Door body assembly and shower room door

By setting connection holes and embedding connecting blocks on the shower door, combined with an improved pulley assembly structure, the problem of wobbling in the diamond-shaped shower door has been solved, achieving a stable connection and improved safety.

CN223577799UActive Publication Date: 2025-11-21FOSHAN SANSHUI KAILEDE BATHROOM CO LTD
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Patent Information

Application Number
CN202422890816.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-11-21
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

The existing diamond-shaped shower enclosure has a small connecting area for the movable door, making it prone to wobbling, posing a safety hazard, and affecting the user experience.

Method used

The door is covered with frame components on both sides. By setting connection holes on the door and embedding connection blocks, locking components are used to connect with the connection blocks. Combined with an improved pulley assembly structure, a stable connection between the door and the frame components is ensured.

Benefits of technology

The connection strength between the door and the frame components has been improved, preventing wobbling and enhancing the user experience and safety.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223577799U_ABST
Patent Text Reader

Abstract

The utility model discloses a door body assembly and a shower room door, and relates to the technical field of bathroom products. The connecting holes are formed in the two sides of the door body in the first direction correspondingly. One connecting block is at least embedded into one connecting hole, so that the connecting block is connected with the door body; the two frame pieces are arranged on the two sides of the door body in the first direction correspondingly, and connecting grooves extending in the second direction are formed in the frame pieces so that the door body can be embedded into the connecting grooves and connected with the frame pieces. The locking pieces penetrate through the frame pieces and are connected to the connecting blocks, and one connecting block is at least connected with one locking piece. According to the door body assembly and the shower room door, the connecting hole is formed in the door body, the connecting block is embedded and installed in the connecting hole, the locking piece can lock the frame piece and the connecting block, the connecting strength between the locking piece and the connecting block is larger than the connecting strength of a glass door clamped by a suspension clamp, and therefore the door body assembly and the shower room door are stably connected, and the service life of the door body assembly and the shower room door is prolonged. The shaking cannot easily occur.
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Description

TECHNICAL FIELD

[0001] The utility model relates to bathroom product technical field, in particular to a door body subassembly and shower room door. BACKGROUND

[0002] Shower room is a bathroom facility that makes full use of the bathroom space, which clearly divides the showering range in the bathroom through the partition door, thereby forming a relatively independent bathing space, wherein the diamond-shaped shower room is connected in turn through multi-faceted shower glass, which can divide an independent showering space with a small space occupation, and is more suitable for small-sized bathroom.

[0003] At present, most of the existing diamond-shaped shower rooms adopt a hanging clamp to fix the movable door body, however, the connection area of the hanging clamp and the movable door body is small, the movable door body is easy to shake, and there is a certain safety hazard, and in addition, the hanging clamp installed on the movable door body is conspicuous, which is easy to bring discomfort to the user and affect the user's use experience. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a door body subassembly and shower room door, which coats the side of the door body through the frame, ensures the stable connection of the frame and the door body, and solves the problems of the existing diamond-shaped shower room, such as the existence of a certain safety hazard of the movable door body and the influence on the user's use experience.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] A door body subassembly has a first direction, a second direction and a third direction perpendicular to each other, which comprises:

[0007] A door body;

[0008] A plurality of connecting holes are arranged on both sides of the door body in the first direction;

[0009] A plurality of connecting blocks are arranged in the connecting holes, and the connecting blocks are connected to the door body;

[0010] At least two frame members are arranged on both sides of the door body in the first direction, and the frame members are provided with connecting grooves extending in the second direction, so that the door body can be embedded in the connecting grooves and connected to the frame members; and

[0011] A plurality of locking members are arranged through the frame members and connected to the connecting blocks, and one connecting block is connected to one locking member.

[0012] In some embodiments, the connecting groove extends to the connecting block at least along the first direction, so that the connecting groove covers the connecting block.

[0013] In some embodiments, the connecting block is flush with the surface of the door body in the third direction, and the connecting block is flush with the surface of the door body in the first direction.

[0014] In some embodiments, the door body is formed with a plurality of connecting openings on both sides thereof in the first direction, one of the connecting openings being in communication with one of the connecting holes, and the length of the connecting opening is less than the maximum length of the connecting block in the second direction.

[0015] In some embodiments, the door body assembly further comprises:

[0016] a plurality of pads, one of the pads being arranged between one of the connecting blocks and one of the connecting holes.

[0017] Based on the above door body assembly, the present application further provides a shower room door, which comprises:

[0018] a guide rail assembly having a first rail set and a second rail set;

[0019] at least one fixed door arranged in the first rail set;

[0020] any one of the above door body assemblies, the door body assembly being movably connected in the second rail set, so that the door body assembly can move relative to the fixed door along the second rail set.

[0021] In some embodiments, the guide rail assembly comprises:

[0022] an upper rail member provided with a first upper groove and a second upper groove, the first upper groove being arranged on the front side of the second upper groove, and the inner wall of the second upper groove being provided with a plurality of guide strips extending towards the interior, the guide strips being arranged in staggered manner in the second direction; and / or,

[0023] a lower rail member provided with a second lower groove, the second lower groove being capable of matching the second upper groove to form the second rail set; and the lower rail member being provided with a receiving surface for receiving the fixed door, the receiving surface being capable of matching the first upper groove to form the first rail set.

[0024] In some embodiments, the upper rail member comprises:

[0025] The first profile member is provided with the first upper groove body, and the first profile member is provided with a first extension block at the front side of the first upper groove body;

[0026] The second profile member is wrapped around the first profile member, and the second profile member is provided with the second upper groove body.

[0027] In some embodiments, the frame member is provided with a guide wheel assembly, so that the door body can move along the second track group, wherein the guide wheel assembly comprises:

[0028] The upper pulley assembly comprises a pulley shaft and two upper pulleys, the pulley shaft is arranged along the second direction and connected to the door body, the two upper pulleys are arranged transversely in the second upper groove body and can slide on the guide bar, and the two upper pulleys are arranged on the pulley shaft and spaced apart along the second direction.

[0029] The lower pulley assembly comprises at least one lower pulley, and the lower pulley is arranged transversely in the second lower groove body, so that the lower pulley can slide on the side wall of the second lower groove body.

[0030] In some embodiments, the frame member comprises:

[0031] The frame body is arranged along the second direction, and the connecting groove is formed in the frame body.

[0032] The top adapter is connected to the top of the frame body, and the top adapter is provided with a first adapter head extending out of the frame body or extending into the frame body, and the upper pulley assembly is connected to the first adapter head.

[0033] The bottom adapter is connected to the bottom of the frame body, and the bottom adapter is provided with a second adapter head arranged in the frame body, and the lower pulley assembly is connected to the second adapter head.

[0034] Compared with the prior art, the door body assembly and the shower door of the utility model have the beneficial effects that:

[0035] The door body assembly and the shower door can make the door body and the frame piece have sufficient connecting area, so that the connecting strength between the frame piece and the door body is ensured, and the door body assembly and the shower door can make the locking piece lock the frame piece and the connecting block by embedding the connecting block in the connecting hole of the door body, so that the connecting strength between the locking piece and the connecting block is greater than the connecting strength of the hanging clamp holding the glass door, so that the door body assembly and the shower door are stable and not easy to shake.

[0036] Moreover, the door body assembly and the shower door improve the structure of the upper pulley assembly, so that the upper pulley is transversely arranged in the second upper groove body and is commonly provided on the pulley shaft, so that the force applied by the door body to the pulley shaft is consistent with the direction of the gravity of the door body, so that the pulley shaft is prevented from being twisted and stuck by the upper pulley. BRIEF DESCRIPTION OF DRAWINGS

[0037] Figure 1 is a schematic view of the door body assembly in the embodiment of the utility model;

[0038] Figure 2 is an exploded schematic view of the door body assembly in the embodiment of the utility model;

[0039] Figure 3 is Figure 2 an enlarged view of A in the embodiment of the utility model;

[0040] Figure 4 is Figure 2 an enlarged view of B in the embodiment of the utility model;

[0041] Figure 5 is a cooperation schematic view of the connecting block, the pad block and the locking piece in the embodiment of the utility model;

[0042] Figure 6 is a schematic view of the shower door in the embodiment of the utility model;

[0043] Figure 7 is a cooperation schematic view of the door body assembly and the guide rail assembly in the embodiment of the utility model;

[0044] Figure 8 is a schematic view of the first track group and the second track group in the embodiment of the utility model;

[0045] Figure 9 is a schematic view of the first profile piece in the embodiment of the utility model;

[0046] Figure 10 is a schematic view of the second profile piece in the embodiment of the utility model;

[0047] Figure 11 is a schematic view of the upper pulley assembly in the embodiment of the present application;

[0048] Figure 12 is a schematic view of the frame member in the embodiment of the present application;

[0049] Figure 13 is a schematic view of another example of the frame member in the embodiment of the present application.

[0050] In the figure, 100, door body assembly; 200, shower room door; X, first direction; Y, second direction; Z, third direction; 1, door body; 2, connecting hole; 3, connecting block; 4, frame member; 4a, frame body; 4b, top adapter; 40b, first adapter; 4c, bottom adapter; 40c, second adapter; 5, locking member; 6, connecting groove; 7, connecting port; 8, cushion block; 9, guide rail assembly; 9a, first rail group; 9b, second rail group; 9c, upper rail member; 90c, first upper groove body; 91c, second upper groove body; 92c, first profile member; 93c, second profile member; 94c, first extension block; 910c, guide strip; 9d, lower rail member; 90d, second lower groove body; 91d, receiving surface; 10, first fixed door; 11, second fixed door; 12, handle; 13, guide wheel assembly; 13a, upper pulley assembly; 130a, pulley shaft; 131a, upper pulley; 13b, lower pulley assembly; 130b, lower pulley. DETAILED DESCRIPTION

[0051] The specific embodiments of the present application will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate the present application, but not to limit the scope of the present application.

[0052] In the description of the present application, it should be understood that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element. The terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0053] In the description of the utility model, it should be understood that the directions or positional relationships indicated by the terms "height", "upper", "lower", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like in the utility model are based on the directions or positional relationships shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.

[0054] In the description of the utility model, it should be understood that the terms "first", "second" in the utility model are only used for description purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include one or more of the features.

[0055] Embodiment

[0056] The door body assembly 100 of the embodiment of the utility model is used for a shower room. The door body assembly 100 of the embodiment has a first direction X, a second direction Y and a third direction Z perpendicular to each other, wherein the first direction X is defined as the left-right direction of the door body assembly 100, and the left side and the right side are distinguished by the direction of the user facing the door body assembly 100 when the user is outside the shower room; the second direction Y is defined as the up-down direction of the door body assembly 100, and the up and down are distinguished by the upper side and the lower side when the door body assembly 100 is generally normally used; and the third direction Z is defined as the front-rear direction of the door body assembly 100, and the front side is the side of the door body assembly 100 facing the user when the user is outside the shower room, and the opposite side is the rear side.

[0057] Reference Figures 1-13 The door body assembly 100 of the embodiment includes a door body 1, a plurality of connecting holes 2, a plurality of connecting blocks 3, two frame members 4 and a plurality of locking members 5, wherein the plurality of connecting holes 2 are respectively arranged on both sides of the door body 1 in the first direction X; each connecting block 3 is embedded into at least one connecting hole 2, so that the connecting block 3 is connected with the door body 1; the two frame members 4 are respectively arranged on both sides of the door body 1 in the first direction X, and the frame member 4 is provided with a connecting groove 6 extending along the second direction Y, so that the door body 1 can be embedded into the connecting groove 6 and connected with the frame member 4; the locking member 5 passes through the frame member 4 and is connected to the connecting block 3, and one connecting block 3 is connected to at least one locking member 5.

[0058] It should be noted that the door body 1 is generally a glass door as a door of a shower room. If the glass door is hoisted by using a hanging clamp, the hanging clamp and the glass door are often connected only by a bolt, the connecting area between the hanging clamp and the glass door is limited, and the structural strength of the glass door is low, which often leads to that the glass door hoisted by using the hanging clamp is easy to shake. Therefore, the door body assembly 100 of the embodiment can make the door body 1 connected with the frame member 4 by using the connecting block 3 with higher structural strength by arranging the connecting hole 2 on the door body 1 and embedding and installing the connecting block 3 in the connecting hole 2. In this way, the frame member 4 can wrap the door body 1 on both sides in the first direction X, the contact area of the door body 1 and the connecting structure is improved, and the connecting block 3, the frame member 4 and the locking member 5 can form a connecting cooperation with higher rigidity. For example, a threaded hole is arranged in the connecting block 3, the locking member 5 is penetrated into the threaded hole in a bolt structure, and the connecting block 3 and the locking member 5 are connected in a threaded cooperation manner, so as to improve the connecting strength of the door body 1 and the connecting structure and avoid shaking of the door body 1.

[0059] It should be noted that the connecting hole 2 can penetrate the door body 1 in the third direction Z, so as to form a through hole structure on the door body 1, or the connecting hole 2 can not penetrate the door body 1, so as to form a counterbore structure on the door body 1. The arrangement mode of the connecting hole 2 can be adjusted according to the outer dimension of the door body 1. For example, when the thickness of the door body 1 is large, the connecting hole 2 can adopt a counterbore structure or a through hole structure, and when the thickness of the door body 1 is small, the connecting hole 2 generally adopts a through hole structure.

[0060] It should be noted that at least one connecting hole 2 is arranged on both sides of the door body 1 in the first direction X, that is, on the left side of the door body 1 and on the right side of the door body 1, so as to ensure that the two frame members 4 can be connected with the door body 1. The outer contour of the connecting hole 2 can be adjusted according to the outer contour of the connecting block 3, so as to ensure that the connecting block 3 and the connecting hole 2 can be adaptively installed. Of course, the connecting block 3 and the connecting hole 2 do not require one-to-one corresponding cooperation. In some examples, one connecting block 3 can cooperate with multiple connecting holes 2. For example, the multiple connecting holes 2 are multiple circular counterbores arranged at intervals, and the connecting block 3 adopts multiple cylindrical connections. At this time, one connecting block 3 can be simultaneously embedded into multiple connecting holes 2, so as to achieve adaptive installation with the multiple connecting holes 2.

[0061] It should be noted that the number of the frame members 4 can be greater than two. For example, the left side of the door body 1 is wrapped by two frame members 4 in a cooperation mode, and the two frame members 4 are arranged at intervals in the second direction Y. In this way, the cooperation and connection of the frame members 4 and the door body 1 can be achieved, and the arrangement of the connecting groove 6 will not be affected.

[0062] It should be noted that a plurality of locking members 5 can be connected to the same connecting block 3. According to the size of the connecting block 3, the number of locking members 5 adapted to the same connecting block 3 can be adjusted to ensure that the connecting block 3 can be connected tightly with the frame member 4. For example, when the size of the connecting block 3 is large, the same connecting block 3 can be connected by two, three or more than three locking members 5.

[0063] In order to avoid the connecting block 3 exposed to the external environment, the connecting block 3 can be hidden in the connecting groove 6, and the frame member 4 is used to protect the connecting block 3. Referring to Figure 1 As an example of the present embodiment, the connecting groove 6 extends to the connecting block 3 at least along the first direction X, so that the connecting groove 6 covers the connecting block 3.

[0064] By adjusting the height of the connecting groove 6, the connecting groove 6 extends to the position of the connecting block 3, so that not only the connecting block 3 can be avoided to be exposed, but also the contact area between the frame member 4 and the door body 1 can be ensured, and the connection between the frame member 4 and the door body 1 is stable.

[0065] In order to facilitate the connecting block 3 to be hidden in the connecting groove 6, the connecting block 3 needs to avoid protruding from the door body 1, so as to avoid the interference between the connecting block 3 and the frame member 4. As an example of the present embodiment, the connecting block 3 is flush with the surface of the door body 1 in the third direction Z, and the connecting block 3 is flush with the surface of the door body 1 in the first direction X. In this way, when the connecting block 3 is hidden in the connecting groove 6, the door body 1 can be fitted with the connecting groove 6, and the connection between the frame member 4 and the door body 1 is stable.

[0066] It can be understood that when the locking member 5 passes through the frame member 4 and is connected to the connecting block 3, it needs to pass into the connecting hole 2. If the connecting hole 2 is not connected to the edge of the door body 1, the locking member 5 also needs to pass into the door body 1, and the installation process is more complicated. For this purpose, referring to Figures 2-3 As an example of the present embodiment, a plurality of connecting openings 7 are formed on both sides of the door body 1 in the first direction X, one connecting opening 7 is connected to one connecting hole 2, and in the second direction Y, the length L1 of the connecting opening 7 is less than the maximum length L2 of the connecting block 3.

[0067] By providing the connecting opening 7, the locking member 5 can pass into the connecting hole 2 through the connecting opening 7 and be connected to the connecting block 3. Moreover, by limiting the length L1 of the connecting opening 7 to be less than the maximum length L2 of the connecting block 3, it can be ensured that the connecting block 3 cannot be pulled out of the connecting hole 2 from the connecting opening 7. In this way, when the locking member 5 is connected to the connecting block 3 and the frame member 4 is pulled tight with the connecting block 3, the connecting block 3 can drive the door body 1 to contact the frame member 4, and the connection between the frame member 4 and the door body 1 is stable.

[0068] Generally, the connecting block 3 is made of metal to ensure the connecting strength between the connecting block 3 and the locking member 5. Considering that the door body 1 is generally a glass door, the connecting block 3 made of metal is easy to wear the door body 1. In this regard, referring to Figure 2 , 5 As an example of the present embodiment, the door body assembly 100 further comprises a plurality of pads 8, one pad 8 is arranged between one connecting block 3 and one connecting hole 2.

[0069] The pad 8 can be a rubber pad, which serves as a buffer structure between the connecting block 3 and the door body 1, so as to ensure that the connecting block 3 is directly and hard connected with the door body 1, which leads to the connecting block 3 wearing the door body 1.

[0070] Referring to Figures 6-13 Based on the above-mentioned door body assembly 100, the present embodiment further provides a shower door 200, which comprises a guide rail assembly 9, a first fixed door 10, a second fixed door 11 and the door body assembly 100. The guide rail assembly 9 has a first rail set 9a and a second rail set 9b. The first fixed door 10 and the second fixed door 11 are arranged in the first rail set 9a and are spaced apart. The door body assembly 100 is movably connected in the second rail set 9b, so that the door body assembly 100 can move relative to the first fixed door 10 and the second fixed door 11 along the second rail set 9b, and when the shower door 200 is closed, the door body assembly 100 is located between the first fixed door 10 and the second fixed door 11.

[0071] The door body 1 can be provided with a handle 12. A user drives the door body assembly 100 to move relative to the first fixed door 10 and the second fixed door 11 along the second rail set 9b through the handle 12. Figure 6 When the door body assembly 100 is away from the position shown in the figure, the space originally occupied by the door body assembly 100 is opened, thereby forming an opening through which the shower door 200 can be entered or exited. At this time, the shower door 200 is in an open state. Figure 5 When the door body assembly 100 returns to the position shown in the figure, the door body assembly 100 will close the opening, at which time the shower door 200 is in a closed state.

[0072] It should be noted that the number of fixed doors configured on the shower door 200 can be adjusted according to the specifications of the shower door 200. In other examples, the shower door 200 can also be configured with only one fixed door, or three or more fixed doors. Regardless of whether the shower door 200 is configured with one fixed door or two or more fixed doors, there will always be a gap between the fixed door(s) and the first track group 9a to allow the door assembly 100 to move into the gap to close the shower door 200, and to move away from the gap to open the shower door 200.

[0073] The track assembly 9 is distributed on the upper and lower sides of the door assembly 100, the first fixed door 10, and the second fixed door 11 to ensure that the door assembly 100, the first fixed door 10, and the second fixed door 11 can be stably arranged. Referring to Figure 7 As an example of the present embodiment, the track assembly 9 includes an upper track piece 9c and a lower track piece 9d. The upper track piece 9c is provided with a first upper groove 90c and a second upper groove 91c arranged with notches facing downward. The first upper groove 90c is arranged on the front side of the second upper groove 91c, and the inner wall of the second upper groove 91c is provided with two guide strips 910c extending inward. The two guide strips 910c are arranged staggered in the second direction Y. The lower track piece 9d is provided with a second lower groove 90d arranged with notches facing downward. The second lower groove 90d can be matched with the second upper groove 91c to form a second track group 9b. The lower track piece 9d is further provided with a receiving surface 91d for receiving the fixed door. The receiving surface 91d can be matched with the upper groove to form a first track group 9a.

[0074] In some examples, the material of the outer wall surface of the upper track piece 9c is different from the material of the second upper groove 91c. For example, the outer wall surface of the upper track piece 9c is made of stainless steel to ensure that the appearance of the shower door 200 meets the needs of users, and the second upper groove 91c is made of aluminum to reduce the weight of the upper track piece 9c. For this purpose, referring to Figures 8-10 As an example of the present embodiment, the upper track piece 9c includes a first profile piece 92c and a second profile piece 93c. The first profile piece 92c has a first upper groove 90c formed therein, and is provided with a first extension block 94c located on the front side of the first upper groove 90c. The second profile piece 93c wraps around the first profile piece 92c, and has a second upper groove 91c formed therein. The second upper groove 91c is arranged below the first extension block 94c.

[0075] By dividing the upper rail piece 9c into two profile pieces, the first profile piece 92c and the second profile piece 93c, different materials can be used according to the user's needs, and by providing the first extension block 94c on the first profile piece 92c, the second upper groove body 91c is separated by the first extension block 94c, and the upper rail piece 9c can be matched with the bolt by the first extension block 94c to avoid the bolt penetrating into the door body 1 and damaging the door body 1.

[0076] It should be noted that the upper rail piece 9c and the lower rail piece 9d of the present embodiment are not the only matching structure. For the guide rail assembly 9 of the present embodiment, the upper rail piece 9c can also be matched with other rail structures to form corresponding first rail groups 9a and second rail groups 9b, and similarly, the lower rail piece 9d can also be matched with other rail structures to form corresponding first rail groups 9a and second rail groups 9b, so the guide rail assembly 9 of the present embodiment can choose the upper rail piece 9c and the lower rail piece 9d, and other rail structures can refer to existing other rail designs, which will not be described here.

[0077] In the upper rail piece 9c, the two guide strips 910c are arranged in staggered arrangement in the second direction Y, which can divide two guide channels in the second upper groove body 91c, and the two guide channels are arranged in an up-down arrangement in the second direction Y. In order to match the layout of the two guide channels, the frame piece 4 can be provided with corresponding guide structures.

[0078] Reference Figure 7 , 11 As an example of the present embodiment, the frame piece 4 is provided with a guide wheel assembly 13, so that the door body 1 can walk along the second rail group, wherein the guide wheel assembly 13 includes an upper pulley assembly 13a, wherein the upper pulley assembly 13a includes a pulley shaft 130a and two upper pulleys 131a, the pulley shaft 130a is arranged along the second direction Y and connected to the door body 1; the two upper pulleys 131a are transversely arranged in the second upper groove body 91c and can slide on the guide strip 910c, and the two upper pulleys 131a are arranged on the pulley shaft 130a and are arranged in the second direction Y.

[0079] The pulley shaft 130a arranged along the second direction Y can be directly connected to the top of the door body 1, so that the force applied by the door body 1 to the pulley shaft 130a is consistent with the direction of gravity of the door body 1. Moreover, since the two guide channels are arranged in an up-down manner along the second direction Y, one upper pulley 131a is arranged in one guide channel, so that the force applied by the door body 1 to the pulley shaft 130a causes the upper pulley 131a to be pressed against the upper surface of the guide strip 910c. Since the two guide strips 910c are arranged in a staggered manner along the second direction Y, that is, one guide strip 910c is arranged on the front inner wall of the second upper groove body 91c, and the other guide strip 910c is arranged on the rear inner wall of the second upper groove body 91c, the force points of one upper pulley 131a and the corresponding guide strip 910c are located on the front side of the second upper groove body 91c, and the force points of the other upper pulley 131a and the corresponding guide strip 910c are located on the rear side of the second upper groove body 91c. The two upper pulleys 131a are balanced in force, avoiding the situation that the pulley is stuck.

[0080] It should be noted that the two upper pulleys 131a are arranged transversely, that is, the rotation axis of the upper pulley 131a extends along the second direction Y, so that the upper pulley 131a rotates in a plane perpendicular or close to perpendicular to the second direction Y. The upper pulley 131a rotates close to the plane perpendicular to the second direction Y, which is generally caused by the machining precision error, so that the rotation axis of the upper pulley 131a is not on the second direction Y.

[0081] Of course, the guide wheel assembly 13 can also include a lower pulley assembly 13b. As an example of the present embodiment, the lower pulley assembly 13b at least includes a lower pulley 130b, which is arranged transversely in the second lower groove body 90d, so that the lower pulley 130b can slide on the side wall of the second lower groove body 90d. In this way, the lower pulley 130b can be hidden in the second lower groove body 90d, avoiding exposure to the external environment.

[0082] In order to connect the guide wheel assembly 13, the frame member 4 can be configured with an adapter structure to facilitate the connection and cooperation of the guide wheel assembly 13 and the frame member 4. Referring to Figures 12-13 As an example of the present embodiment, the frame member 4 includes a frame body 4a, a top adapter 4b and a bottom adapter 4c. The frame body 4a extends along the second direction Y, and the connecting groove 6 is formed in the frame body 4a. The top adapter 4b is connected to the top of the frame body 4a, and the top adapter 4b is provided with a first adapter head 40b extending out of or into the frame body 4a, and the upper pulley assembly 13a is connected to the first adapter head 40b. The bottom adapter 4c is connected to the bottom of the frame body 4a, and the bottom adapter 4c is provided with a second adapter head 40c located in the frame body 4a, and the lower pulley assembly 13b is connected to the second adapter head 40c.

[0083] The outer profiles of the top adapter 4b and the bottom adapter 4c can be adjusted according to the specifications of the guide rail assembly 9 to ensure that the upper pulley assembly 13a and the lower pulley assembly 13b can be respectively fitted and installed with the first track set 9a and the second track set 9b. The top adapter 4b and the bottom adapter 4c can be welded on the frame body 4a to make the top adapter 4b and the bottom adapter 4c connected stably with the frame body 4a.

[0084] In summary, the door body assembly 100 and the shower door 200 are provided, which can make the door body 1 and the frame member 4 have sufficient connection area to ensure the connection strength between the frame member 4 and the door body 1, and the door body assembly 100 and the shower door 200 can make the locking member 5 lock the frame member 4 and the connecting block 3 by setting the connecting hole 2 on the door body 1 and embedding and installing the connecting block 3 in the connecting hole 2, and the connecting block 3 can be made of a material different from that of the door body 1, such as a metal member, so that the connection strength between the locking member 5 and the connecting block 3 is greater than the connection strength of the hanging clamp holding the glass door, thereby making the door body assembly 100 and the shower door 200 connected stably and not easy to shake.

[0085] Moreover, the door body assembly 100 and the shower door 200 can improve the structure of the upper pulley assembly 13a to make the upper pulley 131a horizontally arranged in the second upper groove body 91c and commonly provided on the pulley shaft 130a, so that the force applied by the door body 1 to the pulley shaft 130a is consistent with the direction of the gravity of the door body 1, which can avoid the pulley shaft 130a being twisted by force and causing the upper pulley 131a to be stuck.

[0086] The above only describes the preferred embodiments of the present application, and it should be noted that for those skilled in the art, without departing from the technical principles of the present application, some improvements and replacements can be made, and these improvements and replacements should also be considered as the protection scope of the present application.

Claims

1. A door body assembly (100) having a first direction (X), a second direction (Y), and a third direction (Z) perpendicular to each other in pairs, characterized in that, The door body (1) comprises: a plurality of connecting holes (2), each of which is arranged on the door body (1) at two sides in the first direction (X); a plurality of connecting blocks (3), each of which is embedded into at least one of the connecting holes (2) to connect the connecting block (3) with the door body (1); at least two frame members (4), each of which is arranged on the door body (1) at two sides in the first direction (X), and each of which is provided with a connecting groove (6) extending in the second direction (Y) to enable the door body (1) to be embedded into the connecting groove (6) to connect the door body (1) with the frame member (4); and a plurality of locking members (5), each of which passes through the frame member (4) and connects with at least one of the connecting blocks (3). The connecting groove (6) extends at least in the first direction (X) to the connecting block (3) to cover the connecting block (3).

2. The door assembly (100) of claim 1, wherein, The connecting block (3) is flush with the surface of the door body (1) in the third direction (Z), and the connecting block (3) is flush with the surface of the door body (1) in the first direction (X).

3. The door assembly (100) of claim 1, wherein, The door body (1) is provided with a plurality of connecting openings (7) at two sides in the first direction (X), each of which is connected with one of the connecting holes (2), and the length of the connecting opening (7) in the second direction (Y) is less than the maximum length of the connecting block (3).

4. The door assembly (100) of claim 1, wherein, The door body assembly (100) further comprises:

5. The door assembly (100) of claim 1, wherein, a plurality of pad blocks (8), each of which is arranged between one of the connecting blocks (3) and one of the connecting holes (2). The door body assembly (100) further comprises:

6. A shower door (200), characterized in that a guide rail assembly (9) comprising a first rail group (9a) and a second rail group (9b); at least one fixed door arranged in the first rail group (9a); the door body assembly (100) according to any one of claims 1-5, which is movably connected in the second rail group (9b) to enable the door body assembly (100) to move relative to the fixed door along the second rail group (9b). The guide rail assembly (9) comprises:

7. The shower door (200) of claim 6, wherein, an upper rail member (9c) provided with a first upper groove (90c) and a second upper groove (91c) arranged with notches facing downward, the first upper groove (90c) being arranged at the front side of the second upper groove (91c), and the inner wall of the second upper groove (91c) being provided with a plurality of guide strips (910c) extending inward, the plurality of guide strips (910c) being arranged staggered in the second direction (Y); and / or, ​ The lower rail piece (9d) is provided with a second lower groove (90d) arranged with a notch downward, which can be matched with the second upper groove (91c) to form the second rail group (9b); and the lower rail piece (9d) is provided with a receiving surface (91d) for receiving the fixed door, which can be matched with the first upper groove (90c) to form the first rail group (9a).

8. The shower door (200) according to claim 7, characterized in that The upper rail piece (9c) comprises: A first profile piece (92c) in which the first upper groove (90c) is formed, and the first profile piece (92c) is provided with a first extension block (94c) located at the front side of the first upper groove (90c); A second profile piece (93c) wrapping the first profile piece (92c), and the second profile piece (93c) is formed with the second upper groove (91c) inside, which is arranged below the first extension block (94c).

9. The shower door (200) of claim 7, wherein, The frame piece (4) is provided with a guide wheel assembly (13) to enable the door body (1) to move along the second rail group (9b), wherein the guide wheel assembly (13) comprises: An upper pulley assembly (13a) comprising at least a pulley shaft (130a) and two upper pulleys (131a), the pulley shaft (130a) is arranged along the second direction (Y) and connected to the door body (1); the two upper pulleys (131a) are transversely arranged in the second upper groove (91c) and can slide on the guide strip (910c), and the two upper pulleys (131a) are arranged on the pulley shaft (130a) and are spaced apart along the second direction (Y); A lower pulley assembly (13b) comprising at least one lower pulley (130b), the lower pulley (130b) is transversely arranged in the second lower groove (90d) to enable the lower pulley (130b) to slide on the side wall of the second lower groove (90d).

10. The shower door (200) of claim 9, wherein, The frame piece (4) comprises: A frame body (4a) extending along the second direction (Y), and the connecting groove (6) is formed in the frame body (4a); A top adapter (4b) connected to the top of the frame body (4a), and the top adapter (4b) is provided with a first adapter head (40b) extending out of the frame body (4a) or extending into the frame body (4a), and the upper pulley assembly (13a) is connected to the first adapter head (40b); A bottom adapter (4c) is connected to the bottom of the frame body (4a), and the bottom adapter (4c) is provided with a second adapter (40c) located in the frame body (4a), and the lower pulley assembly (13b) is connected to the second adapter (40c).