Door body assembly
By setting adjustment ports and adjustment components in the door assembly, the problem of door frame profile installation error is solved, the position adjustment and structural strength maintenance are achieved, and the installation process is simplified.
Patent Information
- Application Number
- CN202520447596.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-03-14
Smart Images

Figure CN223964365U_ABST
Abstract
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 room is a bathroom facility that makes full use of the bathroom space. It clearly divides the shower area in the bathroom through a partition door, thus forming a relatively independent bathing space.
[0003] The shower enclosure is typically a sliding door, requiring a door frame profile to be installed inside the bathroom along a track and frame, allowing the door to slide within the track and open and close. Currently, existing door frame profiles usually consist of an upper profile, a lower profile, a left profile, and a right profile, which work together to form the door frame and track.
[0004] However, existing door frame profiles lack adjustability. Due to measurement and manufacturing errors, these profiles are prone to installation problems. For example, due to measurement and / or manufacturing errors, the upper profile may not align with the left and right profiles, resulting in the door frame not overlapping. Installers often need to remeasure and replace the profiles, which not only increases the installation time but also the cost of the shower enclosure. Utility Model Content
[0005] The purpose of this utility model is to provide a door assembly that allows the upper and lower frame members to be adjusted relative to the side frame members, thereby solving the problem of insufficient adjustability of existing door frame profiles.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A door assembly has two perpendicular directions, a second direction and a third direction, and the door assembly includes:
[0008] At least two side frame members, the two side frame members extend in the first direction and are arranged opposite to each other in the second direction, and each side frame member has an adjustment port at both ends in the first direction, the adjustment port communicating with the interior of the side frame member;
[0009] The upper frame is movably disposed between the two side frames and extends along the second direction, and the upper frame can extend into the interior of the side frame through the corresponding adjustment port;
[0010] The lower frame is movably disposed between the two side frames and extends along the second direction. The lower frame is located below the upper frame and can extend into the interior of the side frame through the corresponding adjustment port.
[0011] An adjustment assembly includes an adjustment seat and an adjustment member. The adjustment seat is connected to at least one of the upper frame and the lower frame. The adjustment member passes through the adjustment seat and abuts against the inner side of the side frame. The adjustment member is movable relative to the adjustment seat, driving the adjustment seat to move along the second direction.
[0012] In some embodiments, when an adjusting seat is connected to the upper frame, a channel extending in the second direction is formed between the adjusting seat and the upper frame, and...
[0013] An upper fixing seat is provided on the inner side of the side frame member. The upper fixing seat extends along the second direction and extends into the channel, connecting with the upper frame member.
[0014] In some embodiments, the upper fixing seat includes a fixing part and a connecting part that are connected to each other. The fixing part is fixedly connected to the side frame. One end of the connecting part is connected to the fixing part, and the other end extends toward the opposite side frame and into the channel. The side of the connecting part facing the upper frame is flat, so that the connecting part and the upper frame are in surface contact.
[0015] In some embodiments, the adjusting seat is detachably connected to the upper frame, and the adjusting seat extends below the corresponding connecting portion and forms an adjusting hole; the adjusting member passes through the adjusting hole and abuts against the upper fixed seat.
[0016] In some embodiments, the side of the adjusting seat facing the connecting portion is a first plane, and the side of the connecting portion facing the adjusting seat is a second plane. The first plane and the second plane are connected, so that the adjusting seat and the connecting portion have a surface contact fit; and...
[0017] The upper frame has a third plane on the side facing the connecting part, and the connecting part has a fourth plane on the side facing the upper frame. The third plane and the fourth plane are connected, so that the upper frame and the connecting part are in surface contact.
[0018] In some embodiments, the upper frame is provided with a plurality of mounting holes, which are spaced apart along the second direction; and the adjusting seat connected to the upper frame is connected with a connector, which passes through a portion of the mounting holes, so that the adjusting seat is fixedly connected to the upper frame.
[0019] In some embodiments, the lower frame has a connecting hole at its end in the second direction, the connecting hole being recessed into the interior of the lower frame; and when the lower frame is connected to an adjusting seat, the adjusting seat is embedded in the connecting hole and fixedly connected to the lower frame.
[0020] In some embodiments, the number of adjusting seats connected to the upper frame is two, with the two adjusting seats respectively disposed at both ends of the upper frame in the second direction; and / or,
[0021] The number of adjustment seats connected to the lower frame is two, and the two adjustment seats are respectively arranged at both ends of the lower frame in the second direction.
[0022] In some embodiments, the door assembly further includes a protective cover connected to the upper frame and the side frame to shield the adjusting member; and / or, the protective cover is connected to the lower frame and the side frame to shield the adjusting member.
[0023] In some embodiments, the protective cover is provided with a protective groove that wraps around the outside of the adjusting member, and the protective groove has an opening facing the corresponding side frame member. Furthermore, the protective cover is provided with sliding blocks that are arranged on both sides of the protective cover and are slidably connected to the upper frame member.
[0024] Compared with the prior art, the door assembly implemented in this utility model has the following advantages:
[0025] This door assembly features adjustable openings on its side frames, allowing the upper and lower frame pieces to extend into the interior of the side frames. The internal space of the side frames allows for adjustment of their positions in the second direction, providing excellent adjustability and preventing excessive shortening of the side frame length in the second direction due to assembly intervals, which would compromise the structural strength of the door assembly. Furthermore, adjusting components on the upper and / or lower frame pieces allow for adjustment. Tightening these components moves the adjusting seat away from the corresponding side frame, thereby moving the upper or lower frame piece connected to the adjusting seat relative to the side frame. This adjusts the position of the upper and lower frame pieces in the second direction. Therefore, even with manufacturing errors, the upper and lower frame pieces can be repositioned using the adjusting seat and adjusting components after installation on the wall, completing the assembly of the door frame.
[0026] Furthermore, this door assembly forms a channel between the adjusting seat and the upper frame, and the upper fixed seat extends into the channel, thereby creating a mutually cooperating guide structure between the upper fixed seat, the upper frame, and the adjusting seat. In this way, when the upper frame moves along the second direction, the guide structure formed by the upper fixed seat, the upper frame, and the adjusting seat can guide the movement direction of the upper frame and prevent the upper frame from deviating from its position. Moreover, the upper side of the connecting part can form a surface contact with the upper frame, and the lower side of the connecting part can form a surface contact with the upper adjusting seat. Under the constraint of the two surface contact fits, the upper frame is less likely to deviate from the preset position when moving along the second direction. Attached Figure Description
[0027] Figure 1 This is a schematic diagram of the door assembly in an embodiment of this utility model;
[0028] Figure 2 yes Figure 1 An exploded view of the structure shown.
[0029] Figure 3 yes Figure 2 Enlarged view of A in the middle;
[0030] Figure 4 yes Figure 2 Enlarged view of B in the middle;
[0031] Figure 5 yes Figure 2 Enlarged view of C;
[0032] Figure 6 This is a schematic diagram of the upper adjustment group in an embodiment of this utility model;
[0033] Figure 7 This is a schematic diagram of the upper fixing seat in an embodiment of this utility model;
[0034] Figure 8 This is a schematic diagram showing the cooperation between the upper adjustment unit, the lower adjustment unit, and the door frame in an embodiment of this utility model;
[0035] Figure 9 yes Figure 7 Enlarged view of D;
[0036] Figure 10 yes Figure 7 Enlarged view of E in the middle;
[0037] Figure 11 yes Figure 7 Enlarged view of F in the middle;
[0038] Figure 12 This is a schematic diagram of the cooperation between the protective cover and the upper frame in an embodiment of this utility model;
[0039] Figure 13This is a schematic diagram of the protective cover in an embodiment of this utility model.
[0040] In the diagram, 100 is the door assembly; 200 is the partition door; 300 is the adjustment assembly; 300a is the adjustment seat; 300b is the adjustment component; 300c is the adjustment hole; X is the first direction; Y is the second direction; Z is the third direction; 1 is the side frame; 1a is the adjustment port; 2 is the upper frame; 2a is the adjustment groove; 2b is the track groove; 2c is the opening; 2d is the mounting hole; 2e is the third plane; 3 is the lower frame; 3a is the connecting hole; 4 is the upper fixing seat; 4a is the fixing part; 4 b. Connecting part; 4b1. Second plane; 4b2. Fourth plane; 5. Upper adjustment unit; 5a. Upper adjustment seat; 5a1. Extension; 5a2. Adjustment part; 5a3. First plane; 5b. Upper adjustment component; 5c. Upper adjustment hole; 6. Lower adjustment unit; 6a. Lower adjustment seat; 6b. Lower adjustment component; 6c. Lower adjustment hole; 7. Upper fastener; 8. Connecting component; 9. Protective cover; 10. Channel; 11. Protective groove; 11a. Groove; 12. Sliding block. Detailed Implementation
[0041] 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.
[0042] 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.
[0043] 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.
[0044] 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.
[0045] Example
[0046] A door assembly 100 according to an embodiment of this utility model 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 three mutually perpendicular directions: a first direction X, a second direction Y, and a third direction Z. The first direction X is defined as the height direction of the door assembly 100, and is distinguished as the upper and lower sides based on the general up-down orientation of the door assembly 100 during use. Y is the length direction of the door assembly 100, and is distinguished as the left and right sides based on the user's left and right perspective of the door assembly 100 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 designated as the front side, and the opposite side as the rear side.
[0047] refer to Figure 1-13 The door assembly 100 includes two side frame members 1, an upper frame member 2, and a lower frame member 3. The two side frame members 1 extend in a first direction X and are arranged opposite each other in a second direction Y. Each side frame member 1 has an adjustment port 1a at both ends in the first direction X, which connects to the interior of the side frame member 1. The upper frame member 2 is movably disposed between the two side frame members 1 and extends in the second direction Y. The lower frame member 3 is movably disposed between the two side frame members 1 and extends in the second direction Y, and is located below the upper frame member 2.
[0048] It is understood that this door assembly 100 is typically used in conjunction with the partition door 200. Two side frame members 1, together with the upper frame member 2 and the lower frame member 3, form a door frame. The partition door 200 is disposed within this door frame, and corresponding tracks are provided within the upper frame member 2 and the lower frame member 3 for the partition door 200 to slide, allowing the user to open and close the shower space by pushing the partition door 200. Of course, in other examples of door assemblies 100, the number of side frame members 1 can be greater than two. For example, the left side of the door frame may be formed by splicing two side frame members 1, and the right side of the door frame may also be formed by splicing two side frame members 1. The door frame formed by multiple side frame members 1, together with the upper frame member 2 and the lower frame member 3, has the same structural principle as the door frame in this embodiment, and will not be described in detail here.
[0049] The length of the upper frame 2 in the second direction Y is matched with the spacing between the two side frame pieces 1 in the second direction Y, so as to ensure that the two ends of the upper frame 2 in the second direction Y can extend into the interior of the side frame piece 1 through the corresponding adjustment port 1a. Correspondingly, the length of the lower frame 3 in the second direction Y is matched with the spacing between the two side frame pieces 1 in the second direction Y, so as to ensure that the two ends of the lower frame 3 in the second direction Y can extend into the interior of the side frame piece 1 through the corresponding adjustment port 1a, thereby preventing the ends of the upper frame 2 and the lower frame 3 from being exposed outside the side frame piece 1.
[0050] It should be noted that the lengths of the side frame 1, upper frame 2, and lower frame 3 are usually determined by measurement within the bathroom. However, due to measurement and production errors that may occur during the manufacturing process of the side frame 1, upper frame 2, and lower frame 3, the upper frame 2 and lower frame 3 may be insufficient in length. To address this, the door assembly 100 is provided with an adjustment assembly 300, which includes an adjustment seat 300a and an adjustment member 300b. The adjustment seat 300a is connected to at least one of the upper frame 2 and lower frame 3. The adjustment member 300b passes through the adjustment seat 300a and abuts against the inner side of the side frame 1. Furthermore, the adjustment member 300b is movable relative to the adjustment seat 300a, driving the adjustment seat 300a to move along the second direction Y.
[0051] The adjusting member 300b and the adjusting seat 300a can be threaded together, allowing the adjusting member 300b to be screwed and moved relative to the adjusting seat 300a. Furthermore, the length of the adjusting member 300b is greater than the distance between the adjusting seat 300a and the side frame 1, so that the adjusting member 300b, passing through the adjusting seat 300a, can abut against the inner side of the side frame 1. In this way, screwing the adjusting member 300b against the side frame 1 can drive the adjusting seat 300a to move away from the corresponding side frame 1, thereby driving the upper frame 2 or lower frame 3 connected to the adjusting seat 300a to move. The side frame 1 is moved to adjust the position of the upper frame 2 and the lower frame 3 in the second direction Y. Furthermore, in conjunction with the adjustment port 1a configured on the side frame 1, the upper frame 2 and the lower frame 3 can enter and exit the interior of the side frame 1 through the adjustment port 1a. In this way, the upper frame 2 and the lower frame 3 can use the length of the side frame 1 in the second direction Y as the adjustable range for their position adjustment in the second direction Y. This gives the door assembly good adjustability and avoids the length of the side frame 1 in the second direction Y being excessively shortened due to the assembly interval, which would affect the structural strength of the door assembly 100.
[0052] It should be noted that the adjusting seat 300a is connected to at least one of the upper frame member 2 and the lower frame member 3. That is, the adjusting seat 300a can be arranged only on the upper frame member 2, or the adjusting seat 300a can be arranged only on the lower frame member 3, or the adjusting seat 300a can be arranged on both the upper frame member 2 and the lower frame member 3. The adjusting seat 300a connected to the upper frame member 2 or the lower frame member 3 can be adjusted according to the structure of the upper frame member 2 and the lower frame member 3, such as... Figure 1-11 As shown. Based on the location of the adjustment component 300, the adjustment component 300 can be divided into an upper adjustment unit 5 and a lower adjustment unit 6. The structure of the upper adjustment unit 5 and the lower adjustment unit 6 will be described separately in this embodiment below.
[0053] refer to Figure 1-11 As an example of this embodiment, the upper adjustment unit 5 is disposed at the end of the upper frame 2 in the second direction Y. It includes an upper adjustment seat 5a as an adjustment base 300a and an upper adjustment member 5b as an adjustment member 300b. The upper adjustment seat 5a is connected to the upper frame 2 and moves synchronously with the upper frame 2. The upper adjustment member 5b passes through the upper adjustment seat 5a and extends toward the side frame 1. By rotating the upper adjustment member 5b, the upper adjustment seat 5a can drive the upper frame 2 to move along the second direction Y.
[0054] Some door components 100 may utilize the upper adjusting seat 5a to provide movement guidance for the upper frame 2. (See reference) Figure 1-11 As an example of this embodiment, a certain distance is reserved between the upper adjusting seat 5a and the upper frame 2, thereby forming a channel 10 extending along the second direction Y between the upper adjusting seat 5a and the upper frame 2. The entrance and exit of the channel 10 face the corresponding side frame 1. Correspondingly, an upper fixing seat 4 is provided on the inner side of the side frame 1. The upper fixing seat 4 extends along the second direction Y and extends into the channel 10, connecting with the upper frame 2. Thus, the upper fixing seat 4, the upper frame 2, and the upper adjusting seat 5a form a mutually cooperating guide structure. In this way, when the upper frame 2 moves along the second direction Y, the guide structure formed by the upper fixing seat 4, the upper frame 2, and the upper adjusting seat 5a can guide the movement direction of the upper frame 2, preventing the upper frame 2 from deviating from its position. Moreover, the upper adjusting seat 5a extending into the channel 10 can also support the upper frame 2, providing support for the upper frame 2.
[0055] The upper fixed seat 4 is usually arranged inside the adjustment port 1a, which ensures that the upper frame member 2, which extends through the adjustment port 1a, can be placed on the upper fixed seat 4. Correspondingly, the upper adjusting seat 5a and the upper adjusting member 5b can extend into the interior of the side frame member 1 through the adjustment port 1a, so that the upper adjusting member 5b can be pressed against the upper fixed seat 4, so that the upper adjusting seat 5a and the upper adjusting member 5b can realize their adjustment function.
[0056] It should be noted that the upper frame 2 extends into the interior of the side frame 1 through the corresponding adjustment port 1a, and the length of the upper frame 2 in the second direction Y is not required. The length of the side frame 1 in the second direction Y is greater than And the spacing length of the two side frame members 1 in the second direction Y. For example, the left end of the upper frame 2 extends into the interior of the left side frame 1 through the adjustment port 1a, but does not fit against the side of the side frame 1 facing the right end. Similarly, the right end of the upper frame 2 extends into the interior of the right side frame 1 through the adjustment port 1a, but does not fit against the side of the side frame 1 facing the left end. Thus, the length of the upper frame 2 in the second direction Y... It can be only greater than the spacing length of the two side frame members 1 in the second direction Y. The upper frame 2 extends into the interior of the side frame 1 through the corresponding adjustment port 1a. The cooperation between the lower frame 3 and the side frame 1 in the second direction Y is similar and will not be described in detail here.
[0057] The upper adjusting seat 5a and the upper adjusting member 5b can be located at either end of the upper frame 2 in the second direction Y, or they can be located at both ends of the upper frame 2 in the second direction Y. Furthermore, the upper adjusting seat 5a can have an upper adjusting hole 5c facing the adjacent upper fixed seat 4, allowing the upper adjusting member 5b to pass through, connecting it to the upper adjusting seat 5a and thus abutting against the upper fixed seat 4. The upper adjusting member 5b can be a screw, and correspondingly, the upper adjusting hole 5c is a threaded through hole, with the upper adjusting member 5b and the upper adjusting hole 5c having a threaded fit. By screwing the upper adjusting member 5b, it can pass through the upper adjusting hole 5c and move towards the adjacent upper fixed seat 4 until the upper adjusting member 5b abuts against the adjacent upper fixed seat 4.
[0058] refer to Figure 9 Taking the upper adjusting seat 5a and upper adjusting member 5b as an example, when the upper adjusting member 5b is pressed against the upper fixed seat 4, as the upper adjusting member 5b is further screwed, the upper adjusting member 5b cannot move further to the right due to the restriction of the upper fixed seat 4. Under the influence of the reaction force, the upper adjusting seat 5a will drive the upper frame 2 connected to it to move to the left, thereby realizing the movement of the upper frame 2 relative to the side frame 1 in the second direction Y. In this way, through the cooperation of the upper adjusting seat 5a and the upper adjusting member 5b, the user can make fine adjustments to the position of the upper frame 2.
[0059] It should be noted that after the upper fixing seat 4 extends into the channel 10 and connects with the upper frame 2, the upper frame 2 will press against the upper fixing seat 4, applying a downward force to the upper fixing seat 4. To avoid this force being concentrated on a specific area of the upper fixing seat 4, resulting in localized stress concentration, a surface contact fit can be used between the upper fixing seat 4 and the upper frame 2 to increase the contact area and distribute the load generated by this force. (Reference) Figure 2-10 As an example of this embodiment, the upper fixing seat 4 includes a fixing part 4a and a connecting part 4b that are connected to each other. The fixing part 4a is fixedly connected to the side frame 1. One end of the connecting part 4b is connected to the fixing part 4a, and the other end extends toward the opposite side frame 1 and into the channel 10. The side of the connecting part 4b facing the upper frame 2 is a plane, so that the connecting part 4b and the upper frame 2 are in surface contact to support the upper frame 2. Specifically, the side of the upper frame 2 facing the connecting part 4b has a third plane 2e, and the side of the connecting part 4b facing the upper frame 2 has a fourth plane 4b2. The third plane 2e and the fourth plane 4b2 are connected, so that the upper frame 2 and the connecting part 4b are in surface contact.
[0060] In some door assembly 100s, the connecting portion 4b extending into the channel 10 may connect with the adjusting seat 300a. In these door assembly 100s, the connecting portion 4b and the adjusting seat 300a may also have a surface contact fit. (See reference) Figure 6 , 7 Taking the above adjustment unit 5 as an example, the side of the adjustment seat 300a facing the connecting part 4b is the first plane 5a3, and the side of the connecting part 4b facing the adjustment seat 300a is the second plane 4b1. The first plane 5a3 and the second plane 4b1 are connected, so that the adjustment seat 300a and the connecting part 4b form a surface contact fit. In this way, when the connecting part 4b extends into the channel 10 between the upper adjustment seat 5a and the upper frame 2, the upper side of the connecting part 4b can form a surface contact fit with the upper frame 2, and the lower side of the connecting part 4b can form a surface contact fit with the upper adjustment seat 5a. Under the restriction of the two surface contact fits, the upper frame 2 is not easy to deviate from the preset position when moving along the second direction Y.
[0061] Understandably, when the upper adjusting component 5b uses bolts, if the length of the upper adjusting component 5b is too long, it can easily lead to a higher torque when tightening the upper adjusting component 5b, increasing the shear stress of the upper adjusting component 5b. Therefore, the upper adjusting hole 5c should not be too far from the upper fixed seat 4. (Reference) Figure 2-10As an example of this embodiment, the adjusting seat 300a extends below the corresponding connecting portion 4b and forms an adjusting hole 300c; the adjusting member 300b passes through the adjusting hole 300c and abuts against the upper fixed seat 4. Corresponding to the upper adjusting unit 5, specifically, the upper adjusting seat 5a includes an extension portion 5a1 and an adjusting portion 5a2. The extension portion 5a1 extends along the second direction Y and extends below the connecting portion 4b. The adjusting portion 5a2 is connected to the end of the extension portion 5a1 facing the upper fixed seat 4 and extends downward along the first direction X. An upper adjusting hole 5c is formed on the adjusting portion 5a2. The upper adjusting member 5b passes through the upper adjusting hole 5c and abuts against the fixed portion 4a. In this way, the upper adjusting hole 5c of the upper adjusting seat 5a can be close to the upper fixed seat 4, thereby shortening the length of the upper adjusting member 5b after passing through the upper adjusting seat 5a.
[0062] Of course, since the upper adjustment seat 5a extends to the lower part of the connecting part 4b, the connection between the upper frame 2 and the side frame 1 may be affected when the upper fixed seat 4 is provided on the side frame 1. Therefore, the adjustment seat 300a and the upper frame 2 can be connected in a detachable manner, that is, the upper adjustment seat 5a and the upper frame 2 can be detachably connected.
[0063] It is understandable that, due to the length of the upper frame 2 in the second direction Y... It is usually smaller than the length of the side frame 1 in the second direction Y. And the spacing length of the two side frame members 1 in the second direction Y. In addition, during the movement of the upper frame 2 in the second direction Y, it may separate from the upper fixed seat 4 or the side frame 1, causing the upper frame 2 to detach. To avoid this situation, a limiting structure can be configured within the door assembly 100 to restrict the movement of the upper frame 2 in the second direction Y. (See reference...) Figure 9-10 As an example of this embodiment, the upper frame 2 is provided with an adjustment groove 2a separated from the end of the upper frame 2. The adjustment groove 2a extends along the second direction Y and is arranged through the first direction X. Furthermore, the inner side of the side frame 1 is connected to an upper fixing seat 4, which extends into the upper frame 2 to support the upper frame 2. In addition, an upper fastener 7 is provided through the adjustment groove 2a. The upper fastener 7 is configured to press the upper frame 2 against the upper fixing seat 4 and limit the displacement of the upper frame 2 in the second direction Y.
[0064] It is understood that the adjustment groove 2a being separated from the end of the upper frame 2 means that the adjustment groove 2a will not penetrate the end of the upper frame 2 in the second direction Y. In this way, between the end of the adjustment groove 2a in the second direction Y and the end of the upper frame 2 in the second direction Y, the upper frame 2 has at least a partial structure that blocks the end of the adjustment groove 2a in the second direction Y, so as to prevent the upper fastener 7 from coming out of the adjustment groove 2a along the second direction Y.
[0065] With the cooperation of the upper fixed seat 4 and the upper frame 2, even if the length of the upper frame 2 in the second direction Y... The length of the side frame 1 in the second direction Y is less than And the spacing length of the two side frame members 1 in the second direction Y. Even with the sum of the two side frame pieces 1 and the upper frame piece 2 still able to overlap the upper fixed seat 4 and be supported by it, even if the upper frame piece 2 cannot be directly connected to the two side frame pieces 1 in the second direction Y due to measurement and manufacturing errors, the upper frame piece 2 can still cooperate with the two side frame pieces 1 under the action of the upper fixed seat 4, thus forming the door frame of the door body assembly 100. Furthermore, with the cooperation of the adjusting groove 2a and the upper fastener 7, when the upper frame piece 2 moves relative to the two side frame pieces 1, the upper fastener 7 can constrain the movement stroke of the upper frame piece 2, preventing the upper frame piece 2 from detaching from the upper fixed seat 4.
[0066] The upper frame 2 typically has a track groove 2b for the sliding of the partition door. To prevent the track groove 2b from affecting the fit between the upper fixed seat 4 and the upper frame 2, refer to... Figure 3 As an example of this embodiment, the upper frame 2 is provided with an opening 2c at the end in the second direction Y, and the opening 2c communicates with the track groove 2b; and when the side frame 1 is connected to the upper fixing seat 4, the upper fixing seat 4 extends into the track groove 2b through the opening 2c to extend into the interior of the upper frame 2.
[0067] Of course, the position of the upper adjusting seat 5a on the upper frame 2 can also be adjusted so that the upper adjusting hole 5c is close to the upper fixed seat 4. For example, as an example of this embodiment, the upper frame 2 is provided with a plurality of mounting holes 2d, which are arranged at intervals along the second direction Y; and the upper adjusting seat 5a is connected to a connecting member 8, which passes through part of the mounting holes 2d, so that the upper adjusting seat 5a is connected and fixed to the upper frame 2. For example, refer to Figure 7-10 The upper frame 2 is provided with three mounting holes 2d, which are arranged at intervals along the second direction Y. The upper adjusting seat 5a is connected to two connecting parts 8. Therefore, the upper adjusting seat 5a can select two of the mounting holes 2d for assembly. In this way, the upper adjusting seat 5a can adjust the distance between itself and the upper fixed seat 4 according to its own length.
[0068] According to the adjustment requirements of the upper frame 2, the number of adjustment seats 300a connected to the upper frame 2 can be two, and the two adjustment seats 300a are respectively arranged at both ends of the upper frame 2 in the second direction Y. With the upper adjusting seat 5a and the upper adjusting piece 5b respectively located on the left and right sides of the upper frame 2, the upper frame 2 is inserted into the upper end of the side frame 1 from top to bottom, abutting against the connecting part 4b of the upper fixing seat 4. The user uses screws to fix the upper adjusting seat 5a to the left and right ends of the upper frame 2, and screws the upper adjusting piece 5b into the upper adjusting hole 5c of the upper adjusting seat 5a. Then, the user tightens the upper adjusting piece 5b until the upper adjusting piece 5b on the left side presses against the upper fixing seat 4 on the left side and the upper adjusting piece 5b on the right side presses against the upper fixing seat 4 on the right side. In this way, when the upper frame 2 moves relative to the side frame 1, the upper frame 2 can maintain the connection and cooperation with the two side frame pieces 1 during the movement, for example, by simultaneously screwing the upper adjusting piece 5b on the left side and the upper adjusting piece 5b on the right side, to prevent the upper frame 2 from disengaging from the side frame 1.
[0069] refer to Figure 1-11 The door assembly 100 may also be provided with a lower adjustment unit 6, so that the lower frame 3 can be connected to the side frame 1, and the lower frame 3 can adjust its position relative to the side frame 1. Specifically, the lower adjustment unit 6 includes a lower adjustment seat 6a and a lower adjustment member 6b, wherein the lower adjustment seat 6a is connected to the lower frame 3, the lower adjustment seat 6a is connected to the lower adjustment member 6b which can move relative to the lower adjustment seat 6a, and the lower adjustment member 6b is configured to abut against one of the side frame members 1, thereby causing the lower frame 3 to move toward the other side frame member 1.
[0070] With the cooperation of the lower adjusting seat 6a and the lower adjusting member 6b, the lower frame member 3 can adjust its position relative to the two side frame members 1. In this way, even if the length of the lower frame member 3 in the second direction Y cannot be directly connected to the two side frame members 1, the lower frame member 3 can extend and abut against the side frame members 1 through the lower adjusting member 6b, so that the lower frame member 3 cooperates with the two side frame members 1, thereby forming the door frame of the door body assembly 100.
[0071] To facilitate the connection and fixation of the lower adjusting seat 6a and the lower frame 3, refer to Figure 1 As an example of this embodiment, the lower frame 3 is provided with a connecting hole 3a at its end in the second direction Y, and the connecting hole 3a is recessed towards the interior of the lower frame 3; and when the lower frame 3 is connected to an adjusting seat 300a, the adjusting seat 300a is embedded into the connecting hole 3a, that is, the lower adjusting seat 6a is embedded into the connecting hole 3a and is connected and fixed to the lower frame 3. In this way, the lower adjusting seat 6a can be quickly assembled with the lower frame 3, thereby saving the assembly time of the door assembly 100.
[0072] It is understandable that when the lower frame 3 is connected to the lower adjusting seat 6a, the number of lower adjusting seats 6a and lower adjusting parts 6b can also be two. The two lower adjusting seats 6a and the two lower adjusting parts 6b are respectively arranged at both ends of the lower frame 3 in the second direction Y, so that the lower adjusting part 6b on the left abuts against the left side frame 1, and the lower adjusting part 6b on the right abuts against the right side frame 1, ensuring that the lower frame 3 can form a connection and cooperation with the two side frame parts 1.
[0073] The lower adjusting member 6b can also be made of bolts. By screwing the lower adjusting member 6b on the left side, the lower adjusting member 6b on the left side abuts against the side frame member 1 on the left side, thereby allowing the lower frame member 3 to move to the right along the second direction Y. Similarly, by screwing the lower adjusting member 6b on the right side, the lower adjusting member 6b on the right side abuts against the side frame member 1 on the right side, thereby allowing the lower frame member 3 to move to the left along the second direction Y.
[0074] It should be noted that the upper adjustment unit 5 and the lower adjustment unit 6 can be selectively configured within the door assembly 100, or they can be applied simultaneously within a single door assembly 100. For example, when the length of the lower frame 3 in the second direction Y matches the spacing between the two side frame members 1 in the second direction Y, the lower frame 3 may not be configured with the lower adjustment unit 6, and the upper adjustment unit 5 may only be configured on the upper frame 2. Of course, the door assembly 100 may also uniformly configure the upper adjustment unit 5 and the lower adjustment unit 6, so that both the upper frame 2 and the lower frame 3 have adjustable functions.
[0075] To prevent the upper adjusting member 5b and the lower adjusting member 6b from being exposed and thus damaged, refer to... Figure 12-13 As an example of this embodiment, the door assembly 100 also includes a plurality of protective covers 9. Some of the protective covers 9 are connected to the upper frame 2 and the side frame 1 to cover the upper adjusting member 5b, and the remaining protective covers 9 are connected to the lower frame 3 and the side frame 1 to cover the lower adjusting member 6b. Of course, the protective covers 9 can selectively cover the upper adjusting member 5b and the lower adjusting member 6b according to the actual needs of the scenario.
[0076] In some door components 100, the protective cover 9 can be assembled using the track groove 2b inside the upper frame 2. (See reference) Figure 1As an example of this embodiment, the protective cover 9 is provided with a protective groove 11, which covers the outside of the upper adjusting member 5b. The protective groove 11 has a slot 11a facing the corresponding side frame member 1. Furthermore, the protective cover 9 is provided with two sliding blocks 12, which are respectively arranged on both sides of the protective groove 11 and slidably connected to the track groove 2b of the upper frame member 2. In this way, the protective cover 9 can be directly pushed into the interior of the upper frame member 2 from the end of the upper frame member 2, and the relative position between the protective cover 9 and the upper frame member 2 can be adjusted by the sliding cooperation between the sliding blocks 12 and the track groove 2b, so that the protective groove 11 covers the outside of the upper adjusting member 5b. Moreover, when it is necessary to adjust the upper adjusting member 5b, the operator can move the protective cover 9 to slide along the track groove 2b of the upper frame member 2, so that the upper adjusting member 5b can be dislodged from the protective cover 9 through the slot 11a of the protective groove 11, so that the operator can adjust the upper adjusting member 5b.
[0077] In summary, the door assembly 100 provided in this embodiment of the present invention, by providing an adjustment port 1a on the side frame 1, allows the upper frame 2 and lower frame 3 to extend into the interior of the side frame 1 through the adjustment port 1a. The position of the two components in the second direction Y is adjusted using the space inside the side frame 1, giving the door assembly 100 good adjustability. This prevents the length of the side frame 1 in the second direction Y from being excessively shortened due to assembly intervals, thus affecting the structural strength of the door assembly 100. Furthermore, the door assembly 100, by providing an adjustment component 300 on the upper frame 2 and / or the lower frame 3, allows for adjustment by screwing it against the side frame 1. Component 300b can drive the adjusting seat 300a to move away from the corresponding side frame component 1, thereby causing the upper frame component 2 or lower frame component 3 connected to the adjusting seat 300a to move relative to the side frame component 1, realizing the position adjustment of the upper frame component 2 and lower frame component 3 in the second direction Y. In this way, when the two side frame components 1 are installed on the wall, even if there are manufacturing errors in the upper frame component 2 and lower frame component 3, the upper frame component 2 and lower frame component 3 can still adjust their positions using the adjusting seat 300a and adjusting component 300b, so that the upper frame component 2 and lower frame component 3 can be assembled with the side frame component 1, thereby completing the door frame assembly of this door body component 100.
[0078] Furthermore, the door assembly 100 forms a channel 10 between the adjusting seat 300a and the upper frame 2, and the upper fixing seat 4 extends into the channel 10, thereby forming a mutually cooperating guide structure with the upper fixing seat 4, the upper frame 2, and the adjusting seat 300a. In this way, when the upper frame 2 moves along the second direction Y, the guide structure formed by the upper fixing seat 4, the upper frame 2, and the adjusting seat 300a can guide the movement direction of the upper frame 2 and prevent the upper frame 2 from deviating from its position. Moreover, the upper side of the connecting part 4b can form a surface contact with the upper frame 2, and the lower side of the connecting part 4b can form a surface contact with the upper adjusting seat 300a. Under the constraint of the two surface contact fits, the upper frame 2 is less likely to deviate from the preset position when moving along the second direction Y.
[0079] 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) perpendicular to each other, characterized in that, The door body assembly (100) comprises: at least two side frame members (1), which are arranged to extend in the first direction (X) and are arranged to be opposite in the second direction (Y), and each of which is provided with an adjusting opening (1a) at both ends in the first direction (X), and the adjusting opening (1a) is communicated to the inside of the side frame member (1); an upper frame member (2) movably arranged between the two side frame members (1) and arranged to extend in the second direction (Y), and the upper frame member (2) can extend into the inside of the side frame member (1) through the corresponding adjusting opening (1a); a lower frame member (3) movably arranged between the two side frame members (1) and arranged to extend in the second direction (Y), and the lower frame member (3) is arranged below the upper frame member (2), and the lower frame member (3) can extend into the inside of the side frame member (1) through the corresponding adjusting opening (1a); an adjusting assembly (300) comprising an adjusting seat (300a) and an adjusting member (300b), the adjusting seat (300a) is connected to one of the upper frame member (2) and the lower frame member (3), the adjusting member (300b) is arranged in the adjusting seat (300a) and abuts the inside of the side frame member (1), and the adjusting member (300b) can move relative to the adjusting seat (300a) to drive the adjusting seat (300a) to move in the second direction (Y).
2. The door assembly (100) of claim 1, wherein, In the case that the upper frame member (2) is connected with the adjusting seat (300a), a channel (10) extending in the second direction (Y) is formed between the adjusting seat (300a) and the upper frame member (2), and the inside of the side frame member (1) is provided with an upper fixing seat (4) extending in the second direction (Y) and extending into the channel (10) to be connected with the upper frame member (2).
3. The door assembly (100) of claim 2, wherein, The upper fixing seat (4) comprises a fixing part (4a) and a connecting part (4b) connected with each other, the fixing part (4a) is connected and fixed with the side frame member (1); one end of the connecting part (4b) is connected with the fixing part (4a), and the other end extends towards the opposite side frame member (1) and extends into the channel (10), and the side of the connecting part (4b) towards the upper frame member (2) is a plane, so that the connecting part (4b) and the upper frame member (2) are in surface contact.
4. The door assembly (100) of claim 3, wherein, The adjusting seat (300a) and the upper frame member (2) are detachably connected, the adjusting seat (300a) extends below the corresponding connecting part (4b) and is provided with an adjusting hole (300c), and the adjusting member (300b) is arranged in the adjusting hole (300c) and abuts the upper fixing seat (4).
5. The door assembly (100) of claim 3, wherein, The adjusting seat (300a) is provided with a first plane (5a3) on the side facing the connecting part (4b), and the connecting part (4b) is provided with a second plane (4b1) on the side facing the adjusting seat (300a), the first plane (5a3) and the second plane (4b1) are in contact, so that the adjusting seat (300a) and the connecting part (4b) are in surface contact; and, The upper frame (2) is provided with a third plane (2e) on the side facing the connecting part (4b), and the connecting part (4b) is provided with a fourth plane (4b2) on the side facing the upper frame (2), the third plane (2e) and the fourth plane (4b2) are in contact, so that the upper frame (2) and the connecting part (4b) are in surface contact.
6. The door assembly (100) of claim 1, wherein, The upper frame (2) is provided with a plurality of mounting holes (2d), and the plurality of mounting holes (2d) are arranged in the second direction (Y); and the adjusting seat (300a) connected to the upper frame (2) is connected with a connecting piece (8), the connecting piece (8) is arranged in part of the mounting holes (2d), so that the adjusting seat (300a) and the upper frame (2) are connected and fixed.
7. The door assembly (100) of claim 1, wherein, The lower frame (3) is provided with a connecting hole (3a) at the end in the second direction (Y), and the connecting hole (3a) is recessed towards the inside of the lower frame (3); and when the adjusting seat (300a) is connected to the lower frame (3), the adjusting seat (300a) is embedded into the connecting hole (3a) and connected and fixed with the lower frame (3).
8. The door assembly (100) of claim 1, wherein, The number of the adjusting seat (300a) connected to the upper frame (2) is two, and the two adjusting seats (300a) are arranged at the two ends of the upper frame (2) in the second direction (Y); and / or, The number of the adjusting seat (300a) connected to the lower frame (3) is two, and the two adjusting seats (300a) are arranged at the two ends of the lower frame (3) in the second direction (Y).
9. The door assembly (100) of claim 1, wherein, The door body assembly (100) further comprises a protective cover (9) connected to the upper frame (2) and the side frame (1) to shield the adjusting part (300b); and / or the protective cover (9) is connected to the lower frame (3) and the side frame (1) to shield the adjusting part (300b).
10. The door assembly (100) of claim 9, wherein, The protective cover (9) is provided with a protective groove (11) wrapped outside the adjusting part (300b), and the protective groove (11) is provided with a slot (11a) facing the corresponding side frame (1), and the protective cover (9) is provided with a sliding block (12) arranged on both sides of the protective cover (9) and connected with the upper frame (2).