A slurry flinging device for preventing slurry from slipping

By designing the slurry throwing device for the storage chamber and locking parts, the problem of slurry slipping is solved, the construction efficiency is improved and the cost is reduced.

CN117108023BActive Publication Date: 2025-07-18CHINA MCC5 GROUP CORP LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202311142020.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-09-05
Publication Date
2025-07-18
Estimated Expiration
2043-09-05

AI Technical Summary

Technical Problem

Existing slurry dumping tools have the risk of slurry slipping, resulting in low construction efficiency and waste of slurry.

Method used

A device including a slurry plate, a cavity plate and a slurry rod is designed. The slurry is stored in the storage cavity. Through the cooperation of the slurry plate and the locking member, the slurry does not slide down during the slurry process.

Benefits of technology

Effectively prevent slurry from slipping, improve construction efficiency, reduce slurry waste, and reduce construction costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN117108023B_ABST
    Figure CN117108023B_ABST
Patent Text Reader

Abstract

The present invention relates to the technical field of plastering engineering, and specifically discloses a slurry throwing device for preventing slurry from sliding, comprising a slurry throwing plate, a cavity plate installed on the slurry throwing plate and cooperating with the slurry throwing plate to form a material storage cavity, and a slurry throwing rod connected to the cavity plate; the slurry is stored in the material storage cavity. When the present invention is used, slurry is added to the material storage cavity, and the slurry is stored in the liquid storage cavity without sliding; then the slurry throwing work is performed, and during the slurry throwing, the slurry will flow out of the slurry throwing plate and act on the wall substrate; compared with the prior art, the slurry throwing plate is used to directly receive the slurry, so that a large amount of slurry will slide during the slurry throwing process, and the slurry acting on the wall substrate will be greatly reduced, thereby causing waste.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of plastering engineering, and more particularly to a slurry throwing device for preventing slurry from sliding off. Background Art

[0002] Throwing slurry is an important process before the construction of wall plastering project. By throwing slurry on the wall, the bonding degree between the plaster layer and the wall base layer can be effectively improved.

[0003] The slurry throwing tools currently available on the market are inconvenient to use, and there is a risk of the slurry slipping off the slurry throwing board, which greatly reduces the slurry throwing efficiency and causes waste of slurry. Summary of the invention

[0004] The technical problem to be solved by the present invention is to provide a slurry throwing device for preventing slurry from sliding off, which can effectively realize slurry throwing on the wall substrate, avoid slurry sliding off during the slurry throwing process, causing waste, improve construction efficiency, and reduce construction costs;

[0005] The solution adopted by the present invention to solve the technical problem is:

[0006] A pulp-throwing device for preventing pulp from sliding down comprises a pulp-throwing plate, a cavity plate installed on the pulp-throwing plate and cooperating with the pulp-throwing plate to form a material storage cavity, and a pulp-throwing rod connected to the cavity plate; the pulp is stored in the material storage cavity.

[0007] When in use, slurry is added to the storage chamber, and the slurry is stored in the liquid storage chamber without sliding; then the slurry throwing work is carried out, and during the slurry throwing, the slurry flows out from the slurry throwing plate and acts on the wall substrate; compared with the prior art, the slurry throwing plate is used to directly receive the slurry, so that a large amount of slurry will slide during the slurry throwing process, and the slurry acting on the wall substrate will be greatly reduced, thereby causing waste;

[0008] In some possible implementations,

[0009] The cavity plate comprises a vertical plate installed on the pulp throwing plate and cooperating with the pulp throwing plate to form a cavity, and a closing plate installed on the vertical plate; one end of the pulp throwing rod is installed on the closing plate.

[0010] In some possible implementations,

[0011] The vertical plates are in four groups and connected at one side, one group of the vertical plates is provided with an opening, and a cover plate for opening and closing the opening is provided at the opening.

[0012] In some possible implementations,

[0013] The closing plate is rotatably matched with the paddle-throwing rod; a reinforcing piece is arranged on the closing plate, and a locking piece connected with the reinforcing piece is arranged on the paddle-throwing rod.

[0014] In some possible embodiments,

[0015] There are grooves provided on the closed plate;

[0016] The reinforcing member has a cross structure and includes a vertical member installed in the groove and arranged in the Y-axis direction, and a horizontal member connected to the vertical member and installed on the closed plate, and the horizontal member is arranged along the X-axis direction; the vertical member is perpendicular to the vertical plate with an opening;

[0017] The slurry slinging rod is installed on the vertical member, and a rotating shaft for connecting the slurry slinging rod and the cross structure is provided at the intersection of the cross structure; one end of the rotating shaft passes through the cross structure and is connected to the closed plate.

[0018] In some possible embodiments,

[0019] The locking member includes locking grooves provided at both ends of the vertical member and located above the closed plate, and elastic locking members installed on the slurry slinging rod and cooperating with the two groups of locking grooves;

[0020] The two groups of locking grooves are symmetrically arranged along the X-axis direction.

[0021] In some possible embodiments,

[0022] The locking groove has a U-shaped structure and penetrates the vertical member along the X-axis direction, and includes a long groove provided on the vertical member and having an opening at one end, an arc-shaped groove connected to the other end of the long groove and having an arc-shaped structure, and a short groove connected to the other end of the arc-shaped groove, and the short groove is parallel to the long groove; the short groove is provided between the long groove and the slurry slinging rod.

[0023] In some possible embodiments,

[0024] The elastic locking member includes a connecting cross bar installed on the slurry slinging rod and perpendicular to the slurry slinging rod, a spring with one end connected to the connecting cross bar, and a locking cross bar connected to the other end of the spring and cooperating with the locking groove.

[0025] In some possible embodiments,

[0026] There is an installation through hole on the slurry slinging rod with an axis perpendicular to the axis of the slurry slinging rod, the connecting cross bar penetrates the installation through hole, and there are two groups of springs, and the slurry slinging rod is located between the two groups of springs.

[0027] In some possible embodiments,

[0028] The slurry slinging plate includes a plate body for installing the cavity plate and multiple groups of through holes provided on the plate body; the cavity plate is hermetically connected to the plate body.

[0029] Beneficial effects of the present invention compared with the prior art:

[0030] By providing a storage cavity, the present invention stores the slurry in the storage cavity during use, which can effectively prevent the slurry from slipping out during slurry slinging, greatly improving the construction efficiency and reducing the construction cost.

[0031] Through the rotational cooperation between the slurry slinging rod and the vertical member, the present invention ensures that the slurry does not flow out of the opening of the liquid storage cavity whether slurry slinging is carried out on the upper or lower part of the wall substrate.

[0032] The present invention effectively realizes the locking of the slurry slinging rod and the closing plate through the locking member. By arranging the locking member on the slurry slinging rod, the whole device is more convenient and reliable to store.

[0033] The present invention has a simple structure and strong practicability. Description of the Drawings

[0034] Figure 1 It is a three-dimensional structure schematic diagram of the present invention;

[0035] Figure 2 It is a structure schematic diagram of the reinforcing member in the present invention;

[0036] Figure 3 It is a structure schematic diagram of the cavity plate and the closing plate in the present invention;

[0037] Figure 4 It is a structure schematic diagram of the slurry slinging plate in the present invention;

[0038] Figure 5 It is a schematic diagram of the connection relationship between the cavity plate, the closing plate and the reinforcing member in the present invention;

[0039] Figure 6 It is a side view of the present invention;

[0040] Wherein: 1 - slurry slinging plate, 11 - through hole, 2 - vertical plate, 3 - closing plate, 31 - groove, 4 - slurry slinging rod, 5 - reinforcing member, 51 - vertical member, 511 - locking groove, 5111 - long groove, 5112 - arc groove, 5113 - short groove, 52 - horizontal member, 6 - locking member, 61 - connecting cross bar, 62 - spring, 63 - locking cross bar. Detailed Embodiments

[0041] In the present invention, unless otherwise clearly specified and defined, terms such as "installation", "connection", "linkage", "fixation" shall be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral body; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the communication inside two components or the interaction relationship between two components. The "first", "second" and similar terms mentioned in this application do not indicate any sequence, quantity or importance, but are only used to distinguish different components. Similarly, terms such as "a" or "one" do not indicate a quantity limit, but indicate the existence of at least one. In the implementation of this application, "and / or" describes the association relationship of associated objects, indicating that three relationships can exist. For example, A and / or B can represent three situations: A exists alone, A and B exist simultaneously, and B exists alone. In the description of the embodiments of this application, unless otherwise stated, the meaning of "a plurality" refers to two or more. For example, a plurality of positioning posts means two or more positioning posts. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0042] The present invention will be described in detail below.

[0043] As Figures 1 - 6 shown:

[0044] A slurry throwing device for preventing slurry from slipping, comprising a slurry throwing plate 1, a cavity plate installed on the slurry throwing plate 1 and cooperating with the slurry throwing plate 1 to form a storage cavity, and a slurry throwing rod 4 connected to the cavity plate; the slurry is stored in the storage cavity. The slurry throwing plate 1 includes a plate body for installing the cavity plate, and a plurality of groups of through holes 11 arranged on the plate body; the cavity plate is hermetically connected to the plate body.

[0045] During use, slurry is added to the storage cavity, and the slurry is stored in the storage cavity without slipping; then the slurry throwing operation is carried out. During the slurry throwing, the slurry will flow out from the slurry throwing plate 1 and act on the wall substrate. Compared with the prior art, using the slurry throwing plate 1 to directly receive the slurry will cause a large amount of slurry to slip during the slurry throwing process, and the slurry acting on the wall substrate will be greatly reduced, resulting in waste;

[0046] In some possible implementation manners,

[0047] The cavity plate includes a vertical plate 2 installed on the slurry throwing plate 1 and cooperating with the slurry throwing plate 1 to form a cavity, and a closing plate 3 installed on the vertical plate 2; one end of the slurry throwing rod 4 is installed on the closing plate 3.

[0048] The closing plate 3, the cavity plate, and the slurry slinging plate 1 form a storage cavity for storing slurry; during construction by construction workers, the slurry in the storage cavity moves towards the side of the slurry slinging plate 1 under the swinging of the slurry slinging rod 4, and passes through the through holes provided on the slurry slinging plate 1, so that the slurry is ejected and acts on the wall substrate; when the slurry slinging rod 4 swings, the slurry will not slide off the slurry slinging plate 1, thus reducing the waste of slurry.

[0049] In some possible embodiments, in order to effectively store the slurry and effectively seal the storage cavity after storage, so that during slurry slinging, the slurry can only be ejected from the through holes of the slurry slinging plate 1.

[0050] There are four groups of the vertical plates 2 and they are connected on one side, and an opening is provided on one group of the vertical plates 2, and a cover plate for opening and closing the opening is provided at the opening.

[0051] Furthermore, the cover plate and the cavity plate provided with the opening are connected in a hinged manner to realize the closing of the opening; a sealing strip is used to seal between the cover plate and the cavity plate.

[0052] In some possible embodiments, the slurry slinging of the wall substrate includes the slurry slinging construction of the entire upper and lower walls of the wall substrate; in order to prevent the slurry from sliding off from the opening during the slurry slinging process.

[0053] The closing plate 3 is rotationally matched with the slurry slinging rod 4.

[0054] By adopting the rotational matching of the closing plate 3 and the slurry slinging rod 4, the opening can be made to be in the upper position during the slurry slinging process, and the slurry will not flow out from the opening due to the inversion of the slurry slinging plate 1.

[0055] For example, when performing slurry slinging on the upper part of the wall substrate, the opening of the storage cavity is located above the entire device, and the slurry will not flow out from the opening.

[0056] After the upper part of the slurry slinging is completed, by rotating the slurry slinging rod 4 by 180°, the positional relationship between the slurry slinging plate 1 and the slurry slinging rod 4 is adjusted, so that the opening is still in the upper position, and when performing slurry slinging on the lower part of the wall substrate, the slurry will not flow out from the opening.

[0057] A reinforcing member 5 is provided on the closing plate 3, and a locking member 6 connected to the reinforcing member 5 is provided on the slurry slinging rod 4.

[0058] The reinforcing member 5 is provided to strengthen the connection between the closing plate 3 and the slurry slinging rod 4, making the connection between the two more firm; at the same time, the reinforcing member 5 will be beneficial to strengthening the rigidity of the closing plate 3.

[0059] The locking member 6 is mainly used to fix the connection between the two after the relative position between the slurry slinging rod 4 and the closing plate 3 is adjusted in place through the locking member 6.

[0060] In some possible embodiments, in order to reinforce the closing plate 3 and install the slurry slinging rod 4;

[0061] A groove 31 for installing a reinforcing member 5 is provided on the closing plate 3; the groove 31 is arranged along the Y-axis direction;

[0062] The reinforcing member 5 has a cross structure and includes a vertical member 51 installed in the groove 31 and arranged along the Y-axis direction, and a horizontal member 52 connected to the vertical member 51 and installed on the closing plate 3, the horizontal member 52 is arranged along the X-axis direction; the vertical member 51 is perpendicular to the vertical plate 2 with an opening;

[0063] A part of the vertical member 51 is located in the groove 31 for reinforcing and supporting the closing plate 3, and the other part protrudes from the groove 31 for installing the slurry slinging rod 4;

[0064] Furthermore, the horizontal member 52 and the side of the vertical member 51 away from the closing plate 3 are in the same plane;

[0065] The vertical member 51 is perpendicularly arranged with the vertical plate 2 with an opening, and the vertical member 51 is rotationally matched with the slurry slinging rod 4, so that in different slurry slinging environments, it can be ensured that the cavity plate with an opening is always located above, avoiding the outflow of the slurry caused by the opening;

[0066] In order to effectively realize the rotational cooperation between the slurry slinging rod 4 and the vertical member 51; a rotating shaft for connecting the slurry slinging rod 4 and the cross structure is provided at the intersection of the cross structure; one end of the rotating shaft passes through the cross structure and is connected to the closing plate 3.

[0067] In some possible embodiments, in order to lock and fix the slurry slinging rod 4 and the vertical member 51 to avoid relative rotation during the slurry slinging process;

[0068] The locking member 6 includes locking grooves 511 provided at both ends of the vertical member 51 and located above the closing plate 3, and elastic locking members installed on the slurry slinging rod 4 and cooperating with the two groups of locking grooves 511;

[0069] The two groups of locking grooves 511 are symmetrically arranged along the X-axis direction; the two groups of elastic locking members are symmetrically arranged and cooperate with the two groups of locking grooves 511.

[0070] The locking grooves 511 are provided at both ends of the vertical member 51 and located at the part of the vertical member 51 protruding from the groove 31; the two groups of elastic locking members are provided on the slurry slinging rod 4, and after the position is adjusted in place, the two groups of elastic locking members are respectively inserted into the corresponding locking grooves 511 to lock the position of the slurry slinging rod 4 and the vertical member 51;

[0071] In some possible embodiments, in order to effectively realize the cooperation between the elastic locking member and the locking groove 511;

[0072] like Figure 2 As shown, the locking groove 511 is in a U-shaped structure and penetrates the vertical member 51 along the X-axis direction, including a long groove 5111 arranged on the vertical member 51 and having an opening at one end, an arc-shaped groove 5112 connected to the other end of the long groove 5111 and in an arc-shaped structure, and a short groove 5113 connected to the other end of the arc-shaped groove 5112, wherein the short groove 5113 is arranged parallel to the long groove 5111; the short groove 5113 is arranged between the long groove 5111 and the paddle rod 4.

[0073] like Figure 6 As shown, the elastic locking member includes a connecting cross bar 61 installed on the pulping rod 4 and perpendicular to the pulping rod 4, a spring 62 with one end connected to the connecting cross bar 61, and a locking cross bar 63 connected to the other end of the spring 62 and used in conjunction with the locking groove 511. The locking cross bar 63 is located between the pulping rod 4 and the closing plate 3.

[0074] Furthermore, the length of the long groove 5111 along the Y-axis direction is greater than the length of the short groove 5113 along the Y-axis direction;

[0075] The opening at one end of the long slot 5111 passes through the end surface of the vertical member 51, and the other end extends into the vertical member 51 along the Y-axis direction and communicates with the arc slot 5112. The other end of the arc slot 5112 communicates with the short slot 5113. The short slot 5113 is arranged parallel to the long slot 5111 and is located on the side of the long slot 5111 away from the closing plate 3.

[0076] Furthermore, the inner concave surface of the arc-shaped groove 5112 is arranged on a side close to the opening of the long groove 5111;

[0077] When locking, the locking cross bar 63 is pulled, the spring 62 is stretched, and the locking cross bar 63 is sent into the opening of the long slot 5111 and slides into the short slot 5113; during this process, the spring 62 will always be in a stretched state, thereby achieving the locking of the pulping rod 4 and the vertical member 51, and then achieving the locking with the closing plate 3, forming a stable connection as a whole;

[0078] When the paddle swinging rod 4 needs to be turned, the locking cross bar 63 can be moved out of the locking groove 511;

[0079] In some possible implementations, in order to make the vertical member 51 more evenly stressed;

[0080] A mounting through hole is arranged on the paddle-spinning rod 4 , and the connecting cross bar 61 passes through the mounting through hole. The springs 62 are in two groups, and the paddle-spinning rod 4 is located between the two groups of springs 62 .

[0081] The axis of the installation through-hole is perpendicular to the axis of the slurry slinging rod 4. Two groups of springs 62 are located on both sides of the slurry slinging rod 4 and are connected to the two ends of the connecting cross bar 61. The other ends of the two groups of springs 62 will be connected to the locking cross bar 63 located between the slurry slinging rod 4 and the closing plate 3, so as to ensure that the vertical member 51 and the slurry slinging rod 4 are stressed evenly and the connection is stable and reliable.

[0082] The present invention is not limited to the foregoing specific embodiments. The present invention extends to any new feature or any new combination disclosed in this specification, as well as any new method or process step or any new combination disclosed.

Claims

1. A slurry slinging device for preventing slurry from slipping, characterized in that, It includes a slurry slinging plate, a cavity plate installed on the slurry slinging plate and cooperating with the slurry slinging plate to form a material storage cavity, and a slurry slinging rod connected to the cavity plate; the slurry is stored in the material storage cavity; the cavity plate includes a vertical plate installed on the slurry slinging plate and cooperating with the slurry slinging plate to form a cavity, and a closing plate installed on the vertical plate; one end of the slurry slinging rod is installed on the closing plate; the vertical plates are in four groups and connected on one side, and an opening is provided on one group of vertical plates, and a cover plate for opening and closing the opening is provided at the opening; the closing plate is rotationally matched with the slurry slinging rod; a reinforcing member is provided on the closing plate, and a locking member connected to the reinforcing member is provided on the slurry slinging rod; a groove is provided on the closing plate. The reinforcing member has a cross structure and includes a vertical member installed in the groove and arranged in the Y-axis direction, and a horizontal member connected to the vertical member and installed on the closing plate, and the horizontal member is arranged in the X-axis direction; the vertical member is perpendicular to the vertical plate with the opening. The slurry slinging rod is installed on the vertical member, and a rotating shaft for connecting the slurry slinging rod and the cross structure is provided at the intersection of the cross structure; one end of the rotating shaft passes through the cross structure and is connected to the closing plate; the locking member includes locking grooves provided at both ends of the vertical member and above the closing plate, and elastic locking members installed on the slurry slinging rod and cooperating with the two locking grooves. The two locking grooves are symmetrically arranged in the X-axis direction; the locking groove has a U-shaped structure and runs through the vertical member in the X-axis direction, and includes a long groove provided on the vertical member and having an opening at one end, an arc-shaped groove connected to the other end of the long groove and having an arc-shaped structure, and a short groove connected to the other end of the arc-shaped groove, and the short groove is arranged parallel to the long groove; the short groove is arranged between the long groove and the slurry slinging rod; the length of the long groove in the Y-axis direction is greater than the length of the short groove in the Y-axis direction. The elastic locking member includes a connecting cross bar installed on the slurry slinging rod and perpendicular to the slurry slinging rod, a spring with one end connected to the connecting cross bar, and a locking cross bar connected to the other end of the spring and cooperating with the locking groove; an installation through hole with an axis perpendicular to the axis of the slurry slinging rod is provided on the slurry slinging rod, the connecting cross bar penetrates through the installation through hole, and there are two groups of springs, and the slurry slinging rod is located between the two groups of springs; the slurry slinging plate includes a plate body for installing the cavity plate, and a plurality of through holes provided on the plate body; the cavity plate is hermetically connected to the plate body.

Citation Information

Patent Citations

  • Slurry throwing device capable of preventing slurry from slipping off

    CN221119071U