Magnetic suspension and Qinglongstone combined rockery stacking construction method
The rockery stacking construction method combining magnetic levitation and Qinglong stone solves the problem of suspended ornaments in micro-landscapes, achieves suspension effect and aesthetics, and improves construction efficiency and applicability.
Patent Information
- Application Number
- CN202511003035.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-21
- Publication Date
- 2025-09-12
AI Technical Summary
The existing micro-landscape rockery stacking technology cannot suspend ornaments, cannot meet the requirements of stone placement effect and aesthetics, and traditional methods are not applicable to the micro-landscape field.
A rockery stacking construction method combining magnetic levitation and Qinglong stone is adopted. The Qinglong stone is fixed by glue, a magnetic levitation platform is built, and a magnetic levitation base is used to achieve a suspension effect. It is reinforced with a medium and cement layer to ensure stability and aesthetics.
It achieves the effect of suspended ornaments in micro-landscapes, broadens the application scenarios, improves construction efficiency and aesthetics, and the glue fixing method is easy to operate, and the biochemical cotton is suitable for a variety of stone materials and is easy to repair.
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Figure CN120620922A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to a rockery stacking construction method combining magnetic levitation and Qinglong stone. Background Art
[0002] A micro landscape is a fun-filled microscopic world created by combining mosses, succulents and other plants with fences, sand, soil, dolls, etc., and putting them into containers such as bottles. The existing rockery stacking is an important technique in Chinese classical garden landscaping. It simulates natural mountains by artificially stacking rocks, and emphasizes that "although it is made by man, it seems to be created by nature." A large number of rockery and stone stacking scenes, stone slope protection and various garden elements are widely used in courtyard greening and beautification, parks, renovation and upgrading of old communities, and ecological restoration of mountain landscapes, creating an overall unified and unique garden space environment.
[0003] For example, the existing application number is 202211695714.X, and the patent application is titled "A Construction Method Combining Rocks and Plastic Stones." It discloses setting up a steel skeleton; selecting rocks and plastic stones on the steel skeleton based on the shape of the mountain; tying steel mesh to the surface of the rocks and plastic stones; hanging a paddle on the surface of the steel mesh to form a preliminary textured surface; and coloring the preliminary textured surface to obtain a rockery. This application adopts a construction process that combines traditional rocks with modern plastic stones. The two most important points are: one is to achieve a natural transition between the rocks and plastic stones, and the other is to reinforce the rocks and plastic stones.
[0004] These are all indoor large-scale rockery stacking technologies, which do not belong to the field of micro-landscape. The stacking height of rockery in micro-landscape is no more than half a meter, and the minimum volume is only the size of a palm. The existing rockery stacking technology cannot be used, and the rockery stacking in the existing micro-landscape is just a simple stacking, and it is impossible to suspend ornaments. It is difficult to meet the requirements of rockery stone placement effect and micro-landscape construction.
[0005] Therefore, the present invention provides a rockery stacking construction method combining magnetic levitation and Qinglong stone to broaden the stone placement effect and aesthetics of the micro landscape and increase the application scenarios. Summary of the Invention
[0006] The present invention provides a rockery stacking construction method combining magnetic levitation and Qinglong stone, which can effectively solve the above problems.
[0007] The present invention is achieved in that:
[0008] A rockery stacking construction method combining magnetic levitation and Qinglong stone comprises the following steps:
[0009] Step 1: Collect the site data to be designed, build a rockery data model drawing based on the site data, use the drawing to reflect reality, and first enclose the river shape according to the rockery data model drawing;
[0010] Step 2: construct the first rockery main body, determine the first rockery support structure according to the rockery height marked on the drawing, and fix a number of blue dragon stones on the outer contact surface of the first rockery support structure by gluing;
[0011] Step 3: construct a second rockery body, fix it upside down on the top of the first rockery body by gluing, or install it directly in the river channel of step 1;
[0012] Step 4: Using the second rockery body or the first rockery body as the core skeleton, perform multiple leveling on the top surface of the second rockery body or the first rockery body, build a magnetic levitation platform, and place a suspended ornament directly above the magnetic levitation platform.
[0013] 2. The method for stacking a rockery combining magnetic levitation and Qinglong stone as described in claim 1 is characterized in that the specific steps of step 2 include using a plurality of slender Qinglong stones to be vertically bonded and fixed as a first rockery support structure to determine the height of the first rockery body, and adding a medium to the gap between two adjacent Qinglong stones and pouring skeleton glue to stabilize the first rockery support structure.
[0014] As a further improvement, the specific steps of step 3 include: the second rockery body uses several slender blue dragon stones to be vertically glued and fixed as the second rockery support structure to determine the height of the second rockery body, and more medium is added in the gap between two adjacent blue dragon stones to stabilize the second rockery support structure.
[0015] Secondly, the second rockery support structure is inverted on the top of the first rockery support structure, and a number of blue dragon stones are bonded to the outer surface of the top of the second rockery support structure so that the two rockery bodies form an inverted triangle structure.
[0016] As a further improvement, the medium is any one or more of ecological cotton, paper towels, wood chips, and biochemical cotton.
[0017] As a further improvement, the step 4 comprises the following steps:
[0018] Step 41, filling and leveling: fill all gaps between adjacent blue dragon stones in the first rockery body or the second rockery body with fillers, and then level the top surface of the second rockery body or the top surface of the first rockery body multiple times to make the top surface of the second rockery body smooth and balanced;
[0019] Step 42, installing the magnetic levitation base: placing the magnetic levitation base horizontally at the center of the top surface of the leveled first rockery body or the second rockery body;
[0020] Step 43: Modify and mask the base. Place a transparent plate flat on the upper surface of the magnetic levitation base. The transparent plate becomes the new display surface.
[0021] Step 44, test results, connect the magnetic levitation base to the power supply, place a suspended object on top of the magnetic levitation base to create an effect that the suspended object is located on a natural island.
[0022] As a further improvement, step 43 specifically includes using slender blue dragon stones to pile up along the outer periphery of the first rockery body or the second rockery body to form a wall, completely wrapping and covering the magnetic levitation base; the height of the wall is the same as that of the magnetic levitation base, and a transparent plate is placed flat on the upper surface of the magnetic levitation base, and the transparent plate becomes a new display plane.
[0023] As a further improvement, the glue fixing method is to use a medium as a skeleton on the contact surface of two adjacent Qinglong stones, apply skeleton glue on the bonding surface, and then directly press the two adjacent Qinglong stones to fix them.
[0024] As a further improvement, the specific steps of the multiple leveling in step 41 are: using a laser line projector to add biochemical cotton or small gravel on the top surface of the second rockery body to form a base layer.
[0025] As a further improvement, the specific steps of multiple leveling in step 41 are: circle 20 square centimeters around the center of the top surface of the second rockery body or the first rockery body, fill and level it with cement mortar or gypsum to form a cement layer.
[0026] A micro landscape ornament comprises a rockery made by the rockery stacking construction method combining magnetic levitation and Qinglong stone.
[0027] The beneficial effects of the present invention are:
[0028] ① The present invention has two construction methods. One method is to use the ordinary micro landscape without installing the magnetic levitation base, and the other method is to combine the magnetic levitation technology to broaden the stone placement effect and aesthetics of the micro landscape and increase the application scenarios.
[0029] ② The glue fixing method in the present invention is mainly based on skeleton glue and medium, supplemented by stone glue and foam glue, and directly adopts "glue point-pressing" direct bonding, without the need for professional equipment, and can be operated directly by manual labor; compared with cement mortar which requires multiple plastering and maintenance, the efficiency is improved by 50%; biochemical cotton is suitable for a variety of stone materials and is also easy to repair. Local bonding errors can be softened and removed by warm water without damaging the stone itself, while chemical glue often requires mechanical crushing.
[0030] ③ In order to ensure the stability of the magnetic levitation platform, the present invention first uses the foundation layer to structurally reinforce the top surface of the second rockery body to stabilize the top surface of the second rockery body, and then uses the cement layer to improve the surface accuracy of the top center of the second rockery body. A laser line projector is used to strengthen the benchmark control and line inspection, optimize the support system of the cement layer, and adopt special measures for special environments and dynamic loads to ensure the long-term stability of the leveling effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0032] Figure 1 This is a construction drawing 1 of a rockery stacking construction method combining magnetic levitation and Qinglong stone provided in Example 1 of the present invention.
[0033] Figure 2 This is the second construction drawing of a rockery stacking construction method combining magnetic levitation and Qinglong stone provided in Example 1 of the present invention.
[0034] Figure 3 This is a construction drawing of a rockery stacking construction method combining magnetic levitation and Qinglong stone, provided by Example 2 of the present invention. DETAILED DESCRIPTION
[0035] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention. Therefore, the following detailed description of the embodiments of the present invention provided in the drawings is not intended to limit the scope of the invention for which protection is sought, but merely represents selected embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0036] In the description of the present invention, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of the technical features indicated. Therefore, a feature specified as "first" or "second" may explicitly or implicitly include one or more of the features. In the description of the present invention, "plurality" means two or more, unless otherwise specifically defined.
[0037] Example 1
[0038] Reference Figure 1 and Figure 2 As shown, this embodiment provides a specific implementation method for a rockery stacking construction method combining magnetic levitation and Qinglong stone, including the following steps:
[0039] Step 1: Collect the data of the site to be designed, and construct a rockery data model drawing based on the site data. Use the drawing to reflect reality, and first enclose the shape of the river according to the rockery data model drawing. Detailed steps: Use water stones to enclose the shape of the river, with the rounded side of the water stones facing outwards, and the sharper parts should be hidden to avoid bumps and injuries to the human body. In more detail, large Qinglong stones can be used for padding, and small ones can be used to enclose an arc-shaped river channel; if two adjacent Qinglong stones need to be tightly connected and fixed, they should be fixed with glue.
[0040] Step 2: Construct the main rockery structure. Use several slender blue dragon stones to glue together vertically as the first rockery support structure to determine the height of the main rockery structure. Add a medium to the gap between adjacent blue dragon stones to stabilize the first rockery support structure. For example, select two large, slender blue dragon stones and glue them together to determine the height. If the height is insufficient, glue the other two stones together. If the bottom stone is thicker or larger, add more medium to the gap between the two stones. Hold the rockery steady with your hands and soak the medium with skeleton glue. Wait until the white smoke disappears, then gently shake it. If the rockery does not shake, the bonding is complete. If it shakes, find the shaking area, add medium, sprinkle it with skeleton glue, and glue it again.
[0041] Skeleton glue includes but is not limited to epoxy resin skeleton glue, polyurethane skeleton glue, acrylic skeleton glue, silicone skeleton glue, etc.
[0042] Among them, the media described in the context include but are not limited to ecological cotton, paper towels, sawdust, biochemical cotton, etc. Biochemical cotton is usually made of porous polyurethane foam or polyester fiber, with a large number of interlaced fine pores and a developed network structure inside, which provides a place for beneficial microorganisms (mainly nitrifying bacteria) to attach and grow. After long-term use, it can derive a small ecosystem that is closer to the natural growth state.
[0043] Step 3, construct a second rockery body, fix it upside down on the top of the first rockery body or directly invert it in the river channel of step 1, wherein the second rockery body uses several slender green dragon stones to be vertically glued and fixed as the second rockery support structure to determine the height of the second rockery body, and more medium is added to the gap between two adjacent green dragon stones to stabilize the second rockery support structure.
[0044] For example, the second rockery support structure is inverted on top of the first rockery support structure, and a number of blue dragon stones are bonded to the outer surface of the top of the second rockery support structure so that the two rockery bodies form an inverted triangle structure. For example, two large, slender blue dragon stones are selected and bonded together to determine the height. The thickness or volume of the bottom stone should be relatively high, and the tip of the blue dragon stone at the top can be thinner and rounder according to the theme. The second rockery support structure is inverted on top of the first rockery support structure, and a number of blue dragon stones are bonded to the outer surface of the top of the second rockery support structure so that the two rockery bodies form an inverted triangle structure.
[0045] During this process, pay attention to the size of the inverted triangles in a bonsai. The size should vary. The Qinglong stone that supports the second rockery should be the largest; the others should be determined according to aesthetic taste.
[0046] Among them, in order to strengthen the firmness of the connection between the first rockery body and the second rockery body, the cross-cross bonding method is used for construction at the connection between the first rockery body and the second rockery body. The cross-cross bonding method is to first fill the gap between the mountain bodies with biochemical cotton and then half-soak it with skeleton glue. After the first layer solidifies, the biochemical cotton is vertically stuffed into the gap and reinforced with skeleton glue. The load-bearing capacity can be increased by 40%.
[0047] In this embodiment, the glue fixing method described here is mainly based on skeleton glue and medium, and stone glue and foam glue are supplemented. For example, biochemical cotton is used as the skeleton on the contact surface of two adjacent Qinglong stones, and the skeleton glue is applied on the bonding surface. Then the two adjacent Qinglong stones are directly pressed. This direct "glue-dotting-pressing" direct bonding does not require professional equipment and can be operated manually. Compared with cement mortar, which requires multiple plastering and maintenance, the efficiency is improved by 50%. Biochemical cotton is suitable for a variety of stones and is easy to repair. Local bonding errors can be softened with warm water to remove the colloid without damaging the stone itself, while chemical glue often requires mechanical crushing.
[0048] On the basis of the above scheme, in order to improve the aesthetics, the glue marks are hidden in the positions fixed with glue. The specific method is: after the glue solidifies and becomes translucent amber, the marble glue and foam glue are mixed in a ratio of 1:1.5 and applied to the areas that need to be covered. It does not adhere to the adjacent Qinglong stone and retains the texture of the outer surface of the Qinglong stone.
[0049] In summary, the glue fixing method in this embodiment has the following advantages: no benzene solvent is precipitated after the marble glue is cured, and it is harmless to aquatic organisms, such as fish in fish ponds; the curing agent meets environmental protection standards and has no heavy metal residues; compared with traditional 502 glue or cement; the colloid does not release inhibitory ions, allowing the roots of ferns and Crassulaceae plants to penetrate the cracks in the rocks and grow, forming a natural "lithic vegetation" landscape and supporting plant symbiosis.
[0050] Example 2
[0051] See also Figure 3 As shown, on the basis of Example 1, step 4 is further included, in which a magnetic levitation platform is constructed with the second rockery body or the first rockery body as the core skeleton, specifically including:
[0052] Step 41, filling and leveling: use fillers to fill all gaps between adjacent Qinglong stones in the first rockery body or the second rockery body to ensure that the structure of the first rockery body or the second rockery body is firm and the force is balanced, and then the top surface of the second rockery body or the top surface of the first rockery body is leveled multiple times to ensure that the top surface of the second rockery body is flat and the force is balanced; the filler described here is biochemical cotton or small gravel, and the combination of the two has a better effect. Biochemical cotton is used as the skeleton and small gravel is used as the flesh, and the filling is staggered. The small gravel is not easy to slip from the gap between the first rockery body and the second rockery body, changing the force on the support point of the second rockery body, resulting in local sinking and height difference. The biochemical cotton can also be used as an incubation bed for ecological plants to facilitate plant growth. The pores between the small gravel are used as reserved expansion joints to reduce loosening caused by temperature changes, environmental vibrations and other factors.
[0053] First leveling: add biochemical cotton or small gravel to the top surface of the second rockery body to make its top surface flat with a thickness of 0.5-1cm as the base layer, and use a laser line projector to assist in the leveling of the top surface of the second rockery body. Specifically: use a laser line projector to pop up the horizontal control line, set a reference point every 2cm, and mark it with red paint to ensure that the reference is unified in the entire area; first level the "control point", such as the center of the top surface of the second rockery body, and then pull the line to adjust the middle support point to avoid single-point adjustment affecting the overall, and gradually level the top surface of the entire second rockery body according to the above area.
[0054] Second leveling: circle 20 square centimeters with the second rockery body as the center, use cement mortar or gypsum to fill and level, form a cement layer, consolidate the center of the top surface of the second rockery body, and avoid the influence of the movement of the base layer on the magnetic levitation device. Specifically: use a ratio of 1 part cement and 3 parts sand, and add an appropriate amount of polypropylene fiber, stir evenly to form cement mortar, cement mortar is constructed in 2-3 layers, each layer is constructed 24 hours apart, and the thickness is 2-5mm. Among them, 3mm is the best thickness. It has a certain thickness during manual construction, just completely covered, and the base layer is not visible. Cover with a film within 24 hours after filling with cement mortar and maintain for 7 days. Use gypsum for leveling. Only use a narrow scraper to take a small amount of gypsum slurry and fill it into the holes and cracks of the base layer. Compact and smooth it to ensure that the gypsum is closely combined with the base layer to avoid hollowing; about 24-48 hours, depending on the thickness and ambient humidity. After the bottom gypsum is completely dry, check whether there are any unevenness on the surface and lightly grind the raised parts with sandpaper.
[0055] During the second leveling, in order to improve the fixation of the cement layer, several steel bars can be erected within one square meter in the center of the foundation layer as a rigid support frame. The height of the rigid support frame is the sum of the floor heights of the foundation layer and the cement layer.
[0056] In the above technical solution, the present invention first structurally reinforces the top surface of the second rockery body through the foundation layer to stabilize the top surface of the second rockery body, and then uses the cement layer to improve the surface accuracy of the top center of the second rockery body. A laser line projector is used to strengthen the benchmark control and line inspection, optimize the support system of the cement layer, and adopt special measures for special environments and dynamic loads to ensure the long-term stability of the leveling effect.
[0057] Furthermore, Qinglong Stone may contain trace iron elements or magnetic minerals, which will interfere with the magnetic field distribution of the magnetic levitation system and cause magnetic imbalance; even if the iron content is low, large pieces of stone may weaken the magnetic field strength due to the "magnetic shielding effect", reduce the suspension stability, and increase energy consumption. Therefore, while using multiple leveling, use the base layer and cement layer to isolate the Qinglong Stone to weaken the impact of the Qinglong Stone on the magnetic field of the magnetic levitation base.
[0058] Step 42, installing the magnetic levitation base: carefully place the magnetic levitation base on the center of the top surface of the leveled second rockery body, ensuring that it is placed horizontally and firmly.
[0059] Step 43, modify and cover the base: Use slender Qinglong stones to pile upward along the outer periphery of the first rockery body or the second rockery body to completely wrap and cover the magnetic levitation base; continue to pile up the Qinglong stones until the height of the Qinglong stones is roughly flush with the upper surface of the magnetic levitation base; be careful not to press on the magnetic levitation base.
[0060] Further, place a transparent plate: carefully place the transparent plate flat on the upper surface of the magnetic levitation base and the Qinglong stone stacking surface surrounding the device; the transparent plate becomes a new display surface. The transparent plate here includes but is not limited to acrylic plates, and acrylic plates are the best. Placing the transparent plate is to reduce the negative impact of temperature, water vapor, vegetation, etc. in the micro landscape on the suspension base, extend the service life of the magnetic levitation base, and prevent the suspended ornaments from suddenly falling in the absence of electricity or magnetic levitation, causing secondary damage to the magnetic levitation base.
[0061] Furthermore, hide the edge of the transparent board: Finally, use slender blue dragon stones or small gravel to pile and modify along the outer edge of the transparent board, covering the edge of the transparent board and making it blend in with the stone structure of the island.
[0062] Step 44, test results, connect the magnetic levitation base to the power supply, place a suspended object on top of the magnetic levitation base to create an effect that the suspended object is located on a natural island.
[0063] In summary, the construction methods of the present invention have two types: one is not equipped with a magnetic levitation base and is used as an ordinary micro-landscape; the other is combined with magnetic levitation technology to broaden the stone placement effect and aesthetics of the micro-landscape and increase the application scenarios.
[0064] Example 3
[0065] A micro landscape ornament, comprising a rockery made by the rockery stacking construction method combining magnetic levitation and Qinglong stone as described in Example 1 or Example 2.
[0066] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of protection of the present invention.
Claims
1. A rockery stacking construction method combining magnetic levitation and Qinglong stone, characterized in that: The following steps are included: Step 1: Collect the site data to be designed, build a rockery data model drawing based on the site data, use the drawing to reflect reality, and first enclose the river shape according to the rockery data model drawing; Step 2: construct the first rockery main body, determine the first rockery support structure according to the rockery height marked on the drawing, and fix a number of blue dragon stones on the outer contact surface of the first rockery support structure by gluing; Step 3: construct a second rockery body, fix it upside down on the top of the first rockery body by gluing, or install it directly in the river channel of step 1; Step 4: Using the second rockery body or the first rockery body as the core skeleton, perform multiple leveling on the top surface of the second rockery body or the first rockery body, build a magnetic levitation platform, and place a suspended ornament directly above the magnetic levitation platform.
2. The rockery stacking construction method combining magnetic levitation and Qinglong stone as claimed in claim 1 is characterized in that: The specific steps of step 2 include using several slender blue dragon stones to be vertically glued and fixed as the first rockery support structure to determine the height of the first rockery body, and adding a medium in the gap between two adjacent blue dragon stones and pouring skeleton glue to stabilize the first rockery support structure.
3. The rockery stacking construction method combining magnetic levitation and Qinglong stone as claimed in claim 1 is characterized in that: The specific steps of step 3 include: the second rockery body uses a number of slender blue dragon stones to be vertically glued and fixed as the second rockery support structure to determine the height of the second rockery body, and more medium is added in the gap between two adjacent blue dragon stones to stabilize the second rockery support structure. Secondly, the second rockery support structure is inverted on the top of the first rockery support structure, and a number of blue dragon stones are bonded to the outer surface of the top of the second rockery support structure so that the two rockery bodies form an inverted triangle structure.
4. The rockery stacking construction method combining magnetic levitation and Qinglong stone as described in claim 2 or 3 is characterized in that: The medium is any one or more of ecological cotton, paper towel, wood chips and biochemical cotton.
5. The rockery stacking construction method combining magnetic levitation and Qinglong stone as claimed in claim 1 is characterized in that: The step 4 comprises the following steps: Step 41, filling and leveling: fill all gaps between adjacent blue dragon stones in the first rockery body or the second rockery body with fillers, and then level the top surface of the second rockery body or the top surface of the first rockery body multiple times to make the top surface of the second rockery body smooth and balanced; Step 42, installing the magnetic levitation base: placing the magnetic levitation base horizontally at the center of the top surface of the leveled first rockery body or the second rockery body; Step 43: Modify and mask the base. Place a transparent plate flat on the upper surface of the magnetic levitation base. The transparent plate becomes the new display surface. Step 44, test results, connect the magnetic levitation base to the power supply, place a suspended object on top of the magnetic levitation base to create an effect that the suspended object is located on a natural island.
6. The rockery stacking construction method combining magnetic levitation and Qinglong stone as claimed in claim 5, characterized in that: The step 43 specifically includes using slender blue dragon stones to pile up along the outer periphery of the first rockery body or the second rockery body to form a wall, completely wrapping and covering the magnetic levitation base; the height of the wall is the same as that of the magnetic levitation base, and a transparent plate is placed flat on the upper surface of the magnetic levitation base, and the transparent plate becomes a new display surface.
7. The rockery stacking construction method combining magnetic levitation and Qinglong stone as claimed in claim 4 is characterized in that: The glue fixing method is to use a medium as a skeleton on the contact surface of two adjacent Qinglong stones, apply skeleton glue on the bonding surface, and then directly press the two adjacent Qinglong stones to fix them.
8. The rockery stacking construction method combining magnetic levitation and Qinglong stone as claimed in claim 5, characterized in that: The specific steps of the multiple leveling in step 41 are: using a laser line projector to add biochemical cotton or small gravel on the top surface of the second rockery body to form a base layer.
9. The rockery stacking construction method combining magnetic levitation and Qinglong stone as claimed in claim 5, characterized in that: The specific steps of the multiple leveling in step 41 are: circle 20 square centimeters around the center of the top surface of the second rockery body or the first rockery body, fill and level it with cement mortar or gypsum to form a cement layer.
10. A micro landscape ornament, characterized in that: A rockery made by the rockery stacking construction method combining magnetic levitation and Qinglong stone as described in any one of claims 1 to 9.
Citation Information
Patent Citations
Mountain stone and plastic stone combined construction method
CN116141860A