Diamond-shaped shower room
Patent Information
- Application Number
- CN202411404604.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2044-10-10
AI Technical Summary
由于钻石型淋浴房的滑动的移门和固定的侧门之间带有夹角,滑轨的设计结构较为复杂,高频率地滑动使用,容易损坏,使用成本较高,同时在滑轨的轨道内容易积水、积灰、积掉落的头发等杂物,难以清理,密封性也相对较差
[0020] (1) The present invention provides a diamond-shaped shower room with a swing door design, which is suitable for bathrooms with different spatial conditions and can meet the user's personalized door opening needs. When installing the door on site, the rotation point position is adjusted according to the user's requirements. There is no need for destructive secondary processing such as drilling holes in the shower room accessories on site. The rotation point of the door can be set at any position on the left, right or middle. The door can open outward or inward.
Smart Images

Figure CN119586915B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of bathroom fixtures, specifically to a diamond-shaped shower enclosure. Background Technology
[0002] As people's living standards continue to improve, modern homes have increasingly higher requirements for bathroom facilities. Many families desire a separate bathing space, but due to limited bathroom space, bathing facilities and sanitary ware must be placed in one room. Therefore, many families prefer to install diamond-shaped shower enclosures in their bathrooms. These enclosures are installed in a corner of the bathroom, forming a pentagonal structure with the wall. Their cross-sectional shape in a top view resembles the outline of a diamond. They occupy little space and can fully utilize a corner of the bathroom to create a relatively independent bathing space.
[0003] There are two common ways to open and close shower enclosure doors: one is a hinged door that opens by pushing and rotating, and the other is a sliding door that opens by pushing and pulling. Because the sliding door and fixed side door of a diamond-shaped shower enclosure have an angle, the track design is relatively complex. Frequent use makes it prone to damage, increasing operating costs. Furthermore, water, dust, and fallen hair easily accumulate in the track, making cleaning difficult, and the sealing is relatively poor. Therefore, diamond-shaped shower enclosures typically use hinged doors, which are easier to open and close. However, conventional hinged doors on the market require sufficient space to open outwards, often causing collisions and interference with toilets and sinks in small bathrooms. Conventional hinged doors also require ample space inside the shower enclosure to close when opening inwards, which is often insufficient in the smaller bathrooms where diamond-shaped shower enclosures are installed. In addition, conventional diamond-shaped shower enclosures on the market require drilling holes in the glass for hinges or pivots, which poses a risk of breakage during installation and use. Summary of the Invention
[0004] In view of the shortcomings of the prior art, the present invention provides a diamond-shaped shower room with a swing door design, which is suitable for bathrooms with different spatial conditions and can meet the user's personalized door opening needs. The door can be adjusted according to the user's required rotation point position during on-site installation, without the need for destructive secondary processing such as drilling holes in the shower room accessories. The rotation point of the door can be set at any position on the left, right or middle, and the door can open outwards or inwards.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A diamond-shaped shower enclosure, installed in a corner of a wall, is characterized by comprising a diamond-shaped base, two fixed doors, one movable door, two crossbars, and two pivot assemblies;
[0007] One of the crossbars is fixedly connected to the top of the two fixed door bodies by fasteners, and the other crossbar is fixedly connected to the bottom of the two fixed door bodies by fasteners; the crossbar has a first slot along its length and on the side facing the corner of the wall;
[0008] The top and bottom of the movable door are both fixed with a movable door crossbar, and the movable door crossbar has a second slot along its length and on the side facing the corner of the wall.
[0009] The rotating shaft assembly includes a first base, a second base, a base fastener, and a limiting screw. The first base is detachably fixed to the first slot by the base fastener, and the second base is detachably fixed to the second slot by the base fastener. The first base is fixedly provided with a rotating shaft mating part, which has a rotating shaft mating part through hole. The side wall of the rotating shaft mating part has a limiting screw first hole that extends through the rotating shaft mating part through hole, and the axis of the limiting screw first hole is perpendicular to the axis of the rotating shaft mating part through hole. The second base is fixedly provided with a rotating shaft part, and the peripheral wall of the rotating shaft part has a limiting groove along its circumference, forming a fan-shaped cross-section. After installation, the rotating shaft part extends into the rotating shaft mating part through hole, and the limiting screw is screwed into the limiting screw first hole and extends into the limiting groove. The axes of the rotating shaft parts of the upper and lower rotating shaft assemblies coincide and are vertical.
[0010] Furthermore, it also includes a bushing, one end of which extends radially outward to form a circular thin-film skirt. The side wall of the bushing has a second hole for a limiting screw that extends into the inner cavity of the bushing. The axis of the second hole for the limiting screw is perpendicular to the axis of the bushing. When the rotating shaft is fitted with the bushing and inserted into the through hole of the rotating shaft mating part, one side of the circular thin-film skirt fits against the rotating shaft and the other side fits against the rotating shaft mating part. The limiting screw is screwed into the first hole for the limiting screw, passes through the second hole for the limiting screw, and then extends into the limiting groove.
[0011] Furthermore, the cross-sectional sector angle of the limiting groove is 280°.
[0012] Furthermore, both the first card slot and the second card slot are provided with positioning slots.
[0013] Furthermore, the positioning notch is arc-shaped or V-shaped.
[0014] Furthermore, both the fixed door and the movable door are assembled from multiple pieces of glass. Aluminum alloy profiles are attached to all four sides of the glass. The aluminum alloy profiles on both sides of the fixed door and the movable door are made of multiple short spliced profiles. Small plastic splicing parts are also provided for embedding in the spliced profiles and connecting two spliced profiles. Positioning protrusions are provided on the small plastic splicing parts.
[0015] Furthermore, both the fixed door body and the movable door body are provided with connectors. The connectors include a first connector profile and a second connector profile. One end of the first connector profile is used to hold the glass, and the other end of the first connector profile extends outward to form an arc-shaped protrusion. One end of the second connector profile is used to hold the glass, and the other end of the second connector profile has an arc-shaped groove for accommodating the arc-shaped protrusion. The arc-shaped groove passes through the other end of the second connector profile to form a connecting cylindrical shaft. The outer circumferential surface of the connecting cylindrical shaft is used to hinge and engage with the inner arc surface of the arc-shaped protrusion.
[0016] Furthermore, a handle is also installed on the aluminum alloy profile of the movable door.
[0017] Furthermore, a floor drain opening is provided near the short side inside the diamond-shaped basin for installing a conventional floor drain and drainage pipe. An inspection port is provided on the outer side of the short side of the diamond-shaped basin, and an inspection door and an inspection door bolt are also provided.
[0018] Furthermore, a conventional 135° water-blocking strip is installed on the side of the movable door body near the pivot assembly; a conventional 135° magnetic strip assembly one is installed on the side of the movable door body away from the pivot assembly; and a 135° magnetic strip assembly two, which cooperates with and is attracted to the 135° magnetic strip assembly one, is installed on the side of the fixed door body near the 135° magnetic strip assembly one.
[0019] The beneficial effects of the present invention include at least the following:
[0020] (1) The present invention provides a diamond-shaped shower room with a swing door design, which is suitable for bathrooms with different spatial conditions and can meet the user's personalized door opening needs. When installing the door on site, the rotation point position is adjusted according to the user's requirements. There is no need for destructive secondary processing such as drilling holes in the shower room accessories on site. The rotation point of the door can be set at any position on the left, right or middle. The door can open outward or inward.
[0021] (2) A diamond-shaped shower room of the present invention has a fan-shaped limiting groove with an angle of 280° on the pivot part, which can realize large-angle opening of the door inside and outside without interference or collision with other parts of the shower room.
[0022] (3) In a diamond-shaped shower room of the present invention, the rotating shaft assembly is also designed with a bushing so that the rotating shaft mating part and the rotating shaft part do not directly contact each other, avoiding abnormal noise caused by friction when the two rotate together, and reducing wear caused by the two rotating together, thereby extending the service life.
[0023] (4) A diamond-shaped shower enclosure of the present invention has arc-shaped or V-shaped serrated positioning slots in both the first slot and the second slot. This ensures that the first base and / or the second base do not shift during the frequent opening and closing of the shower enclosure by the user, and that the axes of the rotating shafts of the upper and lower rotating shaft assemblies always coincide and are vertical, and that the rotation point does not shift.
[0024] (5) The present invention provides a diamond-shaped shower room in which the fixed door and the movable door are designed to be assembled and spliced from multiple pieces of glass, which greatly shortens the length of the shipping packaging and reduces the packaging and transportation costs and risks.
[0025] (6) The diamond-shaped shower enclosure of the present invention can drill holes in the aluminum alloy profiles around the glass, avoiding direct drilling in the glass for installation or connection, thus reducing the risk of glass breakage; secondly, when splicing multiple pieces of glass, users can personalize the selection of different colors or decorative patterns for each piece of glass.
[0026] (7) The diamond-shaped shower room of the present invention has a connector structure with a quick installation function, which makes it very easy to assemble the fixed door and the movable door, and a single person can quickly complete the assembly.
[0027] (8) A diamond-shaped shower room of the present invention has a drain opening at the position near the short side inside the diamond-shaped base, and an inspection opening on the outer side of the short side of the diamond-shaped base. It is also equipped with an inspection door and an inspection door bolt. When the drain is blocked, the inspection and unblocking work is simple and quick, without the need to disassemble other parts of the shower room, saving time, effort and materials. Attached Figure Description
[0028] Figure 1 A three-dimensional schematic diagram of a diamond-shaped shower enclosure as an example. Figure 1 ;
[0029] Figure 2 A three-dimensional schematic diagram of a diamond-shaped shower enclosure as an example. Figure 2 ;
[0030] Figure 3 for Figure 1 A magnified view of a portion of point I;
[0031] Figure 4 An exploded view of the pivot assembly of a diamond-shaped shower enclosure according to one embodiment;
[0032] Figure 5This is a partial sectional view of the pivot section of a diamond-shaped shower enclosure according to an embodiment;
[0033] Figure 6 This is a schematic diagram illustrating the installation of the splicing profiles of a diamond-shaped shower enclosure in one embodiment.
[0034] Figure 7 for Figure 6 A magnified view of section II;
[0035] Figure 8 This is a schematic diagram illustrating the assembly and installation of the door of a diamond-shaped shower enclosure, as shown in one embodiment.
[0036] Figure 9 This is a side view of the installation of the connectors in an embodiment of a diamond-shaped shower enclosure;
[0037] Figure 10 This is a three-dimensional schematic diagram of the installation of the connectors for a diamond-shaped shower enclosure according to one embodiment;
[0038] Figure 11 An exploded view of the diamond-shaped base of a diamond-shaped shower enclosure, as described in one embodiment.
[0039] Reference numerals: 1 Diamond-shaped base basin, 11 Floor drain outlet, 12 Inspection port, 13 Inspection door, 14 Inspection door bolt, 2 Fixed door body, 3 Movable door body, 31 Movable door body crossbar, 311 Second slot, 32 Handle, 4 Crossbar, 41 First slot, 5 Rotary shaft assembly, 51 First base, 511 Rotary shaft mating part, 5111 Rotary shaft mating part through hole, 5112 First hole of limit screw, 52 Second base, 521 Rotary shaft part, 5211 Limit groove, 53 Base fastener, 54 Limit screw, 55 Bushing, 551 Circular thin-plate skirt, 552 Second hole of limit screw, 6 Splicing profile, 61 Splicing small plastic part, 611 Positioning protrusion, 7 Connector, 71 First profile of connector, 711 Arc-shaped protrusion, 72 Second profile of connector, 721 Arc-shaped groove, 722 Cylindrical shaft of connector. Detailed Implementation
[0040] The present invention will be further described below with reference to specific embodiments and accompanying drawings:
[0041] As a specific embodiment of the present invention, such as Figure 1 , 2 As shown in Figure 3, the diamond-shaped shower enclosure provided in this embodiment includes a diamond-shaped base 1, two fixed doors 2, a movable door 3, two crossbars 4, and two pivot assemblies 5. The top view of the diamond-shaped base 1 is a pentagon composed of an isosceles right triangle and an isosceles trapezoid. It has two right-angled sides, two short sides, and one middle side. One end of each short side is perpendicularly connected to one of the right-angled sides, and the other end of each short side is connected by the middle side. The angle between the two short sides and the middle side is 135°.
[0042] like Figure 2 As shown, after installation, the two right-angled sides of the diamond-shaped basin 1 are tightly abutted against the bottom of the right-angled wall of the bathroom. The two fixed doors 2 are vertically fixed against the two walls of the right-angled corner of the bathroom, with the bottom of each fixed door 2 abutting against the short side of the diamond-shaped basin 1. One horizontal bar 4 is fixedly connected to the top of the two fixed doors 2 by fasteners, and the other horizontal bar 4 is fixedly connected to the bottom of the two fixed doors 2 by fasteners; as shown... Figure 3 As shown, the crossbar 4 has a first slot 41 along its length and facing the corner of the wall. The top and bottom of the movable door body 3 are both fixed with movable door body crossbars 31. The movable door body crossbars 31 have a second slot 311 along their length and facing the corner of the wall.
[0043] like Figure 3 , 4 As shown in Figure 5, the rotating shaft assembly 5 includes a first base 51, a second base 52, a base fastener 53, and a limiting screw 54. The first base 51 is detachably fixed to the first slot 41 by the base fastener 53, and the second base 52 is detachably fixed to the second slot 311 by the base fastener 53. A rotating shaft mating part 511 is fixedly provided on the first base 51, and the rotating shaft mating part 511 has a rotating shaft mating part through hole 5111. A limiting screw first hole 5112 is provided on the side wall of the rotating shaft mating part 5111, which extends through the rotating shaft mating part through hole 5111. The axis of the limiting screw first hole 5112 is perpendicular to the axis of the rotating shaft mating part through hole 5111. A rotating shaft part 521 is fixedly provided on the second base 52, and a limiting groove 5211 is provided on the peripheral wall of the rotating shaft part 521 along its circumference, forming a fan-shaped cross-section. Preferably, as Figure 5 As shown, the fan-shaped limiting groove 5211 has a fan angle of 280°, which better enables large-angle opening of the shower door both inside and out, and prevents the shower door from interfering with or colliding with other components of the shower enclosure. After installation, the pivot 521 extends into the through hole 5111 of the pivot mating part, and the limiting screw 54 is screwed into the first hole 5112 of the limiting screw and extends into the limiting groove 5211. Figure 1 As shown, the axes of the shaft portions 521 of the upper and lower shaft assemblies 5 coincide and are vertical.
[0044] When installing a shower enclosure, due to the varying spatial conditions of bathrooms and the personalized door opening requirements of some users (some need the door to open outwards, some inwards, some with the door's turning point on the left, some on the right, and some in the middle), this embodiment of the invention can solve all these needs. Specifically, the operation is as follows: Figure 3 , 1As shown, after loosening the base fastener 53, the upper and lower pivot assemblies 5 can move left and right along the length of the movable door crossbar 31. During on-site door installation, the pivot point can be adjusted according to the user's desired rotation position, eliminating the need for destructive secondary processing such as drilling holes in the shower enclosure components to meet the user's personalized opening requirements. The fan-shaped limiting groove 5211 on the pivot section 521 allows for large-angle opening both inside and outside the door without interference or collision with other parts of the shower enclosure.
[0045] Since both the rotating shaft mating part 511 and the rotating shaft part 521 are made of alloy material, a sharp abnormal noise will be generated due to friction when the two are directly mated and rotated. As a further improvement, another specific embodiment of the present invention is as follows: Figure 4 As shown, the rotating shaft assembly 5 is also designed with a bushing 55, which is made of plastic, specifically polyurethane, nylon, or polytetrafluoroethylene (PTFE). One end of the bushing 55 extends radially outward to form a circular thin-film skirt 551. The side wall of the bushing 55 has a second hole 552 for a limiting screw that extends into the inner cavity of the bushing 55. The axis of the second hole 552 for the limiting screw is perpendicular to the axis of the bushing 55. When the rotating shaft part 521 is fitted with the bushing 55 and inserted into the through hole 5111 of the rotating shaft mating part, one side of the circular thin-film skirt 551 fits against the rotating shaft part 521, and the other side fits against the rotating shaft mating part 511. The limiting screw 54 is screwed into the first hole 5112 of the limiting screw, passes through the second hole 552 of the limiting screw, and then extends into the limiting groove 5211. In this embodiment, a bushing 55 is used so that the rotating shaft mating part 511 and the rotating shaft part 521 do not directly contact each other, avoiding abnormal noise caused by friction when the two rotate together during the opening and closing of the shower door, and reducing wear caused by the rotation of the two together, thereby extending the service life.
[0046] During frequent opening and closing of the shower enclosure over long-term use, the base fastener 53 may loosen, causing the first base 51 and / or the second base 52 to shift, affecting the normal opening and closing of the shower enclosure and its service life. As a further improvement, another specific embodiment of the invention is as follows... Figure 3 As shown, both the first slot 41 and the second slot 311 are provided with arc-shaped or V-shaped serrated positioning slots, which ensures that during the frequent opening and closing of the shower room door by the user, Figure 4 The first base 51 and the second base 52 shown do not shift. Figure 1 The axes of the two rotating shaft assemblies 5 shown above are always coincident and vertical, and the rotation point does not shift.
[0047] As a specific embodiment of the present invention, such as Figure 1 , 2As shown, the main body of the fixed door 2 is glass, with aluminum alloy profiles secured around its perimeter. The main body of the movable door 3 is also glass, with aluminum alloy profiles also fixed to the top and bottom of the movable door 3. Aluminum alloy profiles are also secured to both longitudinal sides of the movable door 3. Conventional glass used for doors on the market is typically a single piece, and its large size makes it prone to damage during long-distance transportation after shipment, resulting in high packaging and shipping costs. Furthermore, conventional diamond-shaped shower enclosures require drilling holes in the glass for hinges or pivots, posing a risk of glass breakage during installation and use.
[0048] Therefore, as another specific embodiment of the improved present invention, such as Figure 6 , 7 As shown, the fixed door 2 and the movable door 3 are designed to be assembled from multiple pieces of glass. At the same time, the aluminum alloy profiles on both sides of the fixed door 2 and the movable door 3 are designed to be spliced from multiple short splicing profiles 6. Small plastic parts 61 are also designed to be embedded in the splicing profiles 6 and connect the two splicing profiles 6, thereby enhancing the straightness and strength of the aluminum alloy profiles on both sides of the fixed door 2 and the movable door 3. The small plastic parts 61 are also provided with positioning protrusions 611 to prevent the small plastic parts 61 from moving within the two splicing profiles 6. This structural design uses a profile with slots at both ends to join two or more pieces of glass together. Before shipping, one piece of glass is inserted into the slot at one end of the profile, leaving the slot at the other end empty. After the product is delivered to the user, during on-site installation of the shower enclosure, the other piece of glass is inserted into the empty slot at the other end of the profile. Then, multiple shorter splicing profiles 6 are installed onto the longitudinal sides of the fixed door 2 and the movable door 3 using splicing small plastic parts 61 and fasteners, thus completing the splicing and installation of the fixed door 2 and the movable door 3. Furthermore, this design allows for drilling holes in the aluminum alloy profiles around the glass, avoiding direct drilling into the glass itself for installation or connection, reducing the risk of glass breakage. Secondly, when splicing multiple pieces of glass, users can personalize the process by choosing different colors or decorative patterns for each piece.
[0049] The design of the fixed door 2 and movable door 3 in the above embodiment adopts a splicing design, which reduces packaging and transportation costs and risks. However, the disadvantages are that installation is relatively troublesome and slow, especially since attaching the glass into the profile at the shower room installation site requires certain professional tools and techniques to install it properly, placing high demands on the installers. As another specific embodiment for further improvement of the present invention, such as Figure 8 , 9As shown in Figure 10, both the fixed door 2 and the movable door 3 are equipped with connectors 7. Each connector 7 includes a first connector profile 71 and a second connector profile 72. One end of the first connector profile 71 is used to hold the glass, and the other end extends outward to form an arc-shaped protrusion 711. One end of the second connector profile 72 is used to hold the glass, and the other end of the second connector profile 72 has an arc-shaped groove 721 to accommodate the arc-shaped protrusion 711. The arc-shaped groove 721 penetrates the other end of the second connector profile 72 to form a connecting cylindrical shaft 722. The outer circumferential surface of the connecting cylindrical shaft 722 is used to hinge and engage with the inner arc surface of the arc-shaped protrusion 711. In this embodiment, before shipment from the factory, the horizontally mounted short-side profiles on both the fixed door 2 and the movable door 3 are already installed. At the installation site of the shower enclosure, such as... Figure 9 As shown, the installer places the glass with the second profile 72 already attached to the connector horizontally, lifts the glass with the first profile 71 already attached to the connector, so that the inner arc surface of the arc-shaped protrusion 711 contacts the outer circumferential surface of the cylindrical shaft 722 of the connector, and slowly lowers it. Due to gravity, the arc-shaped protrusion 711 slides into the arc-shaped groove 721 along the outer circumferential surface of the cylindrical shaft 722 of the connector. When it is completely lowered to a horizontal position, the arc-shaped protrusion 711 and the cylindrical shaft 722 of the connector are hinged in place, which is very labor-saving and can be quickly completed by a single person. Finally, similar to the splicing design in the previous embodiment, this embodiment also installs multiple shorter splicing profiles 6 to the longitudinal sides of the fixed door body 2 and the movable door body 3 through splicing small plastic parts 61 and fasteners, thereby completing the splicing installation of the fixed door body 2 and the movable door body 3. Among them, threaded holes for fasteners are opened on both the left and right end faces of the connector 7 that contact the splicing profile 6. Figure 9 The ring inside the cavity of the first profile 71 of the connector shown is the threaded hole. Countersunk screws are used as fasteners, so that no foreign objects will protrude after the fixed door 2 and the movable door are spliced and installed. The splicing design of the fixed door 2 and the movable door 3 in this embodiment greatly shortens the length of the shipping packaging, which reduces packaging and transportation costs and risks, and makes installation simple, convenient and labor-saving. A single person can quickly complete the splicing. In addition, it can also meet the personalized needs of users to use different colors or decorative patterns on multiple pieces of glass.
[0050] To achieve dry and wet separation in the shower room and prevent water from leaking out and making the bathroom floor slippery, embodiments of the present invention all include sealing strips and magnetic strips for the shower door at the door seams (existing conventional technology, not shown in the accompanying drawings). Specifically, as... Figure 1As shown, a standard 135° water-blocking strip, made of PVC, is installed on the side of the movable door 3 near the door seam of the pivot assembly 5. A standard 135° magnetic strip assembly, commonly used in diamond-shaped shower enclosures, is installed on the side of the door seam away from the pivot assembly 5. Specifically, a first 135° magnetic strip assembly is installed on the side of the movable door 3 away from the pivot assembly 5, and a second 135° magnetic strip assembly, which works in conjunction with the first magnetic strip assembly, is installed on the side of the fixed door 2 near the first 135° magnetic strip assembly. This magnetic strip is made of PVC and possesses excellent oxidation resistance, impact resistance, and cold resistance. These characteristics allow the magnetic strip to maintain a good sealing effect and service life even in low-temperature or high-humidity environments. Through magnetic action, the shower enclosure door can be easily opened and closed, and automatically adheres and secures itself when closed.
[0051] To facilitate opening and closing the door, as another specific embodiment of the present invention, such as Figure 2 As shown, a handle 32 is also installed on one of the aluminum alloy profiles on both longitudinal sides of the sliding door body 3. The handle 32 is not directly installed on the glass of the sliding door body 3, thus avoiding drilling holes directly into the glass and reducing the risk of glass breakage. Since the sliding door body 3 can be composed of multiple pieces of glass spliced together by a horizontal profile structure, the handle 32 can also be installed on the horizontal profile structure in the middle part of the sliding door body 3. This also ensures that the handle 32 does not contact the glass of the sliding door body 3, further reducing the risk of glass breakage.
[0052] For aesthetic purposes, as another specific embodiment of the present invention, such as Figure 1 , 3 As shown in Figure 4, four plastic baffles are also provided (existing conventional technology, not shown in the attached drawings of the instruction manual). Two of the plastic baffles are installed on the side of the two horizontal bars 4 facing the corner of the wall to cover the first slot 41 and the first base 51. The other two plastic baffles are installed on the side of the two movable door crossbars 31 facing the corner of the wall to cover the second slot 311 and the second base 52, serving a decorative purpose.
[0053] During shower use, the wastewater from showering contains a lot of hair, which eventually accumulates at the drain, clogging it over time. Currently, the drain openings of conventional diamond-shaped shower enclosures are located at the right angles of the two right-angled sides of the diamond-shaped base. Once the drain becomes clogged, the entire shower enclosure needs to be removed, and the diamond-shaped base, which is caulked and fixed to the corner of the wall, needs to be completely lifted to inspect and clean the clogged drain and drainage pipes—a time-consuming and laborious process. To solve this problem, as another specific embodiment of the present invention, the diamond-shaped base 1 has been further improved, such as... Figure 11As shown, a drain opening 11 is located near the short side (i.e., the side of the diamond-shaped basin 1 that abuts against the fixed door 2) inside the diamond-shaped basin 1, for installing a standard floor drain and drainage pipe. An inspection port 12 is located on the outer side of the short side of the diamond-shaped basin 1, and an inspection door 13 and an inspection door latch 14 are also provided. When the shower room's floor drain becomes clogged, simply rotate the knob of the inspection door latch 14 to open the inspection door 13, allowing for inspection and cleaning of the clogged floor drain and drainage pipe. After inspection and unclogging, close the inspection door 13 and rotate the knob of the inspection door latch 14 to lock it. Inspection and unclogging are simple and quick, requiring no disassembly of other shower room components, saving time, effort, and materials.
[0054] The diamond-shaped shower enclosure of the present invention has at least the following beneficial effects:
[0055] (1) The present invention provides a diamond-shaped shower room with a swing door design, which is suitable for bathrooms with different spatial conditions and can meet the user's personalized door opening needs. When installing the door on site, the rotation point position is adjusted according to the user's requirements. There is no need for destructive secondary processing such as drilling holes in the shower room accessories on site. The rotation point of the door can be set at any position on the left, right or middle. The door can open outward or inward.
[0056] (2) A diamond-shaped shower room of the present invention has a fan-shaped limiting groove with an angle of 280° on the pivot part, which can realize large-angle opening of the door inside and outside without interference or collision with other parts of the shower room.
[0057] (3) In a diamond-shaped shower room of the present invention, the rotating shaft assembly is also designed with a bushing so that the rotating shaft mating part and the rotating shaft part do not directly contact each other, avoiding abnormal noise caused by friction when the two rotate together, and reducing wear caused by the two rotating together, thereby extending the service life.
[0058] (4) A diamond-shaped shower enclosure of the present invention has arc-shaped or V-shaped serrated positioning slots in both the first slot and the second slot. This ensures that the first base and / or the second base do not shift during the frequent opening and closing of the shower enclosure by the user, and that the axes of the rotating shafts of the upper and lower rotating shaft assemblies always coincide and are vertical, and that the rotation point does not shift.
[0059] (5) The present invention provides a diamond-shaped shower room in which the fixed door and the movable door are designed to be assembled and spliced from multiple pieces of glass, which greatly shortens the length of the shipping packaging and reduces the packaging and transportation costs and risks.
[0060] (6) The diamond-shaped shower enclosure of the present invention can drill holes in the aluminum alloy profiles around the glass, avoiding direct drilling in the glass for installation or connection, thus reducing the risk of glass breakage; secondly, when splicing multiple pieces of glass, users can personalize the selection of different colors or decorative patterns for each piece of glass.
[0061] (7) The diamond-shaped shower room of the present invention has a connector structure with a quick installation function, which makes it very easy to assemble the fixed door and the movable door, and a single person can quickly complete the assembly.
[0062] (8) A diamond-shaped shower room of the present invention has a drain opening at the position near the short side inside the diamond-shaped base, and an inspection opening on the outer side of the short side of the diamond-shaped base. It is also equipped with an inspection door and an inspection door bolt. When the drain is blocked, the inspection and unblocking work is simple and quick, without the need to disassemble other parts of the shower room, saving time, effort and materials.
[0063] In this document, the terms “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, which includes not only the elements listed but also other elements not expressly listed.
[0064] In this document, the directional terms such as front, back, top, bottom, left, right, top, and bottom are defined according to the positions of the components in the accompanying drawings and the positions between the components, and are only used for clarity and convenience in expressing the technical solution. It should be understood that the use of these directional terms should not limit the scope of protection claimed in this application.
[0065] Where there is no conflict, the above embodiments and features described herein can be combined with each other.
[0066] The above description is merely a preferred embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformations made based on the description and drawings of the present invention, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present invention.
Claims
1. A diamond-shaped shower enclosure, installed in a corner of a wall, characterized in that, It includes a diamond-shaped base, two fixed doors, one movable door, two crossbars, and two pivot assemblies; One of the crossbars is fixedly connected to the top of the two fixed door bodies by fasteners, and the other crossbar is fixedly connected to the bottom of the two fixed door bodies by fasteners; the crossbar has a first slot along its length and on the side facing the corner of the wall; The top and bottom of the movable door are both fixed with a movable door crossbar, and the movable door crossbar has a second slot along its length and on the side facing the corner of the wall. The rotating shaft assembly includes a first base, a second base, a base fastener, and a limiting screw. The first base is detachably fixed to the first slot by the base fastener, and the second base is detachably fixed to the second slot by the base fastener. The first base is fixedly provided with a rotating shaft mating part, which has a through hole. The side wall of the rotating shaft mating part has a first hole for the limiting screw that extends through the through hole. The axis of the first hole for the limiting screw is perpendicular to the axis of the through hole. The second base is fixedly provided with a rotating shaft part. The peripheral wall of the rotating shaft part has a limiting groove along its circumference, forming a fan-shaped cross-section. After installation, the rotating shaft part extends into the through hole of the rotating shaft mating part, and the limiting screw is screwed into the first hole for the limiting screw and extends into the limiting groove. The axes of the rotating shaft parts of the upper and lower rotating shaft assemblies coincide and are vertical. It also includes a bushing, one end of which extends radially outward to form a circular thin-film skirt. The side wall of the bushing has a second hole for a limiting screw that extends into the inner cavity of the bushing. The axis of the second hole for the limiting screw is perpendicular to the axis of the bushing. When the rotating shaft is fitted with the bushing and inserted into the through hole of the rotating shaft mating part, one side of the circular thin-film skirt fits against the rotating shaft and the other side fits against the rotating shaft mating part. The limiting screw is screwed into the first hole for the limiting screw, passes through the second hole for the limiting screw, and then extends into the limiting groove. The cross-sectional sector angle of the limiting groove is 280°.
2. The diamond-shaped shower enclosure according to claim 1, characterized in that, Both the first card slot and the second card slot are equipped with positioning slots.
3. The diamond-shaped shower enclosure according to claim 2, characterized in that, The positioning bayonet is arc-shaped or V-shaped.
4. The diamond-shaped shower enclosure according to claim 3, characterized in that, Both the fixed door and the movable door are assembled from multiple pieces of glass. Aluminum alloy profiles are attached to all four sides of the glass. The aluminum alloy profiles on both sides of the fixed door and the movable door are made of multiple short spliced profiles. Small plastic splicing parts are also provided for embedding in the spliced profiles and connecting two spliced profiles. Positioning protrusions are provided on the small plastic splicing parts.
5. The diamond-shaped shower enclosure according to claim 4, characterized in that, Both the fixed door and the movable door are provided with connectors. The connectors include a first connector profile and a second connector profile. One end of the first connector profile is used to hold the glass, and the other end of the first connector profile extends outward to form an arc-shaped protrusion. One end of the second connector profile is used to hold the glass, and the other end of the second connector profile has an arc-shaped groove for accommodating the arc-shaped protrusion. The arc-shaped groove passes through the other end of the second connector profile to form a connecting cylindrical shaft. The outer circumferential surface of the connecting cylindrical shaft is used to hinge and engage with the inner arc surface of the arc-shaped protrusion.
6. The diamond-shaped shower enclosure according to claim 5, characterized in that, A handle is also installed on the aluminum alloy profile of the movable door.
7. The diamond-shaped shower enclosure according to claim 6, characterized in that, A drain opening is provided near the short side inside the diamond-shaped basin for installing a conventional floor drain and drainage pipe. An inspection port is provided on the outer side of the short side of the diamond-shaped basin, and an inspection door and an inspection door bolt are also provided.
8. The diamond-shaped shower enclosure according to any one of claims 1-7, characterized in that, A conventional 135° water-blocking strip is installed on the side of the movable door body near the pivot assembly; a conventional 135° magnetic strip assembly one is installed on the side of the movable door body away from the pivot assembly; and a 135° magnetic strip assembly two, which cooperates with and is attracted to the 135° magnetic strip assembly one, is installed on the side of the fixed door body near the 135° magnetic strip assembly one.
Citation Information
Patent Citations
Shower door rotating shaft assembly
CN210067747U
Limiting rotating shaft and shower room
CN210977003U
Assembled screen
CN218683479U
Sliding door structure and diamond type sliding door
CN221169243U