Blowing and sucking dust removal device for MCM soft porcelain processing

By designing a dust removal device for MCM flexible ceramic processing, the hazards of dust to bonding strength and health were solved, centralized dust treatment was achieved, and product quality and construction efficiency were improved.

CN224010686UActive Publication Date: 2026-03-20GUANGDONG CHENHUI ECOLOGICAL TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-03-20

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Abstract

The utility model relates to an MCM soft porcelain processing blowing and sucking dust removal device which comprises an operation table and a dust cover fixedly arranged on the operation table, a dust sucking assembly and a spiral storage structure are respectively arranged on the operation table, the dust sucking assembly is respectively communicated with the side wall of the dust cover and the spiral storage structure, and a dust blowing assembly is arranged at the top of the dust cover. The dust collection assembly is connected with the spiral storage structure, the dust blowing assembly is connected with the dust collection assembly through a transmission structure, a guide structure is arranged in the dustproof cover, and the guide structure is matched with the dust blowing assembly. According to the MCM soft porcelain processing dust treatment device, dust generated by MCM soft porcelain processing can be effectively treated in time, the product quality is improved, the service life is prolonged, harmful substances possibly contained in the dust are prevented from harming the health of constructors, meanwhile, the dust is prevented from being attached to the surface of MCM soft porcelain or construction equipment, and the construction difficulty and cost are reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to soft porcelain production technical field, concretely is MCM soft porcelain processing blow suction dust collector. BACKGROUND

[0002] MCM soft porcelain is a new type of energy-saving low-carbon decorative material, which has the characteristics of light weight, good flexibility, various appearance modeling, good weather resistance, etc. as a wall decoration material; it has the characteristics of wear resistance, slip resistance, comfortable foot feeling, etc. as a floor decoration material; it is simple and convenient to construct, shortens the construction period compared with traditional materials, saves space and cost, and is not easy to fall off.

[0003] The preparation process of MCM soft porcelain is to prepare raw materials according to a certain proportion, and add appropriate amount of water for stirring. The purpose of stirring is to mix the raw materials thoroughly to form uniform slurry. After drying and curing, the surface of MCM soft porcelain may have some defects or unevenness, which needs to be treated. The surface treatment methods include grinding, polishing, painting, etc. to improve the surface quality and appearance of MCM soft porcelain.

[0004] A large amount of dust will be generated during the processing of MCM soft porcelain. If the dust is not removed in time, it will have the following influences: 1. Reduce the bonding strength. Dust will interfere with the bonding effect between the adhesive and MCM soft porcelain, reduce the bonding strength, and may cause the product to fall off, hollow, etc. during use, affecting the product quality and service life. 2. Harm to human health. Dust may contain harmful substances such as heavy metals, chemical additives, etc. Long-term inhalation or contact with these dusts will harm the health of construction personnel, such as respiratory diseases, skin allergies, etc. 3. Increase the difficulty of cleaning. Once the dust adheres to the surface of MCM soft porcelain or construction equipment, it is difficult to clean up, which requires more time and effort, increasing the difficulty and cost of construction. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing MCM soft porcelain processing blow suction dust collector to solve the problems in the above background technology.

[0006] In order to achieve the above purpose, the utility model provides the following technical scheme:

[0007] MCM soft porcelain processing blow suction dust collector, including operation platform and dustproof cover fixedly arranged on the operation platform, the operation platform is respectively provided with dust collection assembly and spiral storage structure, the dust collection assembly is respectively connected with the side wall of the dustproof cover and the spiral storage structure, when the dust collection assembly operates, the dust in the dustproof cover can be sucked and sent to the spiral storage structure;

[0008] The top of the dustproof cover is provided with a dust blowing assembly, which is connected with the dust suction assembly through a transmission structure, and when the dust suction assembly operates, the dust blowing assembly will follow the action and blow the dust in the dustproof cover.

[0009] The inside of the dustproof cover is provided with a guide structure matched with the dust blowing assembly, which can guide the dust to the dust suction assembly during the operation of the dust blowing assembly.

[0010] As a further scheme of the utility model:

[0011] The dust suction assembly comprises a volute fixedly arranged on the operation table and a rotating shaft rotatably arranged on the volute.

[0012] A impeller is coaxially fixedly arranged on the rotating shaft, a motor is fixedly arranged on the operation table, and an output end of the motor is fixedly connected with one end of the rotating shaft.

[0013] The sidewall of the dustproof cover and the air inlet of the volute are connected and communicated through a first air pipe.

[0014] As a further scheme of the utility model:

[0015] The spiral storage structure comprises a support fixedly arranged on the operation table and a dust collecting box fixedly arranged on the support, and a door is arranged on the sidewall of the dust collecting box.

[0016] A conical barrel is fixedly and communicatively arranged on the top of the dust collecting box, and a cylindrical barrel is fixedly and communicatively arranged on the top of the conical barrel.

[0017] As a further scheme of the utility model:

[0018] The sidewall of the cylindrical barrel and the air outlet of the volute are connected and communicated through a second air pipe, and the length direction of the second air pipe is coincident with the tangential direction of one of the inner walls of the cylindrical barrel.

[0019] A exhaust pipe is coaxially fixedly arranged on the top of the cylindrical barrel, and the exhaust pipe connects the cylindrical barrel with the outside.

[0020] As a further scheme of the utility model:

[0021] The dust blowing assembly comprises a shell and a rotating column, the shell is fixedly arranged on the top of the dustproof cover, the rotating column is rotatably arranged on the shell, and a fan blade is coaxially fixedly arranged on the rotating column.

[0022] As a further scheme of the utility model:

[0023] The transmission structure comprises a fixing frame fixed on the operation table and a rotating rod rotatably arranged on the fixing frame;

[0024] A first transmission wheel is coaxially fixed on the rotating column, a second transmission wheel is coaxially fixed on one end of the rotating rod, and the first transmission wheel and the second transmission wheel are connected by a belt;

[0025] A first bevel gear is coaxially fixed on the other end of the rotating rod, and a second bevel gear is coaxially fixed on the rotating shaft, and the first bevel gear and the second bevel gear are in meshing engagement.

[0026] As a further scheme of the utility model:

[0027] The guide structure comprises a first guide plate and a second guide plate, the first guide plate is fixed on the inner side wall of the dust cover away from the first air pipe, and the first guide plate and the side wall of the dust cover form a 30-degree angle;

[0028] The second guide plate is provided with two and is fixed on the inner wall of the dust cover, the two second guide plates are symmetrically arranged on the two sides of the first guide plate, and the second guide plate is arranged obliquely.

[0029] Compared with the prior art, the utility model has the advantages that:

[0030] The dust cover is arranged on the operation table and located in the dust cover, and the generated dust is located in the dust cover, when the dust suction assembly operates, the dust in the dust cover can be suctioned and sent to the spiral storage structure for storage, then the dust can be centrally treated, at the same time, the dust blowing assembly can move following the dust suction assembly through the transmission structure, and the dust in the dust cover can be blown to the dust suction assembly through the guide structure.

[0031] The dust suction assembly, the spiral storage structure, the dust blowing assembly, the transmission structure and the guide structure can timely and effectively treat the dust generated in the MCM soft porcelain processing, not only avoid the interference of the dust on the bonding effect between the bonding agent and the MCM soft porcelain, thereby improving the product quality and service life, but also avoid the harmful substances possibly contained in the dust from causing harm to the health of the construction personnel, at the same time, the dust adhered to the surface of the MCM soft porcelain or the construction equipment is avoided, and the difficulty and cost of construction are reduced. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 It is a whole structure schematic view of one embodiment of the MCM soft porcelain processing blowing and suction dust removal device.

[0033] Figure 2 It is a volute cross-sectional view in one embodiment of the MCM soft porcelain processing blowing and suction dust removal device.

[0034] Figure 3 For Figure 2 Enlarged view at A.

[0035] Figure 4 For the dust collection tank, conical barrel, cylindrical barrel, exhaust pipe section view in an embodiment of the MCM soft porcelain processing blowing and suction dust removal device.

[0036] Figure 5 For Figure 4 Enlarged view at B.

[0037] Figure 6 For the dust cover, shell section view in an embodiment of the MCM soft porcelain processing blowing and suction dust removal device.

[0038] Figure 7 For Figure 6 Enlarged view at C.

[0039] Figure 8 For the dust cover, cylindrical barrel section view in an embodiment of the MCM soft porcelain processing blowing and suction dust removal device.

[0040] Figure 9 For Figure 8 Enlarged view at D.

[0041] Figure 10 For the partial structure schematic view in an embodiment of the MCM soft porcelain processing blowing and suction dust removal device.

[0042] In the figure: 1, operation table; 2, dust cover; 3, volute; 4, rotating shaft; 5, impeller; 6, motor; 7, No. 1 air pipe; 8, support; 9, dust collection tank; 10, tank door; 11, conical barrel; 12, cylindrical barrel; 13, No. 2 air pipe; 14, exhaust pipe; 15, shell; 16, rotating column; 17, fan leaf; 18, fixed frame; 19, rotating rod; 20, No. 1 transmission wheel; 21, No. 2 transmission wheel; 22, belt; 23, No. 1 bevel gear; 24, No. 2 bevel gear; 25, first guide plate; 26, second guide plate. DETAILED DESCRIPTION

[0043] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0044] In addition, elements in the present utility model are referred to as "fixed to" or "disposed on" another element, which can be directly on another element or can have a central element. When an element is considered to be "connected" to another element, it can be directly connected to another element or can have a central element. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and are not the only embodiment.

[0045] Please refer to Figures 1-10 In the embodiment of the present utility model, the MCM soft porcelain processing blowing and suction dust removal device, including operation platform 1 and fixedly arranged dust cover 2 on the operation platform 1, the operation platform 1 is provided with dust suction assembly and spiral storage structure respectively, the dust suction assembly is communicated with the side wall of the dust cover 2 and the spiral storage structure respectively, when the dust suction assembly operates, the dust in the dust cover 2 can be sucked and sent to the spiral storage structure;

[0046] The top of the dust cover 2 is provided with a dust blowing assembly, the dust blowing assembly is connected with the dust suction assembly through a transmission structure, when the dust suction assembly operates, the dust blowing assembly will follow the action, and the dust in the dust cover 2 is blown;

[0047] The inside of the dust cover 2 is provided with a guide structure, the guide structure is matched with the dust blowing assembly, in the process of operation of the dust blowing assembly, the guide structure can guide the dust to the dust suction assembly.

[0048] In the present scheme, the processing equipment is arranged on the operation platform 1 and located in the dust cover 2, the dust generated will be located in the dust cover 2, when the dust suction assembly operates, the dust in the dust cover 2 can be sucked and sent to the spiral storage structure for storage, then the dust can be treated centrally, at the same time, the dust blowing assembly will follow the dust suction assembly through the transmission structure and act, and cooperate with the guide structure to blow the dust in the dust cover 2 to the dust suction assembly.

[0049] As a further scheme of the present utility model, the dust suction assembly comprises a volute 3 fixedly arranged on the operation platform 1 and a rotating shaft 4 rotatably arranged on the volute 3;

[0050] The rotating shaft 4 is coaxially fixedly provided with an impeller 5, the operation platform 1 is fixedly provided with a motor 6, and one end of the rotating shaft 4 is fixedly connected with the output end of the motor 6.

[0051] The side wall of the dust cover 2 and the air inlet of the volute 3 are communicated through a No. 1 air pipe 7.

[0052] In this embodiment, since the impeller 5 is arranged inside the volute 3 by rotating the rotating shaft 4, and the output end of the motor 6 is fixedly connected with one end of the rotating shaft 4, when the motor 6 is started, the output end of the motor 6 will drive the rotating shaft 4 to rotate at high speed, thereby accelerating the air flow speed in the volute 3, so that the negative pressure is generated at the air inlet of the volute 3;

[0053] Since the side wall of the dust cover 2 and the air inlet of the volute 3 are communicated through the first air pipe 7, the volute 3 will attract the air and dust in the dust cover 2 through the first air pipe 7, and the air and dust will be discharged from the air outlet of the volute 3 after being accelerated by the volute 3.

[0054] As a further scheme of the utility model, the spiral storage structure includes a support 8 fixedly arranged on the operation table 1 and a dust collection box 9 fixedly arranged on the support 8, and a box door 10 is arranged on the side wall of the dust collection box 9.

[0055] A conical barrel 11 is fixedly and communicatively arranged on the top of the dust collection box 9, and a cylindrical barrel 12 is fixedly and communicatively arranged on the top of the conical barrel 11.

[0056] The side wall of the cylindrical barrel 12 and the air outlet of the volute 3 are communicated through a second air pipe 13, and the length direction of the second air pipe 13 coincides with the tangential direction of one of the inner walls of the cylindrical barrel 12.

[0057] An exhaust pipe 14 is coaxially and fixedly arranged on the top of the cylindrical barrel 12, and the cylindrical barrel 12 is communicated with the outside through the exhaust pipe 14.

[0058] In this embodiment, since the side wall of the cylindrical barrel 12 and the air outlet of the volute 3 are communicated through the second air pipe 13, and the length direction of the second air pipe 13 coincides with the tangential direction of one of the inner walls of the cylindrical barrel 12, the air and dust discharged from the air outlet of the volute 3 will enter the cylindrical barrel 12 through the second air pipe 13 and move along the inner wall of the cylindrical barrel 12.

[0059] Since the cylindrical barrel 12 and the dust collection box 9 are communicated through the conical barrel 11, and the dust is always affected by its own gravity, the dust will rotate and fall downward, and finally fall into the dust collection box 9, and as more and more air and dust are introduced, the air in the dust collection box 9, the conical barrel 11 and the cylindrical barrel 12 will be discharged through the exhaust pipe 14, thereby keeping a balance with the outside.

[0060] As a further scheme of the utility model, the dust blowing assembly includes a shell 15 and a rotating column 16, the shell 15 is fixedly arranged on the top of the dust cover 2, the rotating column 16 is rotatably arranged on the shell 15, and a fan blade 17 is coaxially and fixedly arranged on the rotating column 16.

[0061] In this embodiment, since the fan blades 17 are arranged on the shell 15 through the rotation of the rotating column 16, and the shell 15 is fixed on the top of the dust cover 2, when the rotating column 16 rotates at high speed, the fan blades 17 will accelerate the air flow rate, thereby blowing the dust in the dust cover 2.

[0062] As a further scheme of the utility model, the transmission structure comprises a fixing frame 18 fixedly arranged on the operation table 1 and a rotating rod 19 rotatably arranged on the fixing frame 18.

[0063] A first transmission wheel 20 is coaxially fixedly arranged on the rotating column 16, a second transmission wheel 21 is coaxially fixedly arranged on one end of the rotating rod 19, and the first transmission wheel 20 and the second transmission wheel 21 are connected through a belt 22.

[0064] A first bevel gear 23 is coaxially fixedly arranged on the other end of the rotating rod 19, and a second bevel gear 24 is coaxially fixedly arranged on the rotating shaft 4, and the first bevel gear 23 and the second bevel gear 24 are in meshing engagement.

[0065] In this embodiment, since the first transmission wheel 20 fixed on the rotating column 16 and the second transmission wheel 21 fixed on the rotating rod 19 are connected through the belt 22, when the rotating rod 19 rotates, the rotating column 16 will rotate along with it.

[0066] Since the first bevel gear 23 fixed on the rotating rod 19 and the second bevel gear 24 fixed on the rotating shaft 4 are in meshing engagement, when the rotating shaft 4 rotates, the rotating rod 19 will rotate along with it.

[0067] As a further scheme of the utility model, the guide structure comprises a first guide plate 25 and a second guide plate 26, the first guide plate 25 is fixedly arranged on the inner side wall of the dust cover 2 away from the first air pipe 7, and an included angle of 30 degrees is formed between the first guide plate 25 and the side wall of the dust cover 2.

[0068] The second guide plate 26 is arranged in two and fixed on the inner wall of the dust cover 2, the two second guide plates 26 are symmetrically arranged on the two sides of the first guide plate 25, and the second guide plate 26 is arranged in an inclined manner.

[0069] In this embodiment, as shown in Figure 6 Since the first guide plate 25 is fixedly arranged on the inner side wall of the dust cover 2 away from the first air pipe 7, and an included angle of 30 degrees is formed between the first guide plate 25 and the side wall of the dust cover 2, the air and dust blown by the fan blades 17 will move to the first air pipe 7 under the action of the first guide plate 25.

[0070] Because two second flow guides 26 are symmetrically arranged on two sides of the first flow guide 25, and the second flow guides 26 are arranged obliquely, the two second flow guides 26 will cooperate with the first flow guide 25, so that the air and dust are gathered to the first air pipe 7.

[0071] It is apparent for a person skilled in the art that the present application is not limited to the details of the above-described exemplary embodiments, but that it can be implemented in other embodiments without deviating from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than that of the above description, and all changes coming within the meaning and equivalency range of the claims are intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.

[0072] Furthermore, it should be understood that although the present specification is described in terms of embodiments, not every embodiment according to the present specification needs to exhibit each and every characteristic specified in the embodiments. Nor are any embodiments necessarily limited to the embodiments described in the specification. Rather, the specification and its embodiments serve only to illustrate the application and should be construed as a whole. The person skilled in the art will further appreciate that the application can be implemented in other specific forms without deviating from the spirit or essential characteristics thereof. Accordingly, the embodiments described in the specification are by no means only to limit the application.

Claims

1. A dust removal device for MCM soft ceramic processing, comprising an operating table (1) and a dust cover (2) fixedly mounted on the operating table (1), characterized in that, The operating table (1) is provided with a dust suction component and a spiral storage structure. The dust suction component is connected to the side wall of the dust cover (2) and the spiral storage structure. When the dust suction component is running, it can suck the dust in the dust cover (2) into the spiral storage structure. The top of the dust cover (2) is provided with a dust blowing component. The dust blowing component is connected to the dust suction component through a transmission structure. When the dust suction component is running, the dust blowing component will follow the movement and blow away the dust inside the dust cover (2). The dust cover (2) has a guide structure inside. The guide structure works in conjunction with the dust blowing assembly. During the operation of the dust blowing assembly, the guide structure can guide the dust towards the dust suction assembly.

2. The MCM soft ceramic processing blowing and suction dust removal device according to claim 1, characterized in that, The vacuuming assembly includes a volute (3) fixedly mounted on the operating table (1) and a rotating shaft (4) rotatably mounted on the volute (3); An impeller (5) is coaxially fixed on the rotating shaft (4), and a motor (6) is fixed on the operating table (1). The output end of the motor (6) is fixedly connected to one end of the rotating shaft (4). The side wall of the dust cover (2) and the air inlet of the volute (3) are connected by a No. 1 air duct (7).

3. The MCM soft ceramic processing blowing and suction dust removal device according to claim 2, characterized in that, The spiral storage structure includes a bracket (8) fixedly mounted on the operating table (1) and a dust collection box (9) fixedly mounted on the bracket (8). The side wall of the dust collection box (9) is provided with a door (10). The top of the dust collection box (9) is fixedly connected to a conical barrel (11), and the top of the conical barrel (11) is fixedly connected to a cylindrical tube (12).

4. The blowing and suction dust removal device for MCM soft ceramic processing according to claim 3, characterized in that, The side wall of the cylindrical tube (12) and the air outlet of the volute (3) are connected by a second air duct (13), and the length direction of the second air duct (13) coincides with one of the tangential directions of the inner wall of the cylindrical tube (12). An exhaust pipe (14) is coaxially fixed at the top of the cylindrical tube (12), and the exhaust pipe (14) connects the cylindrical tube (12) to the outside.

5. The MCM soft ceramic processing blowing and suction dust removal device according to claim 2, characterized in that, The dust blowing assembly includes a housing (15) and a rotating column (16). The housing (15) is fixedly disposed on the top of the dust cover (2). The rotating column (16) is rotatably disposed on the housing (15). A fan blade (17) is coaxially fixedly disposed on the rotating column (16).

6. The MCM soft ceramic processing blowing and suction dust removal device according to claim 5, characterized in that, The transmission structure includes a fixed frame (18) fixedly mounted on the operating table (1) and a rotating rod (19) rotatably mounted on the fixed frame (18); A first transmission wheel (20) is coaxially fixed on the rotating column (16), and a second transmission wheel (21) is coaxially fixed at one end of the rotating rod (19). The first transmission wheel (20) and the second transmission wheel (21) are connected by a belt (22). A first bevel gear (23) is coaxially fixed at the other end of the rotating rod (19), and a second bevel gear (24) is coaxially fixed on the rotating shaft (4). The first bevel gear (23) and the second bevel gear (24) mesh with each other.

7. The MCM soft ceramic processing blowing and suction dust removal device according to claim 2, characterized in that, The guiding structure includes a first guide plate (25) and a second guide plate (26). The first guide plate (25) is fixedly disposed on the inner side wall of the dust cover (2) away from the first air duct (7). The first guide plate (25) and the side wall of the dust cover (2) form a 30-degree angle. The second guide plate (26) is configured as two and both are fixed to the inner wall of the dust cover (2). The two second guide plates (26) are symmetrically arranged on both sides of the first guide plate (25), and the second guide plates (26) are inclined.