CN111804479B - Steam coating machine for high-temperature structural ceramics - Google Patents

Steam coating machine for high-temperature structural ceramics Download PDF

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Publication number
CN111804479B
CN111804479B CN202010661663.3A CN202010661663A CN111804479B CN 111804479 B CN111804479 B CN 111804479B CN 202010661663 A CN202010661663 A CN 202010661663A CN 111804479 B CN111804479 B CN 111804479B
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plate
block
frame
bottom plate
ceramic product
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CN111804479A (en
Inventor
翁红英
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Shandong Runyao Environmental Protection Technology Co ltd
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Guangdong Aikang Environmental Protection Technology Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B13/00Machines or plants for applying liquids or other fluent materials to surfaces of objects or other work by spraying, not covered by groups B05B1/00 - B05B11/00
    • B05B13/02Means for supporting work; Arrangement or mounting of spray heads; Adaptation or arrangement of means for feeding work
    • B05B13/0221Means for supporting work; Arrangement or mounting of spray heads; Adaptation or arrangement of means for feeding work characterised by the means for moving or conveying the objects or other work, e.g. conveyor belts
    • B05B13/0228Means for supporting work; Arrangement or mounting of spray heads; Adaptation or arrangement of means for feeding work characterised by the means for moving or conveying the objects or other work, e.g. conveyor belts the movement of the objects being rotative
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B12/00Arrangements for controlling delivery; Arrangements for controlling the spray area
    • B05B12/16Arrangements for controlling delivery; Arrangements for controlling the spray area for controlling the spray area
    • B05B12/32Shielding elements, i.e. elements preventing overspray from reaching areas other than the object to be sprayed
    • B05B12/36Side shields, i.e. shields extending in a direction substantially parallel to the spray jet
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B16/00Spray booths
    • B05B16/40Construction elements specially adapted therefor, e.g. floors, walls or ceilings

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  • Spray Control Apparatus (AREA)

Abstract

The invention discloses a steam coating machine for high-temperature structural ceramics, which structurally comprises an opening and closing door, a machine body, a base, a control electronic box and a coating tank, wherein the opening and closing door is connected with the machine body through a hinge, the control electric box is connected with the machine body, the coating tank is fixedly embedded with the machine body, the machine body is welded with the base, the telescopic mechanism in the machine body can be attached to the outer surface of the ceramic product placed on the upper surface of the tray, and the outward extending blocks can extend to two sides by the reverse thrust generated by the outer surface of the ceramic product to the outward extending blocks, so that the coating gun can spray the coating on the outer surface of the ceramic product, the outer surface of the ceramic product placed on the upper surface of the tray can be extruded by the abutting contact, the sliding plate can slide inwards along the guide frame to shrink, and through the cooperation of elastic strip, can promote the sliding plate and outwards slide along the pedestal and stretch out to make four contact terminals can carry out the rigidity to ceramic.

Description

Steam coating machine for high-temperature structural ceramics
Technical Field
The invention relates to the field of high-temperature structural ceramics, in particular to a steam coating machine for high-temperature structural ceramics.
Background
The high-temperature structure ceramic coating and steaming machine is mainly used for coating and covering the surface of ceramic, can place the ceramic product inside the high-temperature structure ceramic coating and steaming machine and carry out high-temperature heating, the inside spray gun of rethread high-temperature structure ceramic coating and steaming machine atomizes and spouts the coating, the even surface that covers at the ceramic product, and through the continuous heating to ceramic, then can make the complete attached surface at the ceramic product of coating after drying, based on the above description the inventor finds, the present high-temperature structure ceramic coating and steaming machine mainly has the following disadvantages, for example:
because the ceramic product is constantly rotated at a uniform speed on the tray in the high-temperature structure ceramic coating machine, when the coating guns on the two sides respectively coat two coatings with different colors on the two sides of the ceramic product, the tray can still continuously rotate due to inertia when the tray stops rotating, so that the atomized coatings sprayed by the coating guns can float to the other side of the ceramic product, and the coating colors on the ceramic product are mixed.
Disclosure of Invention
Aiming at the problems, the invention provides a steam coating machine for high-temperature structural ceramics.
In order to achieve the purpose, the invention is realized by the following technical scheme: the steam coating machine for the high-temperature structural ceramics structurally comprises an opening and closing door, a machine body, a base, a control electronic box and a coating tank, wherein the opening and closing door is connected with a hinge of the machine body; the organism includes shell, cover frame, telescopic machanism, tray, bottom plate, the cover frame is connected with the shell is inlayed admittedly, telescopic machanism and cover frame clearance fit, tray and bottom plate activity block, bottom plate and shell structure as an organic whole.
As a further optimization of the invention, the telescopic mechanism comprises a spraying gun, a connecting block, four outer swing rods, elastic strips and an outer extending block, wherein the connecting block is fixedly embedded in the spraying gun, the outer swing rods are movably clamped between the connecting block and the outer extending block, the elastic strips are arranged between the outer extending block and the connecting block, and the four outer swing rods are uniformly distributed between the connecting block and the outer extending block at two sides in a group.
As a further optimization of the invention, the overhanging block comprises a frame body, an elastic piece, a lower push plate, a deformation plate and a contact block, wherein the elastic piece is fixed between the frame body and the lower push plate, the lower push plate is in clearance fit with the frame body, the deformation plate is fixedly embedded with the lower push plate, the contact block is arranged at the bottom of the deformation plate, and the deformation plate is made of spring steel with strong elasticity.
As a further optimization of the invention, the contact block comprises a plate body, an overhanging strip, an elastic ring, a bottom plate and a combination plate, wherein the overhanging strip is fixedly connected with the plate body in an embedded manner, the elastic ring is connected with the combination plate, the bottom plate and the plate body are of an integrated structure, the combination plate is arranged between the plate body and the bottom plate, and the number of the overhanging strips is four, and the four overhanging strips are uniformly and symmetrically distributed at the bottom of the plate body.
As a further optimization of the invention, the tray comprises an outer frame, guide frames, sliding plates, elastic strips and four abutting heads, wherein the guide frames and the outer frame are of an integrated structure, the sliding plates are in clearance fit with the guide frames, the elastic strips are arranged between the sliding plates and the outer frame, the abutting heads are fixedly embedded in the front end positions of the sliding plates, and the four abutting heads are uniformly and symmetrically distributed on the inner side of the outer frame through the matching of the sliding plates and the guide frames.
As a further optimization of the invention, the contact head comprises an attaching plate, two resetting pieces and a bottoming plate, the attaching plate is hinged with the bottoming plate, the resetting pieces are arranged between the attaching plate and the bottoming plate, and the attaching plate is uniformly and symmetrically distributed on the bottoming plate.
As a further optimization of the invention, the attaching plate comprises three movable rollers, an outer connecting plate and a bearing plate, wherein the movable rollers are movably clamped with the outer connecting plate, the outer connecting plate and the bearing plate are of an integrated structure, and the three movable rollers are uniformly distributed on the outer connecting plate in an arc shape.
The invention has the following beneficial effects:
1. the telescopic mechanism in the machine body can be attached to the outer surface of the ceramic product placed on the upper surface of the tray, and the outer surface of the ceramic product can generate reverse thrust to the outward extending blocks, so that the outward extending blocks can extend out to two sides, and the coating gun can spray coatings on the outer surface of the ceramic product.
2. Through placing the extrusion that the contact produced to propping in the ceramic surface of tray upper surface, can make the sliding plate along the shrink of the inside slip of pedestal, and through the cooperation of elastic strip, can promote the sliding plate and stretch out along the pedestal outside slip to make four contact of propping can carry out the rigidity to ceramic.
Drawings
FIG. 1 is a schematic structural diagram of a high-temperature structural ceramic coating machine according to the present invention.
Fig. 2 is a schematic structural view of a front half section of the machine body of the present invention.
Fig. 3 is a schematic structural diagram of a top view cross section of the telescopic mechanism of the present invention.
FIG. 4 is a schematic top view of an outrigger of the present invention.
Fig. 5 is a schematic structural diagram of a top view cross section of a contact block of the present invention.
FIG. 6 is a schematic top view of a tray according to the present invention.
Fig. 7 is a schematic top view of a cross section of an interference head according to the present invention.
Fig. 8 is a schematic top view of a bonding plate according to the present invention.
In the figure: an opening and closing door-1, a machine body-2, a base-3, a control electric box-4, a paint tank-5, a shell-21, a sleeve frame-22, a telescopic mechanism-23, a tray-24, a bottom plate-25, a spraying gun-a 1, a connecting block-a 2, an outer swing rod-a 3, an elastic strip-a 4, an outer extending block-a 5, a frame-a 51, an elastic sheet-a 52, a lower push plate-a 53, a deformation plate-a 54, a contact block-a 55, a plate body-b 1, an outer extending strip-b 2, an elastic ring-b 3, a bottom plate-b 4, a combination plate-b 5, an outer frame-c 1, a guide frame-c 2, a sliding plate-c 3, an elastic strip-c 4, a collision head-c 5, a jointing plate-c 51, a reset sheet-c 52, a bottom plate-c 53, a movable roller-d 1, Outer connecting plate-d 2 and bearing plate-d 3.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1
As shown in fig. 1-5:
the invention provides a steam coating machine for high-temperature structural ceramics, which structurally comprises an opening and closing door 1, a machine body 2, a base 3, a control electronic box 4 and a coating tank 5, wherein the opening and closing door 1 is hinged with the machine body 2, the control electronic box 4 is connected with the machine body 2, the coating tank 5 is fixedly connected with the machine body 2, and the machine body 2 is welded with the base 3; organism 2 includes shell 21, cover frame 22, telescopic machanism 23, tray 24, bottom plate 25, cover frame 22 is connected with shell 21 embedded solid, telescopic machanism 23 and cover frame 22 clearance fit, tray 24 and bottom plate 25 activity block, bottom plate 25 and shell 21 are integrated structure.
The telescopic mechanism 23 comprises a spraying gun a1, a connecting block a2, an outer swing rod a3, an elastic strip a4 and an outer extending block a5, wherein the connecting block a2 is fixedly connected with the spraying gun a1 in an embedded mode, the outer swing rod a3 is movably clamped between the connecting block a2 and the outer extending block a5 in a clamped mode, the elastic strip a4 is installed between the outer extending block a5 and the connecting block a2, the number of the outer swing rods a3 is four, the two outer swing rods are uniformly distributed between the connecting blocks a2 and the outer extending blocks a5 on two sides in a group, and the outer swing rod a3 can swing outwards and incline by means of reverse thrust generated by the outer surface of a ceramic product to the outer extending block a5, so that the outer swing rod a3 can drive the outer extending block a5 to extend outwards.
The overhanging block a5 comprises a frame body a51, an elastic piece a52, a lower push plate a53, a deformation plate a54 and a contact block a55, wherein the elastic piece a52 is fixed between the frame body a51 and the lower push plate a53, the lower push plate a53 is in clearance fit with the frame body a51, the deformation plate a54 is fixedly embedded in the lower push plate a53, the contact block a55 is installed at the bottom of the deformation plate a54, the deformation plate a54 is made of a spring steel material with strong elasticity, and the contact block a55 can push the deformation plate a54 to deform and contract inwards by pressing the outer surface of the ceramic product against the contact block a55, so that the contact block a55 can be attached to the outer surface of the ceramic product.
The contact block a55 comprises a plate body b1, an overhanging bar b2, an elastic ring b3, a bottom plate b4 and a combination plate b5, wherein the overhanging bar b2 is fixedly connected with the plate body b1, the elastic ring b3 is connected with the combination plate b5, the bottom plate b4 and the plate body b1 are of an integrated structure, the combination plate b5 is installed between the plate body b1 and the bottom plate b4, the number of the overhanging bars b2 is four, the overhanging bars b2 are uniformly distributed at the bottom of the plate body b1 in a symmetrical mode, and the overhanging bars b2 can extend outwards along the bottom plate b4 through the reverse thrust generated by the outer surface of the ceramic product to the bottom plate b 4.
The detailed use method and action of the embodiment are as follows:
in the invention, because the ceramic product is continuously rotated at a constant speed on the tray 24 in the machine body 2, when the spraying guns a1 at two sides respectively spray two coatings with different colors on two sides of the ceramic product, the tray 24 is easy to rotate due to inertia, so that the atomized coatings sprayed by the spraying guns can float to the other side of the ceramic product, and the coating colors on the ceramic product are mixed, the problems can be effectively solved by the telescopic mechanism 23 on the machine body 2, when the ceramic product is required to be steamed, the telescopic mechanism 23 can slide and contract inwards along the sleeve frame 22 by placing the ceramic product on the upper surface of the tray 24 on the machine body 2 and extruding the telescopic mechanism 23 through the outer surface of the ceramic product, so that the ceramic product is completely clamped between the two telescopic mechanisms 23, and the outer swing rod a3 can swing outwards by the reverse thrust generated by the outer surface of the ceramic product to the overhanging block a5, so that the outer swing rod a3 can drive the overhanging block a5 to extend outwards, and then the ceramic product continuously extrudes the overhanging block a5, so that the deformation plate a54 on the overhanging block a5 can deform inwards and contract, and the contact block a55 can be attached to the outer surface of the ceramic product, therefore, when the spraying gun a1 sprays the outer surface of the ceramic product, the paint atomized to the two sides can be blocked by the inner side of the overhanging block a5, the condition that the atomized paint can float to the other surface of the ceramic product is effectively avoided, and the pushing force generated by the elastic sheet a52 to the lower push plate a53 can make the lower push plate a53 slide outwards along the frame body a51, so that when the tray 24 stops rotating, the ceramic product losing large rotating force is stopped, when the tray 24 is effectively prevented from stopping rotating, the ceramic product is continuously driven to rotate due to inertia, and the bottom plate b4 can be inwards contracted by thrust generated by the outer surface of the ceramic product to the bottom plate b4 on the contact block a55, so that the extending strip b2 can extend outwards along the bottom plate b4, a gap can be generated between the contact block a55 and the outer surface of the ceramic product, and the condition that the coating sprayed on the outer surface of the ceramic product is scraped by the extending block a5 is effectively avoided.
Example 2
As shown in fig. 6-8:
the tray 24 includes an outer frame c1, a guide frame c2, a sliding plate c3, an elastic strip c4 and an abutting head c5, the guide frame c2 and the outer frame c1 are of an integrated structure, the sliding plate c3 is in clearance fit with the guide frame c2, the elastic strip c4 is installed between the sliding plate c3 and the outer frame c1, the abutting head c5 is embedded in the front end position of the sliding plate c3, the abutting heads c5 are four, and the sliding plate c3 is matched with the guide frame c2 and is uniformly and symmetrically distributed on the inner side of the outer frame c1, and the abutting head c5 is pressed by the outer surface of the ceramic product, so that the abutting head c5 can push the sliding plate c3 to slide and retract inwards along the guide frame 2.
The abutting contact c5 comprises a joint plate c51, a reset sheet c52 and a bottom plate c53, the joint plate c51 is hinged to the bottom plate c53, the reset sheet c52 is installed between the joint plate c51 and the bottom plate c53, two joint plates c51 are arranged and are uniformly distributed on the bottom plate c53 in a symmetrical mode, and the joint plate c51 can swing upwards along the bottom plate c53 until the joint plate c51 is abutted to the outer surface of the ceramic product by pressing the outer surface of the ceramic product between the two joint plates c 51.
Wherein, laminating board c51 includes activity roller d1, outer fishplate bar d2, loading board d3, activity roller d1 and outer fishplate bar d2 activity block, outer fishplate bar d2 and loading board d3 structure as an organic whole, activity roller d1 is equipped with three, and even be arc distribution on outer fishplate bar d2, can make outer fishplate bar d2 and ceramic surface produce the clearance through activity roller d1, and can laminate the surface of ceramic through activity roller d1 and roll.
The detailed use method and action of the embodiment are as follows:
in the present invention, since the ceramic product is normally placed directly on the upper surface of the tray 24, if the rotation speed of the tray 24 is too fast, the ceramic product with a small base diameter is prone to topple, such problem can be effectively solved by the cooperation of the abutting contact c5 on the tray 24 and the sliding plate c3, the abutting contact c5 can push the sliding plate c3 to slide and contract inwards along the guide frame c2 by the pressing of the outer surface of the ceramic product placed on the upper surface of the tray 24 against the abutting contact c5, and the sliding plate c3 can be pushed to slide and extend outwards along the guide frame c2 by the cooperation of the elastic strip 4, so that the four abutting contacts c5 can fix the position of the ceramic product, and the two abutting plates c51 can swing upwards along the bottom plate c53 by the counter-pushing force generated between the two abutting plates c51 on the abutting contact c5 by the outer surface of the ceramic product, until the upper surface of the jointing plate c51 is jointed with the outer surface of the ceramic product, and the movable roller d1 on the jointing plate c51 can enable the jointing plate c51 to generate a gap with the outer surface of the ceramic product, so that the paint sprayed by the spraying gun a1 can be sprayed between the jointing plate c51 and the ceramic product, and the situation that the paint is not easily sprayed at the position where the ceramic product is shielded by the jointing plate c51 is effectively avoided.
The technical solutions of the present invention or similar technical solutions designed by those skilled in the art based on the teachings of the technical solutions of the present invention are all within the scope of the present invention to achieve the above technical effects.

Claims (1)

1. The utility model provides a high temperature structure pottery evaporate scribbles machine, its structure is including opening and shutting door (1), organism (2), base (3), control electronic box (4), coating jar (5), opening and shutting door (1) and organism (2) hinged joint, control electronic box (4) are connected with organism (2), coating jar (5) are inlayed with organism (2) and are connected its characterized in that admittedly: the machine body (2) is welded with the base (3);
the machine body (2) comprises a shell (21), a sleeve frame (22), a telescopic mechanism (23), a tray (24) and a bottom plate (25), wherein the sleeve frame (22) is fixedly embedded in the shell (21), the telescopic mechanism (23) is in clearance fit with the sleeve frame (22), the tray (24) is movably clamped with the bottom plate (25), and the bottom plate (25) and the shell (21) are of an integrated structure;
the telescopic mechanism (23) comprises a spraying gun (a1), an engaging block (a2), an outer swing rod (a3), an elastic strip (a4) and an outer extending block (a5), wherein the engaging block (a2) is fixedly embedded in the spraying gun (a1), the outer swing rod (a3) is movably clamped between the engaging block (a2) and the outer extending block (a5), and the elastic strip (a4) is arranged between the outer extending block (a5) and the engaging block (a 2);
the overhanging block (a5) comprises a frame body (a51), an elastic piece (a52), a lower push plate (a53), a deformation plate (a54) and a contact block (a55), wherein the elastic piece (a52) is fixed between the frame body (a51) and the lower push plate (a53), the lower push plate (a53) is in clearance fit with the frame body (a51), the deformation plate (a54) is fixedly connected with the lower push plate (a53), and the contact block (a55) is installed at the bottom position of the deformation plate (a 54);
the contact block (a55) comprises a plate body (b1), an overhanging strip (b2), an elastic ring (b3), a bottom plate (b4) and a combining plate (b5), wherein the overhanging strip (b2) is fixedly embedded in the plate body (b1), the elastic ring (b3) is connected with the combining plate (b5), the bottom plate (b4) and the plate body (b1) are of an integrated structure, and the combining plate (b5) is installed between the plate body (b1) and the bottom plate (b 4);
the tray (24) comprises an outer frame (c1), a guide frame (c2), a sliding plate (c3), an elastic strip (c4) and a contact head (c5), wherein the guide frame (c2) and the outer frame (c1) are of an integrated structure, the sliding plate (c3) is in clearance fit with the guide frame (c2), the elastic strip (c4) is installed between the sliding plate (c3) and the outer frame (c1), and the contact head (c5) is embedded and fixed at the front end position of the sliding plate (c 3);
the abutting contact (c5) comprises a joint plate (c51), a reset piece (c52) and a bottom plate (c53), the joint plate (c51) is hinged with the bottom plate (c53), and the reset piece (c52) is installed between the joint plate (c51) and the bottom plate (c 53);
rigging board (c51) include activity roller (d1), external board (d2), loading board (d3), activity roller (d1) and external fishplate bar (d2) activity block, external fishplate bar (d2) and loading board (d3) structure as an organic whole.
CN202010661663.3A 2020-07-10 2020-07-10 Steam coating machine for high-temperature structural ceramics Active CN111804479B (en)

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Publication number Priority date Publication date Assignee Title
CN112403717A (en) * 2020-11-16 2021-02-26 泉州市勤裕鼎工业设计有限公司 Steam coating machine for high-temperature structural ceramics

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Effective date of registration: 20221208

Address after: 253000 Fuxing South Road, Pingyuan Economic Development Zone, Dezhou, Shandong

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