Mud scraping mechanism with splash-proof function
By designing the mud suction assembly and elastic swing member structure in the mud scraping mechanism, the problems of mud chips splashing and sticking are solved, and the timely cleaning of mud chips and the stability of the mud scraping mechanism are achieved.
Patent Information
- Application Number
- CN202422061441.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-23
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-23
AI Technical Summary
The mud chips produced by the existing mud scraping mechanism during the mud scraping process are not cleaned in time, causing mud chips to splash or stick to the gypsum mold, making it difficult to clean.
A mud scraping mechanism is designed, including mounting blocks, columns, moving sleeves, mud suction components, adjustment components, swinging parts, elastic parts, insulating blocks, conductive rods and conductive steel wires. The mud chips are absorbed through the mud suction components, and adaptive adjustment is used to avoid mud chips splashing, and the versatility and stability of the mud scraping mechanism are improved.
The timely cleaning of mud chips is achieved to prevent mud chips from splashing or sticking to the gypsum mold, which improves the versatility and working stability of the mud scraping mechanism, and simplifies the subsequent cleaning process.
Smart Images

Figure CN223071637U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of daily-use ceramic production, in particular to a mud scraping mechanism with a splash-proof function. Background Technique
[0002] When producing daily-use ceramics, in order to pursue beauty, various textures usually need to be processed on the products. For example, products with wavy edge textures need to be processed. Therefore, people usually set a mud scraping mechanism on the production line, and use the mud scraping mechanism to cooperate with a plaster mold to scrape mud on the product to form corresponding wavy textures.
[0003] However, in the existing mud scraping mechanism, because the mud chips generated during the mud scraping process are not cleaned in time, the mud chips splash and fall on the ground or adhere to the plaster mold, resulting in difficulty in cleaning after the mud chips dry. Content of the Utility Model
[0004] The purpose of the utility model is to provide a mud scraping mechanism with a splash-proof function, which solves the problem that in the existing mud scraping mechanism, because the mud chips generated during the mud scraping process are not cleaned in time, the mud chips splash and fall on the ground or adhere to the plaster mold, resulting in difficulty in cleaning after the mud chips dry.
[0005] To achieve this purpose, the utility model adopts the following technical solutions:
[0006] A mud scraping mechanism with a splash-proof function includes a mounting block, a column, a first moving sleeve, a second moving sleeve, a mud suction component, an adjusting component, a swinging member, an elastic member, an insulating block, a conductive rod, a conductive wire and a sensor;
[0007] The column is installed on the top surface of the mounting block, the first moving sleeve and the second moving sleeve are respectively installed on the column so as to be movable up and down, the first moving sleeve is located below the second moving sleeve, and the mud suction component is installed on the second moving sleeve, and the mud suction component is used to suck away the scraped mud chips;
[0008] The adjusting component is installed on the first moving sleeve, the swinging member is swingably installed on the adjusting component, one end of the elastic member is installed on the swinging member, the other end of the elastic member is installed with the insulating block, both ends of the conductive wire are respectively installed on the insulating block through the two conductive rods, and the sensor is electrically connected to the conductive wire through the conductive rod, and the sensor is used to detect whether the conductive wire is disconnected.
[0009] Further, the mud suction component includes a mounting rod, a second sleeve and a suction bucket;
[0010] The second sleeve is installed on the outer periphery of the second moving sleeve. One end of the mounting rod is movably installed in the second sleeve in the front-back direction, and the other end of the mounting rod is installed with the suction bucket. The suction bucket faces the conductive wire, and the suction bucket is used to suck away the mud chips scraped by the conductive wire.
[0011] Specifically, the second sleeve is provided with a first split groove and a second split groove;
[0012] The second sleeve divides the front end of the second sleeve into formed clamping blocks through the first split groove and the second split groove, and the clamping blocks are provided with locking holes.
[0013] Preferably, the adjusting assembly includes a moving rod and a first sleeve;
[0014] The first sleeve is installed on the outer periphery of the first moving sleeve. One end of the moving rod is movably installed in the first sleeve in the front-back direction, and the other end of the moving rod is hinged with the swinging member.
[0015] In some embodiments, a clearance groove is provided at the rear end of the swinging member, a groove is provided at the front end of the swinging member, the front end of the moving rod is installed in the clearance groove, and the rear end of the elastic member is installed in the groove.
[0016] Further, the insulating block is provided with a positioning groove, and the front end of the elastic member is installed in the positioning groove.
[0017] Specifically, the column is provided with an adjusting groove. The first moving sleeve is installed on the column through the adjusting groove, and the first moving sleeve can move up and down along the length direction of the adjusting groove. The second moving sleeve is installed on the column through the adjusting groove, and the second moving sleeve can move up and down along the length direction of the adjusting groove.
[0018] Compared with the prior art, one of the above technical solutions has the following beneficial effects:
[0019] Through the mounting block, the column, the first moving sleeve, the second moving sleeve, the adjusting assembly, the swinging member, the elastic member, the insulating block, the conductive rod, the conductive wire and the sensor, the mud suction assembly and the conductive wire can move up and down to adjust their respective height positions, which is not only convenient for debugging and installation, but also applicable to scraping mud on gypsum molds with different textures, achieving the effect of improving the versatility of the mud scraping mechanism. Further, through the elastic member, its elastic structure is used to cooperate with the swinging member to adaptively adjust the swing, which can avoid the phenomenon of unsmooth swing or jamming and sticking, achieving the effect of improving the working stability and working reliability of the mud scraping mechanism, and through the mud suction assembly, it is realized to suck away the mud chips while scraping the mud, avoiding the mud chips from splashing onto the ground or adhering to the gypsum mold, which may cause difficulty in cleaning after the mud chips dry. Description of the Drawings
[0020] Figure 1 is a schematic structural view of the sludge scraping mechanism of one embodiment of the present utility model;
[0021] Figure 2 is a schematic structural view of the adjusting assembly of one embodiment of the present utility model;
[0022] Figure 3 is Figure 2 an enlarged view of part A of
[0023] Figure 4 is a schematic structural view of the swinging member of one embodiment of the present utility model;
[0024] Figure 5 is a schematic structural view of the insulating block of one embodiment of the present utility model;
[0025] Wherein: mounting block 1, column 2, adjusting groove 21, first moving sleeve 3, second moving sleeve 4, sludge suction assembly 5, mounting rod 51, first dividing groove 521, second dividing groove 522, clamping block 523, locking hole 5231, second sleeve 52, adjusting assembly 6, moving rod 61, first sleeve 62, swinging member 7, clearance groove 71, groove 72, elastic member 8, insulating block 9, positioning groove 91, conductive rod 101, conductive steel wire 102. Detailed implementation manners
[0026] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions from beginning to end. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation of the present utility model.
[0027] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "left", "right", "front", "rear", "vertical", "horizontal", "top", "bottom", "inner", "outer", "inner side", "outer side", "inner end", "outer end", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model 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. Therefore, it should not be construed as a limitation to the present utility model. In addition, the features defined as "first" and "second" may explicitly or implicitly include one or more of such features, which are used to distinguish and describe the features, without order or importance. In the description of the present utility model, unless otherwise specified, the meaning of "a plurality" is more than two.
[0028] In one embodiment of the present utility model, such as Figures 1-5As shown in the figure, a mud scraping mechanism with splash-proof function includes a mounting block 1, a column 2, a first moving sleeve 3, a second moving sleeve 4, a mud suction assembly 5, an adjusting assembly 6, a swinging member 7, an elastic member 8, an insulating block 9, a conductive rod 101, a conductive wire 102 and a sensor; the column 2 is installed on the top surface of the mounting block 1, the first moving sleeve 3 and the second moving sleeve 4 are respectively installed on the column 2 so as to be movable up and down, the first moving sleeve 3 is located below the second moving sleeve 4, the mud suction assembly 5 is installed on the second moving sleeve 4, and the mud suction assembly 5 is used for sucking away the scraped mud chips;The adjusting assembly 6 is installed on the first moving sleeve 3. The swinging member 7 is swingably installed on the adjusting assembly 6. One end of the elastic member 8 is installed on the swinging member 7, and the other end of the elastic member 8 is installed with the insulating block 9. Both ends of the conductive steel wire 102 are respectively installed on the insulating block 9 through the two conductive rods 101. The sensor is electrically connected to the conductive steel wire 102 through the conductive rod 101, and the sensor is used to detect whether the conductive steel wire 102 is disconnected. In this embodiment, the mud scraping mechanism is used to scrape wavy textures on the daily-use ceramics during processing and forming. During installation, specifically, the mounting block 1 is installed on the production line, the column 2 is installed on the top surface of the mounting block 1, and the first moving sleeve 3 and the second moving sleeve 4 are respectively installed on the column 2 from top to bottom. And the height positions of the first moving sleeve 3 and the second moving sleeve 4 are adjusted as needed. After adjustment, they are locked and fixed with screws. The mud suction assembly 5 is fixedly installed on the outer periphery of the second moving sleeve 4, and the adjusting assembly 6 is fixedly installed on the outer periphery of the first moving sleeve 3. The end of the adjusting assembly 6 is installed with the swinging member 7, so that the swinging member 7 can swing along the hinge. One end of the elastic member 8 is installed on the swinging member 7, and the other end of the elastic member 8 is installed with the insulating block 9. The insulating block 9 is made of bakelite, and the elastic member 8 is specifically an elastic rubber strip. The number of the conductive rods 101 is two. One ends of the two conductive rods 101 are respectively installed on the insulating block 9, and the other ends of the two conductive rods 101 are respectively installed with both ends of the conductive steel wire 102. And the conductive steel wire 102 is electrically connected to the sensor through the conductive rod 101. Specifically, one ends of the two conductive rods 101 are electrically connected to the sensor through wires. The sensor is a prior art, specifically a current sensor. If the conductive steel wire 102 is disconnected, there will be no current. During operation, the lifting device below the conductive steel wire 102 drives the gypsum mold to rise, so that the conductive steel wire 102 abuts against the wavy texture on the top surface of the gypsum mold. The external rotating device drives the gypsum mold to rotate, and the conductive steel wire 102 swings adaptively according to the wavy texture of the gypsum mold. Specifically, after the conductive steel wire 102 is stressed, the elastic member 8 uses its elasticity to cooperate with the swinging member 7 to swing adaptively along the hinge of the adjusting assembly 6, so that the conductive steel wire 102 scrapes off the excess mud, and the scraped mud chips are sucked away by the mud suction assembly 5, achieving the purpose of scraping mud and sucking chips at the same time. Further, if the conductive steel wire 102 is disconnected after long-term use, the conductive steel wire 102 and the conductive rod 101 cannot form a return current, and the sensor detects no current and will feedback information to the alarm, so as to be able to remind the staff that the conductive steel wire 102 needs to be replaced;In this application, through the installation block 1, the column 2, the first moving sleeve 3, the second moving sleeve 4, the adjusting component 6, the swinging piece 7, the elastic piece 8, the insulating block 9, the conductive rod 101, the conductive steel wire 102 and the sensor, the mud suction component 5 and the conductive steel wire 102 can move up and down to adjust their respective height positions, which is not only convenient for debugging and installation, but also applicable to scraping mud from gypsum molds with different textures, achieving the effect of improving the versatility of the mud scraping mechanism. Further, through the elastic piece 8, its elastic structure is used to adaptively adjust the swing in cooperation with the swinging piece 7, which can avoid the phenomenon of unsmooth swing or jamming and sticking, achieving the effect of improving the working stability and reliability of the mud scraping mechanism. And through the mud suction component 5, it is realized to suck away the mud chips while scraping the mud, avoiding the mud chips from splashing onto the ground or adhering to the gypsum mold, which makes it difficult to clean up after the mud chips dry later.
[0029] As Figures 1-2 shown, the mud suction component 5 includes an installation rod 51, a second sleeve 52 and a suction bucket; the second sleeve 52 is installed on the outer periphery of the second moving sleeve 4, one end of the installation rod 51 is movably installed in the second sleeve 52 in the front-back direction, the other end of the installation rod 51 is installed with the suction bucket, the suction bucket is directly opposite to the conductive steel wire 102, and the suction bucket is used to suck away the mud chips scraped by the conductive steel wire 102. In this embodiment, the suction bucket is connected to an external negative pressure device, the suction bucket is located above the conductive steel wire 102, and the adsorption mask of the suction bucket is arranged on the conductive steel wire 102, so as to facilitate the suction bucket to suck away the mud chips scraped by the conductive steel wire 102. And the installation rod 51 is movably installed inside the second sleeve 52, so that the installation rod 51 can move back and forth along the length direction of the second sleeve 52, thereby adjusting the adsorption position of the suction bucket, which is convenient for debugging and adjustment.
[0030] As Figures 2-3As shown, the second sleeve 52 is provided with a first dividing groove 521 and a second dividing groove 522; the front end of the second sleeve 52 is divided by the first dividing groove 521 and the second dividing groove 522 to form a clamping block 523, and the clamping block 523 is provided with a locking hole 5231. In this embodiment, the first dividing groove 521 is horizontally arranged in the front-rear direction, the second dividing groove 522 is vertically arranged in the left-right direction, and the front end of the second sleeve 52 is divided by the first dividing groove 521 and the second dividing groove 522 to form the clamping block 523, so that the clamping block 523 can move to clamp the mounting rod 51. And there are two locking holes 5231 in the clamping block 523. When locking, the locking screw is installed from top to bottom in the locking hole 5231, one end of the locking screw is installed in the locking hole 5231, and the other end of the locking screw is screwed into the lower half of the second sleeve 52, so that the clamping block 523 clamps the mounting rod 51.
[0031] As Figures 1-2 shown, the adjusting assembly 6 includes a moving rod 61 and a first sleeve 62; the first sleeve 62 is installed on the outer periphery of the first moving sleeve 3, one end of the moving rod 61 is movably installed in the first sleeve 62 in the front-rear direction, and the other end of the moving rod 61 is hinged with the swinging member 7. In this embodiment, the second sleeve 62 has the same structure as the first sleeve 52, and the moving rod 61 can move back and forth along the length direction of the first sleeve 62, so as to facilitate adjusting the position of the conductive wire 102. After adjustment, the moving rod 61 is clamped and fixed, which is convenient and fast.
[0032] As Figure 2 and Figure 4 shown, the rear end of the swinging member 7 is provided with a clearance groove 71, the front end of the swinging member 7 is provided with a groove 72, the front end of the moving rod 61 is installed in the clearance groove 71, and the rear end of the elastic member 8 is installed in the groove 72. In this embodiment, the clearance groove 71 is provided at the front end of the swinging member 7, so that the front end of the moving rod 61 is installed in the clearance groove 71, and the groove 72 is provided at the front end of the swinging member 7, and the rear end of the elastic member 8 is installed in the groove 72. Through the above structure, the mud scraping structure is more compact and stable and not easy to loosen.
[0033] As Figure 2 and Figure 5As shown, the insulating block 9 is provided with a positioning groove 91, and the front end of the elastic member 8 is installed in the positioning groove 91. In this embodiment, the positioning groove 91 is provided at the bottom of the insulating block 9. Installing the front end of the elastic member 8 in the positioning groove 91 can quickly align the connection hole of the insulating block 9 with the connection hole of the elastic member 8, which is beneficial to improving the installation efficiency of the elastic member 8.
[0034] As Figure 1 shown, the column 2 is provided with an adjustment groove 21. The first moving sleeve 3 is installed on the column 2 through the adjustment groove 21. The first moving sleeve 3 can move up and down along the length direction of the adjustment groove 21. The second moving sleeve 4 is installed on the column 2 through the adjustment groove 21. The second moving sleeve 4 can move up and down along the length direction of the adjustment groove 21. In this embodiment, the adjustment groove 21 is provided on the column 2. When the first moving sleeve 3 and the second moving sleeve 4 move, the first moving sleeve 3 and the second moving sleeve 4 respectively move up and down along the length direction of the adjustment groove 21.
[0035] In the description of this specification, the descriptions referring to terms such as "one embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples" etc. mean that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0036] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the claims and their equivalents.
Claims
1. A mud scraping mechanism with a splash-proof function, characterized in that: It includes a mounting block, a column, a first moving sleeve, a second moving sleeve, a mud suction assembly, an adjusting assembly, a swinging member, an elastic member, an insulating block, a conductive rod, a conductive wire and a sensor; The column is mounted on the top surface of the mounting block. The first moving sleeve and the second moving sleeve are respectively mounted on the column so as to be movable up and down. The first moving sleeve is located below the second moving sleeve. The mud suction assembly is mounted on the second moving sleeve and is used for sucking away the scraped mud chips; The adjusting assembly is mounted on the first moving sleeve. The swinging member is swingably mounted on the adjusting assembly. One end of the elastic member is mounted on the swinging member, and the other end of the elastic member is mounted with the insulating block. Two ends of the conductive wire are respectively mounted on the insulating block through the two conductive rods. The sensor is electrically connected to the conductive wire through the conductive rod, and the sensor is used for detecting whether the conductive wire is disconnected.
2. The mud scraping mechanism with a splash-proof function according to claim 1, wherein: The mud suction assembly includes a mounting rod, a second sleeve and a suction bucket; The second sleeve is mounted on the outer periphery of the second moving sleeve. One end of the mounting rod is mounted on the second sleeve so as to be movable back and forth. The other end of the mounting rod is mounted with the suction bucket. The suction bucket faces the conductive wire and is used for sucking away the mud chips scraped by the conductive wire.
3. The sludge scraping mechanism with splash-proof function according to claim 2, characterized in that: The second sleeve is provided with a first dividing groove and a second dividing groove; The second sleeve divides the front end of the second sleeve into a clamping block through the first dividing groove and the second dividing groove, and the clamping block is provided with a locking hole.
4. A mud scraping mechanism with a splash-proof function according to claim 1, characterized in that: The adjusting assembly includes a moving rod and a first sleeve; The first sleeve is mounted on the outer periphery of the first moving sleeve. One end of the moving rod is mounted on the first sleeve so as to be movable back and forth. The other end of the moving rod is hinged with the swinging member.
5. The sludge scraping mechanism with splash-proof function according to claim 4, characterized in that: The rear end of the swinging member is provided with a clearance groove, and the front end of the swinging member is provided with a groove. The front end of the moving rod is mounted in the clearance groove, and the rear end of the elastic member is mounted in the groove.
6. The sludge scraping mechanism with splash-proof function according to claim 5, characterized in that: The insulating block is provided with a positioning groove, and the front end of the elastic member is mounted in the positioning groove.
7. A mud scraping mechanism with splash-proof function according to claim 1, characterized in that: The column is provided with an adjusting groove. The first moving sleeve is mounted on the column through the adjusting groove, and the first moving sleeve can move up and down along the length direction of the adjusting groove. The second moving sleeve is mounted on the column through the adjusting groove, and the second moving sleeve can move up and down along the length direction of the adjusting groove.