing bracket. A slurry channel is formed in the slurry member. A slurry port communicating with the first end of the slurry channel is provided at the bottom end of the slurry member. The slurry member is further provided with a connector communicating with the second end of the slurry channel. The slurry coating device and the bonding device include this slurry coating mechanism. After the slurry coating of the toilet body is completed, the slurry coating mechanism can swing away from the toilet body, facilitating the direct lifting of the toilet body for bonding operation.
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Description

Technical Field

[0001] The present application relates to the technical field of toilet production equipment, and more specifically, to a slurry coating mechanism, a slurry coating device, and a bonding device for a toilet production line. Background Art

[0002] In the production process of toilets, the toilet blanks obtained by grouting are bonded together after slurry coating. In the traditional slurry coating process, it is usually carried out manually, with high labor costs and low slurry coating efficiency. In the prior art, after the toilet blank is transported below the slurry outlet, it moves along the slurry coating path for slurry coating, effectively reducing labor costs and improving slurry coating efficiency. After the slurry coating is completed, the toilet blank is usually removed from the side and then lifted for bonding operation. Summary of the Invention

[0003] The purpose of the present application is to provide a slurry coating mechanism, a slurry coating device, and a bonding device for a toilet production line. After the slurry coating of the toilet blank is completed, the slurry coating mechanism can swing away from the toilet blank, facilitating the direct lifting of the toilet blank for bonding operation.

[0004] The embodiments of the present application are implemented as follows:

[0005] In a first aspect, an embodiment of the present application provides a slurry coating mechanism for a toilet production line, including a frame and at least one set of slurry components; each set of slurry components has a swing bracket, a driving member, and a slurry member; the first end of the swing bracket is rotatably connected to the frame; the driving member is connected to the frame, and the driving member is in transmission connection with the swing bracket for driving the swing bracket to rotate; the slurry member is fixed to the second end of the swing bracket, a slurry channel is provided in the slurry member, a slurry outlet communicating with the first end of the slurry channel is provided at the bottom end of the slurry member, and a connection head communicating with the second end of the slurry channel is further provided on the slurry member.

[0006] In the above technical solution, the slurry member can discharge slurry through the slurry outlet at the bottom end. The toilet blank to be slurry-coated can be transported below the slurry outlet and moved along the slurry coating path to achieve slurry coating, with relatively high slurry coating efficiency. The slurry member is fixed to the second end of the swing bracket away from the frame, enabling a relatively large distance between the slurry member and the frame, avoiding interference from the frame to the movement of the toilet blank below the slurry outlet, and facilitating the slurry coating operation. The first end of the swing bracket is rotatably connected to the frame. After the slurry coating of the toilet blank is completed, the swing bracket can be rotated to avoid the upper part of the toilet blank, facilitating the direct lifting of the toilet blank for bonding operation, and simplifying the handling path of the handling device for the toilet blank after the slurry coating is completed.

[0007] In some possible embodiments, the driving member is a telescopic driving member. The first end of the telescopic driving member is rotatably connected to the frame, and the second end of the telescopic driving member is rotatably connected to the swing bracket.

[0008] In the above technical solution, the driving member is driven in the manner of a telescopic driving member, and the structure is convenient to set and the driving is stable.

[0009] In some possible embodiments, the swing bracket is connected to the mounting surface of the frame. The swing bracket has a first rotation stop point and a second rotation stop point. The direction in which the first end of the swing bracket extends toward the second end of the swing bracket is the bracket extension direction; when the swing bracket is at the first rotation stop point, the bracket extension direction is parallel to the mounting surface; when the swing bracket is at the second rotation stop point, the bracket extension direction is perpendicular to the mounting surface.

[0010] In the above technical solution, when the swing bracket is at the first rotation stop point, it is parallel to the mounting surface, and can preferably avoid the upper part of the toilet body; when the swing bracket is at the second rotation stop point, it is perpendicular to the mounting surface, and the maximum distance can be achieved between the second end of the swing bracket and the frame, so that there is enough space when the toilet body moves below the slurry outlet.

[0011] In some possible embodiments, the slurry coating mechanism includes multiple groups of slurry components, and the multiple groups of slurry components are distributed at intervals along the axial direction of the rotation axis of the swing bracket.

[0012] In the above technical solution, by setting multiple groups of slurry components, on the one hand, when a slurry component fails, other groups of slurry components can be replaced for slurry coating, making the operation of the slurry coating mechanism more reliable; on the other hand, when using one group of slurry components for slurry coating, other groups of slurry components can also be connected to the negative pressure suction mechanism. When the slurry coating is unqualified, the slurry can be sucked through the slurry outlet of the slurry component connected to the negative pressure suction mechanism, which is convenient for recycling the slurry.

[0013] In some possible embodiments, the rotation axis of the swing bracket extends along the height direction of the frame.

[0014] In the above technical solution, the swing bracket moves in the horizontal direction when swinging, the movement of the swing bracket is stable, and at the same time, the space above the toilet body can be effectively vacated.

[0015] In this setting mode, multiple groups of slurry components are distributed at intervals along the axial direction of the rotation axis of the swing bracket, that is, multiple groups of slurry components are distributed in the height direction of the frame, which can make full use of the space and save the occupied area of the slurry coating mechanism. Since the swing bracket is rotatably connected to the bracket, when one group of slurry components is operating, other groups of slurry components can rotate to avoid the movement space of the toilet body, ensuring the normal operation of the operation.

[0016] In some possible embodiments, the slurry coating mechanism includes a first group of slurry components and a second group of slurry components. The connector of the first group of slurry components is the first connector, and the connector of the second group of slurry components is the second connector. The first connector is provided with a first one-way valve, and the first one-way valve is configured to allow the slurry to flow unidirectionally from the first connector into the slurry channel. The second connector is provided with a second one-way valve, and the second one-way valve is configured to allow the slurry to flow unidirectionally out of the second connector from the slurry channel.

[0017] In the above technical solution, the first group of slurry components can be used to communicate with the slurry tank. The first one-way valve is configured to allow the slurry to flow unidirectionally from the first connector into the slurry channel, ensuring that the slurry flows out unidirectionally during the grouting operation, preventing the slurry from being sucked back, and ensuring the slurry coating effect. The second group of slurry components can be used to communicate with the negative pressure suction mechanism and is used to suck back the slurry when the slurry coating is unqualified. The second one-way valve is configured to allow the slurry to flow unidirectionally out of the second connector from the slurry channel, ensuring that the slurry is sucked in unidirectionally during the slurry suction operation, preventing the slurry from flowing back, and ensuring the slurry suction effect.

[0018] In some possible embodiments, the slurry coating mechanism further includes a third group of slurry components, and the connector of the third group of slurry components is the third connector. The third connector is provided with a third one-way valve, and the third one-way valve is configured to allow the slurry to flow unidirectionally from the third connector into the slurry channel.

[0019] In the above technical solution, when the first group of slurry components fails, the third group of slurry components can be used to communicate with the slurry tank to ensure the normal operation of the slurry coating mechanism, making the operation of the slurry coating mechanism more reliable. The third one-way valve is configured to allow the slurry to flow unidirectionally from the third connector into the slurry channel, ensuring that the slurry flows out unidirectionally during the grouting operation, preventing the slurry from being sucked back, and ensuring the slurry coating effect.

[0020] In some possible embodiments, the second group of slurry components is located between the first group of slurry components and the third group of slurry components.

[0021] In the above technical solution, the second group of slurry components for sucking slurry is located between the first group of slurry components for coating slurry and the third group of slurry components for coating slurry. When using the first group of slurry components and the third group of slurry components, it is convenient to move the toilet body to the position corresponding to the second group of slurry components for slurry suction operation.

[0022] In some possible embodiments, the slurry coating mechanism includes a first group of slurry components and a third group of slurry components. The connection head of the first group of slurry components is the first connection head, and the connection head of the third group of slurry components is the third connection head. The first connection head is provided with a first one-way valve, which is configured to allow the slurry to flow unidirectionally from the first connection head into the slurry channel. The third connection head is provided with a third one-way valve, which is configured to allow the slurry to flow unidirectionally from the third connection head into the slurry channel.

[0023] In the above technical solution, the slurry tank can be selectively connected to one of the first group of slurry components and the third group of slurry components. When one of the groups of slurry components fails, it can be replaced with the spare other group of slurry components to ensure the normal operation of the slurry coating mechanism and make the operation of the slurry coating mechanism more reliable. The settings of the first one-way valve and the third one-way valve enable the slurry to flow out unidirectionally during the grouting operation, prevent the slurry from being sucked back, and ensure the slurry coating effect.

[0024] In a second aspect, an embodiment of the present application provides a slurry coating device for a toilet production line, including a slurry tank and the slurry coating mechanism provided in the first aspect embodiment. The slurry tank is provided with a slurry outlet, and the slurry outlet is used to communicate with the connection head of the slurry component.

[0025] In the above technical solution, the slurry coating device includes the above-mentioned slurry coating mechanism. After the slurry tank is communicated with the connection head of the slurry component, the slurry in the slurry tank exits through the slurry outlet at the bottom of the slurry component. The toilet blank to be coated with slurry is transported below the slurry outlet and can move along the slurry coating path to achieve slurry coating. After the toilet blank is coated with slurry, the swing bracket can be rotated to avoid the upper part of the toilet blank, which is convenient for directly lifting the toilet blank for bonding operation.

[0026] In some possible embodiments, the slurry coating device further includes a negative pressure suction feeding mechanism. The slurry coating mechanism includes a first group of slurry components and a second group of slurry components. The connection head of the first group of slurry components is the first connection head, and the connection head of the second group of slurry components is the second connection head. The slurry outlet is communicated with the first connection head, and the negative pressure suction feeding mechanism is communicated with the second connection head.

[0027] In the above technical solution, when the slurry coating is unqualified, the toilet blank is moved below the slurry outlet of the second group of slurry components, and the slurry is sucked through the slurry outlet of the second slurry component communicated with the negative pressure suction feeding mechanism, which is convenient for recovering the slurry.

[0028] In some possible embodiments, the first connection head is provided with a first one-way valve, which is configured to allow the slurry to flow unidirectionally from the first connection head into the slurry channel. The second connection head is provided with a second one-way valve, which is configured to allow the slurry to flow unidirectionally out of the second connection head from the slurry channel.

[0029] In the above technical solution, the first one-way valve ensures that the slurry flows out unidirectionally during the grouting operation, prevents the slurry from being sucked back, and ensures the grouting effect; the second one-way valve ensures that the slurry is sucked in unidirectionally during the slurry suction operation, prevents the slurry from flowing back, and ensures the slurry suction effect.

[0030] In some possible embodiments, the grouting mechanism further includes a third set of slurry components. The connecting head of the third set of slurry components is the third connecting head, and the third connecting head is used to communicate with the slurry outlet; the second set of slurry components is located between the first set of slurry components and the third set of slurry components.

[0031] In the above technical solution, when the first set of slurry components fails, the third set of slurry components can be used to communicate with the slurry tank to ensure the normal operation of the grouting mechanism, making the operation of the grouting mechanism more reliable; the second set of slurry components for slurry suction is located between the first set of slurry components for grouting and the third set of slurry components for grouting. When using the first set of slurry components and the third set of slurry components, the toilet body can be conveniently transported to the position corresponding to the second set of slurry components for slurry suction operation.

[0032] In some possible embodiments, the third connecting head is provided with a third one-way valve, and the third one-way valve is configured to allow the slurry to flow into the slurry channel unidirectionally from the third connecting head.

[0033] In the above technical solution, the third one-way valve ensures that the slurry flows out unidirectionally during the grouting operation, prevents the slurry from being sucked back, and ensures the grouting effect.

[0034] In a third aspect, an embodiment of the present application provides an adhesive device for a toilet production line, including a handling device and a grouting device provided in the second aspect embodiment. The handling device is configured to be able to transport the toilet body to be grouted below the slurry outlet and move the toilet body along the grouting path.

[0035] In the above technical solution, the adhesive device includes the above grouting device. The handling device transports the toilet body to be grouted below the slurry outlet. When the slurry outlet connected to the slurry tank discharges slurry, the handling device moves the toilet body along the grouting path to achieve grouting. After the grouting of the toilet body is completed, the swing bracket can be rotated to avoid the upper part of the toilet body, and the handling device can directly lift the toilet body for bonding operation, which can simplify the handling path of the handling device for the toilet body after grouting. Description of the Drawings

[0036] To more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the accompanying drawings required for use in the embodiments. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as limiting the scope. For those of ordinary skill in the art, without creative efforts, other relevant drawings can also be obtained based on these drawings.

[0037] Figure 1 Schematic structural diagram of the bonding device for the toilet production line provided by the embodiment of the present application;

[0038] Figure 2 Schematic structural diagram of the slurry coating device for the toilet production line provided by the embodiment of the present application;

[0039] Figure 3 Schematic structural diagram of the slurry coating mechanism for the toilet production line provided by the embodiment of the present application from the first perspective;

[0040] Figure 4 Schematic structural diagram of the slurry coating mechanism for the toilet production line provided by the embodiment of the present application from the second perspective;

[0041] Figure 5 Schematic structural diagram of the slurry coating mechanism for the toilet production line provided by the embodiment of the present application from the third perspective;

[0042] Figure 6 Schematic structural diagram of the slurry tank provided by the embodiment of the present application.

[0043] Icons: 10 - Bonding device for the toilet production line; 10a - Slurry coating device for the toilet production line; 10b - Handling device; 100 - Slurry coating mechanism for the toilet production line; 110 - Frame; 111 - Base; 112 - Mounting plate; 120 - Slurry assembly; 121 - First group of slurry assemblies; 122 - Second group of slurry assemblies; 123 - Third group of slurry assemblies; 124 - Swing bracket; 125 - Driving member; 126 - Slurry member; 127 - Slurry port; 128 - Connector; 200 - Slurry tank; 210 - Slurry outlet; 220 - End cover; 230 - Pressure valve; 240 - Exhaust valve; 250 - Safety valve; 260 - Lock; 270 - Cleaning and sewage discharge port; 300 - Toilet body blank. Specific embodiments

[0044] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present application in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. Usually, the components of the embodiments of the present application described and shown in the accompanying drawings here can be arranged and designed in various different configurations.

[0045] Accordingly, the following detailed description of the embodiments of the present application provided in the accompanying drawings is not intended to limit the scope of the claimed present application, but merely represents selected embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative efforts shall fall within the scope of protection of the present application.

[0046] It should be noted that like reference numerals and letters denote like items in the following drawings. Therefore, once an item is defined in one drawing, it does not require further definition and explanation in subsequent drawings.

[0047] In the description of the present application, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of this application is customarily placed during use. It is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present application.

[0048] In addition, the terms "first", "second", "third", etc. are only used for distinguishing descriptions and should not be construed as indicating or implying relative importance. Terms such as "vertical" and "parallel" do not require the components to be absolutely vertical or parallel, but may be slightly inclined.

[0049] In the description of the present application, it should also be noted that unless otherwise clearly specified and limited, the terms "arranged", "installed", and "connected" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be directly connected, or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0050] Please refer to Figure 1 , an adhesive device 10 for a toilet production line provided by an embodiment of the present application includes a handling device 10b and a slurry coating device 10a for the toilet production line. The slurry coating device includes a slurry tank 200 and a slurry coating mechanism 100 for the toilet production line; exemplarily, the slurry coating mechanism further includes a negative pressure suction feeding mechanism (not shown in the figure).

[0051] Please refer to Figure 2, in an embodiment of the present application, there is a slurring mechanism frame 110 and at least one set of slurry components 120. Each set of slurry components 120 is installed on the frame 110. Exemplarily, the frame 110 includes a base 111 and at least one mounting plate 112. One side of the mounting plate 112 is fixed to the side of the base 111; the other side of the mounting plate 112 is located outside the base 111 and serves as the mounting surface of the mounting plate 112 for conveniently installing the slurry components 120. Further, the mounting plates 112 correspond one-to-one with the slurry components 120, facilitating the fixing of each set of slurry components 120 to the base 111 after being installed on the mounting surface of the mounting plate 112.

[0052] It should be noted that, in an embodiment of the present application, the slurry components 120 can be one set or multiple sets. Multiple sets mean at least two sets, such as two sets or three sets. When the slurry components 120 are set as multiple sets, without further explanation, it can be understood that the structures of multiple sets of slurry components 120 are the same.

[0053] Please refer to Figures 3 to 5 , in an embodiment of the present application, each set of slurry components 120 has a swing bracket 124, a driving member 125, and a slurry member 126.

[0054] A slurry channel is provided in the slurry member 126. A slurry port 127 communicating with the first end of the slurry channel is provided at the bottom end of the slurry member 126, and a connection head 128 communicating with the second end of the slurry channel is also provided on the slurry member 126. The slurry tank 200 is provided with a slurry outlet 210, and the slurry outlet 210 is used to communicate with the connection head 128 of the slurry component 120 to connect the slurry. Exemplarily, the slurry outlet 210 selectively communicates with the connection head 128 of one set of slurry components 120. The handling device 10b is configured to be able to transport the toilet body 300 to be slurried below the slurry port 127 and move the toilet body 300 along the slurring path. The handling device 10b transports the toilet body 300 to be slurried below the slurry port 127. When the slurry port 127 connected to the slurry tank 200 discharges slurry, the handling device 10b moves the toilet body 300 along the slurring path to achieve slurring.

[0055] It can be understood that since there is at least one set of slurry components 120 in the slurring mechanism of the present application, the handling device 10b is configured to be able to cooperate with each set of slurry components 120 respectively. In addition, the fact that the slurry outlet 210 selectively communicates with the connection head 128 of one set of slurry components 120 means that when the slurry outlet 210 is connected to the slurring mechanism, only the connection head 128 of one set of slurry components 120 is selected for communication in the same state; when the slurry components 120 are set as multiple sets, the slurry outlet 210 can select the connection head 128 of one set of slurry components 120 for communication, or can also select to replace it with the connection head 128 of other sets of slurry components 120 for communication.

[0056] The first end of the swing bracket 124 is rotatably connected to the frame 110. The driving member 125 is connected to the frame 110, and the driving member 125 and the swing bracket 124 are in transmission connection for driving the swing bracket 124 to rotate. Exemplarily, the rotation axis of the swing bracket 124 extends along the height direction of the frame 110. The height direction of the frame 110 is as shown in Figure 3 the A direction shown, and the swing direction of the swing bracket 124 is as shown in Figure 5 the B direction described. When the swing bracket 124 rotates around its first end, the distance between the second end of the swing bracket 124 and the frame 110 changes. After the slurry coating of the toilet bowl blank 300 is completed, the swing bracket 124 can be rotated to avoid the upper part of the toilet bowl blank 300, and the handling device 10b can directly lift the toilet bowl blank 300 for bonding operation, which can simplify the handling path of the toilet bowl blank 300 by the handling device 10b after the slurry coating is completed.

[0057] In the embodiment of the present application, the slurry member 126 is fixed to the second end of the swing bracket 124. The second end of the swing bracket 124 is the end far from the frame 110, so that a relatively large distance can be provided between the slurry member 126 and the frame 110, avoiding interference of the frame 110 on the movement of the toilet bowl blank 300 below the slurry outlet 127 and facilitating the slurry coating operation.

[0058] It can be understood that in the embodiment of the present application, the rotation axis of the swing bracket 124 is not limited to extending along the height direction of the frame 110. For example, the rotation axis of the swing bracket 124 can be horizontally arranged, so that the swing bracket 124 swings upward or downward during operation. Exemplarily, the driving member 125 is in transmission connection with one side of the frame 110 at the top of the swing bracket 124 for driving the swing bracket 124 to swing upward.

[0059] In some possible implementation schemes, the slurry coating mechanism includes multiple groups of slurry components 120. On the one hand, one group of slurry components 120 is used for normal slurry coating, and other slurry coating mechanisms can be used as backups. When the used group of slurry components 120 fails, other groups of slurry components 120 can be replaced for slurry coating, making the operation of the slurry coating mechanism more reliable. On the other hand, when using one group of slurry components 120 for slurry coating, a negative pressure suction mechanism can also be arranged in the slurry coating device. The negative pressure suction mechanism is selectively communicated with the connection head 128 of one group of slurry components 120. When the slurry coating is unqualified, the slurry is sucked through the slurry outlet 127 of the slurry component 120 communicated with the negative pressure suction mechanism, facilitating the recovery of the slurry.

[0060] Exemplarily, multiple sets of slurry components 120 are distributed at intervals along the axial direction of the rotation axis of the swing bracket 124. Since the swing bracket 124 is rotatably connected to the machine frame 110, when the multiple sets of slurry components 120 are distributed in the height direction of the machine frame 110, when one set of slurry components 120 is operating, this set of slurry components 120 is defined as the operating component, and the other sets of slurry components 120 can rotate to avoid the movement space for the toilet body 300 to move along the slurry coating path below the operating component, as well as the up and down movement space for the toilet body 300 to lift, ensuring the normal operation. This distribution method can make full use of the space and save the occupied area of the slurry coating mechanism.

[0061] In the first exemplary embodiment, the slurry coating mechanism includes two sets of slurry components 120. The connecting head 128 of one set of slurry components 120 is communicated with the slurry outlet 210 of the slurry tank 200, and the connecting head 128 of the other set of slurry components 120 is communicated with the negative pressure suction feeding mechanism.

[0062] In the second exemplary embodiment, the slurry coating mechanism includes two sets of slurry components 120. The connecting head 128 of one set of slurry components 120 is communicated with the slurry outlet 210 of the slurry tank 200, and the other set of slurry components 120 is in reserve and can be communicated with the slurry outlet 210 of the slurry tank 200.

[0063] In the third exemplary embodiment, the slurry coating mechanism includes three sets of slurry components 120, namely the first set of slurry components 121, the second set of slurry components 122, and the third set of slurry components 123. Among them, the connecting head 128 of the first set of slurry components 121 is communicated with the slurry outlet 210 of the slurry tank 200, the connecting head 128 of the second set of slurry components 122 is communicated with the negative pressure suction feeding mechanism, and the third set of slurry components 123 is in reserve and can be communicated with the slurry outlet 210 of the slurry tank 200.

[0064] Furthermore, the second set of slurry components 122 is located between the first set of slurry components 121 and the third set of slurry components 123. The second set of slurry components 122 for sucking slurry is located between the first set of slurry components 121 for coating slurry and the third set of slurry components 123 for coating slurry. When it is at the first set of slurry components 121 and at the third set of slurry components 123, it is convenient to carry the toilet body 300 to the position corresponding to the second set of slurry components 122 for sucking slurry operation.

[0065] It should be noted that in the above first exemplary embodiment, second exemplary embodiment, and third exemplary embodiment, the structures of the multiple groups of slurry components 120 may be the same or different. Optionally, the structures of the first group of slurry components 121 and the third group of slurry components 123 that are used to communicate with the slurry outlet 210 of the slurry tank 200 are the same, and the second group of slurry components 122 that is used to communicate with the negative pressure suction mechanism is different from the first group of slurry components 121 and the third group of slurry components 123.

[0066] Exemplarily, the differences between the first group of slurry components 121, the second group of slurry components 122, and the third group of slurry components 123 are as follows: The connector 128 of the first group of slurry components 121 is the first connector 128, and the first one-way valve is provided on the first connector 128. The first one-way valve is configured to allow the slurry to flow unidirectionally into the slurry channel from the first connector 128. The connector 128 of the second group of slurry components 122 is the second connector 128, and the second one-way valve is configured to allow the slurry to flow unidirectionally out of the second connector 128 from the slurry channel. The connector 128 of the third group of slurry components 123 is the third connector 128, and the third one-way valve is provided on the third connector 128. The third one-way valve is configured to allow the slurry to flow unidirectionally into the slurry channel from the third connector 128. The first one-way valve and the third one-way valve ensure that the slurry flows out unidirectionally during the grouting operation, prevent the slurry from being sucked back, and ensure the grouting effect. The second one-way valve ensures that the slurry is sucked in unidirectionally during the slurry suction operation, prevents the slurry from flowing back, and ensures the slurry suction effect.

[0067] In the embodiment of the present application, the swing bracket 124 is connected to the installation surface of the frame 110. The direction in which the first end of the swing bracket 124 extends toward the second end of the swing bracket 124 is the bracket extension direction. The swing bracket 124 has a first rotation stop point and a second rotation stop point. The first rotation stop point is the avoidance position of the slurry component 120; the second rotation stop point is the working position of the slurry component 120 (as Figures 3 - 5 shown).

[0068] Optionally, when the swing bracket 124 is at the first rotation stop point, the angle between the bracket extension direction and the installation surface does not exceed 10°. For example, the bracket extension direction is parallel to the installation surface, which can better avoid the upper part of the toilet body 300. When the swing bracket 124 is at the second rotation stop point, the angle between the bracket extension direction and the installation surface is not less than 80° and does not exceed 100°. For example, the bracket extension direction is perpendicular to the installation surface, and a relatively large distance can be achieved between the second end of the swing bracket 124 and the frame 110, so that there is enough space for the toilet body 300 to move under the slurry outlet 127.

[0069] It can be understood that in the embodiments of the present application, the setting manner of the driving member 125 is not limited. For example, it can be set in the form of a rotating motor to drive the rotating shaft at the first end of the swing bracket 124 to rotate, or it can be set in the form of a telescopic connecting rod to drive the swing bracket 124 to rotate around the rotating shaft at its first end.

[0070] In some possible implementation manners, the driving member 125 is a telescopic driving member, and an exemplary one is a cylinder. In other embodiments, it can also be a hydraulic cylinder or an electric telescopic rod for example. The first end of the telescopic driving member is rotatably connected to the frame 110, and the second end of the telescopic driving member is rotatably connected to the swing bracket 124. The frame 110, the telescopic driving member and the swing bracket 124 form a form of telescopic connecting rod for driving, and the structural setting is convenient and the driving is stable.

[0071] Furthermore, the second end of the telescopic driving member is connected to the side wall of the first end of the swing bracket 124. When the swing bracket 124 is at the first rotation stop point, the angle between the telescopic driving member and the mounting plate 112 is small, avoiding interference of the telescopic driving member with the operation.

[0072] As the slurry in the slurry tank 200 is consumed during the slurry coating operation, the liquid level of the slurry in the slurry tank 200 gradually decreases. Please refer to Figure 6 , in some possible implementation manners, the slurry outlet 210 is arranged at the bottom of the slurry tank 200, ensuring complete discharge of the slurry from the slurry tank 200. At the same time, complete discharge is also beneficial to ensuring the uniformity of the slurry in the slurry tank 200 so as to make the slurry discharge uniform.

[0073] Optionally, the slurry outlet 210 is arranged at the bottom end of the side wall of the slurry tank 200. Since the slurry outlet 210 needs to be frequently cleaned during production, arranging the slurry outlet 210 on the side wall is convenient for operation.

[0074] Furthermore, a cleaning and sewage discharge port 270 is also provided at the bottom of the tank body of the slurry tank 200, facilitating full sewage discharge from the cleaning port.

[0075] It can be understood that in the embodiments of the present application, the setting manner of the slurry tank 200 is not limited. It can be provided with a delivery pump to deliver the slurry from the slurry outlet 210 to the slurry assembly 120, or the slurry tank 200 can be set as a pressure tank and the slurry is delivered from the slurry outlet 210 to the slurry assembly 120 through pressure.

[0076] Exemplarily, the slurry tank 200 is a pressure tank, and its top has an end cover 220 for opening and closing the tank body. The end cover 220 is provided with a pressure valve 230, an exhaust valve 240 and a safety valve 250. Optionally, the tank body and the end cover 220 are fixed by a buckle 260, which is convenient for opening and closing and ensures good stability when closing the tank body.

[0077] It can be understood that in the embodiments of the present application, the setting manner of the handling device 10b is not limited either. It can be set in the form of a combination of a conveyor line and a lifting platform, or in the form of a handling robot, or in the form of a robotic arm. Among them, the setting manner of the robotic arm is simple and the handling flexibility is high.

[0078] The bonding device 10 for a toilet production line provided by the embodiments of the present application has the following working principle:

[0079] When a set of slurry components 120 is provided in the slurry coating mechanism, before the slurry coating starts, the swing bracket 124 is located at the second rotation stop point. The handling device 10b transports the toilet body blank 300 to be slurry-coated below the slurry outlet 127. While the slurry is discharged from the slurry outlet 127, the handling device 10b moves the toilet body blank 300 along the slurry coating path to achieve slurry coating. After the slurry coating is completed, the swing bracket 124 is located at the first rotation stop point, and the handling device 10b directly lifts the toilet body blank 300 with the slurry coating completed for bonding.

[0080] When multiple sets of slurry components 120 are provided in the slurry coating mechanism, the first set of slurry components 121 is connected to the slurry tank 200. Before the slurry coating starts, the swing bracket 124 of the first set of slurry components 121 is located at the second rotation stop point for slurry coating, and the swing brackets 124 of the remaining sets of slurry components 120 are located at the first rotation stop point. The handling device 10b transports the toilet body blank 300 to be slurry-coated below the slurry outlet 127 of the first set of slurry components 121 for slurry coating. When the first set of slurry components 121 fails, another set of slurry components 120 is replaced and connected to the slurry tank 200, and the swing bracket 124 of this other set of slurry components 120 connected to the slurry tank 200 is rotated to the second rotation stop point for slurry coating. When the slurry coating is unqualified, the toilet body blank 300 is transported below the slurry outlet 127 connected to the negative pressure suction mechanism, and the swing bracket 124 of the slurry component 120 connected to the negative pressure suction mechanism is rotated to the second rotation stop point for slurry suction.

[0081] The above are only the preferred embodiments of the present application and are not used to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A slurry coating mechanism for a toilet production line, characterized in that, Comprising: A frame; And Multiple groups of slurry components, each group of the slurry components having a swing bracket, a driving member, and a slurry member; a first end of the swing bracket is rotatably connected to the frame; The driving member is connected to the frame, and the driving member and the swing bracket are in transmission connection for driving the swing bracket to rotate; the slurry member is fixed to a second end of the swing bracket, a slurry channel is formed in the slurry member, a slurry outlet communicating with a first end of the slurry channel is provided at a bottom end of the slurry member, and the slurry member is further provided with a connector communicating with a second end of the slurry channel; the multiple groups of the slurry components are distributed at intervals along an axial direction of a rotation axis of the swing bracket; The driving member is a telescopic driving member, a first end of the telescopic driving member is rotatably connected to the frame, and a second end of the telescopic driving member is rotatably connected to the swing bracket.

2. The coating mechanism according to claim 1, characterized in that, The swing bracket is connected to an installation surface of the frame, the swing bracket has a first rotation stop point and a second rotation stop point, a direction in which a first end of the swing bracket extends toward a second end of the swing bracket is a bracket extension direction; when the swing bracket is located at the first rotation stop point, the bracket extension direction is parallel to the installation surface; when the swing bracket is located at the second rotation stop point, the bracket extension direction is perpendicular to the installation surface.

3. The slurry coating mechanism according to claim 1, characterized in that, A rotation axis of the swing bracket extends along a height direction of the frame.

4. The coating mechanism according to claim 1 or 3, characterized in that, The slurry coating mechanism includes a first group of the slurry components and a second group of the slurry components, the connector of the first group of the slurry components is a first connector, and the connector of the second group of the slurry components is a second connector; the first connector is provided with a first one-way valve, and the first one-way valve is configured to allow slurry to flow unidirectionally from the first connector into the slurry channel; the second connector is provided with a second one-way valve, and the second one-way valve is configured to allow slurry to flow unidirectionally out of the second connector from the slurry channel.

5. The slurry coating mechanism according to claim 4, characterized in that, The slurry coating mechanism further includes a third group of the slurry components, the connector of the third group of the slurry components is a third connector; the third connector is provided with a third one-way valve, and the third one-way valve is configured to allow slurry to flow unidirectionally from the third connector into the slurry channel.

6. The coating mechanism according to claim 5, characterized in that, The second group of the slurry components is located between the first group of the slurry components and the third group of the slurry components.

7. The coating mechanism according to claim 1 or 3, characterized in that, The slurry coating mechanism includes a first group of the slurry components and a third group of the slurry components, the connector of the first group of the slurry components is a first connector, and the connector of the third group of the slurry components is a third connector; the first connector is provided with a first one-way valve, and the first one-way valve is configured to allow slurry to flow unidirectionally from the first connector into the slurry channel; the third connector is provided with a third one-way valve, and the third one-way valve is configured to allow slurry to flow unidirectionally from the third connector into the slurry channel.

8. A slurry coating device for a toilet production line, characterized in that, Comprising a slurry tank and the slurry coating mechanism according to any one of claims 1 to 3; the slurry tank is provided with a slurry outlet for communicating with the connector of the slurry components.

9. The slurry coating device according to claim 8, characterized in that, The slurry coating device further includes a negative pressure suction feeding mechanism; The slurry coating mechanism includes a first group of the slurry components and a second group of the slurry components. The connector of the first group of the slurry components is a first connector, and the connector of the second group of the slurry components is a second connector. The slurry outlet is communicated with the first connector, and the negative pressure suction mechanism is communicated with the second connector.

10. The slurry coating device according to claim 9, characterized in that, The first connector is provided with a first one-way valve, and the first one-way valve is configured to allow the slurry to flow unidirectionally from the first connector into the slurry passage. The second connector is provided with a second one-way valve, and the second one-way valve is configured to allow the slurry to flow unidirectionally out of the second connector from the slurry passage.

11. The slurry coating device according to claim 9 or 10, characterized in that, The slurry coating mechanism further includes a third group of the slurry components. The connector of the third group of the slurry components is a third connector, and the third connector is used to be communicated with the slurry outlet. The second group of the slurry components is located between the first group of the slurry components and the third group of the slurry components.

12. The slurry coating device according to claim 11, wherein, The third connector is provided with a third one-way valve, and the third one-way valve is configured to allow the slurry to flow unidirectionally from the third connector into the slurry passage.

13. An adhesive device for a toilet production line, characterized in that, It includes a handling device and the slurry coating device according to any one of claims 8 to 12. The handling device is configured to be able to transport the toilet body to be coated under the slurry outlet and move the toilet body along the coating path.

Citation Information

Patent Citations

  • Slurry coating mechanism for toilet bowl production line, slurry coating device and bonding equipment

    CN212312316U