Architectural decoration paint and processing method thereof
By using a specific mixing device in the preparation of paint, the central axis drives the rotation of the stirring plate and the rotation of the cross box frame, the problem of poor mixing effect of existing equipment is solved, and the quality and mixing efficiency of the paint are improved.
Patent Information
- Application Number
- CN202210148958.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-02-18
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2042-02-18
AI Technical Summary
The existing mixing equipment has poor mixing effect in coating preparation, which affects the quality of the coating.
A specific mixing device is adopted, including a leg frame, a rotating mixing box, a switch tube, a telescopic rod, a central shaft and multiple stirring plates. The stirring plate is driven to rotate through the central shaft, combined with the rotation of the cross box frame and the push of the side push plate, to form uniform stirring and shaking of the raw materials, and improve mixing efficiency.
Through the use of this mixing device, the mixing uniformity of raw materials is significantly improved, the quality of the paint is ensured, and the problem of poor mixing effect of existing equipment is solved.
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Figure CN114432923B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of coating processing, in particular to architectural decoration coating and a processing method thereof. Background Art
[0002] With the development of the construction industry, in order to protect the main structure of the building, improve the physical performance and use function of the building and beautify the building, various treatment processes are carried out on the internal and external surfaces and spaces of the building using decorative materials or ornaments. For the walls inside the building, architectural paint is generally applied on the walls for beautification.
[0003] When preparing the coating, the raw materials need to be mixed and stirred, but the existing mixing equipment has poor mixing effect, which affects the quality of the coating. Summary of the invention
[0004] The purpose of the present invention is to provide a building decoration coating and a processing method thereof, which has a good mixing effect on raw materials.
[0005] The purpose of the present invention is achieved through the following technical solutions:
[0006] A method for processing architectural decoration coatings, the method comprising the following steps:
[0007] Step 1, adding silica sol, acrylic resin, epoxy resin and water into a mixing device, stirring evenly to obtain a base material;
[0008] Step 2: Add fillers and pigments into a mixing device and mix them evenly with the base material;
[0009] Step 3, adding the additive into the mixing device, stirring evenly to obtain the coating;
[0010] Step 4: Finally, package and store the paint.
[0011] The filler is light calcium carbonate.
[0012] The auxiliary agents are stabilizers and brighteners.
[0013] The mixing device includes a leg frame and a mixing box rotating at the center of the leg frame, a switch tube slides at the center of the lower end of the mixing box, a telescopic rod is provided between the switch tube and the leg frame, a central axis rotates inside the switch tube, a plurality of stirring plates are fixed on the central axis, and the lower end of the central axis is rotatably connected to the leg frame.
[0014] The coating processed by the architectural decoration coating processing method comprises the following components in parts by weight: 10-15 parts of silica sol, 10-15 parts of acrylic resin, 15-20 parts of epoxy resin, 80-90 parts of water, 10-15 parts of light calcium carbonate, 20-30 parts of brightener and 3-5 parts of stabilizer. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a flow chart of the processing method of architectural decoration coatings;
[0016] Figure 2 It is a schematic diagram of the overall structure of the mixing device;
[0017] Figure 3 is a partial structural schematic diagram of a mixing device;
[0018] Figure 4 It is a structural diagram of the outrigger frame;
[0019] Figure 5 It is a structural diagram of a cross box frame;
[0020] Figure 6 It is a schematic diagram of the structure of the thrust plate;
[0021] Figure 7 It is a schematic diagram of the structure of the convex plate;
[0022] Figure 8 It is a schematic diagram of the structure of the central axis;
[0023] Fig. 9 It is a structural diagram of the frame tube;
[0024] Fig.10 It is a schematic diagram of the structure of the stirring shaft;
[0025] Fig.11 It is a structural schematic diagram of the guide slide;
[0026] Fig.12 It is a structural diagram of cone plugging.
[0027] In the figure:
[0028] Leg support 101; ring 102; fixing block 103;
[0029] Cross box frame 201; fixed plate 202; lower cover plate 203; connecting pipe 204; upper cover plate 205; round mouth 206;
[0030] Side push plate 301; push frame 302; groove wheel 303; spring I 304; rack 305;
[0031] Convex plate 401; Adjusting screw 402;
[0032] Central axis 501; stirring plate 502; scraper 503; spring II 504; switch tube 505; telescopic rod 506; frame tube 507; discharge tube 508;
[0033] Stirring shaft 601; Stirring small plate 602;
[0034] Round tube 701; guide slide 702; cone plug 703; center rod 704; spring III 705; control frame 706. DETAILED DESCRIPTION
[0035] like Figure 1 As shown:
[0036] A method for processing architectural decoration coatings, the method comprising the following steps:
[0037] Step 1, adding silica sol, acrylic resin, epoxy resin and water into a mixing device, stirring evenly to obtain a base material;
[0038] Step 2: Add fillers and pigments into a mixing device and mix them evenly with the base material;
[0039] Step 3, adding the additive into the mixing device, stirring evenly to obtain the coating;
[0040] Step 4: Finally, package and store the paint.
[0041] The filler is light calcium carbonate.
[0042] The auxiliary agents are stabilizers and brighteners.
[0043] like Figure 2-12 As shown:
[0044] The mixing device includes a leg frame 101 and a mixing box, the mixing box rotates at the center of the leg frame 101, the switch tube 505 slides at the center of the lower end of the mixing box, the telescopic rod 506 is arranged between the switch tube 505 and the leg frame 101, the central axis 501 rotates in the switch tube 505, a plurality of stirring plates 502 are fixed on the central axis 501, and the lower end of the central axis 501 is rotatably connected to the leg frame 101.
[0045] When in use, the mixing box is supported by the leg frame 101. After the raw materials are added into the mixing box, the driving motor installed on the leg frame 101 is started to drive the central shaft 501, so that the central shaft 501 drives the multiple stirring plates 502 to rotate, thereby stirring the raw materials in the mixing box, making the raw materials mixed evenly, and obtaining the coating;
[0046] After the stirring is completed, the telescopic rod 506 is started to extend, thereby pushing the switch tube 505 to slide downward at the lower end of the mixing box, so that the lower end of the mixing box is opened, and then the paint is discharged.
[0047] like Figure 2-12 As shown:
[0048] The mixing box includes a cross box frame 201, an upper cover plate 205 and a lower cover plate 203. The upper cover plate 205 and the lower cover plate 203 are respectively fixed at the upper and lower ends of the cross box frame 201. The connecting pipe 204 is fixed at the center of the lower cover plate 203. A plurality of discharge holes are provided on the connecting pipe 204. The connecting pipe 204 is rotatably connected to the center of the leg frame 101. A switch tube 505 slides in the connecting pipe 204. The four ends of the cross box frame 201 are all connected to a liquid pushing mechanism.
[0049] The cross space is formed by the cross box frame 201, the upper cover plate 205 and the lower cover plate 203. When the raw materials are stirred by the central axis 501, another drive installed on the leg frame 101 is started to drive the connecting pipe 204, thereby driving the cross space to rotate. When the cross space rotates, the four outer end spaces can effectively drive the raw materials to rotate, thereby cooperating with the central axis 501 to stir the raw materials, further improving the stirring efficiency;
[0050] During discharge, the telescopic rod 506 is controlled to extend, driving the switch tube 505 to slide down in the connecting tube 204, so that the discharge hole on the connecting tube 204 is connected with the cross space, and then the paint is discharged.
[0051] like Figure 2-12 As shown:
[0052] The liquid pushing mechanism includes a side push plate 301 and a push frame 302, the push frame 302 is fixed on the side push plate 301, the fixed plate 202 slides on the push frame 302, the fixed plate 202 is fixedly connected to the outer end of the cross box frame 201, and the spring I 304 is arranged between the push frame 302 and the fixed plate 202.
[0053] After the raw materials are added into the mixing box, when the raw materials are stirred by the central shaft 501, the push frame 302 is pushed into the cross space, so that the push frame 302 overcomes the elastic force of the spring I 304 and drives the side push plate 301 to move into the cross box frame 201, thereby reducing the cross space in the mixing box, thereby causing the raw materials to be shaken, and the raw materials are stirred in cooperation with the central shaft 501, further improving the stirring efficiency;
[0054] When the side push plate 301 moves into the cross box frame 201, it can also scrape the inner wall of the cross box frame 201, thereby preventing the raw materials from adhering to the inner wall of the cross box frame 201 and affecting the mixing of the raw materials.
[0055] like Figure 2-12 As shown:
[0056] The mixing device also includes a circular ring 102 and a fixed block 103, wherein the two fixed blocks 103 are symmetrically fixed at both ends of the circular ring 102, the two convex plates 401 slide on the two fixed blocks 103 respectively, the two convex plates 401 are inserted into the circular ring 102, the two adjusting screws 402 rotate on the two convex plates 401 respectively, and the two adjusting screws 402 are threadedly connected to the two fixed blocks 103 respectively.
[0057] By setting the ring 102 and the convex plate 401, when the cross box frame 201 rotates, the cross box frame 201 drives the push frame 302 to rotate. When the push frame 302 rotates to the convex plate 401, the convex plate 401 squeezes the push frame 302, so that the push frame 302 drives the side push plate 301 to move into the cross box frame 201, thereby shaking the raw materials, cooperating with the central shaft 501 to stir the raw materials, and further improving the stirring efficiency;
[0058] The two convex plates 401 are symmetrically arranged so that when one of the push racks 302 contacts the convex plate 401, the other push rack 302 contacts the other convex plate 401 at the same time, so that the two side push plates 301 arranged opposite to each other move into the cross box frame 201 at the same time, thereby increasing the shaking degree of the raw materials, further cooperating with the central shaft 501 to stir the raw materials, and improving the stirring efficiency;
[0059] By rotating the adjusting screw 402, the adjusting screw 402 and the fixed block 103 are threadedly transmitted, and then the convex plate 401 is driven to move in the ring 102, so as to change the extrusion amplitude of the convex plate 401 on the push frame 302, thereby forming an adjustment of the shaking degree of the raw material through the side push plate 301.
[0060] like Figure 2-12 As shown:
[0061] The outer ends of the push racks 302 are all rotatably provided with groove wheels 303 , and the groove wheels 303 roll inside the ring 102 .
[0062] By setting the groove wheel 303, the groove wheel 303 rolls in the ring 102 as the cross box frame 201 rotates, thereby improving the stability of the mixing box rotation; when the groove wheel 303 contacts the convex plate 401, the groove wheel 303 rolls on the convex plate 401, thereby improving the smoothness of the rotation of the cross box frame 201.
[0063] like Figure 2-12 As shown:
[0064] The stirring plate 502 at the lower end is slidably connected with a scraper 503 , and a spring II 504 is arranged between the scraper 503 and the stirring plate 502 . The lower end of the scraper 503 presses against the lower cover plate 203 .
[0065] When the central shaft 501 drives the stirring plate 502 to stir, the stirring plate 502 at the lower end drives the scraper 503 to rotate at the same time. When the scraper 503 rotates, it scrapes the lower cover plate 203, effectively preventing the raw materials from sticking to the lower cover plate 203 and affecting the mixing of the raw materials;
[0066] By setting the spring II 504 , a buffer is formed when the scraper 503 scrapes the raw material, thereby avoiding damage to the scraper 503 .
[0067] like Figure 2-12 As shown:
[0068] The mixing device further comprises a frame pipe 507 and a discharge pipe 508 . The frame pipe 507 is rotated on the connecting pipe 204 . A plurality of discharge holes are all located in the frame pipe 507 . The discharge pipe 508 is fixed on the frame pipe 507 .
[0069] The frame pipe 507 forms a barrier for the connecting pipe 204, so that after the paint flows out from the discharge hole, it flows into the frame pipe 507 and is guided and discharged through the discharge pipe 508, which is convenient for collecting the raw materials.
[0070] like Figure 2-12 As shown:
[0071] The mixing device also includes a stirring shaft 601, a stirring plate 602 and a rack 305. Four stirring shafts 601 rotate between the upper cover plate 205 and the lower cover plate 203. The four stirring shafts 601 are evenly distributed around the central axis 501. Multiple stirring plates 602 are fixed on each stirring shaft 601. Two racks 305 are fixed on each side push plate 301. Each rack 305 is meshed with the corresponding stirring shaft 601 for transmission.
[0072] When the side push plate 301 slides inward, it drives the rack 305 thereon to move inward, and then drives the stirring shaft 601, so that the stirring shaft 601 drives the stirring small plate 602 to stir the raw materials. When the side push plate 301 slides outward, it drives the rack 305 thereon to move outward, and then drives the stirring shaft 601 in the reverse direction, further improving the stirring efficiency.
[0073] Furthermore, since the two side push plates 301 arranged opposite to each other slide inward alternately, the four stirring shafts 601 are driven alternately, so that the stirring shafts 601 continuously reciprocate, thereby improving the stirring efficiency;
[0074] The stirring plate 602 and the stirring plate 502 are arranged in sequence and spaced apart from each other, thereby effectively increasing the stirring space and improving the stirring efficiency.
[0075] like Figure 2-12 As shown:
[0076] The mixing device further comprises a circular opening 206 and a circular tube 701 rotating in the circular opening 206 . A guide slideway 702 is obliquely fixed on the circular tube 701 . The guide slideway 702 is fixedly connected to the circular ring 102 .
[0077] The guide slide 702 is fixedly connected to the circular ring 102 so that the guide slide 702 and the leg frame 101 are relatively fixed, so that the raw materials can be introduced into the circular tube 701 through the guide slide 702 and then flow into the mixing box through the circular opening 206 .
[0078] like Figure 2-12 As shown:
[0079] The mixing device also includes a cone plug 703 and a center rod 704 fixed to the cone plug 703. The lower end of the center rod 704 slides in the center axis 501. A spring III 705 is provided between the center rod 704 and the center axis 501. A control frame 706 slides on the upper end of the center rod 704. The control frame 706 is slidably connected to the guide slide 702.
[0080] Through the elastic force of spring III 705, the center rod 704 pushes the cone plug 703 to move up to the circular opening 206, thereby shielding the circular opening 206 to prevent the raw material from splashing out of the circular opening 206 due to excessive shaking;
[0081] When adding materials, the control frame 706 is pushed to slide obliquely downward along the guide slide 702, thereby squeezing the central rod 704, so that the cone plug 703 is separated from the round mouth 206, and the raw materials are added into the mixing box.
[0082] The coating processed by the architectural decoration coating processing method comprises the following components in parts by weight: 10-15 parts of silica sol, 10-15 parts of acrylic resin, 15-20 parts of epoxy resin, 80-90 parts of water, 10-15 parts of light calcium carbonate, 20-30 parts of brightener and 3-5 parts of stabilizer.
Claims
1. Processing methods of architectural decoration coatings, Features: The method comprises the following steps: Step 1, adding silica sol, acrylic resin, epoxy resin and water into a mixing device, stirring evenly to obtain a base material; Step 2: Add fillers and pigments into a mixing device and mix them evenly with the base material; Step 3, adding the additive into the mixing device, stirring evenly to obtain the coating; Step 4: Finally, the paint is packaged and stored; The mixing device comprises a leg frame (101) and a mixing box rotating at the center of the leg frame (101); a switch tube (505) is slidably arranged at the center of the lower end of the mixing box; a telescopic rod (506) is arranged between the switch tube (505) and the leg frame (101); a central shaft (501) rotates inside the switch tube (505); a plurality of stirring plates (502) are fixed on the central shaft (501); and the lower end of the central shaft (501) is rotatably connected to the leg frame (101); The mixing box comprises a cross box frame (201) and an upper cover plate (205) and a lower cover plate (203) respectively fixed at the upper and lower ends of the cross box frame (201); a connecting pipe (204) is provided at the center of the lower cover plate (203); a plurality of discharge holes are provided on the connecting pipe (204); the connecting pipe (204) rotates at the center of the leg frame (101); the switch pipe (505) slides in the connecting pipe (204); and the four ends of the cross box frame (201) are all connected to a liquid pushing mechanism; The liquid pushing mechanism comprises a side pushing plate (301) and a pushing frame (302) fixed on the side pushing plate (301), a fixing plate (202) is slidably arranged on the pushing frame (302), the fixing plate (202) is fixed on the outer end of the cross box frame (201), and a spring I (304) is arranged between the pushing frame (302) and the fixing plate (202).
2. The method for processing architectural decoration coating according to claim 1, Features: The filler is light calcium carbonate.
3. The method for processing architectural decoration coating according to claim 1, Features: The auxiliary agents are stabilizers and brighteners.
4. The method for processing architectural decoration coating according to claim 1, Features: The mixing device further comprises a circular ring (102) and fixed blocks (103) symmetrically fixed at two ends of the circular ring (102), the two fixed blocks (103) are both provided with slidable convex plates (401), the two convex plates (401) are both inserted into the circular ring (102), the two convex plates (401) are both provided with rotatable adjusting screws (402), and the two adjusting screws (402) are respectively threadedly connected to the two fixed blocks (103).
5. The method for processing architectural decoration coating according to claim 4, Features: A groove wheel (303) is rotatably provided at the outer end of the push frame (302), and the groove wheel (303) rolls inside the circular ring (102).
6. The method for processing architectural decoration coating according to claim 1, Features: The stirring plate (502) at the lower end is slidably connected with a scraper (503), and a spring II (504) is provided between the scraper (503) and the stirring plate (502) so that the lower end of the scraper (503) presses against the lower cover plate (203).
7. A coating processed by the architectural decoration coating processing method according to claim 1, Features: The coating comprises the following components in parts by weight: 10-15 parts of silica sol, 10-15 parts of acrylic resin, 15-20 parts of epoxy resin, 60-80 parts of water, 10-15 parts of light calcium carbonate, 20-30 parts of brightener and 3-5 parts of stabilizer.
Citation Information
Patent Citations
Building decoration paint and preparation process thereof
CN110054952A