Artificial cement-based ultra-high-performance stone
12570578 ยท 2026-03-10
Inventors
Cpc classification
E04F13/0805
FIXED CONSTRUCTIONS
E04F13/0885
FIXED CONSTRUCTIONS
International classification
B28B23/02
PERFORMING OPERATIONS; TRANSPORTING
C04B40/00
CHEMISTRY; METALLURGY
Abstract
A cement-based artificial stone plate includes a cement-based plate body; and a metal mesh being embedded in the cement-based plate body; wherein the metal mesh is arranged with at least one fixing member, the fixing member defines a screw hole along its axis, and the screw hole of the fixing member is exposed on back of the cement-based plate body, and back of the plate body is provided with regular or irregular protrusions, between any two protrusions forms a groove, and bottom of each groove is close to the metal mesh.
Claims
1. An artificial ultra-high performance concrete (UHPC) stone, comprising: providing UHPC artificial stone slurry, at least one fixing member and a metal mesh, providing high-frequency vibration equipment, strong pressure equipment and vacuum equipment, and providing a mold frame; putting the mixed slurry into the mold frame, starting the high-frequency vibration equipment to vibrate, placing the at least one fixing member on a surface of the slurry, laying the metal mesh, turning on a hydraulic machine and aligning a pressure plate with a same specification to the mold frame, and turning on the vacuum equipment, two operations are synchronized, the pressure plate is provided with regular grooves to form regular protrusions on the plate body; and aligning a pressure plate with irregular grooves of the same specification to the mold frame to form irregular protrusions; the protrusions allow the metal mesh to solidify in the plate body, the metal mesh is embedded in the plate body; wherein the metal mesh is arranged with the at least one fixing member, the at least one fixing member defines a screw hole along its axis, and the screw hole of the fixing member is exposed on a back of the plate body, and the back of the plate body is provided with regular or irregular protrusions, between any two protrusions forms a groove, and a bottom of each groove is next to the metal mesh.
2. The artificial ultra-high performance concrete stone of claim 1, wherein a thickness of the plate body is in a range of 5-25 mm.
3. The artificial ultra-high performance concrete stone plate of claim 1, wherein the metal mesh is stainless steel mesh, and the fixing member is a stainless steel nut.
4. The artificial ultra-high performance concrete stone of claim 1, wherein the opening of the screw hole of the fixing member is at a depth of 0-4 mm from the back surface of the plate body.
5. The artificial ultra-high performance concrete stone of claim 4, wherein the opening of the screw hole of the fixing member is level with the back of the plate body.
6. The artificial ultra-high performance concrete stone of claim 1, wherein a bottom of the fixing member is provided with a wing plate around the fixing member.
7. The artificial ultra-high performance concrete stone of claim 6, wherein the metal mesh is arranged with a plurality of through holes, and each fixing member is corresponded to a through hole at the metal mesh, and the wing plate of the fixing member is located at bottom of the mesh hole, and a size of the wing plate is bigger than a corresponding mesh hole.
8. The artificial ultra-high performance concrete stone of claim 3, wherein a bottom the fixing members is welded and fixed on the stainless steel mesh.
9. The artificial ultra-high performance concrete stone of claim 1, wherein the number of the fixing member is at least two.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Implementations of the present technology will now be described, by way of example only, with reference to the attached figures.
(2)
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DETAILED DESCRIPTION
(8) It will be appreciated that for simplicity and clarity of illustration, where appropriate, reference numerals have been repeated among the different figures to indicate corresponding or analogous elements. In addition, numerous specific details are set forth in order to provide a thorough understanding of the embodiments described herein. However, it will be understood by those of ordinary skill in the art that the embodiments described herein can be practiced without these specific details. In other instances, methods, procedures, and components have not been described in detail so as not to obscure the related relevant feature being described. Also, the description is not to be considered as limiting the scope of the embodiments described herein. The drawings are not necessarily to scale, and the proportions of certain parts may be exaggerated to illustrate details and features of the present disclosure better. The disclosure is illustrated by way of example and not by way of limitation in the figures of the accompanying drawings, in which like references indicate similar elements. It should be noted that references to an or one embodiment in this disclosure are not necessarily to the same embodiment, and such references mean at least one.
(9) Several definitions that apply throughout this disclosure will now be presented.
(10) The term substantially is defined to be essentially conforming to the particular dimension, shape, or other feature that the term modifies, such that the component need not be exact. For example, substantially cylindrical means that the object resembles a cylinder, but can have one or more deviations from a true cylinder. The term comprising, when utilized, means including, but not necessarily limited to; it specifically indicates open-ended inclusion or membership in the so-described combination, group, series, and the like. The references a plurality of and a number of mean at least two.
Example 1
(11)
(12) Referring to
Step 1
(13) Raw material configuration: Portland cement 100 parts by weight, silica fume 8 parts by weight, slag powder 20 parts by weight, 4-6 mesh yellow rice stone 60 parts by weight, 4-6 mesh black rice stone 20 parts by weight, 10-20 mesh yellow rice stone 50 Parts by weight, 40-80 mesh white rice stone 20 parts by weight, 80-120 mesh quartz powder 5 parts by weight, 800-1200 mesh quartz powder 5 parts by weight, polycarboxylic acid superplasticizer 0.8 parts by weight, hydrophobic powder 0.6 parts by weight, iron oxide yellow pigment 2 parts by weigh, flyash 10 parts by weight, nano titanium dioxide 1 part by weight, nano silica 1.5 parts by weight, nano calcium carbonate 2.5 parts by weight. In the embodiment, Portland cement is preferably 525 white portland cement.
Step 2
(14) The above dry powder materials are mixed evenly by dry powder equipment to obtain dry powder, and packed in bags.
Step 3
(15) The dry powder is added to high-performance water reduction agent the high-efficiency water-reducing agent and water in proportion and stirred for 10 minutes, and in the embodiment, all the above components in this step are coagulated by adding an appropriate amount of water, and a ratio of water to cementitious material is 0.2.
Step 4
(16) Provide high-frequency vibration equipment, strong pressure equipment and vacuum equipment, and provide a mold frame with a size of 600 mm*900 mm, and spray mold release agent in the mold frame. In the embodiment, the strong pressure equipment is hydraulic machine.
Step 5
(17) Put the stirred slurry into the mold frame, level the slurry and move the mold frame to the high-frequency vibration equipment, and turn on the high-frequency vibration equipment, and vibrate the mold frame for 10 to 15 seconds.
Step 6
(18) Lay a stainless steel mesh 1 with several fixing members 2 on surface of the slurry at a determined position, and lay an insulation cloth on surface of the stainless steel mesh. Stainless steel fixing member 2 and stainless steel mesh have an advantages of anti-corrosion. The stainless steel mesh will not be rusted when it is cut into any size when installed, which overcomes the defects of the ordinary metal mesh and steel fiber that are easy to rust.
Step 7
(19) Turn on the hydraulic machine and align a pressure plate with a same specification to the mold frame. Press 20 seconds with a pressure about 500 tons, and turn on the vacuum machine to evacuate to 0.08 MPa at the same time. The two operations are synchronized. In the embodiment, the pressure plate is provided with regular grooves to form regular protrusions (as shown in
Step 8
(20) Take out the isolating cloth and send the pressed plate 3 with a pallet to a steam curing room for curing.
Step 9
(21) Customize the cured plate to a standard thickness with a thickness-setting machine.
Step 10
(22) Polish the determined thickness plate with a stone continuous polishing machine.
Step 11
(23) Dry and spray surface protective agent, and send it to construction site. Color of the artificial stone plate: yellow; high-gloss surface; specifications: a thickness of the cement-based ultra-high-performance artificial stone plate is about 10 mm, and a size of the cement-based ultra-high-performance artificial stone plate is about 600*900 mm.
Example 2
(24) As shown in
(25) Bottom of the fixing member 2 is provided with a wing plate 6, as shown in
(26) The stainless steel mesh has demolition resistance, so that the plate's aggregate and the stainless steel mesh are completely integrated. Rigidity and toughness of the stainless steel wire make the artificial stone plate not break or fall off even when it is very thin. A thickness of the cement-based plate body is in a range of 5-8 mm, and a specific manufacturing process is as follows:
Step 1
(27) Provide raw material, and raw material configuration: Portland cement 100 parts by weight, silica fume 8 parts by weight, slag powder 20 parts by weight, 4-6 mesh red rice stone 60 parts by weight, 4-6 mesh black rice stone 20 parts by weight, 10-20 mesh yellow rice stone 50 Parts by weight, 40-80 mesh white rice stone 20 parts by weight, 80-120 mesh quartz powder 5 parts by weight, 800-1200 mesh quartz powder 5 parts by weight, polycarboxylic acid superplasticizer 0.8 parts by weight, hydrophobic powder 0.6 parts by weight, iron oxide yellow pigment 2 parts by weigh, flyash 10 parts by weight. In the embodiment, Portland cement is preferably 525 white portland cement.
Step 2
(28) Mix the above dry powders evenly through dry powder equipment to obtain dry powders and pack them in bags.
Step 3
(29) Add high-efficiency water-reducing agent and water into the dry powder in proportion and stir for 10 minutes, and in the embodiment, all the above components in this step are coagulated by adding an appropriate amount of water, and a ratio of water to cementitious material is 0.25.
Step 4
(30) Provide strong vibration equipment, strong pressure equipment and vacuum equipment, and provide a mold frame with a size of 600 mm*600 mm, and spray mold release agent in the mold frame. In this embodiment, the strong vibration equipment, strong pressure equipment and vacuum equipment is a four-column hydraulic press, the four-column hydraulic press is an all-in-one machine with high frequency vibration (725-1450 times/min) and strong pressure (1000-2000 KN) and vacuum (below 0.06 MPa).
Step 5
(31) Put the stirred slurry into the mold frame, level the slurry and turn on the high-frequency vibrator, and vibrate for 10 to 15 seconds.
Step 6
(32) Set more than one fixing member on the vibrated slurry at a determined position, lay the metal mesh 1 and the isolation cloth, and the metal mesh is stainless steel mesh.
Step 7
(33) Turn on the strong pressure equipment, and align a pressure plate with irregular grooves of the same specifications to the mold frame to form irregular protrusions (as shown in
Step 8
(34) Take out the isolating cloth and send the pressed plate 3 to the steam curing room for curing with a pallet.
Step 9
(35) Customize the cured plate to a standard thickness with a thickness-setting machine.
Step 10
(36) Use sandblasting machine to form sandblasting surface.
Step 11
(37) Dry and spray surface protection agent and send it to construction site. Product color: red; sandblasted surface; specifications: 600*600 mm; thickness: 8 mm.
Embodiment 3
(38) Cement-based artificial stone plate, thickness of the plate is 15-25 mm.
(39) A structure and manufacturing process are the same as those in Embodiment 2.
(40) Product color: red; sandblasted surface; specifications: 1600*3200 mm; thickness 25 mm.
Embodiment 4
(41) A thickness of the plate body is 12-15 mm, the specific manufacturing process is as follows:
Step 1
(42) Raw Material Configuration:
(43) Raw material configuration: Portland cement 100 parts by weight, silica fume 8 parts by weight, slag powder 20 parts by weight, 4-6 mesh yellow rice stone 60 parts by weight, 4-6 mesh black rice stone 20 parts by weight, 10-20 mesh yellow rice stone 50 Parts by weight, 40-80 mesh white rice stone 20 parts by weight, 80-120 mesh quartz powder 5 parts by weight, 800-1200 mesh quartz powder 5 parts by weight, polycarboxylic acid superplasticizer 0.8 parts by weight, hydrophobic powder 0.6 parts by weight, iron oxide red pigment 2 parts by weigh, and flyash 10 parts by weight. In the embodiment, Portland cement is preferably 525 white portland cement.
Step 2
(44) Mix the above dry powders through dry powder equipment to make dry powders and pack them in bags.
Step 3
(45) Add high-efficiency water-reducing agent and water into the dry powder in proportion and stir for 10 minutes, and in the embodiment, all the above components in this step are coagulated by adding an appropriate amount of water, and a ratio of water to cementitious material is 0.16.
Step 4
(46) Provide strong vibration equipment, strong pressure equipment and vacuum equipment, and provide a mold frame with a size of 1000 mm*1000 mm, and spray mold release agent in the mold frame.
Step 5
(47) Put the stirred slurry into the mold frame, level the slurry and turn on the high-frequency vibrator, and vibrate for 10 to 15 seconds.
Step 6
(48) Set more than one fixing member on the vibrated slurry at a determined position, lay the metal mesh 1 and the isolation cloth, the metal mesh is stainless steel mesh.
Step 7
(49) Turn on the strong pressure equipment, and align a pressure plate with irregular grooves of the same specifications to the mold frame to form irregular protrusions. The protrusions 5 allow the metal mesh to completely solidify in the plate body. The groove 7 between any two of the embedded protrusions 5 is close to the metal mesh sheet, pressed at 500 tons for 20 seconds and simultaneously turned on the vacuum machine to evacuate to 0.08 MPa, time of the two operation is synchronized.
Step 8
(50) Take out the isolating cloth and send the pressed plate 3 using a pallet to a steam curing room for curing.
Step 9
(51) Customize the cured plate to a standard thickness with a thickness-setting machine.
Step 10
(52) Use sandblasting machine to form sandblasting surface, the sandblasting surface is a front surface of the cement-based artificial stone plate.
Step 11
(53) Dry and spray surface protection agent and send it to construction site. Product color: red; sandblasted surface; specifications: 1000*1000 mm; thickness: 12 mm.
(54)
(55) The embodiments shown and described above are only examples. Therefore, many commonly-known features and details are neither shown nor described. Even though numerous characteristics and advantages of the present technology have been set forth in the foregoing description, together with details of the structure and function of the present disclosure, the disclosure is illustrative only, and changes may be made in the detail, including in matters of shape, size, and arrangement of the parts within the principles of the present disclosure, up to and including the full extent established by the broad general meaning of the terms used in the claims. It will, therefore, be appreciated that the embodiments described above may be modified within the scope of the claims.