CN211673935U - Walk-in screen - Google Patents

Walk-in screen Download PDF

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Publication number
CN211673935U
CN211673935U CN201922158298.XU CN201922158298U CN211673935U CN 211673935 U CN211673935 U CN 211673935U CN 201922158298 U CN201922158298 U CN 201922158298U CN 211673935 U CN211673935 U CN 211673935U
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China
Prior art keywords
plate
profile
walk
screen according
pull rod
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CN201922158298.XU
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Chinese (zh)
Inventor
蔡建农
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Hangzhou Clean Dell Sanitary Ware Co ltd
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Hangzhou Clean Dell Sanitary Ware Co ltd
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Priority to CN201922158298.XU priority Critical patent/CN211673935U/en
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Abstract

The utility model relates to a shower room field specifically discloses a step-in screen. The walk-in screen comprises a top supporting frame and a front plate, wherein the top supporting frame comprises a front beam arranged above the front plate, and at least one plate clamp connected with the front plate is arranged on the front beam; one end of the front beam is a fixed end, the top supporting frame further comprises a pull rod which is vertically or obliquely arranged relative to the front beam, one end of the pull rod is a fixed end, and the other end of the pull rod is connected with the position, far away from the fixed end, of the front beam; the length of the pull rod is adjustable. The step-in screen is more flexible in space adjustment during installation and can better adapt to the space requirements of bathrooms with different areas and sizes for the shower room.

Description

Walk-in screen
Technical Field
The utility model relates to a shower room field, concretely relates to walk-in screen.
Background
With the improvement of the quality of life, the independent shower room arranged in the toilet room becomes the first choice for decoration of people more and more. However, after the independent shower room is arranged, the space in the toilet is narrow, especially for small-sized households, the space for arranging the shower room is limited, and the arrangement of the closed shower room makes the toilet be very narrow. Therefore, the present invention provides a semi-open screen to reduce the occupancy rate of the space on the premise of realizing the dry-wet separation to a certain degree, aiming at the above disadvantages of the existing closed shower room.
Disclosure of Invention
The to-be-solved technical problem of the utility model is to provide a step-in screen, space adjustment is more nimble during the installation, can be better adapt to the space demand of bathroom of the not equidimension bathroom of area.
In order to solve the technical problem, the utility model provides a technical scheme as follows: a walk-in screen comprises a top supporting frame and a front plate, wherein the top supporting frame comprises a front beam arranged above the front plate, and the front beam is provided with at least one plate clamp connected with the front plate; one end of the front beam is a fixed end, the top supporting frame further comprises a pull rod which is vertically or obliquely arranged relative to the front beam, one end of the pull rod is a fixed end, and the other end of the pull rod is connected with the position, far away from the fixed end, of the front beam; the length of the pull rod is adjustable.
The space size separated by the balance is flexibly adjusted by adjusting the length of the pull rod, so that the shower room can better adapt to the space requirements of toilets with different areas and sizes.
Preferably, the pull rod comprises a first rod piece and a second rod piece, the first rod piece is inserted into the second rod piece and is connected with the second rod piece in a sliding mode along the length direction, and a fastening device is arranged between the first rod piece and the second rod piece.
Preferably, the front side surface and/or the rear side surface of the plate clip are/is provided with accommodating grooves extending along the vertical direction; the lower end of the hook extends into the accommodating groove and is movably connected with the plate clamp in a rotating manner, and the lower end of the hook is provided with an abutting part corresponding to the bottom surface of the accommodating groove; and at least one side wall of the accommodating groove is provided with an elastic pressing block corresponding to the side surface of the hook. The storage tank can play the effect of accomodating to the couple, reduces holistic space and occupies, and under the state of packing up, elasticity compact heap extrusion deformation compresses tightly the couple, guarantees that it does not break away from and moves about in arranging the storage tank in. When the object needs to be hung, the hook is pulled to rotate in the accommodating groove until the abutting part is contacted with the bottom of the accommodating groove. The hook on the plate clamp increases the function of hooking objects on the premise of not influencing the normal connection function as much as possible.
Preferably, the profile connecting assembly further comprises a profile connecting assembly, the profile connecting assembly comprises a first profile and a second profile, the first profile is provided with a first clamping arm and a second clamping arm which extend along the length direction, a clamping space is formed between the first clamping arm and the second clamping arm, and the second profile is partially or completely inserted into the clamping space; one side of the second section bar is arranged in a manner of clinging to the first clamping arm, and a clamping space is formed between the other side of the second section bar and the second clamping arm; the front end of the elastic fixing piece is inserted into the clamping space, and the elastic fixing piece extrudes and deforms and presses the second sectional material and the first clamping arm; one side that the front bezel corresponds with the front beam stiff end is equipped with section bar coupling assembling.
The first section bar and the second section bar are compressed by elastic force generated by extrusion deformation of the elastic fixing piece, so that connection is realized. In the process of connecting the first section bar and the second section bar, the second section bar is inserted into the clamping space formed by the first section bar, then the elastic fixing piece is inserted, the connection process is simple and convenient, other auxiliary tools such as a screw or a welding gun are not needed, and the flexible and convenient installation can be carried out on the construction site.
Preferably, the top support frame further comprises a side beam, one end of the side beam is connected with the fixed end of the front beam; the side beam is provided with at least one plate clamp connected with the side plate; one side of the side plate is connected with the front plate through the profile connecting assembly, and one side of the side plate, which is far away from the front plate, is connected with the profile connecting assembly.
Preferably, the two sides of the elastic fixing part are respectively provided with an elastic sheet, and the elastic sheets are perpendicular to the elastic fixing part or inclined towards one end of the elastic fixing part.
Preferably, a plurality of check grooves corresponding to the elastic pieces are distributed on the inner side of the second clamping arm.
During installation, the elastic sheet deforms towards the opening end of the clamping space along with the insertion of the elastic fixing piece, and provides pressing force for connection between the first profile and the second profile. After the installation is accomplished, when receiving between first section bar and the second section bar that external force has the separation trend, the flexure strip expands under the frictional force effect, hinders first section bar and second section bar separation, also the setting of flexure strip can play the effect of stopping. The arrangement of the check groove can be matched with the elastic sheet to work, so that the check effect of the elastic sheet is enhanced.
Preferably, a positioning plate extending along the length direction of the first section bar is fixedly arranged in the clamping space; the telescopic adjusting assembly comprises a plurality of adjusting rods arranged on the second sectional material, and the adjusting rods are distributed along the length direction of the second sectional material; one end of the adjusting rod corresponds to the positioning plate, and the adjusting rod can be axially adjusted relative to the second section bar. Through adjusting the relative position between regulation pole and the locating plate, can adjust the degree of depth that the second section bar inserted the centre gripping space, and then adjust the relative position between first section bar and the second section bar.
Preferably, a rotating piece is rotatably and movably connected to one side of the front plate corresponding to the free end of the front beam. When the rotating sheet rotates to be parallel to the front plate, the rotating sheet can be folded and stored, or the width of the front plate is prolonged, (depending on the direction of the rotating sheet) when the rotating sheet rotates to be perpendicular to the front plate, the effect of a door plate can be achieved, and water splashing out of a shower room area in the shower process is reduced.
Preferably, the front plate is provided with a rotary connection assembly, the rotary connection assembly comprises two groups of rotary shafts which are positioned on the side surface of the front plate corresponding to the pull rod, the two groups of rotary shafts are arranged in an up-and-down symmetrical manner, and the rotary sheet is positioned between the two groups of rotary shafts and is connected with the front plate through the rotary shafts; the rotary connecting component also comprises at least one group of directional blocks which are coaxially arranged with the rotating shaft, and a plurality of radially arranged directional grooves or directional convex ribs are arranged on the directional blocks; the rotary plate is provided with an orientation part corresponding to the orientation groove or the orientation convex rib.
Drawings
FIG. 1 is a schematic view of a step-in screen according to a first embodiment of the present invention;
FIG. 2 is an exploded view of a connecting structure of a top support frame and a pull rod in a step-in screen according to a first embodiment of the present invention;
FIG. 3 is a schematic view of a plate clip of the step-in screen of the present embodiment;
FIG. 4 is a schematic structural view of the plate clip of the step-in screen of this embodiment in an unfolded state;
FIG. 5 is an exploded view of a panel clip of the step-in screen of the present embodiment;
FIG. 6 is a schematic structural diagram of a first form of a connecting member for sectional materials in a step-in screen according to the present embodiment;
FIG. 7 is an exploded view of a first form of the connecting member of the sectional materials in the step-in screen of the present embodiment;
FIG. 8 is an exploded view of a second form of the connecting member of the sectional materials in the step-in screen of the present embodiment;
FIG. 9 is a schematic structural diagram of a second form of the connecting member for the sectional materials in the step-in screen according to the present embodiment;
FIG. 10 is an exploded view of a third form of the connecting member of the sectional material in the step-in screen according to the present embodiment;
FIG. 11 is a schematic structural view of a third form of the connecting member for the sectional materials in the step-in screen according to the present embodiment;
FIG. 12 is a schematic structural view of a fourth form of the connecting member for the sectional materials in the step-in screen according to the present embodiment;
fig. 13 is an exploded view of a fourth form of the connecting member of the sectional material in the step-in screen according to the present embodiment;
FIG. 14 is a schematic view of a step-in screen according to a second embodiment of the present invention;
FIG. 15 is a schematic view of a step-in screen according to a third embodiment of the present invention;
FIG. 16 is a schematic view of a connecting structure of a rotary plate and a front plate of a step-in screen according to a third embodiment of the present invention;
FIG. 17 is a schematic view of a rotary connecting component of a step-in screen according to a third embodiment of the present invention;
FIG. 18 is a schematic view of a third embodiment of the present invention showing a positioning portion of a door panel of a walk-in screen;
fig. 19 is a schematic structural view of a step-in screen according to a fourth embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Example one
As shown in fig. 1 and 2, a walk-in screen comprises a top supporting frame and a front plate 20, wherein the top supporting frame comprises a front beam 60 arranged above the front plate 20, and at least one plate clamp 601 connected with the front plate 20 is arranged on the front beam 60; one end of the front beam 60 is a fixed end, the top support frame further comprises a pull rod 50 vertically or obliquely arranged relative to the front beam 60, one end of the pull rod 50 is a fixed end, and the other end of the pull rod is connected with the front beam 60 at a position far away from the fixed end. The pull rod 50 comprises a first rod 501 and a second rod 502, the first rod 501 is inserted into the second rod 502 and is connected with the second rod 502 in a sliding mode along the length direction, and a fastening device 506 is arranged between the first rod 501 and the second rod 502.
The space size separated by the balance can be flexibly adjusted by adjusting the length of the pull rod 50 so as to better adapt to the space requirements of toilets with different areas and sizes for the shower room.
As shown in fig. 2, one end of the pull rod 50 corresponding to the front beam 60 is provided with a front joint 504, and the other end is provided with an installation joint 503 connected with the wall surface; the front joint 504 is provided with a cover plate 505 connected with the end of the free end of the front beam 60. Since the front beam 60 is made of a section bar, most of the front beam is of a hollow structure, the cover plate 505 can be connected with the front beam 60 and can play a decorative role in the end parts of the two ends of the front beam 60.
Further, as shown in fig. 3 to 5, a containing groove 604 extending in the vertical direction is provided on the front side surface and/or the rear side surface of the plate clip 601, and the containing groove 604 penetrates through the plate clip 601 in the vertical direction, so as to leave a sufficient space for the connection and movement of the hook 603. The plate clamp is characterized by further comprising a hook 603 matched with the accommodating groove 604, the lower end of the hook 603 extends into the accommodating groove 604 and is rotatably and movably connected with the plate clamp 601, an abutting portion 606 corresponding to the bottom surface of the accommodating groove 604 is arranged at the lower end of the hook 603, and a supporting block 605 corresponding to the abutting portion is arranged at the bottom of the accommodating groove 604. At least one side wall of the accommodating groove 604 is provided with an elastic pressing block 602 corresponding to the side surface of the hook 603.
The accommodating groove 604 can accommodate the hook 603, overall space occupation is reduced, and in the retracted state, the elastic pressing block 602 is extruded and deformed to press the hook 603, so that the hook is prevented from being separated and moving in the accommodating groove 604. When the object needs to be hung, the hook 603 is pulled to rotate from the accommodating groove 604 until the abutting part 606 contacts with the supporting block 604 at the bottom of the accommodating groove 604. The hook on the plate clamp 601 increases the function of hooking objects on the premise of not influencing the normal connection function as much as possible.
Further, as shown in fig. 6 to 9, a profile connecting assembly 10 is disposed on a side of the front plate 20 corresponding to the fixed end of the front beam 60, and the profile connecting assembly 10 includes a first profile 1, a second profile 2 and an elastic fixing member 3. The first profile 1 is provided with a first clamping arm 11 and a second clamping arm 13 which extend along the length direction, a clamping space 14 is formed between the first clamping arm 11 and the second clamping arm 13, and a plurality of check grooves 12 are distributed on the inner side of the second clamping arm 13.
As shown in fig. 6 to 9, the second section bar 2 is partially or completely inserted into the clamping space 14, one side of the second section bar 2 is closely attached to the first clamping arm 11, and the other side and the second clamping arm 13 form a clamping space 5. When the width of the second profile 2 is small, i.e. the width is smaller than the width of the clamping space 14, the second profile 2 can be inserted completely into the clamping space 14. When the second profile 2 needs to be provided with a larger width, the second profile 2 may be provided in two parts, one part being inserted into the clamping space 14 as a connecting part, and in addition, an expansion arm 22 is provided on the connecting part, and the first clamping arm 11 is inserted between the expansion arm 22 and the connecting part.
As shown in fig. 6 to 9, the elastic fixing member 3 includes a base 33 and elastic pieces 32 disposed on two sides of the base 33, and the elastic pieces 32 are disposed perpendicular to the base 33 or inclined toward one end of the elastic fixing member 3. The elastic fixing piece 3 is inserted into the clamping space 5 and is extruded and deformed to press the second section bar 2 and the first clamping arm 11. One end of the base body 33 is connected with a sealing lip 31, the width of the sealing lip 31 is larger than that of the clamping space 5, and the sealing lip 31 is used for shielding and sealing the opening of the clamping space 5 after the installation is completed. During installation, with the insertion of the elastic fixing element 3, the elastic strip 32 is deformed in the direction of the open end of the clamping space 14 and provides a pressing force for the connection between the first profile 1 and the second profile 2. In the process of connecting the first section bar 1 and the second section bar 2, the second section bar 2 is firstly inserted into the clamping space 14 formed by the first section bar 1, and then the elastic fixing piece 3 is inserted, so that the connection process is simple and convenient, other auxiliary tools such as a screw or a welding gun are not needed, and the flexible and convenient installation can be carried out on a construction site. When the first profile 1 and the second profile 2 are separated from each other by an external force, the elastic sheet 32 expands under the action of friction force to prevent the first profile 1 from being separated from the second profile 2, i.e., the elastic sheet 32 can have a backstopping effect. And the arrangement of the inner side check groove 12 of the second clamping arm 13 can cooperate with the elastic sheet 32 to enhance the retaining effect of the elastic sheet 32.
For the connection with the front plate 20, a plug-in groove 4 is provided on the first profile 1 or the second profile 2, preferably the plug-in groove 4 is provided on the second profile 2, the first profile 1 is used for connecting with a wall surface, so that the opening of the clamping space 14 can be deviated from the wall surface, and the insertion of the elastic fixing element 3 is more convenient.
Furthermore, as shown in fig. 10 to 13, a positioning plate 15 extending along the length direction of the first profile 1 is fixedly arranged in the clamping space 14; the telescopic adjusting component comprises a plurality of adjusting rods 7 arranged on the second section bar 2, and the adjusting rods 7 are distributed along the length direction of the second section bar 2; one end of the adjusting rod 7 corresponds to the positioning plate 15, and the adjusting rod 7 can be axially adjusted relative to the second section bar 2. By adjusting the relative position between the adjusting rod 7 and the positioning plate 15, the depth of the second profile 2 inserted into the clamping space 14 can be adjusted, and the relative position between the first profile 1 and the second profile 2 can be adjusted.
As shown in fig. 10 to 13, the second profile 2 includes a first limiting arm 21 and a second limiting arm 23, the telescopic adjusting assembly further includes an adjusting base 6 fixedly disposed between the first limiting arm 21 and the second limiting arm 23, and the adjusting rod 7 is connected to the second profile 2 through the adjusting base 6. The profile is usually hollow in order to reduce the weight, and the arrangement of the adjusting base 6 can improve the connection reliability of the adjusting rod 7 and the second profile 2, and can also effectively ensure the adjusting precision. Specifically, adjust pole 7 and set up to the screw rod, and the one end of keeping away from locating plate 15 at the screw rod sets up the fluting for with adjusting screw, set up the screw hole that matches with the screw rod on adjusting base 6, set up the handle hole that corresponds with the screw hole on the second section bar 2, the screwdriver of being convenient for inserts threaded hole adjusting screw. In order to ensure the aesthetic appearance and not to influence the movement of the connecting part on the second section bar 2, the slotted end of the screw is completely arranged in the threaded hole.
Example two
Compared with the first embodiment, as shown in fig. 14, the present embodiment is different in that the roof support frame further includes a side beam 70, and one end of the side beam 70 is connected to the fixed end of the front beam 60; the side beam structure further comprises a side plate 40 arranged below the side beam 70, wherein at least one plate clamp 601 connected with the side plate 40 is arranged on the side beam 70; one side of curb plate 40 is connected with front bezel 20 through section bar coupling assembling 10, just one side that front bezel 20 was kept away from to curb plate 40 is connected with section bar coupling assembling 10.
Correspondingly, as shown in fig. 8 and 9, the first profile 1 in the profile connecting assembly 10 disposed between the front plate 20 and the side plate 40 needs to be provided with the inserting groove 4 connected with the side plate 40.
EXAMPLE III
Compared with the first embodiment, as shown in fig. 15, the present embodiment is different in that a rotary piece 30 is rotatably and movably connected to one side of the front plate 20 corresponding to the free end of the front beam 60. When the rotor 30 rotates to be parallel to the front plate 20 and is deviated to the inner side, the rotor 30 can be folded and stored, when the rotor 30 rotates to be parallel to the front plate 20 and is deviated to the inner side, the width of the front plate 20 can be prolonged, and when the rotor 30 rotates to be perpendicular to the front plate 20, the effect of a door plate can be achieved, and water splashing out of a shower room area in a shower process is reduced.
As shown in fig. 16 to 18, the front plate 20 is provided with a rotation connection assembly 80, the rotation connection assembly 80 includes two sets of rotation shafts 801 located on the side surface of the front plate 20 corresponding to the pull rod 50, the two sets of rotation shafts 801 are arranged in an up-down symmetrical manner, and the rotor 30 is located between the two sets of rotation shafts 801 and connected with the front plate 20 through the rotation shafts 801. The rotating connection assembly 80 further comprises at least one group of orientation blocks 802 coaxially arranged with the rotating shaft 801, the rotation shaft below the orientation blocks 802 is preferably sleeved with orientation portions 301, the orientation blocks 802 are provided with a plurality of orientation grooves 803 or orientation ribs, the rotor 30 is provided with orientation portions 301 corresponding to the orientation grooves 803 or the orientation ribs, after the installation is completed, the orientation portions 301 are matched with the corresponding orientation grooves 803 or the orientation ribs to determine the orientation of the rotor 30 and limit the rotation, and when a steering driving force is applied to the rotor 30, the orientation portions 301 move to be matched with the adjacent orientation grooves 803 or the orientation ribs and are located at the same time.
Example four
Compared with the embodiment, the difference of the embodiment is that, as shown in fig. 19, the rotating plate 30 is rotatably and movably connected to one side of the front plate 20 corresponding to the free end of the front beam 60. When the rotor 30 rotates to be parallel to the front plate 20 and is deviated to the inner side, the rotor 30 can be folded and stored, when the rotor 30 rotates to be parallel to the front plate 20 and is deviated to the inner side, the width of the front plate 20 can be prolonged, and when the rotor 30 rotates to be perpendicular to the front plate 20, the effect of a door plate can be achieved, and water splashing out of a shower room area in a shower process is reduced.
As shown in fig. 16 to 18, the front plate 20 is provided with a rotation connection assembly 80, the rotation connection assembly 80 includes two sets of rotation shafts 801 located on the side surface of the front plate 20 corresponding to the pull rod 50, the two sets of rotation shafts 801 are arranged in an up-down symmetrical manner, and the rotor 30 is located between the two sets of rotation shafts 801 and connected with the front plate 20 through the rotation shafts 801. The rotating connection assembly 80 further comprises at least one group of orientation blocks 802 coaxially arranged with the rotating shaft 801, the rotation shaft below the orientation blocks 802 is preferably sleeved with orientation portions 301, the orientation blocks 802 are provided with a plurality of orientation grooves 803 or orientation ribs, the rotor 30 is provided with orientation portions 301 corresponding to the orientation grooves 803 or the orientation ribs, after the installation is completed, the orientation portions 301 are matched with the corresponding orientation grooves 803 or the orientation ribs to determine the orientation of the rotor 30 and limit the rotation, and when a steering driving force is applied to the rotor 30, the orientation portions 301 move to be matched with the adjacent orientation grooves 803 or the orientation ribs and are located at the same time.
In summary, the above description is only a preferred embodiment of the present invention and should not be taken as limiting the invention, and any modifications, equivalents and improvements made within the spirit and principles of the present invention should be included within the scope of the present invention.

Claims (10)

1. A step-in screen is characterized in that: the top supporting frame comprises a front beam arranged above the front plate, and at least one plate clamp connected with the front plate is arranged on the front beam; one end of the front beam is a fixed end, the top supporting frame further comprises a pull rod which is vertically or obliquely arranged relative to the front beam, one end of the pull rod is a fixed end, and the other end of the pull rod is connected with the position, far away from the fixed end, of the front beam; the length of the pull rod is adjustable.
2. A walk-in screen according to claim 1, wherein: the pull rod comprises a first rod piece and a second rod piece, the first rod piece is inserted into the second rod piece and is connected with the second rod piece in a sliding mode along the length direction, and a fastening device is arranged between the first rod piece and the second rod piece.
3. A walk-in screen according to claim 1, wherein: the front side surface and/or the rear side surface of the plate clamp are/is provided with a containing groove extending along the vertical direction; the lower end of the hook extends into the accommodating groove and is movably connected with the plate clamp in a rotating manner, and the lower end of the hook is provided with an abutting part corresponding to the bottom surface of the accommodating groove; and at least one side wall of the accommodating groove is provided with an elastic pressing block corresponding to the side surface of the hook.
4. A walk-in screen according to claim 1, wherein: the profile connecting assembly comprises a first profile and a second profile, a first clamping arm and a second clamping arm which extend along the length direction are arranged on the first profile, a clamping space is formed between the first clamping arm and the second clamping arm, and the second profile is partially or completely inserted into the clamping space; one side of the second section bar is arranged in a manner of clinging to the first clamping arm, and a clamping space is formed between the other side of the second section bar and the second clamping arm; the front end of the elastic fixing piece is inserted into the clamping space, and the elastic fixing piece extrudes and deforms and presses the second sectional material and the first clamping arm;
one side that the front bezel corresponds with the front beam stiff end is equipped with section bar coupling assembling.
5. A walk-in screen according to claim 4, wherein: the top support frame also comprises a side beam, and one end of the side beam is connected with the fixed end of the front beam; the side beam is provided with at least one plate clamp connected with the side plate; one side of the side plate is connected with the front plate through the profile connecting assembly, and one side of the side plate, which is far away from the front plate, is connected with the profile connecting assembly.
6. A walk-in screen according to claim 4 or 5, wherein: the two sides of the elastic fixing piece are respectively provided with an elastic sheet, and the elastic sheets are perpendicular to the elastic fixing piece or incline towards one end of the elastic fixing piece.
7. A walk-in screen according to claim 6, wherein: and a plurality of check grooves corresponding to the elastic sheets are distributed on the inner side of the second clamping arm.
8. A walk-in screen according to claim 4, 5 or 7, wherein: a positioning plate extending along the length direction of the first section bar is fixedly arranged in the clamping space; the telescopic adjusting assembly comprises a plurality of adjusting rods arranged on the second sectional material, and the adjusting rods are distributed along the length direction of the second sectional material; one end of the adjusting rod corresponds to the positioning plate, and the adjusting rod can be axially adjusted relative to the second section bar.
9. A walk-in screen according to any one of claims 1 to 5 and 7, wherein: and a rotating sheet is rotatably and movably connected to one side of the front plate corresponding to the free end of the front beam.
10. A walk-in screen according to claim 9, wherein: the front plate is provided with a rotary connecting assembly, the rotary connecting assembly comprises two groups of rotating shafts which are positioned on the side surface of the front plate corresponding to the pull rod, the two groups of rotating shafts are arranged in an up-and-down symmetrical manner, and the rotating sheet is positioned between the two groups of rotating shafts and is connected with the front plate through the rotating shafts; the rotary connecting component also comprises at least one group of directional blocks which are coaxially arranged with the rotating shaft, and a plurality of radially arranged directional grooves or directional convex ribs are arranged on the directional blocks; the rotary plate is provided with an orientation part corresponding to the orientation groove or the orientation convex rib.
CN201922158298.XU 2019-12-05 2019-12-05 Walk-in screen Active CN211673935U (en)

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Application Number Priority Date Filing Date Title
CN201922158298.XU CN211673935U (en) 2019-12-05 2019-12-05 Walk-in screen

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Application Number Priority Date Filing Date Title
CN201922158298.XU CN211673935U (en) 2019-12-05 2019-12-05 Walk-in screen

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Publication Number Publication Date
CN211673935U true CN211673935U (en) 2020-10-16

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Application Number Title Priority Date Filing Date
CN201922158298.XU Active CN211673935U (en) 2019-12-05 2019-12-05 Walk-in screen

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2618881A (en) * 2022-03-04 2023-11-22 Merlyn Industries Ltd A bracing element for securing a panel to a wall, and to a coupling system for coupling

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2618881A (en) * 2022-03-04 2023-11-22 Merlyn Industries Ltd A bracing element for securing a panel to a wall, and to a coupling system for coupling

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