Lifting rotating shaft door and shower room

By using plastic bushings and annular guide surface structures in the lifting shaft device, the problems of wear and noise caused by metal contact are solved, achieving smooth operation and durability of the rotating shaft.

CN223753944UActive Publication Date: 2026-01-02FOSHAN JINZEZHISHENG HIGH-TECH CO LTD
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Patent Information

Application Number
CN202522528361.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-28
Publication Date
2026-01-02
Estimated Expiration
2035-11-28

AI Technical Summary

Technical Problem

In existing lifting pivot devices, the metal rotating shaft directly rotates in contact with the pivot hole of the door frame profile, which easily generates friction noise and may cause wear between mating parts after long-term use.

Method used

A plastic bushing is used to replace the direct contact between the metal shaft and the profile. By setting the first plastic bushing between the rotating shaft and the shaft hole of the profile, direct friction between the metal and the aluminum is avoided, and the smooth linkage between rotation and lifting is achieved through the guide surface of the annular continuous undulating structure.

Benefits of technology

It significantly reduces wear and noise, improves the concentricity of the rotating shaft, ensures smooth and stable door operation, and has a compact and durable structure, preventing eccentric wear caused by the weight of the glass.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pivot doors, and particularly discloses a lifting pivot door and a shower room, the lifting pivot door comprises a first door frame assembly fixed on a wall body, movable glass and a rotary lifting assembly arranged at the lower end of the first door frame assembly; a first profile of the first door frame assembly is provided with a shaft hole and a first clamping groove, and one end of movable glass is inserted into the first clamping groove. The rotary lifting assembly comprises a first fixed seat, a first lifting shaft core, a first rotary shaft, a second lifting shaft core, a first plastic shaft sleeve and a first movable seat; the first plastic shaft sleeve is arranged between the first rotating shaft and the shaft hole of the first profile, so that direct friction between metal and aluminum is effectively avoided, and abrasion and noise are remarkably reduced; and the concentricity of the rotating shaft is improved, eccentric abrasion caused by the dead weight of glass is prevented, and it is ensured that the door body operates stably and smoothly, and the structure is compact and durable.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a rotating shaft door technical field, especially a kind of lifting rotating shaft door and bathroom. BACKGROUND

[0002] Lifting rotating shaft door is usually installed in bathroom, and lifting rotating shaft device is usually added to its lower rotating shaft position, so that rotating shaft door can realize rotation and lifting motion during opening process.

[0003] In prior art, for example, a kind of buffer lifting rotating shaft device disclosed in Chinese patent publication No.CN217439781U, the device includes mounting seat, buffer assembly, rotating shaft assembly and lifting assembly. Among them, buffer assembly is fixed in mounting seat, mounting seat is provided with rotating shaft hole, and lifting assembly is installed in rotating shaft hole;Rotating shaft assembly includes rotating shaft, and the rotating shaft can rotate in rotating shaft hole;Lifting assembly is provided with first rotating lifting piece, which can drive rotating shaft door to rise or descend when rotating.

[0004] However, the rotating shaft of metal material of this kind of prior art lifting rotating shaft device is directly in contact with rotating shaft hole of door frame profile, which is easy to produce friction noise, and long-term use can cause wear between matching components. UTILITY MODEL CONTENTS

[0005] In view of the above shortcomings of prior art, the purpose of the utility model is to provide a kind of lifting rotating shaft door and bathroom to solve the above problems.

[0006] A kind of lifting rotating shaft door, comprising:

[0007] First door frame component, fixed to wall body, including first profile, the first profile is provided with vertical shaft hole and first clamping groove;

[0008] Movable glass, one end of the movable glass is inserted into the first clamping groove;

[0009] Rotary lifting assembly is arranged at the lower end of the first door frame component, comprising first fixed seat, first lifting shaft core, first rotating shaft, second lifting shaft core, first plastic shaft sleeve and first movable seat;The first rotating shaft is fixed to the upper end of the first fixed seat, and the first lifting shaft core and the second lifting shaft core are both sleeved on the first rotating shaft;The lower end of the first lifting shaft core is fixedly connected with the first fixed seat, and the upper end is provided with first lifting guide surface;The upper end of the second lifting shaft core is fixedly connected with the first plastic shaft sleeve, and the lower end is provided with second lifting guide surface which is rotatably connected with the first lifting guide surface;The upper end of the first plastic shaft sleeve passes through the first movable seat and is matched with the shaft hole.

[0010] Specifically, the first lifting guide surface and the second lifting guide surface are both annular continuous undulating structures.

[0011] Specifically, the first movable seat is provided with an insertion part, the first profile is provided with a vertical insertion slot, and the insertion part is vertically fitted into the insertion slot; the upper end of the second lifting shaft core is provided with a limiting block, and the first movable seat is provided with a first limiting slot for inserting the limiting block to limit the circumferential movement of the second lifting shaft core.

[0012] Specifically, the first door frame assembly further comprises:

[0013] an outer frame fixed to the wall body in the transverse direction by a first locking member;

[0014] an inner frame fixed to the inner side of the outer frame in the front-rear direction by a second locking member, the inner frame being provided with a vertical mounting hole, and the first fixed seat being fixed to the inner frame by a third locking member in cooperation with the mounting hole;

[0015] a resilient pad, one end of which is inserted into the inner frame and the other end of which abuts against the first profile.

[0016] Specifically, the first fixed seat is provided with a limiting column, and the inner frame is provided with a second limiting slot for vertically fitting the limiting column.

[0017] Specifically, the upper end of the first door frame assembly is provided with a rotating assembly, the rotating assembly comprising a second fixed seat, a second rotating shaft, a second plastic shaft sleeve and a second movable seat; the second fixed seat is fixed to the inner frame, the second rotating shaft is fixed to the lower end of the second fixed seat, and the lower end of the second plastic shaft sleeve passes through the second movable seat and cooperates with the shaft hole.

[0018] Specifically, it further comprises:

[0019] a second door frame assembly fixed to the wall body, comprising a second profile, the second profile being provided with a vertical second clamping slot, and the inner wall of the second clamping slot being provided with a first anti-slip convex tooth;

[0020] a fixed glass, one end of which is inserted into the second clamping slot;

[0021] a resilient pad, provided in the gap between the fixed glass and the second clamping slot, both sides of the resilient pad being provided with a second anti-slip convex tooth, the second anti-slip convex tooth on one side of the resilient pad cooperating with the first anti-slip convex tooth, and the second anti-slip convex tooth on the other side of the resilient pad elastically abutting against the fixed glass.

[0022] Specifically, a magnetic sealing assembly is arranged between the movable glass and the fixed glass, comprising:

[0023] a first adhesive tape, fixed to the other end of the movable glass, and embedded with a first magnetic strip;

[0024] A second magnetic strip is embedded in a second adhesive strip fixed to the other end of the fixed glass.

[0025] When the movable glass is closed with the fixed glass, the first magnetic strip and the second magnetic strip are attracted to each other.

[0026] Specifically, the foot assembly comprises:

[0027] A first base is fixed to the ground by a fourth locking member and is located below the first profile, and is provided with a transverse first mounting slot.

[0028] A second base is fixed to the ground by a fifth locking member and is located below the magnetic sealing assembly, and is provided with a transverse second mounting slot.

[0029] A water baffle is inserted into the first mounting slot and the second mounting slot at both ends.

[0030] A shower room is installed with the lifting hinge door.

[0031] The lifting hinge door and the shower room have the following beneficial effects:

[0032] The lifting hinge door comprises a first door frame assembly fixed to a wall, a movable glass, and a rotating lifting assembly arranged at the lower end of the first door frame assembly. The first profile of the first door frame assembly is provided with a shaft hole and a first clamping groove, and one end of the movable glass is inserted into the first clamping groove. The rotating lifting assembly comprises a first fixed seat, a first lifting shaft core, a first rotating shaft, a second lifting shaft core, a first plastic shaft sleeve, and a first movable seat. The first rotating shaft is fixed to the first fixed seat, the first lifting shaft core and the second lifting shaft core are sleeved on the first rotating shaft, and the second lifting shaft core is matched with the shaft hole through the first plastic shaft sleeve. When the movable glass rotates, the second lifting shaft core follows, and the second lifting guide surface at the lower end thereof interacts with the first lifting guide surface fixed to the upper end of the first lifting shaft core, so as to drive the movable glass to stably lift while rotating. The first plastic shaft sleeve is arranged between the first rotating shaft and the shaft hole of the first profile, which effectively avoids the direct friction between metal and aluminum material, significantly reduces wear and noise, improves the concentricity of the rotating shaft, prevents eccentric wear caused by the weight of the glass, and ensures smooth operation of the door body, smoothness, and compact structure. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 It is a perspective view of the shower room of the present application;

[0034] Figure 2 It is a perspective view of the lifting hinge door of the present application Figure 1 , and the enlarged view of three positions of the lifting hinge door is also shown in the figure;

[0035] Figure 3Front view of the lift and turn door of the present application;

[0036] Figure 4 Figure Figure 3 Sectional view along the line A-A in the middle;

[0037] Figure 5 Figure Figure 4 Enlarged view of section C in the middle;

[0038] Figure 6 Figure Figure 4 Enlarged view of section D in the middle;

[0039] Figure 7 Figure Figure 4 Enlarged view of section E in the middle;

[0040] Figure 8 Figure Figure 1 Explosion of the first door frame assembly and the rotating lift assembly of the present application;

[0041] Figure 9 Figure Figure 2 Explosion of the first door frame assembly and the rotating lift assembly of the present application;

[0042] Figure 10 Figure Figure 3 Sectional view along the line B-B in the middle;

[0043] Figure 11 Figure Explosion of the first profile and the rotating assembly of the present application;

[0044] Figure 12 Figure 2 Figure Figure

[0045] Figure Figure 13 Figure

[0046] The reference signs are: first door frame assembly 10, first section bar 11, shaft hole 111, first clamping groove 112, insertion groove 113, outer frame 12, first locking piece 13, inner frame 14, mounting hole 141, second limiting groove 142, second locking piece 15, third locking piece 16, elastic pad 17, movable glass 20, rotating lifting assembly 30, first fixed seat 31, limiting column 311, first lifting shaft core 32, first lifting guide surface 321, first rotating shaft 33, second lifting shaft core 34, second lifting guide surface 341, limiting block 342, first plastic shaft sleeve 35, first movable seat 36, insertion part 361, first limiting groove 362, rotating assembly 40, second fixed seat 41, second rotating shaft 42, second plastic shaft sleeve 43, second movable seat 44, second door frame assembly 50, second section bar 51, second clamping groove 511, fixed glass 60, elastic pad block 70, magnetic sealing assembly 80, first adhesive tape 81, first magnetic strip 82, second adhesive tape 83, second magnetic strip 84, floor anchor assembly 90, first base 91, first mounting groove 911, fourth locking piece 92, second base 93, fifth locking piece 94, second mounting groove 931, water baffle 95, wall 100. DETAILED DESCRIPTION

[0047] The utility model provides a kind of lifting rotating shaft door and bathing room, to make the purpose, technical scheme and effect of the utility model more clear, definite, the following referring to drawing and taking example to the utility model is further detailedly explained.It should be understood that the specific embodiment described here is only used to explain the utility model, and is not used to limit the utility model.

[0048] In the description of the utility model, it should be understood that, involving orientation description, for example, the orientation or position relationship of the upper, lower, front, rear, left, right etc.Indicated orientation or position relationship shown in the drawing, is only for the convenience of describing the utility model and simplifying description, and is not indicated or implied that the device or element referred to must have a particular orientation, with a particular orientation configuration and operation, so it cannot be understood as a limitation on the utility model.

[0049] Please refer to Figures 1-13The embodiment discloses a lifting rotating shaft door and a bathing room, the lifting rotating shaft door is installed at the door position of the wall 100 of the bathing room, and the lifting rotating shaft door comprises a first door frame assembly 10, movable glass 20 and a rotating lifting assembly 30; the first door frame assembly 10 is fixed to the wall 100, the first door frame assembly 10 comprises a first profile 11 made of an aluminum alloy material, the first profile 11 is provided with a vertical shaft hole 111 and a first clamping groove 112, the section of the shaft hole 111 is a circular structure with a notch, when the upper end of the first plastic shaft sleeve 35 is inserted into the shaft hole 111, the outer wall of the shaft hole 111 has a deformable characteristic, so that the cooperation between the first plastic shaft sleeve 35 and the shaft hole 111 is more compact; the inner side wall of the first clamping groove 112 is provided with anti-skid lines, one end of the movable glass 20 is inserted into the first clamping groove 112 and is fixed by glass cement, and the movable glass 20 has good structural stability; the rotating lifting assembly 30 is arranged at the lower end of the first door frame assembly 10, and the rotating lifting assembly 30 comprises a first fixed seat 31, a first lifting shaft core 32, a first rotating shaft 33, a second lifting shaft core 34, a first plastic shaft sleeve 35 and a first movable seat 36; the first rotating shaft 33 is fixed to the upper end of the first fixed seat 31, the first lifting shaft core 32 and the second lifting shaft core 34 are both sleeved on the first rotating shaft 33; the lower end of the first lifting shaft core 32 is fixedly connected with the first fixed seat 31, and the upper end is provided with a first lifting guide surface 321; the upper end of the second lifting shaft core 34 is fixedly connected with the first plastic shaft sleeve 35, and the lower end is provided with a second lifting guide surface 341 which is rotatably and liftingly matched with the first lifting guide surface 321; the upper end of the first plastic shaft sleeve 35 passes through the first movable seat 36 and is matched with the shaft hole 111.

[0050] The movable glass 20 can be provided with handles at both ends, when a user opens or closes the movable glass 20, the movable glass 20 rotates around the axis of the first rotating shaft 33, at the same time, the first lifting shaft core 32 fixed to the first fixed seat 31 remains stationary, and the second lifting shaft core 34 rotates with the first plastic shaft sleeve 35 and the movable glass 20; under the interaction of the first lifting guide surface 321 and the second lifting guide surface 341, the second lifting shaft core 34 drives the movable glass 20 to rotate and liftingly move axially at the same time.

[0051] The first plastic shaft sleeve 35 can effectively avoid direct friction between the first rotating shaft 33 made of metal and the shaft hole 111 made of an aluminum alloy material, thereby reducing abrasion and noise; at the same time, the close cooperation between the first plastic shaft sleeve 35 and the shaft hole 111 helps to improve the concentricity of the first rotating shaft 33 and prevent abrasion caused by eccentric torque due to the weight of the movable glass 20. The whole rotating lifting assembly 30 is compact in structure and precise in cooperation between components, thereby ensuring that the lifting rotating shaft door runs stably, smoothly and durably.

[0052] As a preferred embodiment, the first rotating shaft 33 is integrally connected with the first fixed seat 31, and the second lifting shaft core 34 is integrally connected with the first plastic shaft sleeve 35. The integral structure enhances the overall structural strength and stability of the rotating and lifting assembly 30, reduces the number of connecting components, lowers the assembly complexity, effectively prevents loosening that may occur during long-term use, and improves the service life and reliability of the components.

[0053] As shown in Figure 8 and Figure 9 , the first lifting guide surface 321 and the second lifting guide surface 341 are both annular continuous undulating structures. When the movable glass 20 rotates, the second lifting shaft core 34 rotates, and the second lifting guide surface 341 of the second lifting shaft core 34 slides along the first lifting guide surface 321 of the first lifting shaft core 32. Due to the continuous undulating structure of the guide surfaces, the second lifting shaft core 34 is forced to produce periodic axial displacement while rotating, thereby driving the first plastic shaft sleeve 35 and the movable glass 20 connected thereto to rise and fall smoothly as a whole. This design realizes smooth linkage of the rotating and lifting movements, ensuring the smoothness and hand feeling of the door opening and closing process.

[0054] As shown in Figure 5 , Figure 8 and Figure 9 , the first movable seat 36 is provided with an insertion part 361 at the upper end edge, the first profiled bar 11 is provided with a vertical insertion slot 113, and the insertion part 361 is vertically assembled into the insertion slot 113. The second lifting shaft core 34 is provided with a limiting block 342 at the upper end, and the first movable seat 36 is provided with a first limiting slot 362 for inserting the limiting block 342 to limit the circumferential movement of the second lifting shaft core 34. The cooperation of the insertion part 361 and the insertion slot 113 ensures the accurate positioning and reliable connection between the first movable seat 36 and the first profiled bar 11, preventing the circumferential movement of the first movable seat 36. The cooperation of the limiting block 342 and the first limiting slot 362 transmits the rotating movement of the second lifting shaft core 34 to the first movable seat 36, thereby driving the entire movable glass 20 to rotate around the first rotating shaft 33, while avoiding the abrasion and abnormal noise caused by the relative rotation between the second lifting shaft core 34 and the first movable seat 36.

[0055] As shown in Figure 8 and Figure 9As shown, the first door frame assembly 10 further comprises an outer frame 12, a first locking member 13, an inner frame 14, a second locking member 15, a third locking member 16 and an elastic pad 17; the first locking member 13 and the third locking member 16 can adopt screws, the second locking member 15 adopts an expansion screw, the outer frame 12 is fixed to the wall 100 in the transverse direction through the first locking member 13; the inner frame 14 is fixed to the inner side of the outer frame 12 in the front-rear direction through the second locking member 15, the inner frame 14 is provided with a vertical mounting hole 141, the first fixing seat 31 is fixed to the inner frame 14 through the third locking member 16 and the mounting hole 141; one end of the elastic pad 17 is inserted into the inner frame 14, and the other end of the elastic pad 17 abuts against the first profile 11. During installation, first, the outer frame 12 is fixed to the wall 100 through the first locking member 13, then the inner frame 14 is fixed to the inner side of the outer frame 12 through the second locking member 15, then the first fixing seat 31 is locked through the threaded cooperation of the third locking member 16 and the mounting hole 141, and finally the first profile 11 with the movable glass 20 is pushed in, so that the elastic pad 17 is deformed under pressure and tightly filled between the inner frame 14 and the first profile 11. This layered installation structure is convenient for adjustment and centering, and the elastic pad 17 plays a role in buffering vibration and improving sealing performance.

[0056] As shown in Figure 8 and Figure 9 , the first fixing seat 31 is provided with a limiting column 311, and the inner frame 14 is provided with a second limiting groove 142 for vertically loading the limiting column 311. During installation of the first fixing seat 31, the limiting column 311 can be quickly aligned and embedded in the second limiting groove 142, which realizes the pre-positioning of the first fixing seat 31 on the inner frame 14, effectively prevents the first fixing seat 31 from rotating or deviating in the circumferential direction during tightening of the third locking member 16, ensures the accuracy of the installation position, and simplifies the assembly process.

[0057] As shown in Figure 10 and Figure 11 , the upper end of the first door frame assembly 10 is provided with a rotating assembly 40, which comprises a second fixing seat 41, a second rotating shaft 42, a second plastic shaft sleeve 43 and a second movable seat 44; the second fixing seat 41 is fixed to the inner frame 14, the second rotating shaft 42 is fixed to the lower end of the second fixing seat 41, and the lower end of the second plastic shaft sleeve 43 passes through the second movable seat 44 and is matched with the shaft hole 111. The upper end of the movable glass 20 is rotationally connected with the second rotating shaft 42 above through the second movable seat 44 and the second plastic shaft sleeve 43. When the door is opened or closed, the movable glass 20 rotates around the axis formed by the first rotating shaft 33 and the second rotating shaft 42. The second plastic shaft sleeve 43 also avoids the direct metal contact between the second rotating shaft 42 and the shaft hole 111 of the first profile 11, reduces the wear and noise at the upper rotating shaft, and ensures the stability and smoothness of the movable glass 20 during rotation.

[0058] As shown in Figure 2 andFigure 7 As shown, the lifting rotary door further comprises a second door frame assembly 50, a fixed glass 60 and an elastic block 70; the second door frame assembly 50 is fixed to the wall 100, and the second door frame assembly 50 comprises a second profile 51 provided with a vertical second clamping groove 511, and the inner wall of the second clamping groove 511 is provided with first anti-skid convex teeth; one end of the fixed glass 60 is inserted into the second clamping groove 511; the elastic block 70 is arranged in the gap between the fixed glass 60 and the second clamping groove 511, and both side surfaces of the elastic block 70 are provided with second anti-skid convex teeth; the second anti-skid convex teeth on one side surface of the elastic block 70 are matched with the first anti-skid convex teeth, and the second anti-skid convex teeth on the other side surface of the elastic block 70 are elastically abutted against the fixed glass 60. When the fixed glass 60 is installed, one end thereof is inserted into the second clamping groove 511, and then the elastic block 70 is inserted into the gap between the glass and the clamping groove. The second anti-skid convex teeth on both side surfaces of the elastic block 70 are respectively engaged with the first anti-skid convex teeth on the inner wall of the second clamping groove 511 and the surface of the fixed glass 60, which not only provides good elastic support to absorb the dimensional tolerance and installation stress of the glass and prevent the risk of breakage caused by hard contact of the glass, but also effectively limits the movement of the fixed glass 60 in the clamping groove through the meshing between the convex teeth, thereby enhancing the firmness of the installation.

[0059] As shown in Figure 2 and Figure 6 A magnetic sealing assembly 80 is arranged between the movable glass 20 and the fixed glass 60, and the magnetic sealing assembly 80 comprises a first adhesive tape 81, a first magnetic strip 82, a second adhesive tape 83 and a second magnetic strip 84; the first adhesive tape 81 is fixed to the other end of the movable glass 20, and the first magnetic strip 82 is embedded in the first adhesive tape 81; the second adhesive tape 83 is fixed to the other end of the fixed glass 60, and the second magnetic strip 84 is embedded in the second adhesive tape 83; when the movable glass 20 is closed to the fixed glass 60, the first magnetic strip 82 and the second magnetic strip 84 are attracted to each other. When the movable glass 20 is closed to the fixed glass 60, a magnetic attraction force is generated between the first magnetic strip 82 and the second magnetic strip 84, so as to make the first adhesive tape 81 and the second adhesive tape 83 closely adhere to each other, thereby forming an effective seal at the joint of the movable glass 20 and the fixed glass 60, and preventing the shower water from splashing out. The magnetic attraction also makes the door closing action have a self-attraction effect, thereby improving the convenience of use and the reliability of the seal.

[0060] As shown in Figure 12 and Figure 13As shown, the lifting rotary shaft door further comprises a ground foot assembly 90, the ground foot assembly 90 comprises a first base 91, a fourth locking piece 92, a second base 93, a fifth locking piece 94, a water baffle 95; the fourth locking piece 92 and the fifth locking piece 94 are expansion screws, the first base 91 is fixed to the ground through the fourth locking piece 92, the first base 91 is located below the first profile 11, and the first base 91 is provided with a transverse first mounting groove 911; the second base 93 is fixed to the ground through the fifth locking piece 94, the second base 93 is located below the magnetic sealing assembly 80, and the second base 93 is provided with a transverse second mounting groove 931; the two ends of the water baffle 95 are respectively inserted into the first mounting groove 911 and the second mounting groove 931. During installation, the first base 91 and the second base 93 are fixed to the predetermined positions of the ground through the fourth locking piece 92 and the fifth locking piece 94 respectively, and then the two ends of the water baffle 95 are pressed into the first mounting groove 911 of the first base 91 and the second mounting groove 931 of the second base 93 respectively. The water baffle 95 plays a key role in water blocking and guiding, can effectively prevent ground water from flowing out of the door, and the connection mode that the two ends of the water baffle 95 are respectively inserted into the first mounting groove 911 and the second mounting groove 931 facilitates installation and later maintenance and replacement.

[0061] The preferred embodiments of the utility model are specifically described above, but the utility model is not limited to the embodiments, and those skilled in the art can make various equivalent modifications or replacements under the premise of not deviating from the spirit of the utility model, and these equivalent modifications or replacements are all included in the range defined by the claims of the utility model.

Claims

1. A lift and turn door, characterized in that The utility model relates to a door frame assembly, which comprises a first door frame component (10) fixed to a wall (100), a movable glass (20), a rotating lifting component (30) arranged at the lower end of the first door frame component (10), and a first profile (11) provided with an axial hole (111) and a first clamping groove (112). The utility model relates to a door frame assembly, which comprises a first door frame component (10) fixed to a wall (100), a movable glass (20), a rotating lifting component (30) arranged at the lower end of the first door frame component (10), and a first profile (11) provided with an axial hole (111) and a first clamping groove (112). The first lifting guide surface (321) and the second lifting guide surface (341) are annular continuous undulating structures. The upper end edge of the first movable seat (36) is provided with an insertion part (361), the first profile (11) is provided with a vertical insertion groove (113), the insertion part (361) is vertically arranged in the insertion groove (113), the upper end of the second lifting shaft core (34) is provided with a limiting block (342), the first movable seat (36) is provided with a first limiting groove (362) for inserting the limiting block (342), so as to limit the circumferential movement of the second lifting shaft core (34).

2. The lift and turn door according to claim 1, characterized in that The first door frame component (10) further comprises an outer frame (12) fixed to the wall (100) by a first locking member (13), an inner frame (14) fixed to the inner side of the outer frame (12) by a second locking member (15) in the front-rear direction, the inner frame (14) is provided with a vertical mounting hole (141), the first fixed seat (31) is fixed to the inner frame (14) by a third locking member (16) matched with the mounting hole (141), and an elastic pad (17) is inserted at one end with the inner frame (14) and abuts at the other end with the first profile (11).

3. The lift and turn door according to claim 1, characterized in that The first fixed seat (31) is provided with a limiting column (311), and the inner frame (14) is provided with a second limiting groove (142) for vertically arranging the limiting column (311).

4. The lift and turn door according to claim 1, characterized in that ​ ​ ​ ​ 5. The lift and turn door according to claim 4, characterized in that ​ 6. The lift and turn door according to claim 4, characterized in that The first door frame assembly (10) is provided with a rotating assembly (40) at the upper end, the rotating assembly (40) comprises a second fixed seat (41), a second rotating shaft (42), a second plastic shaft sleeve (43) and a second movable seat (44); the second fixed seat (41) is fixed to the inner frame (14), the second rotating shaft (42) is fixed to the lower end of the second fixed seat (41), and the lower end of the second plastic shaft sleeve (43) penetrates through the second movable seat (44) and is matched with the shaft hole (111).

7. The lift and turn door according to claim 1, characterized in that Further comprising: A second door frame assembly (50) is fixed to the wall (100) and comprises a second profile (51), the second profile (51) is provided with a vertical second clamping groove (511), and the inner wall of the second clamping groove (511) is provided with a first anti-skid convex tooth; A fixed glass (60) is inserted into the second clamping groove (511) at one end; An elastic pad (70) is arranged in the gap between the fixed glass (60) and the second clamping groove (511), both side surfaces of the elastic pad (70) are provided with a second anti-skid convex tooth, the second anti-skid convex tooth on one side surface of the elastic pad (70) is matched with the first anti-skid convex tooth, and the second anti-skid convex tooth on the other side surface of the elastic pad (70) is elastically abutted against the fixed glass (60).

8. The lift and turn door according to claim 7, characterized in that A magnetic sealing assembly (80) is arranged between the movable glass (20) and the fixed glass (60) and comprises: A first adhesive tape (81) is fixed to the other end of the movable glass (20) and in which a first magnetic strip (82) is embedded; A second adhesive tape (83) is fixed to the other end of the fixed glass (60) and in which a second magnetic strip (84) is embedded; When the movable glass (20) and the fixed glass (60) are closed, the first magnetic strip (82) and the second magnetic strip (84) are attracted to each other.

9. The lift and turn door as claimed in claim 8, characterized in that Further comprising a ground foot assembly (90), the ground foot assembly (90) comprises: A first base (91) is fixed to the ground through a fourth locking piece (92) and is located below the first profile (11) and is provided with a horizontal first mounting groove (911); A second base (93) is fixed to the ground through a fifth locking piece (94) and is located below the magnetic sealing assembly (80) and is provided with a horizontal second mounting groove (931); A water baffle (95) is inserted into the first mounting groove (911) and the second mounting groove (931) at both ends.

10. A shower cubicle, characterised in that, The lifting rotating shaft door of any one of claims 1-9 is installed.

Citation Information

Patent Citations

  • Buffering lifting rotating shaft device

    CN217439781U