Door body assembly

By incorporating upper and lower adjustment components into the door assembly, the installation difficulties caused by errors in the door frame profiles are resolved, achieving adjustability of the door frame and ensuring smooth assembly.

CN223964366UActive Publication Date: 2026-03-03FOSHAN SANSHUI KAILEDE BATHROOM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

The lack of adjustable features in existing door frame profiles results in high requirements for the dimensional matching of the upper and lower side frames with the left and right side frames. This can easily lead to mismatches and installation errors due to measurement and production mistakes, affecting the assembly of the door frame.

Method used

Design a door assembly that uses upper and lower adjustment parts in the upper and lower side frames, and utilizes threaded fit and connecting seat to achieve position adjustment, ensuring that the upper and lower side frames can move in a second direction to adapt to size fluctuations and expand the fit.

Benefits of technology

The position adjustment of the upper and lower side frames in the second direction was achieved, ensuring that the door frame could be assembled smoothly and matched even when the length fluctuated due to errors, thus improving the assembly success rate of the door frame.

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Abstract

The utility model discloses a door body assembly, and relates to the technical field of sanitary products, the door body assembly comprises an upper connecting seat and an upper adjusting piece, the upper connecting seat is arranged in a left side frame and a right side frame, and the connecting seat extends towards the upper side frame along a second direction so as to extend into the upper side frame and support the upper side frame; the upper adjusting piece is arranged in the upper side frame and extends in the second direction so as to abut against the upper connecting base in the upper side frame. Moreover, the upper adjusting part is configured to drive the upper side frame to move along the second direction, so that the upper side frame can move in the accommodating space. According to the door body assembly, under the cooperation of the upper connecting base and the upper side frame, the upper side frame can be arranged between the left side frame and the right side frame, and the upper side frame can move relative to the left side frame and the right side frame in the second direction, so that the upper side frame has the function of adjusting the position in the second direction.
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Description

Technical Field

[0001] This utility model relates to the field of bathroom product technology, and in particular to a door assembly. Background Technology

[0002] A shower enclosure is a bathroom facility that makes full use of the bathroom space. It clearly defines the shower area in the bathroom through a partition door, thus forming a relatively independent bathing space. The partition door is usually a sliding door, which requires the use of door frame profiles to build a track and door frame in the bathroom, allowing the partition door to slide within the track and realize the opening and closing of the shower enclosure.

[0003] Existing door frame profiles lack adjustability, and the dimensional fit requirements between the upper and lower side frames and the left and right side frames are relatively high. However, due to measurement and / or manufacturing errors, the lengths of the upper and lower side frames may fluctuate within a certain range, which can easily lead to the upper and lower side frames not matching the left and right side frames for installation, resulting in the door frame being unable to be assembled. Utility Model Content

[0004] The purpose of this invention is to provide a door assembly that enables the door frame profile to have a position adjustment function, thereby solving the problem of insufficient adjustability of existing door frames.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A door assembly has a first direction, a second direction, and a third direction that are mutually perpendicular to each other, and the door assembly includes:

[0007] A left frame, which is arranged along the first direction;

[0008] The right frame is arranged along the first direction and is arranged opposite to the left frame in the second direction;

[0009] The upper side frame is arranged between the left side frame and the right side frame and extends along the second direction; and the length of the upper side frame in the second direction is less than the accommodating distance between the left side frame and the right side frame in the second direction.

[0010] A lower side frame, wherein the lower side frame is disposed below the upper side frame and positioned between the left side frame and the right side frame, and the lower side frame extends along the second direction; and,

[0011] An upper connecting seat is disposed within the left side frame and the right side frame, and the upper connecting seat extends toward the upper side frame along the second direction to extend into the upper side frame and support the upper side frame.

[0012] An upper adjusting member is disposed within the upper side frame and extends along the second direction, thereby abutting against the upper connecting seat within the upper side frame; and the upper adjusting member is configured to drive the upper side frame to move along the second direction, thereby moving the upper side frame within the accommodating spacing.

[0013] In some embodiments, an upper adjusting seat that moves synchronously with the upper side frame is connected inside the upper side frame, and a first threaded hole is provided in the upper adjusting seat; the upper adjusting member passes through the first threaded hole and forms a threaded engagement with the first threaded hole.

[0014] In some embodiments, the upper adjustment seat is detachably connected to the upper side frame; and the upper side frame is provided with a first mounting hole that extends along the first direction, and the upper adjustment seat is embedded in the first mounting hole.

[0015] In some embodiments, a second mounting hole is provided in the upper side frame, which is through the first direction and is connected to the first mounting hole in the second direction; and the upper adjusting member enters the upper side frame through the second mounting hole and passes through the upper adjusting seat.

[0016] In some embodiments, the upper side frame is provided with a track groove and an adjustment groove, the track groove and the adjustment groove extending along the second direction, and the track groove and the adjustment groove being spaced apart in the third direction; the upper connecting seat extends into the adjustment groove and connects to the upper side frame, and...

[0017] Both the first mounting hole and the second mounting hole are connected to the adjustment groove, and the upper adjustment seat and the upper adjustment member are disposed in the adjustment groove.

[0018] In some embodiments, a first partition extending along the second direction is provided in the adjustment groove; the first partition divides the adjustment groove and forms a first channel and a second channel spaced apart in the first direction, wherein the upper connecting seat extends into the first channel and is connected to the upper side frame, and both the first mounting hole and the second mounting hole are connected to the first channel, the upper adjusting seat and the upper adjusting member are disposed in the first channel; the second channel is arranged below the first channel and is used to assemble a partition door.

[0019] In some embodiments, the first partition plate is provided with a positioning hole that extends through the first direction and is connected to the first mounting hole; and the upper adjusting seat is provided with a positioning part that extends outward, and the upper adjusting seat can be inserted into the first mounting hole so that the positioning part is inserted into the positioning hole.

[0020] In some embodiments, the upper side frame is provided with an adjustment groove separated from the end of the upper side frame, the adjustment groove extending along the second direction and extending through the first direction; the upper connecting seat is connected with an upper fastener, the upper fastener passing through the adjustment groove, and is able to press the upper side frame against the upper connecting seat and limit the displacement of the upper side frame in the second direction.

[0021] In some embodiments, the length of the lower frame in the second direction is less than the accommodating spacing between the left and right frames in the second direction; and,

[0022] The lower side frame is connected to a lower adjusting seat and a lower adjusting member. The lower adjusting seat moves synchronously with the lower side frame, and a second threaded hole is provided in the lower adjusting seat. The lower adjusting member passes through the second threaded hole and forms a threaded engagement with the second threaded hole. Furthermore, the lower adjusting member extends along the second direction and abuts against at least one of the left side frame and the right side frame. The lower adjusting member is configured to drive the lower side frame to move along the second direction, thereby allowing the lower side frame to move within the accommodating distance.

[0023] In some embodiments, a second partition extending along the second direction is provided in the lower side frame, the second partition and the lower side frame cooperate to form a third channel, the third channel is arranged above the second partition, and the lower adjustment seat is embedded in the third channel and connected and fixed to the lower side frame.

[0024] Compared with the prior art, the door assembly implemented in this utility model has the following advantages:

[0025] With the cooperation of the upper connecting seat and the upper side frame, the upper side frame of this door assembly can be positioned between the left side frame and the right side frame. Furthermore, the upper side frame can move relative to the left side frame and the right side frame in the second direction, thereby enabling the upper side frame to adjust its position in the second direction and expanding the fit between the upper side frame and the left side frame and the right side frame. In this way, even if the length of the upper side frame in the second direction fluctuates due to measurement errors and / or production errors, the upper side frame can still be assembled relatively smoothly between the left side frame and the right side frame, thus completing the assembly of the door frame.

[0026] Furthermore, by setting the upper adjusting seat and the upper adjusting member, the upper adjusting member is pressed against the corresponding upper connecting seat. The reaction force generated by the movement of the upper adjusting member enables the upper adjusting seat to drive the upper side frame to move along the second direction, thereby enabling the upper side frame to achieve fine-tuning of its position.

[0027] Furthermore, with the cooperation of the lower adjusting seat and the lower adjusting member, the lower side frame of this door assembly can be arranged between the left side frame and the right side frame, and extends to abut against the left side frame and the right side frame through the lower adjusting member, so that the lower side frame cooperates with the left side frame and the right side frame, thereby forming the door frame of this door assembly. Attached Figure Description

[0028] Figure 1 This is a schematic diagram of the door assembly in an embodiment of this utility model;

[0029] Figure 2 yes Figure 1 An exploded view of the structure shown.

[0030] Figure 3 yes Figure 2 Enlarged view of A in the middle;

[0031] Figure 4 This is a schematic diagram showing the cooperation between the left side frame, the upper side frame, the upper connecting seat, and the upper adjusting seat in an embodiment of this utility model.

[0032] Figure 5 This is a schematic diagram of the upper adjustment seat in an embodiment of this utility model;

[0033] Figure 6 This is a schematic diagram of the upper side frame in an embodiment of this utility model;

[0034] Figure 7 This is a partial schematic diagram of the lower side frame in an embodiment of this utility model;

[0035] Figure 8 This is a schematic diagram showing the cooperation between the lower side frame, the right side frame, the lower adjusting member, and the lower adjusting seat in an embodiment of this utility model;

[0036] Figure 9 This is a schematic diagram of the lower adjustment seat in an embodiment of this utility model;

[0037] Figure 10 This is a schematic diagram showing the cooperation between the door frame, the upper connecting seat, the upper adjusting member, and the lower adjusting member in an embodiment of this utility model.

[0038] In the diagram, 100 is the door assembly; 200 is the partition door; X is the first direction; Y is the second direction; Z is the third direction; D is the accommodating spacing; 1 is the left side frame; 2 is the right side frame; 3 is the upper side frame; 4 is the lower side frame; 5 is the upper adjusting seat; 5a is the first threaded hole; 5b is the positioning part; 6 is the upper connecting seat; 7 is the upper adjusting component; 8 is the first mounting hole; 9 is the second mounting hole; 10 is the track groove; 11 is the adjusting groove; 11a is the first channel; 11b is the second channel; 12 is the first partition; 13 is the positioning hole; 14 is the adjusting groove; 15 is the upper fastener; 16 is the lower adjusting seat; 16a is the second threaded hole; 17 is the lower adjusting component; 18 is the second partition; 19 is the third channel. Detailed Implementation

[0039] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit its scope.

[0040] In the description of this utility model, it should be understood that when an element is referred to as "fixed to" or "set on" another element, it can be directly on or indirectly on the other element. When an element is referred to as "connected to" another element, it can be directly connected to or indirectly connected to the other element. The terms "mounted," "connected," and "attached" should be interpreted broadly, for example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two elements or the interaction between two elements. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood according to the specific circumstances.

[0041] In the description of this utility model, it should be understood that the terms "height," "upper," "lower," "vertical," "horizontal," "top," "bottom," "inner," and "outer" used to indicate the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0042] In the description of this utility model, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" and "second" may explicitly or implicitly include one or more of that feature.

[0043] Example

[0044] This utility model embodiment provides a door assembly 100, which is mounted on the wall of a bathroom to divide the bathroom into a shower area, thereby forming a relatively independent bathing space. It should be noted that the door assembly 100 has a first direction X, a second direction Y, and a third direction Z that are mutually perpendicular. The first direction X is defined as the height direction of the door assembly 100, and the upper and lower sides are distinguished by the up and down orientation of the door assembly 100 during normal use. Y is the length direction of the door assembly 100, and the left and right sides are distinguished by the left and right orientation of the door assembly 100 when viewed from outside the bathing space. The third direction Z is the thickness direction of the door assembly 100, with the side of the door assembly 100 facing the outside of the bathing space being the front side and the opposite side being the rear side.

[0045] refer to Figure 1-10 The door assembly 100 includes a left side frame 1, a right side frame 2, an upper side frame 3, and a lower side frame 4. The left side frame 1 is arranged along a first direction X; the right side frame 2 is arranged along the first direction X and is arranged opposite to the left side frame 1 in a second direction Y; the upper side frame 3 is arranged between the left side frame 1 and the right side frame 2 and extends along the second direction Y; the lower side frame 4 is located below the upper side frame 3 and is arranged between the left side frame 1 and the right side frame 2, and extends along the second direction Y.

[0046] Understandably, this door assembly 100 is typically used in conjunction with the partition door 200. The left side frame 1, right side frame 2, upper side frame 3, and lower side frame 4 enclose and form a door frame. The partition door 200 is disposed within this door frame, and corresponding tracks are provided within the upper side frame 3 and lower side frame 4 for the partition door 200 to slide, thereby allowing the user to open and close the bathing space by pushing the partition door 200.

[0047] The length of the upper frame 3 in the second direction Y is usually matched with that of the left frame 1 and the right frame 2 to ensure that both ends of the upper frame 3 can be connected to the left frame 1 and the right frame 2 respectively. When the length of the upper frame 3 in the second direction Y is less than the accommodating spacing D of the left frame 1 and the right frame 2 in the second direction Y, the door assembly 100 may be provided with an upper adjustment unit so that the upper frame 3 can be connected to the left frame 1 and the right frame 2, and the position of the upper frame 3 relative to the left frame 1 and the right frame 2 can be adjusted. Specifically, the door assembly 100 also includes an upper connecting seat 6 and an upper adjusting member 7. The upper connecting seat 6 is disposed within the left side frame 1 and the right side frame 2, and extends along the second direction Y toward the upper side frame 3 to extend into the upper side frame 3 and support the upper side frame 3. The upper adjusting member 7 is disposed within the upper side frame 3 and extends along the second direction Y, thereby abutting against the upper connecting seat 6 within the upper side frame 3. Furthermore, the upper adjusting member 7 is configured to drive the upper side frame 3 to move along the second direction Y, thereby allowing the upper side frame 3 to move within the accommodating spacing D.

[0048] It should be noted that the allowable spacing D between the left frame 1 and the right frame 2 in the second direction Y refers to the distance between the inner sides of the sidewalls of the left frame 1 and the right frame 2 that are attached to the wall in the second direction Y. Generally, when the upper frame 3 moves relative to the left frame 1 and the right frame 2 in the second direction Y, it can move to the inner sides of the sidewalls of the left frame 1 and the right frame 2 that are attached to the wall. Therefore, the allowable spacing D between the left frame 1 and the right frame 2 in the second direction Y also reflects the adjustable space of the upper frame 3 in the second direction Y. It should be noted that the inner side of the sidewall of the left frame 1 that is attached to the wall refers to the side of the sidewall of the left frame 1 that is attached to the wall facing the right frame 2. Correspondingly, the inner side of the sidewall of the right frame 2 that is attached to the wall refers to the side of the sidewall of the right frame 2 that is attached to the wall facing the left frame 1.

[0049] With the cooperation of the upper connecting seat 6 and the upper side frame 3, even if the length of the upper side frame 3 in the second direction Y is less than the accommodating distance D between the left side frame 1 and the right side frame 2 in the second direction Y, the upper side frame 3 can still be arranged between the left side frame 1 and the right side frame 2. Furthermore, since the length of the upper side frame 3 in the second direction Y is less than the accommodating distance D between the left side frame 1 and the right side frame 2 in the second direction Y, there will be a certain gap between the left side of the upper side frame 3 and the left side frame 1, and / or between the right side of the upper side frame 3 and the right side frame 2. This gap allows the upper side frame 3 to move relative to the left side frame 1 and the right side frame 2 in the second direction Y, thereby enabling the upper side frame 3 to have the function of position adjustment in the second direction Y. Moreover, this gap expands the fit between the upper side frame 3 and the left side frame 1 and the right side frame 2. In this way, even if the length of the upper side frame 3 in the second direction Y fluctuates due to measurement error and / or production error, the upper side frame 3 can still be assembled relatively smoothly between the left side frame 1 and the right side frame 2, thereby completing the assembly of the door frame.

[0050] It should be noted that there are generally two upper connecting seats 6, which are respectively set in the left frame 1 and the right frame 2 to ensure that the upper side frame 3 can be supported by the upper connecting seats 6. The upper adjusting component 7 can be a bolt. With the cooperation of the upper adjusting component 7 and the upper connecting seat 6, after the upper adjusting component 7, which is pressed against the upper connecting seat 6, is further tightened, the upper adjusting component 7 cannot move further to the corresponding upper connecting seat 6 due to the restriction of the upper connecting seat 6. In this way, under the influence of the reaction force, the upper connecting seat 6 will drive the upper side frame 3 connected to it to move to the other side, so that the user can use the upper adjusting component 7 to adjust the position of the upper side frame 3 between the left frame 1 and the right frame 2.

[0051] When the upper adjusting component 7 is bolted, a corresponding threaded structure can be provided inside the upper side frame 3 to form a threaded engagement with the upper adjusting component 7, thereby converting the rotational movement of the upper adjusting component 7 into the linear movement of the upper side frame 3. (Reference) Figure 3-6 As an example of this embodiment, an upper adjusting seat 5 that moves synchronously with the upper side frame 3 is connected inside the upper side frame 3. The upper adjusting seat 5 is provided with a first threaded hole 5a. The upper adjusting member 7 passes through the first threaded hole 5a and forms a threaded engagement with the first threaded hole 5a. In this way, with the cooperation of the upper adjusting seat 5 and the upper adjusting member 7, the two convert the rotation into linear motion through helical motion, so that the upper adjusting seat 5 can drive the upper side frame 3 to move along the second direction Y.

[0052] The upper adjusting base 5 and the upper side frame 3 can be detachably connected to facilitate the transportation and assembly of the upper adjusting base 5 and the upper side frame 3. The upper side frame 3 can have holes or slots for assembling the upper adjusting base 5. For example, see reference... Figure 3-6As an example of this embodiment, the upper side frame 3 is provided with a first mounting hole 8 that runs through the first direction X, and the upper adjustment seat 5 is embedded in the first mounting hole 8, so that the upper adjustment seat 5 is connected and fixed to the upper side frame 3.

[0053] Of course, to facilitate the cooperation between the upper adjusting component 7 and the upper adjusting seat 5, refer to Figure 3-6 As an example of this embodiment, a second mounting hole 9 can also be provided inside the upper side frame 3, which extends along the first direction X. The second mounting hole 9 is connected to the first mounting hole 8 in the second direction Y. In this way, the upper adjusting member 7 can enter the upper side frame 3 through the second mounting hole 9 and pass through the upper adjusting seat 5, so that both the upper adjusting seat 5 and the upper adjusting member 7 are built into the interior of the upper side frame 3, which provides protection for them. Moreover, since the second mounting hole 9 extends through the upper side frame 3 along the first direction X, the user can also touch the upper adjusting member 7 from above the upper side frame 3, thereby turning the upper adjusting member 7 to adjust the position of the upper side frame 3.

[0054] Understandably, the upper side frame 3 typically houses a guide rail for the sliding of the partition door 200. The upper connecting seat 6 and upper adjusting seat 5, located within the upper side frame 3, are prone to interfering with the partition door 200, thus affecting its sliding. For this reason, refer to... Figure 3-6 As an example of this embodiment, the upper side frame 3 is provided with a track groove 10 and an adjustment groove 11. The track groove 10 and the adjustment groove 11 extend along the second direction Y and are arranged at intervals in the third direction Z. The upper connecting seat 6 extends into the adjustment groove 11 and is connected to the upper side frame 3. The first mounting hole 8 and the second mounting hole 9 are both connected to the adjustment groove 11. The upper adjusting seat 5 and the upper adjusting member 7 are disposed in the adjustment groove 11. In this way, the partition door 200 slides in the track groove 10, and the upper adjusting seat 5, the upper adjusting member 7 and the upper connecting seat 6 form a mating structure in the adjustment groove 11. Through the track groove 10 and the adjustment groove 11 arranged at intervals, the partition door 200, the upper adjusting seat 5, the upper adjusting member 7 and the upper connecting seat 6 can avoid interference between them.

[0055] Of course, the door assembly 100 typically includes two or more partition doors 200, allowing the user to selectively open one of them to access the shower enclosure. If both or more partition doors 200 are housed within the track groove 10, interference can easily occur between them, affecting the opening range of each door. For this purpose, refer to... Figure 3-6As an example of this embodiment, the adjusting groove 11 is provided with a first partition 12 extending along the second direction Y; the first partition 12 divides the adjusting groove 11 and forms a first channel 11a and a second channel 11b arranged at intervals in the first direction X, wherein the upper connecting seat 6 extends into the first channel 11a and is connected to the upper side frame 3, and the first mounting hole 8 and the second mounting hole 9 are both connected to the first channel 11a, the upper adjusting seat 5 and the upper adjusting member 7 are disposed in the first channel 11a; the second channel 11b is arranged below the first channel 11a and is used to assemble the partition door 200.

[0056] The adjustment slot 11 is divided into a first channel 11a and a second channel 11b by the first partition 12, which do not interfere with each other. The upper connecting seat 6, the upper adjusting seat 5 and the upper adjusting component 7 are arranged in the first channel 11a and will not affect the partition door 200 assembled in the second channel 11b. Moreover, the upper adjusting seat 5 and the upper adjusting component 7 can directly reach the first channel 11a through the first mounting hole 8 and the second mounting hole 9, which makes the assembly of the upper adjusting seat 5 and the upper adjusting component 7 more convenient.

[0057] Understandably, to facilitate the insertion of the upper adjusting seat 5 into the first mounting hole 8, the fit between the upper adjusting seat 5 and the first mounting hole 8 is usually not excessively tight. This may affect the synchronous movement of the upper adjusting seat 5 and the upper side frame 3, especially when the user uses the upper adjusting piece 7 to fine-tune the position of the upper side frame 3. In this case, the upper adjusting seat 5 may not be able to move the upper side frame 3 in a timely manner. Therefore, refer to... Figure 3-6 As an example of this embodiment, the first partition plate 12 is provided with a positioning hole 13 that is arranged through the first direction X, and the positioning hole 13 is connected to the first mounting hole 8; and the upper adjusting seat 5 is provided with a positioning part 5b extending outward. The upper adjusting seat 5 is embedded in the first mounting hole 8 so that the positioning part 5b is embedded in the positioning hole 13, thereby connecting and fixing the upper adjusting seat 5 to the upper side frame 3, ensuring that the upper adjusting seat 5 and the upper side frame 3 can move synchronously.

[0058] It should be noted that because the length of the upper frame 3 in the second direction Y is less than the accommodating spacing D of the left frame 1 and the right frame 2 in the second direction Y, there is a risk that the upper frame 3 will detach from the upper connecting seat 6 when it moves in the second direction Y. For this reason, refer to... Figure 3-6As an example of this embodiment, the upper side frame 3 is provided with an adjustment groove 14 separated from the end of the upper side frame 3. The adjustment groove 14 extends along the second direction Y and passes through along the first direction X. The upper connecting seat 6 is connected with an upper fastener 15, which passes through the adjustment groove 14 and can press the upper side frame 3 against the upper connecting seat 6, and limit the displacement of the upper side frame 3 in the second direction Y. With the cooperation of the adjustment groove 14 and the upper fastener 15, when the upper side frame 3 moves relative to the left side frame 1 and the right side frame 2, the upper fastener 15 can constrain the movement stroke of the upper side frame 3 and prevent the upper side frame 3 from disengaging from the upper connecting seat 6.

[0059] It is understood that the adjustment groove 14 being separated from the end of the upper side frame 3 means that the adjustment groove 14 will not penetrate the end of the upper side frame 3 in the second direction Y. In this way, between the end of the adjustment groove 14 in the second direction Y and the end of the upper side frame 3 in the second direction Y, the upper side frame 3 still retains at least a part of the structure, so that the end of the adjustment groove 14 in the second direction Y is blocked, so as to prevent the upper fastener 15 from coming out of the adjustment groove 14 along the second direction Y.

[0060] Due to measurement and / or manufacturing errors, there are also issues with the fit between the lower frame 4 and the left and right frames 1 and 2 during assembly. Therefore, the lower frame 4 is also equipped with an adjustment function. (Reference) Figure 2 , 7 -10, as an example of this embodiment, the length of the lower frame 4 in the second direction Y is less than the accommodating distance D between the left frame 1 and the right frame 2 in the second direction Y; and the lower frame 4 is connected to a lower adjusting seat 16 and a lower adjusting member 17, wherein the lower adjusting seat 16 moves synchronously with the lower frame 4, and a second threaded hole 16a is provided in the lower adjusting seat 16; the lower adjusting member 17 passes through the second threaded hole 16a and forms a threaded engagement with the second threaded hole 16a; and the lower adjusting member 17 extends along the second direction Y and at least abuts against one of the left frame 1 and the right frame 2, and the lower adjusting member 17 is configured to drive the lower frame 4 to move along the second direction Y, thereby moving the lower frame 4 within the accommodating distance D.

[0061] The lower adjusting member 17 can also be a bolt. By screwing on the lower adjusting member 17 on the left, the lower adjusting member 17 on the left abuts against the left frame 1, thereby allowing the lower side frame 4 to move to the right along the second direction Y. Similarly, by screwing on the lower adjusting member 17 on the right, the lower adjusting member 17 on the right abuts against the right frame 2, thereby allowing the lower side frame 4 to move to the left along the second direction Y. With the cooperation of the lower adjusting seat 16 and the lower adjusting member 17, the lower side frame 4 can be adjusted in position relative to the left frame 1 and the right frame 2. Even if the length of the lower side frame 4 in the second direction Y is less than the accommodating distance D of the left frame 1 and the right frame 2 in the second direction Y, the lower side frame 4 can still be arranged between the left frame 1 and the right frame 2, and extend to abut against the left frame 1 and the right frame 2 through the lower adjusting member 17, so that the lower side frame 4 cooperates with the left frame 1 and the right frame 2, thereby forming the door frame of this door body assembly 100.

[0062] Understandably, the lower frame 4 is typically located on the bathroom floor. Since bathroom floors are usually damp and prone to water stains, this affects the lifespan of the lower adjustment seat 16 and the lower adjustment component 17. Therefore, referring to... Figure 7 As an example of this embodiment, a second partition 18 extending along the second direction Y is provided in the lower side frame 4. The second partition 18 and the lower side frame 4 cooperate to form a third channel 19. The third channel 19 is arranged above the second partition 18, and the lower adjustment seat 16 is embedded in the third channel 19 and connected and fixed to the lower side frame 4. In this way, with the gap of the second partition 18, the lower adjustment seat 16 and the lower adjustment member 17 can avoid contact with the bathroom floor, thereby preventing the lower adjustment seat 16 and the lower adjustment member 17 from being soaked in water.

[0063] In summary, the door assembly 100 provided in this embodiment of the present invention, with the cooperation of the upper connecting seat 6 and the upper side frame 3, allows the upper side frame 3 to be arranged between the left side frame 1 and the right side frame 2. Furthermore, the upper side frame 3 can move relative to the left side frame 1 and the right side frame 2 in the second direction Y, thereby enabling the upper side frame 3 to have the function of position adjustment in the second direction Y, and expanding the fit between the upper side frame 3 and the left side frame 1 and the right side frame 2. In this way, even if the length of the upper side frame 3 in the second direction Y fluctuates due to measurement errors and / or production errors, the upper side frame 3 can still be assembled relatively smoothly between the left side frame 1 and the right side frame 2, thereby completing the assembly of the door frame.

[0064] Furthermore, the door assembly 100 is equipped with an upper adjusting seat 5 and an upper adjusting member 7, so that the upper adjusting member 7 abuts against the corresponding upper connecting seat 6. The reaction force generated by the movement of the upper adjusting member 7 enables the upper adjusting seat 5 to drive the upper side frame 3 to move along the second direction Y, so that the upper side frame 3 can achieve fine position adjustment.

[0065] Furthermore, with the cooperation of the lower adjusting seat 16 and the lower adjusting member 17, the lower side frame 4 of the door body assembly 100 can be arranged between the left side frame 1 and the right side frame 2, and extends to abut against the left side frame 1 and the right side frame 2 through the lower adjusting member 17, so that the lower side frame 4 cooperates with the left side frame 1 and the right side frame 2, thereby forming the door frame of the door body assembly 100.

[0066] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.

Claims

1. A door assembly having a first direction (X), a second direction (Y), and a third direction (Z) that are perpendicular to each other, characterized in that, The door assembly (100) includes: Left frame (1), the left frame (1) is arranged along the first direction (X); The right frame (2) is arranged along the first direction (X) and opposite to the left frame (1) in the second direction (Y); The upper frame (3) is arranged between the left frame (1) and the right frame (2) and extends along the second direction (Y); and the length of the upper frame (3) in the second direction (Y) is less than the accommodating spacing (D) of the left frame (1) and the right frame (2) in the second direction (Y). A lower side frame (4) is disposed below the upper side frame (3) and positioned between the left side frame (1) and the right side frame (2), and the lower side frame (4) extends along the second direction (Y); and, Upper connecting seat (6) is disposed in the left side frame (1) and the right side frame (2), and the upper connecting seat (6) extends toward the upper side frame (3) along the second direction (Y) to extend into the upper side frame (3) and support the upper side frame (3). An upper adjusting member (7) is disposed within the upper side frame (3) and extends along the second direction (Y) to abut against the upper connecting seat (6) within the upper side frame (3); and the upper adjusting member (7) is configured to drive the upper side frame (3) to move along the second direction (Y), thereby moving the upper side frame (3) within the accommodating spacing (D).

2. The door assembly (100) according to claim 1, characterized in that, The upper side frame (3) is connected to an upper adjustment seat (5) that moves synchronously with the upper side frame (3). The upper adjustment seat (5) is provided with a first threaded hole (5a). The upper adjustment member (7) passes through the first threaded hole (5a) and forms a threaded engagement with the first threaded hole (5a).

3. The door assembly (100) according to claim 2, characterized in that... The upper adjustment seat (5) is detachably connected to the upper side frame (3); and the upper side frame (3) is provided with a first mounting hole (8) that runs through the first direction (X), and the upper adjustment seat (5) is embedded in the first mounting hole (8).

4. The door assembly (100) according to claim 3, characterized in that, The upper side frame (3) is provided with a second mounting hole (9) that runs through the first direction (X), and the second mounting hole (9) is connected to the first mounting hole (8) in the second direction (Y); and the upper adjustment member (7) enters the upper side frame (3) through the second mounting hole (9) and passes through the upper adjustment seat (5).

5. The door assembly (100) according to claim 4, characterized in that, The upper side frame (3) is provided with a track groove (10) and an adjustment groove (11). The track groove (10) and the adjustment groove (11) extend along the second direction (Y) and are arranged at intervals in the third direction (Z). The upper connecting seat (6) extends into the adjustment groove (11) and is connected to the upper side frame (3). The first mounting hole (8) and the second mounting hole (9) are both connected to the adjustment groove (11), and the upper adjustment seat (5) and the upper adjustment member (7) are disposed in the adjustment groove (11).

6. The door assembly (100) according to claim 5, characterized in that, The adjustment groove (11) is provided with a first partition (12) extending along the second direction (Y); the first partition (12) separates the adjustment groove (11) and forms a first channel (11a) and a second channel (11b) spaced apart in the first direction (X), wherein the upper connecting seat (6) extends into the first channel (11a) and is connected to the upper side frame (3), and the first mounting hole (8) and the second mounting hole (9) are both connected to the first channel (11a), the upper adjusting seat (5) and the upper adjusting member (7) are provided in the first channel (11a); the second channel (11b) is arranged below the first channel (11a) and is used to assemble the partition door.

7. The door assembly (100) according to claim 6, characterized in that, The first partition (12) is provided with a positioning hole (13) that extends through the first direction (X), and the positioning hole (13) is connected to the first mounting hole (8); and the upper adjustment seat (5) is provided with a positioning part (5b) extending outward, and the upper adjustment seat (5) is embedded in the first mounting hole (8) so that the positioning part (5b) is embedded in the positioning hole (13).

8. The door assembly (100) according to claim 1, characterized in that, The upper side frame (3) is provided with an adjustment groove (14) separated from the end of the upper side frame (3). The adjustment groove (14) extends along the second direction (Y) and is arranged through the first direction (X). The upper connecting seat (6) is connected with an upper fastener (15). The upper fastener (15) passes through the adjustment groove (14) and can press the upper side frame (3) against the upper connecting seat (6) and limit the displacement of the upper side frame (3) in the second direction (Y).

9. The door assembly (100) according to claim 1, characterized in that, The length of the lower frame (4) in the second direction (Y) is less than the accommodating spacing (D) of the left frame (1) and the right frame (2) in the second direction (Y); and, The lower side frame (4) is connected to a lower adjusting seat (16) and a lower adjusting member (17). The lower adjusting seat (16) moves synchronously with the lower side frame (4), and a second threaded hole (16a) is provided in the lower adjusting seat (16). The lower adjusting member (17) passes through the second threaded hole (16a) and forms a threaded engagement with the second threaded hole (16a). The lower adjusting member (17) extends along the second direction (Y) and at least abuts against one of the left side frame (1) and the right side frame (2). The lower adjusting member (17) is configured to drive the lower side frame (4) to move along the second direction (Y), thereby moving the lower side frame (4) within the accommodating gap (D).

10. The door assembly (100) according to claim 9, characterized in that, The lower side frame (4) is provided with a second partition (18) extending along the second direction (Y). The second partition (18) and the lower side frame (4) cooperate to form a third channel (19). The third channel (19) is arranged above the second partition (18), and the lower adjustment seat (16) is embedded in the third channel (19) and connected and fixed to the lower side frame (4).