CN216109523U - Fluorescent plastic-wood co-extrusion floor - Google Patents

Fluorescent plastic-wood co-extrusion floor Download PDF

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Publication number
CN216109523U
CN216109523U CN202022068069.1U CN202022068069U CN216109523U CN 216109523 U CN216109523 U CN 216109523U CN 202022068069 U CN202022068069 U CN 202022068069U CN 216109523 U CN216109523 U CN 216109523U
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China
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plate
plate body
floor
connecting block
activity chamber
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CN202022068069.1U
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Chinese (zh)
Inventor
杜凤君
王销利
金源
龚勇泽
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Shaoxing Yong Sheng New Material Co ltd
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Shaoxing Yong Sheng New Material Co ltd
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Abstract

The utility model discloses a fluorescent plastic-wood co-extrusion floor which comprises a first plate body and a second plate body, wherein a first movable cavity is arranged on the first plate body, the second plate body is arranged in the first movable cavity, fluorescent powder is coated on the second plate body, a connecting groove is formed in the side wall of one side of the first plate body, a connecting block matched with the connecting groove is arranged on the side wall of the other side of the first plate body, the connecting block is arranged in the first movable cavity in a penetrating mode, and when the second plate body moves downwards, the connecting block moves towards the outside of the first movable cavity; when one of them floor damages when needing to be changed, tear the second plate body out from first plate body, the second plate body up moves, and the connecting block enters into first activity intracavity, and the connecting block deviates from the spread groove, can directly take out the floor that damages alone, need not to tear the floor on every side out entirely, more can not cause the damage to the floor on every side, avoids causing the floor of large tracts of land to damage extravagant phenomenon because of changing individual floor.

Description

Fluorescent plastic-wood co-extrusion floor
Technical Field
The utility model belongs to the technical field of building decoration materials, and particularly relates to a fluorescent plastic-wood co-extrusion floor.
Background
The wood floor is used as an indispensable building material in the field of home decoration and widely applied in the field of building materials, but the wood floor needs to consume a large amount of wood resources, and the plastic-wood composite material solves the problem to a certain extent. In order to ensure the stability of floor laying, the rear floor is usually spliced on the front floor, so that a plurality of floors form a whole, but when the floor is laid by adopting the mode, if a plurality of floors are damaged, the floors nearby need to be completely torn off, the surrounding complete floors are damaged, the maintenance and replacement cost is high, and the waste is serious.
SUMMERY OF THE UTILITY MODEL
The utility model provides a fluorescent plastic-wood co-extrusion floor convenient to maintain in order to overcome the defects of the prior art.
In order to achieve the purpose, the utility model adopts the following technical scheme: a fluorescent plastic-wood co-extrusion floor comprises a first plate body and a second plate body, wherein a first movable cavity is formed in the first plate body, the second plate body is arranged in the first movable cavity, fluorescent powder is coated on the second plate body, a connecting groove is formed in the side wall of one side of the first plate body, a connecting block matched with the connecting groove is formed in the side wall of the other side of the first plate body, the connecting block penetrates through the first movable cavity, and when the second plate body moves downwards, the connecting block moves out of the first movable cavity; when the floor is laid, the first bottom plate is laid, the second floor is placed on one side of the first floor, the second plate body is pushed downwards after the two floors are opposite, the first movable cavity on the connecting block moves outwards, so that the connecting block protrudes out of the side wall of the first plate body, the connecting block on the second floor is inserted into the connecting groove on the first floor, the two floors are connected with each other to form a whole, and the mounting stability of the floor is ensured; when one of the floors is damaged and needs to be replaced, the second plate body is detached from the first plate body, the second plate body moves upwards, the connecting block enters the first movable cavity, the connecting block is separated from the connecting groove, the damaged floor can be directly and independently taken out, the surrounding floors do not need to be completely detached, the surrounding floors cannot be damaged, and the phenomenon that the floor with large area is damaged and wasted due to replacement of individual floors is avoided; when a new floor is placed in the vacant position, the connecting block is pushed into the first movable cavity, so that the side wall of the new floor is free of protrusions, the new floor can be directly filled into the vacant position, the influence on surrounding floors is avoided, the floor maintenance difficulty is reduced, and the individual replacement operation of the floor is easier to perform; through the arrangement of the fluorescent powder, the floor can reflect more obvious bright light under the condition of darker light, so that pedestrians can better observe the position of the floor, and the practicability of the floor is improved; under the arrangement of the fluorescent powder, the attractiveness of the floor is improved, and the floor has a wider market.
The movable plate is arranged in the first movable cavity, the second plate body is arranged on the movable plate, a first sliding block is arranged on the side wall of the movable plate, and a first sliding groove matched with the first sliding block is formed in the inner wall of the first movable cavity.
The bottom of the first movable cavity is movably connected with a first connecting plate, one end of the first connecting plate is movably connected with a second connecting plate, the other end of the second connecting plate is provided with a first push block, the bottom of the first push block is provided with a second sliding block, and the bottom of the first movable cavity is provided with a second sliding groove matched with the second sliding block.
The bottom of the movable plate is provided with a second push block, and the second push block is arranged above the joint of the first connecting plate and the second connecting plate; the bottom of the movable plate is provided with a plurality of supporting blocks, the movable plate is further provided with a through groove, and the top of the connecting block is provided with a first groove.
The bottom of the first movable cavity is provided with a second movable cavity, a transmission plate is arranged in the second movable cavity, the middle of the transmission plate is rotatably connected with the second movable cavity, one end of the transmission plate is provided with a third push block, the other end of the transmission plate is provided with a fourth push block, and the third push block and the fourth push block are respectively arranged in the second movable cavity in a penetrating mode.
The bottom of the movable plate is provided with a fifth pushing block matched with the third pushing block, the third pushing block is provided with a supporting spring, the supporting spring is provided with a supporting plate, the third pushing block is provided with a third movable cavity, the supporting plate is provided with a connecting rod, the connecting rod penetrates through the third movable cavity, the bottom of the connecting rod is provided with a limiting plate, and the supporting plate is connected with the fifth pushing block through a connecting rope.
The connecting block is made of elastic materials, a cavity is formed in the connecting block, a third sliding groove is formed in the bottom of the connecting block, and a third sliding block matched with the third sliding groove is arranged at the bottom of the first movable cavity.
The novel LED lamp is characterized in that a second groove is formed in the second plate body, a cover plate is rotatably connected into the second groove, a first connecting hole is formed in the second groove, a second connecting hole is formed in the movable plate, a third connecting hole is formed in the first plate body, and a third groove matched with the first connecting hole is formed in the bottom of the cover plate.
The utility model has the following advantages: when one of the floors is damaged and needs to be replaced, the second plate body is detached from the first plate body, the second plate body moves upwards, the connecting block enters the first movable cavity, the connecting block is separated from the connecting groove, the damaged floor can be directly and independently taken out, the surrounding floors do not need to be completely detached, the surrounding floors cannot be damaged, and the phenomenon that the floor with large area is damaged and wasted due to replacement of individual floors is avoided; when a new floor is placed in the vacant position, the connecting block is pushed into the first movable cavity, so that the side wall of the new floor is free of protrusions, the new floor is directly filled into the vacant position, the floor around is prevented from being affected, the floor maintenance difficulty is reduced, and the individual replacement operation of the floor is easier to perform.
Drawings
FIG. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a right side view of the present invention.
Fig. 3 is a cross-sectional view taken along a-a in fig. 2.
Fig. 4 is an enlarged view of a portion a in fig. 3.
Fig. 5 is a cross-sectional view taken along line E-E of fig. 2.
Fig. 6 is a front view of the present invention.
Fig. 7 is a cross-sectional view taken along line B-B of fig. 6.
Fig. 8 is an enlarged view of fig. 7 at B.
Fig. 9 is a cross-sectional view taken along line C-C of fig. 6.
Fig. 10 is an enlarged view of fig. 9 at C.
Fig. 11 is a cross-sectional view taken along line D-D in fig. 6.
Detailed Description
As shown in fig. 1-11, a fluorescent plastic-wood co-extrusion floor comprises a first plate body 1 and a second plate body 3, wherein a first movable cavity 11 is arranged on the first plate body 1, the second plate body 3 is arranged in the first movable cavity 11, fluorescent powder is coated on the second plate body 3, a connecting groove 16 is arranged on the side wall of one side of the first plate body 1, a connecting block 12 matched with the connecting groove 16 is arranged on the side wall of the other side of the first plate body 1, the connecting block 12 is arranged in the first movable cavity 11 in a penetrating manner, and when the second plate body 3 moves downwards, the connecting block 12 moves out of the first movable cavity 11; when the floor is laid, the first bottom plate is laid, the second floor is placed on one side of the first floor, the second plate body is pushed downwards after the two floors are opposite, the first movable cavity on the connecting block moves outwards, so that the connecting block protrudes out of the side wall of the first plate body, the connecting block on the second floor is inserted into the connecting groove on the first floor, the two floors are connected with each other to form a whole, and the mounting stability of the floor is ensured; when one of the floors is damaged and needs to be replaced, the second plate body is detached from the first plate body, the second plate body moves upwards, the connecting block enters the first movable cavity, the connecting block is separated from the connecting groove, the damaged floor can be directly and independently taken out, the surrounding floors do not need to be completely detached, the surrounding floors cannot be damaged, and the phenomenon that the floor with large area is damaged and wasted due to replacement of individual floors is avoided; when a new floor is placed in the vacant position, the connecting block is pushed into the first movable cavity, so that the side wall of the new floor is free of protrusions, the new floor can be directly filled into the vacant position, the influence on surrounding floors is avoided, the floor maintenance difficulty is reduced, and the individual replacement operation of the floor is easier to perform; through the arrangement of the fluorescent powder, the floor can reflect more obvious bright light under the condition of darker light, so that pedestrians can better observe the position of the floor, and the practicability of the floor is improved; under the arrangement of the fluorescent powder, the attractiveness of the floor is improved, and the floor has a wider market.
A movable plate 2 is arranged in the first movable cavity 11, the second plate 3 is arranged on the movable plate 2, a first sliding block 26 is arranged on the side wall of the movable plate 2, and a first sliding groove 120 matched with the first sliding block 26 is arranged on the inner wall of the first movable cavity 11; the first sliding groove is matched with the first sliding block, the movable plate is connected in the first movable cavity, the movable plate is prevented from being separated from the first movable cavity, a cover plate effect is provided for the first movable cavity, and components in the first movable cavity are protected; the second plate body is connected on the fly leaf, can be along with the fly leaf up-and-down motion, and the second plate body replaces the fly leaf to be in first plate body bottom, because the second plate body is the department of directly trampling, and the second plate body damage probability is higher than first plate body, when the second plate body damaged, can be solitary pull down the second plate body from the fly leaf and change, need not to pull out whole floor, reduces the floor and changes the degree of difficulty.
A first connecting plate 14 is hinged to the bottom of the first movable cavity 11, one end of the first connecting plate 14 is hinged to a second connecting plate 15, a first push block 151 is arranged at the other end of the second connecting plate 15, the second connecting plate is hinged to the first push block, a second sliding block is arranged at the bottom of the first push block 151, and a second sliding groove matched with the second sliding block is arranged at the bottom of the first movable cavity 11; under the matching of the second sliding block and the second sliding groove, one end of the second connecting plate can only horizontally move in the first movable cavity; when the movable plate moves downwards, the movable plate abuts against the joint of the first connecting plate and the second connecting plate, the first connecting plate and the second connecting plate are pushed to rotate around the connecting point under the action of the movable plate, the first pushing block abuts against the side wall of the connecting block, the connecting block is pushed out from the first movable cavity, the connecting block is inserted into the connecting groove, the two floors are connected and matched, and the reliability of the floors after installation is guaranteed.
A second pushing block 25 is arranged at the bottom of the movable plate 2, and the second pushing block 25 is arranged above the joint of the first connecting plate 14 and the second connecting plate 15; a plurality of supporting blocks 22 are arranged at the bottom of the movable plate 2, a through groove 24 is further formed in the movable plate 2, and a first groove 122 is formed in the top of the connecting block 12; under the arrangement of the second pushing block, the contact effect of the movable plate with the first connecting plate and the second connecting plate is improved, and when the connecting block extends out of the first movable cavity, the first groove is positioned below the through groove; when one of the floors needs to be replaced, the second plate body is pushed upwards, the second plate body drives the movable plate to move upwards, the second pushing block does not abut against the first connecting plate and the second connecting plate any more, after the second pushing block moves to the position above the first connecting plate and the second connecting plate, the connecting block is pushed to move under the action of the first groove, the connecting block enters the first movable cavity, and the connecting block is separated from the connecting groove, so that the damaged floor can be taken out independently, the damage to the peripheral floor is avoided, and the floor maintenance cost is reduced; under logical groove and first recess setting, provide the impetus for the removal of connecting block, make the connecting block can be convenient to enter into first activity intracavity and deviate from in the spread groove after losing the holding power to do the maintenance to the floor that damages alone.
A second movable cavity 17 is arranged at the bottom of the first movable cavity 11, a transmission plate 19 is arranged in the second movable cavity 17, the middle part of the transmission plate 19 is rotatably connected in the second movable cavity 17, a third push block 18 is arranged at one end of the transmission plate 19, a fourth push block 110 is arranged at the other end of the transmission plate 19, and the third push block 18 and the fourth push block 110 are respectively arranged in the second movable cavity 17 in a penetrating manner; when the second plate body drives the movable plate to move downwards, the movable plate pushes the third pushing block to move downwards, the third pushing block pushes one end of the transmission plate to move downwards, the middle of the transmission plate rotates, the fourth pushing block extends out of the second movable cavity, the fourth pushing block extends out and then is located on one side of the connecting block, supporting force is provided for the connecting block, the connecting block is in a continuous extending state, the matching effect of the connecting block and the connecting groove is guaranteed, the connection cooperation between adjacent floors is formed, and the reliability of the floor in use is guaranteed.
The bottom of the movable plate 2 is provided with a fifth push block 23 matched with the third push block 18, the third push block 18 is provided with a support spring 183, the support spring 183 is provided with a support plate 182, the third push block 18 is provided with a third movable cavity 181, the support plate 182 is provided with a connecting rod 184, the connecting rod 184 penetrates through the third movable cavity 181, the bottom of the connecting rod 184 is provided with a limit plate 185, and the support plate 182 is connected with the fifth push block 23 through a connecting rope; the supporting spring and the supporting plate provide a reserved space for the movable plate, so that the movable plate can still move downwards when the connecting block is positioned at the top of the fourth pushing block, and the connecting block can be normally pushed out of the first movable cavity under the action of the movable plate; when the damaged floor is disassembled, the movable plate is pulled upwards, the movable plate moves to the position above the third pushing block, the movable plate continues to move, the third pushing block is pulled to move upwards under the action of the connecting rope, the third pushing block drives one end of the transmission plate to move upwards, the fourth pushing block enters the second movable cavity, the fourth pushing block is moved away from one side of the connecting block, the connecting block can be directly pushed to move, and the connecting block is separated from the connecting groove, so that the floor can be disassembled independently; under the cooperation of the third movable cavity and the limiting plate, the supporting spring is protected, and the supporting spring is prevented from being damaged by excessive stretching, so that the movable plate drives the third pushing block to move upwards when moving upwards, and the connecting block can move freely.
The connecting block 12 is made of an elastic material, a cavity 121 is formed in the connecting block 12, a third sliding groove 123 is formed in the bottom of the connecting block 12, and a third sliding block 130 matched with the third sliding groove 123 is arranged at the bottom of the first movable cavity 11; the third sliding block and the third sliding groove are matched with each other to connect the connecting block into the first movable cavity, and the maximum moving distance of the connecting block is limited, so that the connecting block is prevented from being separated from the first movable cavity, and two adjacent floors are connected under the action of the connecting block; after the connecting block inserted in the spread groove, connecting block one end supported in the spread groove, and the connecting block received to produce deformation after the extrusion, and the cavity lateral part supports on the spread groove inner wall, promotes the linkage effect of connecting block and spread groove.
A second groove is formed in the second plate body 3, a cover plate 31 is rotatably connected in the second groove, a first connecting hole 32 is formed in the second groove, a second connecting hole 21 is formed in the movable plate 2, a third connecting hole 13 is formed in the first plate body 1, and a third groove 311 matched with the first connecting hole 32 is formed in the bottom of the cover plate 31; after the positions of the floors are determined, the second plate body is placed at the top of the movable plate, the first connecting hole, the second connecting hole and the third connecting hole are aligned, a fixing bolt is inserted into the first connecting hole, the second plate body is fixed on the movable plate under the action of the fixing bolt, then the bolt penetrates out of the third connecting hole, the floors are fixed on the keel, the second plate body moves downwards along with the rotation of the bolt, the connecting block is pushed out from the first movable cavity, and the two floors are connected; when the bolt is inserted into the first connecting hole, the cover plate is turned to be in a vertical state, after the bolt is connected, the cover plate is turned down to be in a horizontal state, the cover plate covers the second groove, the bolt is protected under the action of the cover plate, and the corrosion of the outside to the bolt is reduced; the rubber pad is arranged on the side wall of the cover plate to increase the matching effect of the cover plate and the second groove.
When one of the floors is damaged, the damaged floor and the bolts laid on the floor at the front side of the damaged floor are detached, the damaged floor can be independently taken out under the condition that other floors are not damaged, the floor with the bolts detached from one side of the damaged floor cannot be influenced, damage to the peripheral floor caused by maintenance operation is avoided, the floor maintenance difficulty is reduced, and waves caused by maintenance are reduced.

Claims (8)

1. The fluorescent plastic-wood co-extrusion floor is characterized in that: including first plate body (1) and second plate body (3), be equipped with first activity chamber (11) on first plate body (1), second plate body (3) are located in first activity chamber (11), the phosphor powder has been paintd on second plate body (3), be equipped with spread groove (16) on the lateral wall of first plate body (1) one side, be equipped with on the opposite side lateral wall with spread groove (16) matched with connecting block (12), connecting block (12) are worn to locate in first activity chamber (11), work as when second plate body (3) are down moved, connecting block (12) are past first activity chamber (11) outer mobile.
2. The fluorescent plastic-wood co-extruded floor as claimed in claim 1, wherein: be equipped with fly leaf (2) in first activity chamber (11), second plate body (3) are located on fly leaf (2), be equipped with first slider (26) on fly leaf (2) lateral wall, be equipped with on first activity chamber (11) inner wall with first slider (26) matched with first spout (120).
3. The fluorescent plastic-wood co-extruded floor as claimed in claim 2, wherein: first activity chamber (11) bottom swing joint has first connecting plate (14), first connecting plate (14) one end swing joint has second connecting plate (15), second connecting plate (15) other end is equipped with first ejector pad (151), first ejector pad (151) bottom is equipped with the second slider, first activity chamber (11) bottom be equipped with second slider matched with second spout.
4. The fluorescent plastic-wood co-extruded floor as claimed in claim 3, wherein: a second pushing block (25) is arranged at the bottom of the movable plate (2), and the second pushing block (25) is arranged above the connection position of the first connecting plate (14) and the second connecting plate (15); the bottom of the movable plate (2) is provided with a plurality of supporting blocks (22), the movable plate (2) is further provided with a through groove (24), and the top of the connecting block (12) is provided with a first groove (122).
5. The fluorescent plastic-wood co-extruded floor as claimed in claim 4, wherein: first activity chamber (11) bottom is equipped with second activity chamber (17), be equipped with driving plate (19) in second activity chamber (17), driving plate (19) middle part rotatable coupling in second activity chamber (17), driving plate (19) one end is equipped with third ejector pad (18), and the other end is equipped with fourth ejector pad (110), third ejector pad (18) with fourth ejector pad (110) are worn to locate respectively in second activity chamber (17).
6. The fluorescent plastic-wood co-extruded floor as claimed in claim 5, wherein: fly leaf (2) bottom be equipped with third ejector pad (18) matched with fifth ejector pad (23), be equipped with supporting spring (183) on third ejector pad (18), be equipped with backup pad (182) on supporting spring (183), be equipped with third activity chamber (181) on third ejector pad (18), be equipped with connecting rod (184) on backup pad (182), connecting rod (184) are worn to locate in third activity chamber (181), connecting rod (184) bottom is equipped with limiting plate (185), backup pad (182) with fifth ejector pad (23) link to each other through a connecting rope.
7. The fluorescent plastic-wood co-extruded floor as claimed in claim 1, wherein: the connecting block (12) is made of elastic materials, a cavity (121) is formed in the connecting block (12), a third sliding groove (123) is formed in the bottom of the connecting block (12), and a third sliding block (130) matched with the third sliding groove (123) is arranged at the bottom of the first movable cavity (11).
8. The fluorescent plastic-wood co-extruded floor as claimed in claim 2, wherein: be equipped with the second recess on the second plate body (3), rotatable coupling has apron (31) in the second recess, be equipped with first connecting hole (32) on the second recess, be equipped with second connecting hole (21) on fly leaf (2), be equipped with third connecting hole (13) on first plate body (1), apron (31) bottom be equipped with first connecting hole (32) matched with third recess (311).
CN202022068069.1U 2020-09-19 2020-09-19 Fluorescent plastic-wood co-extrusion floor Active CN216109523U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022068069.1U CN216109523U (en) 2020-09-19 2020-09-19 Fluorescent plastic-wood co-extrusion floor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022068069.1U CN216109523U (en) 2020-09-19 2020-09-19 Fluorescent plastic-wood co-extrusion floor

Publications (1)

Publication Number Publication Date
CN216109523U true CN216109523U (en) 2022-03-22

Family

ID=80685643

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022068069.1U Active CN216109523U (en) 2020-09-19 2020-09-19 Fluorescent plastic-wood co-extrusion floor

Country Status (1)

Country Link
CN (1) CN216109523U (en)

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