CN213477777U - Formula of circling round modularization sample house - Google Patents

Formula of circling round modularization sample house Download PDF

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Publication number
CN213477777U
CN213477777U CN202022331465.9U CN202022331465U CN213477777U CN 213477777 U CN213477777 U CN 213477777U CN 202022331465 U CN202022331465 U CN 202022331465U CN 213477777 U CN213477777 U CN 213477777U
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Prior art keywords
sample house
plate
driving device
base plate
sector
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CN202022331465.9U
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Chinese (zh)
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王珣
曹静怡
薛佳
祝博
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Nanjing Shangbai Architectural Design Consulting Co ltd
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Nanjing Shangbai Architectural Design Consulting Co ltd
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Abstract

The utility model relates to a rotary modular sample house, which comprises a base plate; a protection plate detachably disposed at an upper portion of the base plate; the sample house body is detachably arranged at the upper part of the protection plate; a driving device detachably disposed at a middle portion of a bottom of the substrate; the circular cavity of the driving device is sleeved; an annular rail detachably disposed at a bottom of the base plate; the first supporting column is respectively connected with the rotary driving device and the ground; the second support columns are respectively connected with the annular track and the ground; a sliding block is fixedly arranged at the first end of each second supporting column; a first bearing cooperating with the circular cavity. The sample house has the advantages that the sample house can rotate by using the driving device and the annular track, so that the requirement that a large number of customers visit and know the house type at the same time is met; by adopting the detachable design, the sample house can be conveniently installed, detached and recycled, the construction period is shortened, the construction cost is reduced, and a large amount of building materials are saved.

Description

Formula of circling round modularization sample house
Technical Field
The utility model relates to a building engineering technical field especially relates to a formula of circling round modularization sample house.
Background
In the process of selling the commodity rooms, a plurality of sample rooms are arranged at the building selling position according to the house types of the building to be sold so as to be visited by customers, and therefore the requirement that the customers know the house types is met.
However, such a sample room has some drawbacks:
1) only a plurality of clients enter the family type visit each time, so that the clients need to wait in line and cannot meet the requirement that a large number of clients visit and know at the same time;
2) the sample house is a fixed building, and needs to be dismantled after the sale of the current building is finished, and needs to be rebuilt when the next building is started, so that the building cost is high, the building period is long, and building materials are wasted.
Therefore, no effective solution is provided at present for the problems that a large number of clients cannot visit simultaneously and the sample room is difficult to recycle in the related art.
Disclosure of Invention
The utility model aims at providing a rotation type modularization sample house to not enough among the prior art to at least, solve in the correlation technique a large amount of clients can't visit simultaneously and the sample house is difficult to reuse's problem.
In order to achieve the purpose, the utility model adopts the technical proposal that:
a convolute modular sample house comprising:
a substrate;
a protection plate detachably disposed at an upper portion of the base plate;
the sample house body is detachably arranged at the upper part of the protection plate;
the driving device is detachably arranged in the middle of the bottom of the substrate;
an annular rail detachably disposed at a bottom of the base plate;
the circular cavity is detachably arranged at the bottom of the base plate and sleeved outside the driving device;
the first end of the first support column is connected with the driving device, and the second end of the first support column is connected with the ground;
the second support columns are annularly and symmetrically arranged by taking the first support column as a center, the first end of each second support column is connected with the annular track, and the second end of each second support column is connected with the ground;
the first end of each second supporting column is fixedly provided with one sliding block;
the first bearing is sleeved on the outer side of the driving device and matched with the circular cavity.
In some of these embodiments, further comprising:
the control box is arranged on the upper portion of the protection plate and electrically connected with the driving device.
In some of these embodiments, further comprising:
the solar cell panel covers the upper portion of the sample house body, and the solar cell panel is electrically connected with the control box.
In some of these embodiments, the endless track comprises:
the groove is formed in the bottom of the annular track, and the tops of the sliding blocks are embedded into the groove.
In some of these embodiments, the substrate is circular, the substrate comprising:
a plurality of sector plates, each of said sector plates comprising:
the matching bulge is arranged on one side of the sector plate;
the matching grooves are adjacently arranged on the other side edge of the sector plate;
and two adjacent fan-shaped plates are connected with the matching grooves in a jogged mode through the matching protrusions.
In some of these embodiments, the sector plate further comprises:
and at least one mounting hole penetrates through the sector plate and is used for being matched and connected with the driving device or the annular track.
In some of these embodiments, further comprising:
the annular track is connected and matched with the mounting holes of the base plate through the mounting bolts, and the driving device is connected and matched with the mounting holes of the base plate through the mounting bolts.
In some of these embodiments, the sample room plate comprises:
the three side plates are connected to form a concave structure;
the top plate is connected with the upper parts of the three side plates respectively;
and the windows are at least arranged on one side plate.
In some of these embodiments, further comprising:
the second bearings are arranged on the upper portions of the second supporting columns, the second bearings are arranged inside the annular tracks, and the sliding blocks are located inside the second bearings.
In some of these embodiments, the shield plate comprises:
a waterproof sheet disposed on an upper portion of the base plate;
the heat insulation plate is arranged on the upper portion of the waterproof plate.
The utility model adopts the above technical scheme, compare with prior art, have following technological effect:
the utility model discloses a gyration formula modularization sample house utilizes the setting of drive arrangement and ring rail for the sample house can rotate, satisfies a large amount of customers and visits the demand of knowing the house type simultaneously; by adopting the detachable design, the sample house can be conveniently installed, detached and recycled, the construction period is shortened, the construction cost is reduced, and a large amount of building materials are saved.
Drawings
FIG. 1 is a schematic view of a convoluted modular sample room according to an embodiment of the present application;
FIG. 2 is a top view of a convoluted modular sample room according to an embodiment of the present application;
FIG. 3 is a cross-sectional view of a convoluted modular sample room according to an embodiment of the present application;
FIG. 4 is an enlarged partial schematic view of FIG. 3;
FIG. 5 is an enlarged partial schematic view of FIG. 3;
FIG. 6 is a top view of a substrate according to an embodiment of the present application;
FIG. 7 is a first schematic view of a sector plate according to an embodiment of the present application;
fig. 8 is a second schematic view of a sector plate according to an embodiment of the present application.
Wherein the reference numerals are: the solar panel comprises a base plate 1, a waterproof plate 2, a heat insulation plate 3, a sample room body 4, a driving device 5, an annular rail 6, a first supporting column 7, a second supporting column 8, a sliding block 9, a control box 10, a solar panel 11, a groove 12, a second bearing 13, a sector plate 14, a matching protrusion 15, a matching groove 16, a mounting hole 17, a mounting bolt 18, a side plate 19, a top plate 20, a window 21, a first bearing 22, a circular cavity 23 and a ground 24.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
It should be noted that, in the present invention, the embodiments and features of the embodiments may be combined with each other without conflict.
The present invention will be further described with reference to the accompanying drawings and specific embodiments, but the present invention is not limited thereto.
The utility model discloses a formula of circling round modularization sample house of an exemplary embodiment, as shown in fig. 1 ~ 3, including base plate 1, guard plate, sample house body 4, drive arrangement 5, circular orbit 6, first support column 7, a plurality of second support column 8, control box 10 and solar cell panel 11. Wherein, guard plate detachably sets up the upper portion at base plate 1, sample house body 4 detachably sets up the upper portion at the guard plate, the center at base plate 1's bottom is installed to drive arrangement 5 detachably, 6 detachable of circular orbit installs the bottom at base plate 1, first support column 7 respectively with drive arrangement 5, ground 24 is connected, a plurality of second support columns 8 respectively with circular orbit 6, ground 24 is connected, the upper portion at the guard plate is installed to control box 10 detachably, 11 detachably of solar cell panel installs the top at sample house body 4, control box 10 respectively with drive arrangement 5, 11 electric connection of solar cell panel.
As shown in fig. 6, the base plate 1 is formed by detachably combining a plurality of sector plates 14, and the central angle of each sector plate 14 is 15 to 45 °. Generally, the central angle of each sector plate 14 is 20 ° or 30 °.
As shown in fig. 7 to 8, each sector plate 14 includes a fitting projection 15, a fitting groove 16, and a plurality of fitting holes 17. The fitting protrusion 15 is disposed on one side of the sector plate 14, the fitting groove 16 is disposed on the other side of the sector plate 14, at least one mounting hole 17 is disposed at a center angle of the sector plate 14, and at least two mounting holes 16 are symmetrically disposed in the middle of the sector plate 14.
For two adjacent sector plates 14, the matching projection 15 of one sector plate 14 is in tabling connection with the matching groove 16 of the other sector plate 14, so that a plurality of sector plates 14 are assembled to form the base plate 1.
In some of these embodiments, the sector plates 14 are injection molded plates.
In some of these embodiments, for each sector plate 14, the first end of the mating protrusion 15 does not contact the central angle of the sector plate 14, and the second end of the mating protrusion 15 mates with the arc edge of the sector plate 14, i.e., the second end of the mating protrusion 15 and the arc edge of the sector plate 14 together form an arc edge.
Likewise, for each sector plate 14, the first end of the mating groove 16 does not contact the central angle of the sector plate 14, and the second end of the mating groove 16 mates with the arcuate edge of the sector plate 14, i.e., the second end of the mating groove 16 and the arcuate edge of the sector plate 14 together form an arcuate edge.
Therefore, the adjacent two sector plates 14 can be fitted and connected by sliding, and the outer edge of the finally formed substrate 1 is smooth and has no protrusion or recess.
As shown in fig. 1 and 3, the shield panel includes a waterproof panel 2 and an insulation panel 3, wherein the waterproof panel 2 is detachably disposed to cover an upper surface of the base panel 1, and the insulation panel 3 is detachably disposed to cover an upper surface of the waterproof panel 2.
As shown in fig. 1 and 3, the sample house body 4 comprises three side plates 19 and a top plate 20, wherein the three side plates 19 are connected to form a concave structure, and the top plate 20 is detachably disposed on the upper portion of the concave structure, i.e. the sample house body 4 is a structure with an opening, so that a customer can observe the internal structure of the sample house body 4 through the opening, such as decoration and furniture.
The sample house body 4 further comprises at least one window 21, and the window 21 is at least arranged on one side plate 19.
In some of these embodiments, a window 21 is provided in each side panel 19.
As shown in fig. 3 and 4, the driving device 5 is detachably connected to the base plate 1 by at least two mounting bolts 18. Specifically, the driving device 5 is screwed with the mounting holes 17 of the two symmetrically arranged sector plates 14 at the central angle thereof through at least two symmetrically arranged mounting bolts 18, so that the driving device 5 is fixedly connected with the substrate 1, and the driving device 5 drives the substrate 1 to rotate.
In some of these embodiments, the drive means 5 is a screw drive motor.
The first support rod 7 is detachably connected at a first end thereof to the driving device 5 and at a second end thereof to the ground 24.
In order to improve the rotational stability of the base plate 1, a circular cavity 23 is further provided in the middle of the bottom of the base plate 1, and the circular cavity 23 is sleeved outside the driving device 5.
Wherein the circular cavity 23 is detachably connected to the base plate 1 by means of a number of mounting bolts 18.
Correspondingly, a first bearing 22 is sleeved on the outer side of the driving device 5, and the first bearing 22 is matched with the circular cavity 23.
As shown in fig. 3 and 5, the ring rail 6 is detachably connected to the base plate 1 by a plurality of mounting bolts 18. Specifically, the annular rail 6 is screwed with at least two mounting holes 17 of each sector plate 14 at the middle thereof by means of a plurality of mounting bolts 18, thereby fixedly connecting the annular rail 6 with the base plate 1.
The second support rods 8 are connected in an annular symmetrical mode by taking the first support rod 7 as a center, and the number of the second support rods 8 is at least 4.
The first end of each second support bar 8 is slidably connected to the circular track 6, and the second end of each second support bar 8 is fixedly connected to the ground 24.
A slide block 9 is arranged at the first end of each second support bar 8. The sliding block 9 may be fixedly connected with the second support bar 8, or may be connected with the second support bar 8 in an embedded manner.
Wherein the slider 9 is a spherical slider.
In some embodiments, the first end of each second support bar 8 is provided with a hemispherical recess, and the sliding block 9 is embedded in the hemispherical recess.
Correspondingly, the circular track 6 is provided with a groove 12 for engaging the slider 9. Wherein, the longitudinal section of the groove 12 is arc-shaped and is used for matching the shape of the upper end of the sliding block 9, and the cross section of the groove 12 is annular.
Further, in order to reduce the friction force when the annular rail 6 slides, a second bearing 13 is further sleeved at the first end of each second support rod 8, the outer edge of the second bearing 13 is matched with the inner wall of the annular rail 6, and the sliding block 9 is arranged inside the second bearing 13.
The control box 10 is located on the side away from the opening of the sample house body 4, and is used to control the rotation speed of the driving device 5. In addition, the control box 10 is also used for controlling the home appliances in the sample room body 4.
The solar cell panel 11 is composed of a plurality of solar panel platelets and absorbs solar energy and converts the solar energy into electric energy to supply the electric energy to the control box 10.
In some of these embodiments, the first support bar 7 and the second support bar 8 are adjustable support bars.
Specifically, the adjustable supporting rod is formed by nesting a plurality of supporting rods, each supporting rod comprises a plurality of limiting grooves formed in the first ends of the supporting rods and a plurality of limiting bulges formed in the second ends of the supporting rods, and the length of each two adjacent supporting rods is adjusted through the matching of the limiting bulges and the limiting grooves. Wherein, spacing arch is for pressing the protruding formula of resilience.
Specifically, the adjustable supporting rods are hydraulically or pneumatically driven telescopic adjusting rods, and the first supporting rod 7 and the plurality of second supporting rods 8 are controlled by a hydraulic driving device or a pneumatic driving device to adjust the length simultaneously. The hydraulic driving device or the pneumatic driving device is arranged on the ground 24 and is electrically connected with the control box 10.
The utility model discloses a use method as follows: the staff opens the control box 10 to make the driving device 5 and the home appliances in the sample room body 4 start to work; the driving device 5 drives the substrate 1 (comprising the waterproof board 2, the heat insulation board 3 and the sample house body 4 which are positioned on the upper part of the substrate 1) to rotate; the first bearing 23 rotates in cooperation with the circular cavity 22 with the rotation of the driving device 5; the annular track 6 circles around under the action of the sliding blocks 9 and the second bearings 13 along with the rotation of the substrate 1, so that customers around the rotary type modular sample house can observe the conditions of decoration, household appliances and the like in the sample house body 4 through the opening of the sample house body 4; after the sale of the building is finished, the rotary type modular sample house is disassembled, and the use of the next building can be realized.
The above description is only an example of the preferred embodiment of the present invention, and not intended to limit the scope of the present invention, and those skilled in the art should be able to realize the equivalent alternatives and obvious variations of the present invention.

Claims (10)

1. A convolution type modularization sample house, comprising:
a substrate;
a protection plate detachably disposed at an upper portion of the base plate;
the sample house body is detachably arranged at the upper part of the protection plate;
the driving device is detachably arranged in the middle of the bottom of the substrate;
an annular rail detachably disposed at a bottom of the base plate;
the circular cavity is detachably arranged at the bottom of the base plate and sleeved outside the driving device;
the first end of the first support column is connected with the driving device, and the second end of the first support column is connected with the ground;
the second support columns are annularly and symmetrically arranged by taking the first support column as a center, the first end of each second support column is connected with the annular track, and the second end of each second support column is connected with the ground;
the first end of each second supporting column is fixedly provided with one sliding block;
the first bearing is sleeved on the outer side of the driving device and matched with the circular cavity.
2. The convoluted modular sample house of claim 1 further comprising:
the control box is arranged on the upper portion of the protection plate and electrically connected with the driving device.
3. The convoluted modular sample house of claim 2 further comprising:
the solar cell panel covers the upper portion of the sample house body, and the solar cell panel is electrically connected with the control box.
4. The convolute modular sample house of claim 1 wherein the circular track comprises:
the groove is formed in the bottom of the annular track, and the tops of the sliding blocks are embedded into the groove.
5. The convolute modular sample house of claim 1 wherein said base plate is circular, said base plate comprising:
a plurality of sector plates, each of said sector plates comprising:
the matching bulge is arranged on one side of the sector plate;
the matching grooves are adjacently arranged on the other side edge of the sector plate;
and two adjacent fan-shaped plates are connected with the matching grooves in a jogged mode through the matching protrusions.
6. The convolute modular sample house of claim 5 wherein said sector plate further comprises:
and at least one mounting hole penetrates through the sector plate and is used for being matched and connected with the driving device or the annular track.
7. The convoluted modular sample house of claim 6 further comprising:
the annular track is connected and matched with the mounting holes of the base plate through the mounting bolts, and the driving device is connected and matched with the mounting holes of the base plate through the mounting bolts.
8. The convolute modular sample house of claim 1, wherein the sample house body comprises:
the three side plates are connected to form a concave structure;
the top plate is connected with the upper parts of the three side plates respectively;
and the windows are at least arranged on one side plate.
9. The convoluted modular sample house of claim 1 further comprising:
the second bearings are arranged on the upper portions of the second supporting columns, the second bearings are arranged inside the annular tracks, and the sliding blocks are located inside the second bearings.
10. The convolute modular sample house of claim 1 wherein said fender comprises:
a waterproof sheet disposed on an upper portion of the base plate;
the heat insulation plate is arranged on the upper portion of the waterproof plate.
CN202022331465.9U 2020-10-20 2020-10-20 Formula of circling round modularization sample house Active CN213477777U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022331465.9U CN213477777U (en) 2020-10-20 2020-10-20 Formula of circling round modularization sample house

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022331465.9U CN213477777U (en) 2020-10-20 2020-10-20 Formula of circling round modularization sample house

Publications (1)

Publication Number Publication Date
CN213477777U true CN213477777U (en) 2021-06-18

Family

ID=76366534

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022331465.9U Active CN213477777U (en) 2020-10-20 2020-10-20 Formula of circling round modularization sample house

Country Status (1)

Country Link
CN (1) CN213477777U (en)

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