CN222745833U - Rock Fence - Google Patents

Rock Fence Download PDF

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Publication number
CN222745833U
CN222745833U CN202421499262.2U CN202421499262U CN222745833U CN 222745833 U CN222745833 U CN 222745833U CN 202421499262 U CN202421499262 U CN 202421499262U CN 222745833 U CN222745833 U CN 222745833U
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China
Prior art keywords
rock
plate
plates
rail
grooves
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Application number
CN202421499262.2U
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Chinese (zh)
Inventor
钟文杰
陈金波
张和意
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Foshan Oceano Ceramics Co Ltd
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Foshan Oceano Ceramics Co Ltd
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Priority to CN202421499262.2U priority Critical patent/CN222745833U/en
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Publication of CN222745833U publication Critical patent/CN222745833U/en
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Abstract

本申请公开了一种岩板围栏,涉及围栏技术领域。岩板围栏包括至少两个立柱和多个岩板,每个立柱开设有纵向设置的安装槽;多个岩板沿纵向平行分布,每个岩板连接于两个立柱之间,岩板的端部设于立柱的安装槽内。本申请提供的岩板围栏采用岩板替代传统的木塑栏板,能够提高围栏的抗击冲击能力,使围栏更加坚实耐用。

The present application discloses a rock board fence, which relates to the technical field of fences. The rock board fence comprises at least two posts and a plurality of rock boards, each post is provided with a longitudinally arranged mounting groove; the plurality of rock boards are distributed in parallel along the longitudinal direction, each rock board is connected between two posts, and the end of the rock board is arranged in the mounting groove of the post. The rock board fence provided by the present application uses rock boards to replace traditional wood-plastic fence boards, which can improve the impact resistance of the fence and make the fence more solid and durable.

Description

Rock board fence
Technical Field
The application relates to the technical field of fences, in particular to a rock plate fence.
Background
At present, the outdoor fence on the market often takes a wood plastic plate as a panel to play a role of enclosing a courtyard and occasionally bearing impact resistance.
The wood-plastic board base material is made of wood and plastic, is crisp in texture and low in hardness, cannot be impacted by external force, and is easy to damage in the transportation process.
Disclosure of utility model
In view of the above, the present application provides a rock board fence, which aims to solve one of the technical problems in the prior art.
In order to achieve the above purpose, the technical scheme adopted by the application is as follows:
in a first aspect, embodiments of the present application provide a rock panel rail, comprising:
At least two upright posts, wherein each upright post is provided with a longitudinally arranged mounting groove;
The rock plates are distributed in parallel along the longitudinal direction, each rock plate is connected between two upright posts, and the end parts of the rock plates are arranged in the mounting grooves of the upright posts.
In one embodiment of the first aspect, the rock panel rail further comprises:
The lower fixing piece is connected between the two stand columns and connected with the bottom ends of the rock plates;
And the upper fixing piece is connected between the two upright posts and connected with the top ends of the rock plates.
In one embodiment of the first aspect, the lower fixture includes:
The two lower fixed corner brackets are correspondingly connected with one upright post, and the lower fixed corner brackets are arranged in the mounting groove;
The lower clamping strips are provided with lower grooves towards one side of the rock plates, the bottom ends of the plurality of rock plates are connected with the lower grooves in a matched mode, and the end parts of the lower clamping strips are correspondingly connected with one lower fixed corner connector;
The support leg comprises a plurality of support legs, a plurality of connecting holes which are arranged at intervals are formed in one side, far away from the rock plate, of the lower clamping strips, and each connecting hole is correspondingly and movably connected with one support leg so as to change the distance between the bottom end of each support leg and the lower clamping strip.
In one embodiment of the first aspect, the lower fixing corner bracket includes a first fixing strip and a second fixing strip that are vertically connected, the first fixing strip is connected with a bottom of the mounting groove, and an end of the second fixing strip extends out of the mounting groove.
In one embodiment of the first aspect, a positioning hole is formed in an end portion, close to the upright, of the lower clamping strip, the positioning hole is formed below a bottom of the groove of the lower groove, and the second fixing strip is inserted into the positioning hole.
In one embodiment of the first aspect, the upright comprises:
A limit top cover;
The column body is provided with two mounting grooves which are respectively arranged on two opposite sides of the column body;
The base, the base includes bottom plate and a plurality of curb plate, the bottom of a plurality of curb plates with the bottom plate is connected, a plurality of curb plate intervals set up and enclose in the week side of shaft, every the curb plate with the shaft is connected, and every the curb plate is not sealed the notch of mounting groove of stand.
In one embodiment of the first aspect, the top surface or the bottom surface of the rock plate is provided with a connecting groove, the connecting grooves of the two rock plates longitudinally arranged are arranged in one-to-one correspondence, and the rock plate fence further comprises two connecting grooves longitudinally arranged in connection:
A first connecting piece which is connected with the two rock plates and is completely accommodated in the two connecting grooves longitudinally arranged so as to splice the two rock plates, or
The second connecting piece is connected between the two rock plates and is partially contained in the two connecting grooves which are longitudinally arranged, so that the two rock plates are arranged at intervals.
In one embodiment of the first aspect, when the panel enclosure includes a second connecting piece, the second connecting piece includes a main body portion and two clamping portions, the end portion of the main body portion is inserted into the connecting groove, one clamping portion is correspondingly covered at an opening of the connecting groove, and one clamping portion is correspondingly clamped with one panel.
In one embodiment of the first aspect, the rock panel enclosure further comprises a decorative piece fixedly connected to a side of the rock panel.
In one embodiment of the first aspect, the post further comprises an elastic spacer disposed within the mounting groove of the post to cover an end of the rock plate.
Compared with the prior art, the rock plate fence has the beneficial effects that the rock plate fence comprises at least two upright posts and a plurality of rock plates, wherein each upright post is provided with a longitudinally arranged mounting groove, the plurality of rock plates are longitudinally and parallelly distributed, each rock plate is connected between two upright posts, and the end parts of the rock plates are arranged in the mounting grooves of the upright posts. The rock plate replaces the traditional wood-plastic fence plate, so that the impact resistance of the fence can be improved, and the fence is firmer and more durable.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings that are needed in the embodiments will be briefly described below, it being understood that the following drawings only illustrate some embodiments of the present application and therefore should not be considered as limiting the scope, and other related drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 illustrates one of the structural schematic views of a rock laminate pen in some embodiments of the application;
FIG. 2 illustrates a second schematic view of the structure of a panel rail in some embodiments of the application;
FIG. 3 illustrates an exploded view of a rock laminate pen in accordance with some embodiments of the application;
FIG. 4 shows an enlarged schematic view of the structure at I in FIG. 3;
FIG. 5 shows an enlarged schematic view of the structure at II in FIG. 3;
FIG. 6 illustrates a schematic diagram of the structure of a lower fixed angle code in some embodiments of the application;
FIG. 7 illustrates a schematic view of a column structure in some embodiments of the application;
FIG. 8 illustrates a schematic view of the assembled configuration of a rock laminate, a first connector and a second connector in some embodiments of the application;
FIG. 9 illustrates a schematic diagram of a second connector in some embodiments of the application;
fig. 10 is a schematic view showing the structure of a decorative member according to some embodiments of the present application.
The main reference signs illustrate a 100-rock panel fence;
110-rock plate, 111-connecting groove;
120-upright posts, 1221-mounting grooves, 121-limiting top covers, 122-column shafts, 123-base, 1231-bottom plates and 1232-side plates;
130-lower fixing piece, 131-lower fixing corner brace, 132-lower clamping strip, 133-supporting leg, 1321-lower groove, 1322-positioning hole, 1323-connecting hole, 1311-first fixing strip, 1312-second fixing strip, 13122-narrow part, 13121-wide part;
140-upper fixing parts, 141-upper fixing corner codes, 142-upper clamping strips;
150-first connector, 160-second connector, 161-main body, 162-clamping part, 1621-first extension part, 1622-second extension part, 170-decoration.
Detailed Description
Embodiments of the present application are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative only and are not to be construed as limiting the application.
In the description of the present application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings are merely for convenience in describing the present application and simplifying the description, and do not indicate or imply that the device or element being referred to must have a specific orientation, be configured and operated in a specific orientation, and therefore should not be construed as limiting the present application.
Furthermore, the terms "lower," "upper," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "lower", "upper" may include one or more of the feature, either explicitly or implicitly. In the description of the present application, the meaning of "a plurality" is two or more, unless explicitly defined otherwise.
In the present application, unless explicitly specified and limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally formed, mechanically connected, electrically connected, directly connected, indirectly connected via an intervening medium, or in communication between two elements or in an interaction relationship between two elements. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art according to the specific circumstances.
In the present application, unless expressly stated or limited otherwise, a lower feature "on" or "under" an upper feature may be the lower and upper features in direct contact, or the lower and upper features in indirect contact through an intervening medium. Moreover, a lower feature may be "above," "over" and "upper" a lower feature directly above or obliquely above the upper feature, or simply indicate that the lower feature is level higher than the upper feature. The lower features "under", "below" and "beneath" the upper features may be the lower features directly below or obliquely below the upper features, or simply indicate that the lower features are less horizontal than the upper features.
In the related art, a wood plastic panel is generally used as a breast board. The conventional wood-plastic fence meets the specification of GB/T24137, and has the physical property that the average bending strength is more than or equal to 20 Mpa. The fence board made of the wood-plastic board can only be used for daily support due to the performance, and when strong impact conditions occur, such as basketball hits the surface of a fence, broken branches hit the surface of the fence, and the like, the fence board made of the wood-plastic board is easy to break.
In view of the above problems, as shown in fig. 1 and 2, an embodiment of the present application provides a rock panel enclosure 100, which includes at least two columns 120 and a plurality of rock panels 110, each column 120 is provided with a longitudinally arranged mounting groove 1221, the plurality of rock panels 110 are distributed in parallel in the longitudinal direction, each rock panel 110 is connected between two columns 120, and an end of each rock panel 110 is disposed in a mounting groove 1221 of a column 120.
In this embodiment, the rock laminate 110 refers to an artificial rock laminate comprising rock constituents.
In the ceramic rock plate product specification, the rock plate product is pointed out that the rock plate product has the physical property that the breaking modulus thickness is more than or equal to 7.5mm and the average value is more than or equal to 35 MPa. The breaking modulus is the local maximum pressure before being broken by bending in the experiment, and compared with the rock plates with the thickness of more than 7.5mm, the rock plates with the thickness of more than 20mm have higher strength and higher impact resistance.
In addition, the price of the wood-plastic plate with the thickness of 3.20mm is 130 yuan per square meter, the rock plate for the outdoor fence is generally selected from low-end rock plates on the market, the price of the rock plate with the thickness of 12mm at the low end is about 100 yuan per square meter to 300 yuan per square meter, and the rock plate is not large according to the lowest price gap. Compared with the wood-plastic plate, the rock plate can achieve the effect of improving the grade.
As shown in fig. 1, which is a schematic view of a single panel enclosure 100, the single panel enclosure 100 is the base unit of a large panel enclosure 100 that forms a patio yard or house. Fig. 2 is a basic portion of the aforementioned large panel rail 100. Mounting slots 1221 are provided on both sides of the column 120 of the present application so that both sides of the column 120 can be connected to the rock plate 110 to form the rock plate rail 100 of fig. 2.
In some embodiments, as shown in fig. 1-3, the rock panel rail 100 further includes a lower fixture 130 and an upper fixture 140.
The lower fixing member 130 is connected between the two columns 120 and to the bottom ends of the plurality of rock plates 110, and the upper fixing member 140 is connected between the two columns 120 and to the top ends of the plurality of rock plates 110. In the present application, the rock plate 110 is in a strip shape, a plurality of rock plates 110 are distributed in a longitudinal direction, and ends are aligned. By providing the upper and lower fixtures 140 and 130, the plurality of rock plates 110 are restrained within the mounting slots 1221 of the columns 120.
In some embodiments, as shown in fig. 3-6, the lower fixture 130 includes two lower fixing corner pieces 131, a lower clip strip 132, and a plurality of support feet 133.
One lower fixed corner bracket 131 is correspondingly connected with one upright post 120, the lower fixed corner bracket 131 is arranged in the mounting groove 1221, one side of the lower clamping strip 132 facing the rock plate 110 is provided with a lower groove 1321, and the lower groove 1321 penetrates through the lower clamping strip 132 along the length direction of the lower clamping strip 132.
The bottom ends of the rock plates 110 are connected with the lower grooves 1321 in a matching way, so that the side edges of the rock plates 110 positioned at the lowest position are clamped into the lower grooves 1321, and the rock plates 110 are supported and fixed.
The end of the lower clamping strip 132 is correspondingly connected with a lower fixing corner bracket 131, so that the connecting structure of the lower clamping strip 132 and the rock plate 110 is fixedly connected with the upright post 120, and the connection of the rock plate 110 is firmer.
It will be appreciated that wood-plastic panels have a density of about 1.2g/cm 3 and a rock-board density of about 2.5g/cm 3, and that a 20mm plastic-wood panel is 4.66kg per 100 panels of 180mm high 1800mm long rock-board pen, whereas a 12mm thick rock-board is 9.72kg, compared to twice the weight of the rock-board.
To solve the above problem, as shown in fig. 4, a plurality of connecting holes 1323 are formed on a side of the lower clamping strip 132 away from the rock plate 110, where each connecting hole 1323 is movably connected with one supporting leg 133, so as to change the distance between the bottom end of the supporting leg 133 and the lower clamping strip 132. Through setting up supporting legs 133, make the weight transfer of rock board 110 give ground, in addition, through setting up the interval adjustable of supporting legs 133 bottom and lower card strip 132, make supporting legs 133 can with less even ground or reinforced concrete ground beam effective contact, transfer gravity.
Illustratively, the connecting hole 1323 is configured as a threaded hole, the supporting leg 133 is a screw, and the distance between the bottom of the screw and the lower clip 132 is changed by controlling the depth of screwing the screw into the connecting hole 1323.
Illustratively, the connecting hole 1323 is provided with a clamping hole, the supporting leg 133 has a column body, and a plurality of elastic clamping joints are longitudinally arranged on the column body, so that the spacing between the bottom of the column body and the lower clamping strip 132 is changed by matching and connecting different elastic clamping joints with the clamping hole.
In some embodiments, as shown in fig. 6, the lower fixing bracket 131 includes a first fixing bar 1311 and a second fixing bar 1312 vertically connected, the first fixing bar 1311 being connected with a bottom of the mounting groove 1221, and an end of the second fixing bar 1312 protruding from the mounting groove 1221.
As shown in fig. 5, the end of the lower clamping bar 132 near the upright 120 is provided with a positioning hole 1322, the positioning hole 1322 is arranged below the bottom of the lower groove 1321, and the second fixing bar 1312 is inserted into the positioning hole 1322.
In the present embodiment, the second fixing bar 1312 is tapered in a direction away from the first fixing bar 1311, and the second fixing bar 1312 has a narrow portion 13122 and a wide portion 13121. The narrow portion 13122 of the second fixing strip 1312 faces the positioning hole 1322 of the lower clamping strip 132, which is favorable for improving the alignment and assembly efficiency of the second fixing strip 1312 and the positioning hole 1322, the wide portion 13121 of the second fixing strip 1312 is connected with the first fixing strip 1311, and the thickness of the wide portion 13121 gradually thickens towards the direction close to the first fixing strip 1311, so that the wide portion 13121 of the second fixing strip 1312 is clamped into the positioning hole 1322, and the second fixing strip 1312 and the positioning hole 1322 are favorable for forming stable connection.
In some embodiments, as shown in fig. 3-6, the upper fixture 140 includes two upper fixing corner pieces 141 and an upper clip strip 142. The upper fixed corner bracket 141 and the lower fixed corner bracket 131 have the same structure, and the upper clamping bar and the lower clamping bar 132 have the same structure. The top ends of the rock plates 110 are connected with the grooves of the upper clamping strips 142 in a matched mode, so that the side edges of the uppermost rock plate 110 are clamped into the grooves of the upper clamping strips 142, and the rock plates 110 are limited and fixed.
The connection structure of the rock plate 110, the upper fixing angle code 141 and the upper clamping bar 142 is the same as the connection structure of the rock plate 110, the lower fixing angle code 131 and the lower pressing bar, and the detailed description thereof will not be repeated here.
It can be appreciated that the side of the upper clamping strip 142 far away from the rock plate 110 is not provided with a connecting hole and supporting feet, the surface of the side of the upper clamping strip 142 far away from the rock plate 110 is smooth, the side of the lower clamping strip 132 far away from the rock plate 110 is provided with a plurality of connecting holes 1323 which are arranged at intervals, and the upper clamping strip 142 and the lower clamping strip 132 can be distinguished through the different parts during actual assembly.
In some embodiments, as shown in fig. 2 and 7, upright 120 includes a limit cap 121, a shaft 122, and a base 123 connected in sequence.
The installation groove 1221 penetrates the column 122 in the longitudinal direction, the limit top cover 121 is connected with the top end of the column 122, the base 123 is connected with the bottom end of the column 122, and the upper fixing member 140, the lower fixing member 130 and the plurality of rock plates 110 are limited in the installation groove 1221 of the column 122.
The column 122 is provided with two mounting grooves 1221, and the two mounting grooves 1221 are respectively formed on two opposite sides of the column 122, so that the three upright posts 120 are connected with the plurality of rock plates 110 to form two rock plate fences 100.
As shown in fig. 7, the base 123 includes a bottom plate 1231 and a plurality of side plates 1232. The base plate 1231 is provided with 4 expansion screws to firmly connect the base 123 with the ground.
The bottom ends of the plurality of side plates 1232 are connected to the bottom plate 1231, the plurality of side plates 1232 are disposed at intervals and are enclosed around the circumference of the column 122, each side plate 1232 is connected to the column 122, and each side plate 1232 does not close the notch of the mounting groove 1221 of the upright 120.
In this embodiment, upright 120 is generally rectangular in cross-section with four corners. The application provides for 4 side plates 1232, with one side plate 1232 being connected to each corner of upright 120. The two adjacent side plates 1232 are arranged at intervals, and the gaps formed between the side plates 1232 expose the notch of the mounting groove 1221 of the upright 120, so that the lower fixing member 130, the plurality of rock plates 110 and the lower fixing member 130 can be assembled conveniently.
Each side plate 1232 is screwed with the column shaft 122 by a plurality of countersunk self-tapping screws, thereby improving the stability and bearing capacity of the column 120.
In some embodiments, as shown in fig. 8 to 9, the top surface or the bottom surface of the rock plate 110 is provided with connecting grooves 111, the connecting grooves 111 of two longitudinally arranged rock plates 110 are in one-to-one correspondence, and the notches are arranged oppositely. The panel rail 100 further comprises a first connection 150 or a second connection 160 connecting two connection slots 111 arranged longitudinally.
The first connection member 150 connects the two rock plates 110 and is completely received in the two connection grooves 111 disposed in the longitudinal direction so that the two rock plates 110 are spliced, and the second connection member 160 is connected between the two rock plates 110 and is partially received in the two connection grooves 111 disposed in the longitudinal direction so that the two rock plates 110 are disposed at intervals.
In the single-leaf rock-board surrounding fence 100 shown in fig. 1 or fig. 2, the first connectors 150 may be used entirely to splice all the rock boards 110 in the rock-board surrounding fence 100, the second connectors 160 may be used entirely to connect adjacent rock boards 110 in the rock-board surrounding fence 100 at intervals, and the first connectors 150 and the second connectors 160 may be used simultaneously to splice part of the rock boards 110 in the rock-board surrounding fence 100 and connect part of the rock boards 110 at intervals.
In this embodiment, the connecting grooves 111 where the first connecting piece 150 or the second connecting piece 160 are located are identical in structure, so as to facilitate improving the processing efficiency of the rock plate 110. In other embodiments, the connection groove 111 of the first connection member 150 should be matched with the structure of the first connection member 150, and the connection groove 111 of the second connection member 160 should be matched with the structure of the second connection member 160. In other words, the structures of the connection groove 111 of the first connection member 150 and the connection groove 111 of the second connection member 160 may be different.
In some embodiments, as shown in fig. 8 and 9, when the rock board fence 100 includes the second connecting piece 160, the second connecting piece 160 includes a main body 161 and two clamping portions 162, the end of the main body 161 is inserted into the connecting slot 111, one clamping portion 162 is correspondingly covered at the opening of one connecting slot 111, and one clamping portion 162 is correspondingly clamped with one rock board 110.
The first connector 150 has a plate shape, and the main body 161 of the second connector 160 has a plate shape, and the length of the main body 161 in the longitudinal direction is longer than that of the first connector 150.
It will be appreciated that when the connection groove 111 is formed on the top surface or the ground of the rock plate 110, the rock plate 110 becomes thinner and the strength is reduced. By inserting the body portion 161 of the second connection member 160 or the first connection member 150 into the connection groove 111, the thickness of the rock plate 110 at the connection groove 111 is compensated for, and the strength of the rock plate 110 is improved.
When the second connecting member 160 is used, the two rock plates 110 are arranged at intervals by providing the clamping portion 162, and the thickness and strength of the rock plate 110 at the connecting groove 111 can be increased.
As shown in fig. 9, the engaging portion 162 includes a first extension portion 1621 perpendicularly connected to the main body portion 161 and two second extension portions 1622 formed by bending and extending from opposite ends of the first extension portion 1621 toward the end of the main body portion 161.
When the main body 161 is inserted into the upper connecting groove 111, the first extending portion 1621 is disposed at the notch of the upper connecting groove 111, so that the upper rock plate 110 is pressed against the first extending portion 1621, and the two second extending portions 1622 respectively abut against the front side and the rear side of the upper rock plate 110 to fix the upper rock plate 110.
When the main body 161 is inserted into the lower connecting groove 111, the first extension parts 1621 are covered on the notch of the lower connecting groove 111, so that the first extension parts 1621 are pressed on the lower rock plate, and the two second extension parts 1622 respectively abut against the front side surface and the rear side surface of the lower rock plate 110 to fix the lower rock plate 110.
In this way, the upper rock plate 110 and the lower rock plate 110 can be separated, reducing the number of rock plates 110 used, reducing the cost and the overall weight of the rock plate rail 100.
In the case of a fence panel, the back grain of the panel is simply a back grain that appears to be unsightly, and therefore, the front of the panel is typically used as the viewing surface, and in some scenarios, the back of the panel also needs to be made as the viewing surface.
In response to the above-described problems, in some embodiments, as shown in fig. 2 and 8, the rock panel rail 100 further includes a decoration 170, and the decoration 170 is fixedly connected to the back surface of the rock panel 110.
In some embodiments, the decorative piece 170 is an aluminum plate with decorative texturing.
Specifically, the aluminum plate with decorative lines with the thickness of 1.0mm to 2.0mm is added on the back of the rock plate 110, and the aluminum plate is attached and fixed to the back of the rock plate 110 by using glue or using the plasticity of the aluminum plate, which uses a clamping structure, so that the appearance texture of the rock plate 110 is improved.
In some embodiments, with continued reference to fig. 10, the aluminum sheet has a decorative face that is bonded to the back of the panel 110, and has upper and lower edges that are bonded to the upper and lower top surfaces of the panel 110. In processing the connection groove 111, a cutter for processing the connection groove 111 simultaneously cuts the upper and lower bordures and the bottom surfaces of the rock plates 110 and 110, so that the first or second connection member 150 or 160 can smoothly connect the adjacent two rock plates 110.
In addition, the price of the aluminum plate with decorative patterns is 35 to 44 yuan per square meter, the lowest price of the rock plate 110 is about 100 yuan per square meter, the total price of the aluminum plate with decorative patterns is about 135 to 144 yuan per square meter, and the price of the aluminum plate with decorative patterns is close to the price of the wood-plastic fence plate with decorative patterns of 130 yuan per square meter.
In some embodiments, column 120 further includes resilient shims (not shown) disposed within mounting slots 1221 of column 120 to cover the ends of rock plate 110.
In some embodiments, the resilient pad is elongated and has a C-shaped cross-section. The elastic pad is laid at the bottom of the installation groove 1221 and covers the upper and lower fixed brackets 141 and 131.
It can be appreciated that the end of the rock plate 110 is fragile and easy to break, and the end of the rock plate 110 is covered by the elastic gasket to protect the rock plate 110, and meanwhile, the tightness of connection between the upright post 120 and the rock plate 110 can be improved, so that the service life of the rock plate fence 100 can be prolonged.
In the description of the present specification, a description referring to terms "one embodiment," "some embodiments," "examples," "specific examples," or "some examples," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present application. In this specification, schematic representations of the above terms are not necessarily directed to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, the different embodiments or examples described in this specification and the features of the different embodiments or examples may be combined and combined by those skilled in the art without contradiction.
While embodiments of the present application have been shown and described above, it will be understood that the above embodiments are illustrative and not to be construed as limiting the application, and that variations, modifications, alternatives and variations may be made to the above embodiments by one of ordinary skill in the art within the scope of the application.

Claims (10)

1. A rock laminate fence, comprising:
At least two upright posts, wherein each upright post is provided with a longitudinally arranged mounting groove;
The rock plates are distributed in parallel along the longitudinal direction, each rock plate is connected between two upright posts, and the end parts of the rock plates are arranged in the mounting grooves of the upright posts.
2. The panel rail of claim 1, the utility model is characterized in that, the rock board rail still includes:
The lower fixing piece is connected between the two stand columns and connected with the bottom ends of the rock plates;
And the upper fixing piece is connected between the two upright posts and connected with the top ends of the rock plates.
3. The rock plate rail of claim 2, wherein said lower fixture includes:
The two lower fixed corner brackets are correspondingly connected with one upright post, and the lower fixed corner brackets are arranged in the mounting groove;
The lower clamping strips are provided with lower grooves towards one side of the rock plates, the bottom ends of the plurality of rock plates are connected with the lower grooves in a matched mode, and the end parts of the lower clamping strips are correspondingly connected with one lower fixed corner connector;
The support leg comprises a plurality of support legs, a plurality of connecting holes which are arranged at intervals are formed in one side, far away from the rock plate, of the lower clamping strips, and each connecting hole is correspondingly and movably connected with one support leg so as to change the distance between the bottom end of each support leg and the lower clamping strip.
4. A rock plate rail according to claim 3, wherein the lower fixing angle comprises a first fixing strip and a second fixing strip which are vertically connected, the first fixing strip is connected with the bottom of the mounting groove, and the end of the second fixing strip extends out of the mounting groove.
5. The rock plate rail of claim 4, wherein a positioning hole is formed in an end portion, close to the upright, of the lower clamping strip, the positioning hole is formed below a groove bottom of the lower groove, and the second fixing strip is inserted into the positioning hole.
6. The rock panel rail of any one of claims 1 to 5, wherein the post includes, in order:
A limit top cover;
The column body is provided with two mounting grooves which are respectively arranged on two opposite sides of the column body;
The base, the base includes bottom plate and a plurality of curb plate, the bottom of a plurality of curb plates with the bottom plate is connected, a plurality of curb plate intervals set up and enclose in the week side of shaft, every the curb plate with the shaft is connected, and every the curb plate is not sealed the notch of mounting groove of stand.
7. The rock plate rail of any one of claims 1 to 5, wherein a connection groove is formed in a top surface or a bottom surface of the rock plate, the connection grooves of two longitudinally disposed rock plates are disposed in one-to-one correspondence, and the rock plate rail further comprises two connection grooves connected to the longitudinally disposed rock plates:
A first connecting piece which is connected with the two rock plates and is completely accommodated in the two connecting grooves longitudinally arranged so as to splice the two rock plates, or
The second connecting piece is connected between the two rock plates and is partially contained in the two connecting grooves which are longitudinally arranged, so that the two rock plates are arranged at intervals.
8. The rock plate rail of claim 7, wherein when the rock plate rail comprises a second connecting piece, the second connecting piece comprises a main body part and two clamping parts, wherein the end part of the main body part is inserted into the connecting groove, one clamping part is correspondingly covered at the opening of one connecting groove, and one clamping part is correspondingly clamped with one rock plate.
9. The rock panel rail of any one of claims 1-5, further comprising a decorative piece fixedly connected to a side of the rock panel.
10. The rock plate rail of claim 4, wherein said post further includes a resilient spacer disposed within said mounting groove of said post to cover an end of said rock plate.
CN202421499262.2U 2024-06-27 2024-06-27 Rock Fence Active CN222745833U (en)

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CN202421499262.2U CN222745833U (en) 2024-06-27 2024-06-27 Rock Fence

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202421499262.2U CN222745833U (en) 2024-06-27 2024-06-27 Rock Fence

Publications (1)

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CN222745833U true CN222745833U (en) 2025-04-11

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Family Applications (1)

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Country Link
CN (1) CN222745833U (en)

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