A municipal garden engineering isolation facility with soil convenient removal function

CN224785477UActive Publication Date: 2026-09-22HUZHOU MIAOFENG LANDSCAPE ENG CO LTD
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Patent Information

Application Number
CN202522168241.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-14
Publication Date
2026-09-22
Estimated Expiration
2035-10-14

AI Technical Summary

Technical Problem

第一、其连接片和插片都是多个单独设置的,因此对每一个连接片、每一个插片都需要进行擦除操作,这是比较低效的;

Benefits of technology

[0019]本申请的有益效果,至少包括以下4点。

✦ Generated by Eureka AI based on patent content.

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Abstract

The application belongs to the technical field of municipal garden facilities, and particularly relates to a municipal garden engineering isolation facility with convenient soil removal function. The structure of the isolation facility comprises a perforated bottom plate unit used for being placed on the mud ground, a perforated isolation plate unit which is clamped on the upper surface of the perforated bottom plate unit, a plug rod unit which is inserted on the perforated bottom plate unit, inserted into the mud ground, and used for scraping off the soil block on the rod when being pulled out upward on the lower surface of the perforated bottom plate unit, an inclined reinforcing plate unit which is clamped on the perforated isolation plate unit and sleeved with the plug rod unit, and a connecting plate unit which is clamped on the perforated isolation plate unit and used for collecting the soil block on the lower surface by sliding on the lower surface of the perforated bottom plate unit after being removed from the perforated isolation plate unit.
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Description

Technical Field

[0001] This application belongs to the field of municipal landscaping facilities technology, and in particular relates to an isolation facility for municipal landscaping projects with convenient soil removal function. Background Technology

[0002] Common isolation facilities used in municipal and landscaping projects are mainly used to enclose construction sites and prevent accidents such as pedestrians falling into construction pits and construction materials scattering over a large area.

[0003] Generally, when the aforementioned barriers are used on hard surfaces, they are made of metal and can be placed directly. However, when used on muddy ground, they are made of plastic and need to be inserted into the mud to ensure sufficient installation stability.

[0004] On the other hand, the aforementioned plastic barrier facilities generally require cleaning after use and before being loaded onto vehicles for transport, i.e., removing the soil adhering to them. Soil removal is typically done by rinsing and / or wiping. While rinsing is more efficient and thorough, it requires more stringent conditions to implement, while wiping is more commonly used.

[0005] For example, Chinese utility model patent with authorization announcement number CN222649681U and authorization announcement date of March 21, 2025 discloses an isolation device for garden engineering construction. Its main structural components include: isolation strip, first connector, second connector, extension piece, fastening piece, folding piece, connecting piece, positioning piece, fixing hole, insert piece, barb piece, and support piece.

[0006] The main advantage of the isolation device in this utility model patent is that after the isolation device is used up, when the soil is removed, it is generally only necessary to wipe the connecting piece and insert piece that are in contact with the mud, which is relatively convenient.

[0007] However, in actual use, this isolation device still has at least the following relatively poor practicality issues, specifically: First, its connecting pieces and inserts are all individually set, so each connecting piece and each insert needs to be wiped clean, which is relatively inefficient; Secondly, the insert has both barbed pieces and openings, so simply wiping the soil off the insert is also quite troublesome and inefficient. Utility Model Content

[0008] This application provides an isolation facility for municipal landscaping projects with convenient soil removal function. The technical problem to be solved is: how to make it relatively convenient and efficient to remove the soil adhering to the isolation facility after use.

[0009] The technical solution adopted by this application to solve the above problems is: a municipal landscaping engineering isolation facility with convenient soil removal function, the structure of which includes a perforated bottom plate unit for placement on mud, a perforated isolation plate unit that is engaged with the upper surface of the perforated bottom plate unit, an insertion rod unit that is inserted into the perforated bottom plate unit and into the mud, and when pulled upward, scrapes soil clods off the rod on the lower surface of the perforated bottom plate unit, an inclined reinforcing plate unit that is engaged with the perforated isolation plate unit and sleeved with the insertion rod unit, and a connecting plate unit that is engaged with the perforated isolation plate unit and, after being removed from the perforated isolation plate unit, slides on the lower surface of the perforated bottom plate unit to collect soil clods on the lower surface.

[0010] A further preferred technical solution is that the perforated base plate unit includes a transverse base plate, a mounting groove disposed on the upper surface of the transverse base plate for engaging the perforated isolation plate unit, and a mounting hole disposed on the transverse base plate for inserting the plug unit.

[0011] A further preferred technical solution is that the perforated isolation plate unit includes a vertical plate that is snapped onto the mounting groove, and a reinforcing hole disposed on the vertical plate for inserting and installing the inclined reinforcing plate unit or the connecting plate unit.

[0012] A further preferred technical solution is that the insertion rod unit includes a vertical rod that is inserted into the mounting hole, passes through the inclined reinforcement plate unit, and is used to insert into the mud, and an end block that is disposed on the upper end surface of the vertical rod and is used to press down the inclined reinforcement plate unit or the transverse base plate.

[0013] A further preferred technical solution is that the inclined reinforcing plate unit includes an inverted U-shaped plate that is snapped onto the side and upper surfaces of the vertical plate, a fixing block disposed on the inner side of the inverted U-shaped plate and used for inserting the reinforcing hole, a downward inclined plate disposed on the inverted U-shaped plate, and an opening plate disposed on the downward inclined plate, sleeved with the vertical rod, and pressed down and fixed by the end block.

[0014] A further preferred technical solution is that the connecting plate unit includes side bonding strips disposed on two adjacent vertical plates, and two end blocks disposed at both ends of the side bonding strips and used to insert into the reinforcing holes on the two adjacent vertical plates.

[0015] A further preferred technical solution is that the insertion rod unit further includes a pull-out force groove provided on the lower surface and side surface of the end block.

[0016] A further preferred technical solution is that the connecting plate unit also includes a sliding force groove disposed on the side bonding strip and used for inserting the operator's finger when the side bonding strip slides to collect soil blocks from the lower surface.

[0017] A further preferred technical solution is that the perforated isolation plate unit also includes a ventilation opening disposed on the vertical plate.

[0018] A further preferred technical solution is that the perforated base plate unit further includes a weight reduction port disposed on the transverse base plate.

[0019] The beneficial effects of this application include at least the following four points.

[0020] First, when the isolation facility is used for soil removal, the perforated bottom plate unit can first scrape off the soil clods on the poles of the pole unit, and then the connecting plate unit can scrape off the soil clods on the lower surface of the perforated bottom plate unit. The latter soil clods include the former, and the latter soil clods are at least all concentrated, and some fall directly off. Therefore, the whole removal operation is relatively convenient and efficient.

[0021] Secondly, when the soil clods on the lower surface are removed, the perforated isolation plate unit and the inclined reinforcement plate unit have already been removed in advance. The operator only needs to lift the perforated bottom plate unit. Therefore, the removal operation is relatively labor-saving and targeted, further improving the convenience and efficiency of the removal operation.

[0022] Third, the connecting plate unit serves the dual purpose of connecting and reinforcing two adjacent perforated isolation plate units, as well as sliding and scraping away soil blocks on the lower surface. This eliminates the need for additional tools during the sliding and scraping operation, further enhancing the convenience and efficiency of the removal operation.

[0023] Fourth, in addition to the above-mentioned convenient and efficient soil removal operation, the isolation facility also has the comprehensive advantages of relatively high stability, sufficient installation stability when used on muddy ground, and simple and convenient assembly and disassembly operations. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the structure of this application.

[0025] Figure 2 This is a schematic diagram of the location and structure of the perforated bottom plate unit in this application.

[0026] Figure 3 This is a schematic diagram of the insert unit in this application.

[0027] Figure 4 This is a structural schematic diagram of the perforated isolation plate unit in this application.

[0028] Figure 5 This is a structural schematic diagram of the connecting plate unit in this application.

[0029] Figure 6 This is a structural schematic diagram of the inclined reinforcement plate unit in this application.

[0030] Figure 7 This is a schematic diagram showing the location of the soil block on the pole in this application.

[0031] Figure 8 This is a schematic diagram showing the location of the soil block on the lower surface in this application.

[0032] Figure 9 This is a schematic diagram of another usage of the connecting plate unit in this application, in which the perforated isolation plate unit is used individually.

[0033] The meanings of the markings in the diagram are as follows.

[0034] a) Muddy ground, b) Soil clump on pole, c) Soil clump on lower surface, d) Pulling direction, e) Sliding direction; Perforated base plate unit 1, perforated isolation plate unit 2, insert rod unit 3, inclined reinforcement plate unit 4, connecting plate unit 5; Horizontal base plate 101, mounting groove 102, mounting hole 103, weight reduction port 104; Vertical plate 201, reinforcement hole 202, ventilation opening 203; Vertical rod 301, end block 302, pull-out force groove 303; Inverted U-shaped plate 401, fixing block 402, downward tilting plate 403, perforated plate 404; Side bonding strip 501, end block 502, sliding force groove 503. Detailed Implementation

[0035] The following description is merely a preferred embodiment of this application and is not intended to limit the scope of this application.

[0036] like Figures 1-9As shown, a municipal landscaping engineering isolation facility with convenient soil removal function includes a perforated base plate unit 1 for placement on muddy ground a, a perforated isolation plate unit 2 that engages with the upper surface of the perforated base plate unit 1, an insertion rod unit 3 that is inserted into the perforated base plate unit 1 and into the muddy ground a, and when pulled upwards, scrapes soil clods b on the lower surface of the perforated base plate unit 1, an inclined reinforcing plate unit 4 that engages with the perforated isolation plate unit 2 and is sleeved with the insertion rod unit 3, and a connecting plate unit 5 that engages with the perforated isolation plate unit 2 and, after being removed from the perforated isolation plate unit 2, slides on the lower surface of the perforated base plate unit 1 to collect soil clods c on the lower surface.

[0037] In this embodiment, the specific structural components of the isolation facility include: one or more perforated base plate units 1, perforated isolation plate units 2 with the same number as the perforated base plate units 1, insert rod units 3 with a number greater than or equal to the number of perforated base plate units 1, inclined reinforcing plate units 4 with a number greater than or equal to the number of perforated isolation plate units 2, and connecting plate units 5 with the same number as the number of perforated isolation plate units 2, or one less than the number of perforated isolation plate units 2.

[0038] The main material of this isolation facility is PVC or PC, both of which have excellent weather resistance. This isolation facility can be used in municipal landscaping projects, such as roads and parks, as well as in private courtyards.

[0039] When the isolation facility is used correctly: the perforated base plate unit 1 is placed on the muddy ground a, the perforated isolation plate unit 2 is inserted vertically into the perforated base plate unit 1, all of the insert rod units 3 are inserted into the muddy ground a and press down on the perforated base plate unit 1, and all or part of the insert rod units 3 also press down to fix the inclined reinforcing plate unit 4, which is used to improve the connection strength between the perforated base plate unit 1 and the perforated isolation plate unit 2, and the connecting plate unit 5 is used to connect two adjacent perforated isolation plate units 2.

[0040] However, it should be noted that the perforated isolation plate units 2 can be used in a row, in a circle, or individually. Furthermore, when a single perforated isolation plate unit 2 is used, there is only one connecting plate unit 5; it does not need to, and cannot, connect two adjacent perforated isolation plate units 2. In this case, it can be completely inserted and fixed onto the perforated isolation plate unit 2, ensuring that it does not protrude or droop significantly, further improving the safety of the perforated isolation plate unit 2 when used alone. For details, please refer to the appendix. Figure 9 .

[0041] After the isolation facility is used, the steps for removing the soil adhering to it are as follows: First, the insertion rod unit 3 can be pulled out first and then the perforated bottom plate unit 1 can be lifted, or the perforated bottom plate unit 1 can be lifted directly upwards and the insertion rod unit 3 can be pulled out along with it. Both methods are acceptable. Soil will stick to the insertion rod unit 3 and the lower surface of the perforated bottom plate unit 1. The former is the soil block b on the rod, and the former and the latter together are the soil block c on the lower surface. Second, since all the soil clods c on the lower surface have accumulated on the lower surface of the perforated bottom plate unit 1, one of the connecting plate units 5 is removed from the perforated isolation plate unit 2. Then, the connecting plate unit 5 is moved to one end of the perforated bottom plate unit 1. The connecting plate unit 5 is then attached to the lower surface of the perforated bottom plate unit 1. Finally, while maintaining the above-mentioned attached state, the connecting plate unit 5 is moved from one end to the other end. This will scrape off the soil clods c on the lower surface or transfer them to the connecting plate unit 5. Third, finally, the connecting plate unit 5 can be cleaned directly. It has the characteristics of relatively small size and relatively light weight, so the cleaning operation is relatively simple and convenient.

[0042] The perforated base plate unit 1 includes a horizontal base plate 101, a mounting groove 102 disposed on the upper surface of the horizontal base plate 101 for engaging the perforated isolation plate unit 2, and a mounting hole 103 disposed on the horizontal base plate 101 for inserting the insertion rod unit 3.

[0043] In this embodiment, the horizontal base plate 101 is rectangular in shape, and the length direction of the mounting groove 102 is parallel to the long side of the horizontal base plate 101, with the former extending laterally through the latter. This allows the perforated isolation plate unit 2 to have a relatively large length, and adjacent perforated isolation plate units 2 can fit together fully. The depth of the mounting groove 102 is 50-60% of the thickness of the horizontal base plate 101.

[0044] The "perforated" designation in the perforated base plate unit 1 refers to the mounting holes 103, which are circular in shape and number in two sets. The mounting groove 102 is located between these two sets of mounting holes 103. The circular edge below the mounting hole 103 is the most direct location for scraping and removing soil clods b from the rod on the insertion rod unit 3.

[0045] The perforated isolation plate unit 2 includes a vertical plate 201 that engages with the mounting groove 102, and a reinforcing hole 202 disposed on the vertical plate 201 for inserting and installing the inclined reinforcing plate unit 4 or the connecting plate unit 5.

[0046] In this embodiment, the vertical plate 201 is also rectangular in shape, with its wide side set vertically and the width of the wide side being 20-60cm, thereby providing sufficient and appropriate protective isolation effect.

[0047] The "perforated" designation in the perforated isolation plate unit 2 refers to the reinforcement holes 202, which are 3-8 in number and are rectangular or circular in shape.

[0048] Two of the reinforcement holes 202, located at the ends on the left and right, are used to install the connecting plate unit 5, ultimately reinforcing the entire isolation facility. The remaining reinforcement holes 202 are used to install at least one of the inclined reinforcement plate units 4, thereby improving the stability of the vertical plate 201 when inserted into the horizontal base plate 101.

[0049] The insertion rod unit 3 includes a vertical rod 301 that is inserted into the mounting hole 103, passes through the inclined reinforcement plate unit 4, and is used to insert into the mud a, and an end block 302 that is disposed on the upper end surface of the vertical rod 301 and is used to press down the inclined reinforcement plate unit 4 or the horizontal base plate 101.

[0050] In this embodiment, the vertical rod 301 is a round rod, and the end block 302 is a round block or a square block. The latter directly or indirectly presses down to fix the horizontal base plate 101, so that the isolation facility can be stably installed on the muddy ground a during the construction of the municipal landscaping project.

[0051] Correspondingly, this isolation facility is not suitable for paved roads, such as asphalt roads.

[0052] The inclined reinforcement plate unit 4 includes an inverted U-shaped plate 401 that is snapped onto the side and top surfaces of the vertical plate 201, a fixing block 402 disposed on the inner side of the inverted U-shaped plate 401 and used for inserting into the reinforcement hole 202, a downward inclined plate 403 disposed on the inverted U-shaped plate 401, and an opening plate 404 disposed on the downward inclined plate 403, sleeved with the vertical rod 301, and pressed down and fixed by the end block 302.

[0053] In this embodiment, a single inclined reinforcing plate unit 4 is integrally formed, and by appropriately enlarging the lower opening of the inverted U-shaped plate 401, the fixing block 402 can be easily inserted into and slid out of the reinforcing hole 202.

[0054] Correspondingly, when the fixing block 402 engages with the reinforcing hole 202, the three inner sides of the inverted U-shaped plate 401 simultaneously and fully adhere to the side and upper surface of the vertical plate 201, thereby achieving the reinforcing effect of the inclined reinforcing plate unit 4 on the perforated isolation plate unit 2 and increasing the difficulty of the perforated isolation plate unit 2 being blown over by the wind.

[0055] When the fixing block 402 engages with the reinforcing hole 202, the perforated plate 404 is simultaneously passed through by the vertical rod 301 and pressed down by the end block 302, thereby ensuring the effectiveness of the above-mentioned anti-blow-over function.

[0056] The connecting plate unit 5 includes side bonding strips 501 disposed on two adjacent vertical plates 201, and two end blocks 502 disposed at both ends of the side bonding strips 501 and used to insert into the reinforcing holes 202 on the two adjacent vertical plates 201.

[0057] In this embodiment, the distance between two adjacent reinforcing holes 202 on a single vertical plate 201, and the distance between the reinforcing holes 202 at the mating ends of two adjacent vertical plates 201 when they are fitted together, are consistent with the distance between the two end blocks 502, ensuring that the connecting plate unit 5 can be used or left idle. (See attached figure for the former.) Figure 1 The latter is attached. Figure 9 .

[0058] On the other hand, the end block 502 and the reinforcing hole 202 are appropriately interference-fitted to ensure that the insertion strength of the two is sufficient and appropriate.

[0059] The insertion rod unit 3 also includes a pull-out force groove 303 provided on the lower surface and side surface of the end block 302.

[0060] In this embodiment, the main function of the pull-out force groove 303 is: when the end block 302 is pressed on the upper surface of the transverse base plate 101, it allows the lower surface of the end block 302 to be exposed. After inserting a screwdriver or other tool at this point, the entire insertion rod unit 3 can be pulled out relatively easily. Otherwise, it would be difficult to insert the screwdriver between the lower surface of the end block 302 and the upper surface of the transverse base plate 101.

[0061] On the other hand, when the end block 302 is pressed on the perforated plate 404, and the latter has a relatively small width and partially exposes the lower surface of the former, tools such as screwdrivers can directly act on the exposed lower surface without necessarily inserting into the pull-out force groove 303.

[0062] The connecting plate unit 5 also includes a sliding force groove 503 disposed on the side bonding strip 501 and used for inserting the operator's finger when the side bonding strip 501 slides to collect the soil block c on the lower surface.

[0063] In this embodiment, the number of sliding force grooves 503 is one or two. When there are two, they are arranged on the left and right sides of the side adhesive strip 501, respectively for inserting the operator's thumb and the other four fingers, thereby making the sliding action of the side adhesive strip 501 safer and more efficient.

[0064] The perforated isolation plate unit 2 also includes a ventilation opening 203 disposed on the vertical plate 201.

[0065] In this embodiment, the reinforcement hole 202, which is not installed with the inclined reinforcement plate unit 4 and the connecting plate unit 5, can work together with the vent 203 to ultimately reduce the wind resistance of the perforated isolation plate unit 2 and increase the difficulty of the perforated isolation plate unit 2 being blown over by the wind.

[0066] However, the total area of ​​the ventilation openings 203 should not be too large, and the structural strength of the vertical plate 201 itself needs to be taken into account.

[0067] The perforated base plate unit 1 also includes a weight reduction port 104 disposed on the transverse base plate 101.

[0068] In this embodiment, the ventilation opening 203 and the weight reduction opening 104 can both be rectangular in shape, and the total area of ​​the latter should not be too large so as not to significantly affect the supporting strength of the transverse base plate 101.

[0069] The embodiments of this application have been described in detail above with reference to the accompanying drawings. However, this application is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various modifications can be made without departing from the spirit of this application. These are non-inventive modifications and are protected by patent law as long as they are within the scope of the claims of this application.

Claims

1. A municipal landscaping isolation facility with convenient soil removal function, characterized in that: The structure includes a perforated bottom plate unit (1) for placing on mud (a), a perforated isolation plate unit (2) engaged on the upper surface of the perforated bottom plate unit (1), an insertion rod unit (3) for inserting soil clods (b) on the lower surface of the perforated bottom plate unit (1) when inserted into the mud (a) and pulled upwards, an inclined reinforcing plate unit (4) engaged on the perforated isolation plate unit (2) and sleeved with the insertion rod unit (3), and a connecting plate unit (5) for collecting soil clods (c) on the lower surface when engaged on the perforated isolation plate unit (2) and slid on the lower surface of the perforated bottom plate unit (1) after being removed from the perforated isolation plate unit (2).

2. The isolation facility for municipal landscaping projects with convenient soil removal function according to claim 1, characterized in that: The perforated base plate unit (1) includes a transverse base plate (101), a mounting groove (102) disposed on the upper surface of the transverse base plate (101) for engaging the perforated isolation plate unit (2), and a mounting hole (103) disposed on the transverse base plate (101) for inserting the plug unit (3).

3. The isolation facility for municipal landscaping projects with convenient soil removal function according to claim 2, characterized in that: The perforated isolation plate unit (2) includes a vertical plate (201) that engages with the mounting groove (102) and a reinforcing hole (202) disposed on the vertical plate (201) for inserting and installing the inclined reinforcing plate unit (4) or the connecting plate unit (5).

4. A municipal landscaping isolation facility with convenient soil removal function according to claim 3, characterized in that: The insertion rod unit (3) includes a vertical rod (301) that is inserted into the mounting hole (103), passes through the inclined reinforcing plate unit (4), and is used to insert into the mud (a), and an end block (302) that is disposed on the upper end surface of the vertical rod (301) and is used to press down the inclined reinforcing plate unit (4) or the horizontal base plate (101).

5. A municipal landscaping isolation facility with convenient soil removal function according to claim 4, characterized in that: The inclined reinforcing plate unit (4) includes an inverted U-shaped plate (401) that is snapped onto the side and top surfaces of the vertical plate (201), a fixing block (402) that is disposed on the inner side of the inverted U-shaped plate (401) and used to insert the reinforcing hole (202), a downward inclined plate (403) disposed on the inverted U-shaped plate (401), and an opening plate (404) disposed on the downward inclined plate (403), sleeved with the vertical rod (301), and pressed down and fixed by the end block (302).

6. A municipal landscaping isolation facility with convenient soil removal function according to claim 3, characterized in that: The connecting plate unit (5) includes a side bonding strip (501) disposed on two adjacent vertical plates (201), and two end blocks (502) disposed at both ends of the side bonding strip (501) and used to insert into the reinforcing holes (202) on the two adjacent vertical plates (201).

7. A municipal landscaping isolation facility with convenient soil removal function according to claim 4, characterized in that: The insertion rod unit (3) also includes a pull-out force groove (303) provided on the lower surface and side surface of the end block (302).

8. A municipal landscaping isolation facility with convenient soil removal function according to claim 6, characterized in that: The connecting plate unit (5) also includes a sliding force groove (503) disposed on the side bonding strip (501) and used for inserting the operator's finger when the side bonding strip (501) slides to collect the soil block (c) on the lower surface.

9. A municipal landscaping isolation facility with convenient soil removal function according to claim 3, characterized in that: The perforated isolation plate unit (2) also includes a ventilation opening (203) disposed on the vertical plate (201).

10. A municipal landscaping isolation facility with convenient soil removal function according to claim 2, characterized in that: The perforated base plate unit (1) also includes a weight reduction port (104) provided on the transverse base plate (101).

Citation Information

Patent Citations

  • Isolation device for garden engineering construction

    CN222649681U