Sliding seat and shower equipment

By using an elastic locking piece in the shower slide to cooperate with the locking part of the shower column and using a moving operating component to release the lock, the problem of laborious unlocking of the shower slide is solved, and the effects of labor-saving sliding and reliable locking are achieved.

CN120739201APending Publication Date: 2025-10-03XIAMEN JIANLIN SMART HOME CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202511200826.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-26
Publication Date
2025-10-03

AI Technical Summary

Technical Problem

The unlocking operation of the existing shower head slide requires a large pressing force and needs to be pressed continuously, which makes the operation laborious and inconvenient.

Method used

The elastic locking piece cooperates with the locking part of the shower column. The lock is released by moving the operating component against the end of the elastic locking piece to unlock the slide. The slide can be unlocked by pressing the operating component with a small force.

Benefits of technology

The unlocking operation is labor-saving and easy to implement, and the slide seat automatically locks after sliding into place. The structure is simple and easy to operate.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120739201A_ABST
    Figure CN120739201A_ABST
Patent Text Reader

Abstract

The invention provides a sliding seat and shower equipment. The sliding seat comprises a sliding seat body, a moving operation assembly, a support and an elastic locking piece. The sliding seat body is connected with a shower head of the shower equipment, the support is arranged on the side, away from the shower head, of the sliding seat body, the elastic locking piece is arranged on the support, and the two ends of the elastic locking piece are used for being clamped and locked with locking parts of a shower column of the shower equipment so as to limit sliding of the sliding seat body relative to the shower column. The moving operation assembly is movably arranged on the sliding seat body and matched with the elastic locking piece in a contactable mode, so that the moving operation assembly abuts against at least one end of the elastic locking piece to be unlocked from the locking part when moving under the action of external force, and sliding limitation on the sliding seat body is relieved. When unlocking is needed, the sliding base can be manually pushed to slide only by pressing the moving operation assembly, and after the moving operation assembly abuts against at least one end of the elastic locking piece and the locking part to be unlocked and locked, the moving operation assembly does not need to be pressed all the time to apply force, operation is labor-saving, and operation is easy.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present application relates to the technical field of shower equipment, and in particular to a sliding seat and shower equipment. Background Art

[0002] The shower head slide is a common shower accessory. It is equipped with a socket for placing the shower head. By sliding the shower head slide up and down, the height of the shower head can be freely adjusted to facilitate use by people of different heights.

[0003] Specifically, the showerhead slider is locked through friction between a friction block and the shower column. To unlock, the user presses a button to release the friction block from the shower column, allowing the relative position of the showerhead slider and the shower column to be adjusted. However, this method of unlocking the slider by using a button to actuate the friction block to overcome the friction between the friction block and the shower column requires a high pressing force and continuous button pressing, making operation laborious and inconvenient. Summary of the Invention

[0004] The purpose of this application is to provide a slide and shower equipment, aiming to solve the problem of how to facilitate the unlocking of the shower slide.

[0005] In a first aspect, an embodiment of the present application provides a slide, comprising a slide body, a moving operation assembly, a bracket, and an elastic locking member;

[0006] The bracket is provided on one side of the slide body and can be used to slide with the shower column of the shower equipment. The elastic locking piece is provided on the bracket. The shower column is provided with a locking portion. Both ends of the elastic locking piece are used to engage and lock with the locking portion to limit the slide body from sliding relative to the shower column.

[0007] The movable operating component is movably provided on the slide body and can be contact-matched with the elastic locking piece, so that when the movable operating component moves under the action of an external force, it presses against at least one end of the elastic locking piece and releases the lock from the locking portion, thereby releasing the sliding restriction on the slide body.

[0008] In some embodiments, the bracket includes a bracket housing, and the elastic locking member is disposed within the bracket housing;

[0009] The bracket shell is respectively provided with a first avoidance opening and a second avoidance opening. The mobile operating component extends into the bracket shell through the first avoidance opening and can be contact-matched with the elastic locking piece. The two ends of the elastic locking piece extend out of the bracket shell through the second avoidance opening and can be locked with the locking part.

[0010] In some embodiments, the bracket also includes a first limiting boss and a second limiting boss provided in the bracket shell, and the outer wall surface of the first limiting boss, the outer wall surface of the second limiting boss and part of the inner wall of the bracket shell together form a accommodating limiting cavity adapted to the elastic locking member.

[0011] In some embodiments, the first limiting boss and the second limiting boss are spaced apart along a sliding direction perpendicular to the slide body, and the space between the first limiting boss and the second limiting boss forms a limiting space extending along the sliding direction of the slide body, and a portion of the moving operating component is disposed in the limiting space and can move along the limiting space.

[0012] In some embodiments, the bracket housing may include a cavity shell and a bottom plate, the cavity shell having an inner cavity opening toward a side away from the slide body, the elastic locking member and the first limiting boss and the second limiting boss are all located in the inner cavity, and the bottom plate cover is provided at the opening; the first avoidance opening and the second avoidance opening are both provided in the cavity shell;

[0013] And / or, the first limiting boss, the second limiting boss and the bracket housing are integrally formed;

[0014] And / or, a first connecting hole is provided on the bracket, a second connecting hole is provided on the slide body, and the bracket is connected to the slide body via a fastener passing through the first connecting hole and the second connecting hole.

[0015] In some embodiments, the slide body includes a shell, and the shell is provided with a through hole passing through the sliding direction of the slide body. The movable operating component is movably provided in the through hole and part of the movable operating component extends out of the shell to form a pressing end. A third avoidance opening is provided on the side of the shell facing the bracket, and part of the movable operating component can be contact-engaged with the elastic locking member through the third avoidance opening.

[0016] In some embodiments, the movable operating component includes a pressing column and a slider connected to the pressing column, the pressing column is movably arranged in the through hole and at least one of the two ends of the pressing column extends out of the shell to form the pressing end, part of the slider is located in the shell and part of the slider extends out of the shell through the third avoidance opening and is contactably engaged with the elastic locking member.

[0017] In some embodiments, the slider includes a main slider and a guide block arranged on the outer periphery of the main slider, and the two ends of the main slider respectively cooperate with the pressing column and the elastic locking member; a guide groove is provided on the bracket for allowing the guide block to move along the sliding direction of the slide body.

[0018] In some embodiments, the elastic locking member includes a first elastic arm and a second elastic arm arranged at an acute angle, one end of the first elastic arm is connected to one end of the second elastic arm, and the other end of the first elastic arm and the other end of the second elastic arm both have a locking fitting portion for locking with the locking portion, and part of the moving operating component is located between the first elastic arm and the second elastic arm, so that when the moving operating component moves and presses against either the first elastic arm or the second elastic arm, the corresponding locking fitting portion is unlocked from the locking portion.

[0019] In some embodiments, the locking engagement portion is a locking protrusion bent in a direction away from the locking portion, and the locking portion is a plurality of locking slots spaced apart along the axial direction of the shower column, and the locking protrusion is used to be engaged in the locking slots to restrict the sliding of the slide, or to be moved out of the locking slots to release the sliding restriction on the slide;

[0020] And / or, the elastic locking member further comprises an intermediate arm, two ends of the intermediate arm are respectively connected to one end of the first elastic arm and one end of the second elastic arm, and the intermediate arm extends along the sliding direction of the slide body;

[0021] And / or, a sliding groove is provided on the shower column, at least a portion of the bracket is slidably disposed in the sliding groove, and the locking portion is provided on a side wall of the sliding groove;

[0022] And / or, the first elastic arm and the second elastic arm are arranged in sequence along the height direction of the shower column, and the moving operation component can move relative to the sliding seat body along the height direction of the shower column.

[0023] In a second aspect, an embodiment of the present application further provides a shower device including a shower column, a shower head and a sliding seat.

[0024] The beneficial effects of the present invention are:

[0025] The present application provides a slide and a shower device, wherein the slide comprises a slide body, a movable operating assembly, a bracket, and an elastic locking member. The bracket is provided on a side of the slide body away from the shower head and can be used to slideably cooperate with the shower column of the shower device. The shower column is provided with a locking portion. The elastic locking member is provided on the bracket, and both ends of the elastic locking member are used to engage and lock with the locking portion to limit the slide body from sliding relative to the shower column. The movable operating assembly is movably provided on the slide body and can engage with the elastic locking member in a contact manner, so that when the movable operating assembly moves under the action of an external force, at least one end of the elastic locking member is pressed against and released from the locking portion, thereby releasing the sliding restriction on the slide body. In other words, the slide of the present application is locked by providing both ends of the elastic locking member to lock with the locking portion on the shower column. When unlocking is required, the user only needs to press the movable operating assembly with a small amount of pressure, so that the movable operating assembly contacts at least one end of the elastic locking member and unlocks the locking portion. After that, the slide can be manually pushed to slide. Compared with the unlocking method that requires overcoming the friction force used to lock the slide, the slide of this embodiment does not need to continuously press the movable operating assembly to apply force when unlocking, which is more labor-saving and easy to operate. After sliding to the preset position, the user only needs to release the elastic locking member, and the end of the elastic locking member that is unlocked from the locking portion will re-engage the locking portion under the action of the elastic force, thus achieving reliable locking. The entire structure is simple and easy to operate. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0027] Figure 1 This is a schematic structural diagram of the sliding seat and shower column shown in an embodiment of the present application;

[0028] Figure 2 This is a schematic diagram of the structure of the sliding seat and part of the shower column shown in the embodiment of this application Figure 1 ;

[0029] Figure 3 This is a schematic diagram of the structure of the sliding seat and part of the shower column shown in the embodiment of this application Figure 2 ;

[0030] Figure 4 This is a schematic diagram of the structure of the sliding seat and part of the shower column shown in the embodiment of this application Figure 3 ;

[0031] Figure 5 This is a schematic diagram of the structure of the sliding seat and part of the shower column shown in the embodiment of this application Figure 4 ;

[0032] Figure 6 This is an exploded view of the sliding seat and shower column shown in the embodiment of the present application;

[0033] Figure 7 A cross-sectional view of the slide shown in an embodiment of the present application in an unlocked state relative to the shower column, wherein the pressing force is upward;

[0034] Figure 8 for Figure 7 Schematic diagram of the external structure of the sliding seat and shower column shown;

[0035] Figure 9 A cross-sectional view of the slide shown in an embodiment of the present application in an unlocked state relative to the shower column, wherein the pressing force is downward;

[0036] Figure 10 for Figure 9 Schematic diagram of the external structure of the sliding seat and shower column shown;

[0037] Figure 11 A cross-sectional view of the sliding seat shown in an embodiment of the present application in a locked state relative to the shower column;

[0038] Figure 12 for Figure 11 Schematic diagram of the external structure of the sliding seat and shower column shown;

[0039] Figure 13 This is a schematic structural diagram of the cavity shell and elastic locking member of the bracket shown in an embodiment of the present application;

[0040] Figure 14 This is a schematic structural diagram of the bracket and slider shown in an embodiment of the present application;

[0041] Figure 15 This is a schematic structural diagram of the cavity shell of the bracket shown in an embodiment of the present application;

[0042] Figure 16 This is a structural diagram of a slider shown in an embodiment of the present application;

[0043] Figure 17 This is a schematic structural diagram of the elastic locking member shown in an embodiment of the present application;

[0044] Figure 18 This is a schematic structural diagram of the slide shown in an embodiment of the present application;

[0045] Figure 19 This is a general assembly diagram of the shower device shown in the embodiment of the present application;

[0046] Figure 20 This is a schematic diagram of an exploded view of the shower device shown in an embodiment of the present application.

[0047] Reference numerals:

[0048] 100, slide body; 110, shell; 111, perforation; 112, third avoidance; 114, shell plate; 115, main shell; 200, moving operation component; 210, pressing end; 220, pressing column; 230, slider; 231, main slider; 232, guide block; 300, bracket; 310, bracket shell; 311, first avoidance; 312, second avoidance; 313, cavity shell; 314, bottom plate; 315, fastener; 320, third avoidance A limiting boss; 330, a second limiting boss; 340, a limiting cavity; 350, a limiting space; 360, a guide slot; 370, a first connecting hole; 400, an elastic locking member; 410, a first elastic arm; 420, a second elastic arm; 430, a locking fitting portion; 440, an intermediate arm; 500, a shower head; 600, a shower column; 610, a locking portion; 611, a locking slot; 620, a sliding slot; 700, a mounting seat; 710, a connecting slot. DETAILED DESCRIPTION

[0049] In the embodiments of the present application, the terms "first," "second," "third," "fourth," "fifth," and "sixth" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, a feature specified as "first," "second," "third," "fourth," "fifth," and "sixth" may explicitly or implicitly include one or more of the features.

[0050] In the embodiments of the present application, the terms "comprises," "comprising," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not preclude the presence of other identical elements in the process, method, article, or apparatus comprising the element.

[0051] Reference Figures 1 to 18 As shown, this embodiment provides a slide, including a slide body 100 , a moving operation assembly 200 , a bracket 300 and an elastic locking member 400 .

[0052] The sliding seat body 100 is used to connect with the shower head 500 of the shower equipment. The bracket 300 is arranged on the side of the sliding seat body 100 away from the shower head 500 and is used to slide with the shower column 600 of the shower equipment. A locking portion 610 is provided on the shower column 600. The elastic locking member 400 is provided on the bracket 300, and the two ends of the elastic locking member 400 are used to engage and lock with the locking portion 610 to limit the sliding of the sliding seat body 100 relative to the shower column 600.

[0053] The movable operating assembly 200 is movably disposed on the slide body 100 and can be contact-engaged with the elastic locking member 400, so that when the movable operating assembly 200 moves under the action of an external force, at least one end of the elastic locking member 400 is pressed against the locking portion 610 to release the lock, thereby releasing the sliding restriction on the slide body 100.

[0054] When implementing it, refer to Figure 1 、 Figure 2 、 Figure 19 、 Figure 20 As shown, a snap-fit ​​notch 710 is provided on one side of the slide body 100 for plugging and connecting with the shower head 500. A bracket 300 is provided on the other side of the slide body 100, and an elastic locking member 400 is provided on the bracket 300. The two ends of the elastic locking member 400 are respectively snap-fitted and locked with the locking portions 610 on the shower column 600. Therefore, the slide body 100 cannot be moved relative to the shower column 600 along the height direction of the shower column 600 (refer to FIG. Figure 1 The height position of the shower head 500 can be adjusted by sliding the shower head 500 in the z direction (as shown).

[0055] The movable operating assembly 200 is movably disposed on the slide body 100 and can be contactably engaged with the elastic locking member 400 .

[0056] For example, refer to Figure 6 and Figure 11 As shown, when both ends of the elastic locking member 400 are locked with the locking portion 610, there is no contact between the moving operating assembly 200 and the elastic locking member 400 and no resisting force is generated. The slide is in a locked state. Figure 11 and Figure 12 shown.

[0057] When unlocking is required to realize the sliding of the slide body 100, the movable operation assembly 200 can be pressed in the direction of abutting any end to realize unlocking. For example, the two ends of the elastic locking member 400 are set along the height direction of the shower column 600 (i.e. the sliding direction of the slide body 100, see the specific embodiment of the invention). Figure 1 z direction shown in the figure) when setting relative to Figure 9 and Figure 10As shown (unlocked downward, i.e., the pressing force is downward), the movable operating assembly 200 can be pressed downward, and the movable operating assembly 200 will push against the lower end of the elastic locking member 400 and move downward and release the lock from the locking portion 610. At this time, the slide can slide relative to the shower column 600. Or, refer to Figure 7 and Figure 8 As shown (unlock upward, i.e. the pressing force is upward), the movable operating assembly 200 can also be pressed upward. At this time, the movable operating assembly 200 will push against the upper end of the elastic locking member 400 and move upward and unlock with the locking portion 610. At this time, the slide can slide relative to the shower column 600.

[0058] That is to say, no matter whether the movable operating component 200 is pressed upward or downward, as long as any one end of the elastic locking member 400 can be pressed against the locking portion 610 to release the lock, the locking release operation of the slide can be achieved, and then the slide can be manually pushed to adjust the height position.

[0059] The slider of this embodiment is locked by providing two ends of an elastic locking member 400 that lock with the locking portion 610 on the shower column 600. When unlocking is required, the movable operating assembly 200 only needs to be pressed once, so that the movable operating assembly 200 abuts at least one end of the elastic locking member 400 and unlocks the locking portion 610. After that, the slider can be manually pushed to slide. Compared to the method of unlocking by overcoming the friction force used to lock the slider, the method of pressing the movable operating assembly 200 to move at least one end of the elastic locking member 400 and unlock the locking portion 610 in this embodiment requires less pressing force. Moreover, compared to the method of continuously pressing a button to overcome the friction force while sliding the slider, the slider of this embodiment does not need to continuously press the movable operating assembly 200 to apply force when unlocking, so the entire operation is more labor-saving and easy to operate. After sliding to the preset position, the user only needs to let go to allow the end of the elastic locking member 400 that is unlocked from the locking portion 610 to be re-engaged and locked with the locking portion 610 under the action of the elastic force, thereby achieving reliable locking. The entire structure is simple and easy to operate.

[0060] Reference Figure 6 、 Figures 13 to 15 As shown, in some embodiments, the bracket 300 includes a bracket housing 310 , and the elastic locking member 400 is disposed in the bracket housing 310 .

[0061] The bracket housing 310 is respectively provided with a first avoidance opening 311 and a second avoidance opening 312. The mobile operating component 200 extends into the bracket housing 310 through the first avoidance opening 311 and can be contact-engaged with the elastic locking member 400. The two ends of the elastic locking member 400 extend to the outside of the bracket housing 310 through the second avoidance opening 312 and can be locked with the locking part 610.

[0062] In specific implementation, the elastic locking member 400 can be set in the bracket shell 310 to accommodate and limit the elastic locking member 400. In order to enable the elastic locking member 400 to be locked with the locking portion 610 and to be able to cooperate with the mobile operating component 200 in a contact manner, it is necessary to set a first avoidance opening 311 on the side of the bracket shell 310 facing the mobile operating component 200, so that part of the mobile operating component 200 can extend into the bracket shell 310 through the first avoidance opening 311 and be able to cooperate with the elastic locking member 400 in a contact manner.

[0063] At the same time, a second avoidance opening 312 is provided on one side of the bracket housing 310 facing the locking portion 610 , so that both ends of the elastic locking member 400 can extend through the first avoidance opening 311 and lock with the locking portion 610 .

[0064] It should be noted that in order to avoid the opening of the second avoidance opening 312 being too large, which may cause water or foreign matter to easily enter the bracket shell 310, and to ensure that both ends of the elastic locking member 400 can be extended outside the bracket shell 310, the second avoidance opening 312 can be set to include two, and the two second avoidance openings 312 are respectively set corresponding to the two ends of the elastic locking member 400, so that the two ends of the elastic locking member 400 can just be extended through the corresponding second avoidance openings 312.

[0065] Reference Figure 7 、 Figure 9 、 Figure 11 and Figure 13 As shown, in some embodiments, the bracket 300 also includes a first limiting boss 320 and a second limiting boss 330 provided in the bracket shell 310, and the outer wall surface of the first limiting boss 320, the outer wall surface of the second limiting boss 330 and a portion of the inner wall of the bracket shell 310 together form a accommodating limiting cavity 340 adapted to the elastic locking member 400.

[0066] That is to say, the outer wall surfaces of the first limiting boss 320 and the second limiting boss 330 and part of the inner wall surface of the bracket shell 310 can enclose a accommodating limiting cavity 340, and the elastic locking member 400 is arranged in the accommodating limiting cavity 340 to ensure the stability of the relative position of the elastic locking member 400 and the bracket shell 310.

[0067] For example, the first limiting boss 320 and the second limiting boss 330 can be designed to be shaped to match the outer contour of the elastic locking member 400. For example, the elastic locking member 400 is as follows: Figure 17 In the V-shaped structure shown, the first limiting boss 320 and the second limiting boss 330 can form a trapezoidal structure.

[0068] Alternatively, in other implementations, a snap-fitting, position-limiting elastic locking member 400 may also be provided in the bracket housing 310 .

[0069] Reference Figure 7 、 Figure 9 、 Figure 11 and Figure 13 As shown, in some embodiments, the first limiting boss 320 and the second limiting boss 330 are spaced apart along the sliding direction perpendicular to the slide body 100, and the interval between the first limiting boss 320 and the second limiting boss 330 forms a limiting space 350 extending along the sliding direction of the slide body 100, and a portion of the moving operating component 200 is disposed in the limiting space 350 and can move along the limiting space 350.

[0070] That is to say, in addition to the function of accommodating and limiting the elastic locking member 400, the first limiting boss 320 and the second limiting boss 330 of this embodiment are spaced apart along the sliding direction perpendicular to the sliding seat body 100, so that the gap therebetween can just accommodate the part of the mobile operating component 200 that extends into the bracket housing 310, and this part of the mobile operating component 200 can move along the limiting space 350 to reliably guide and limit the movement of the mobile operating component 200 when the mobile operating component 200 moves, so as to avoid the problem of offset of the pressing and inability to reliably push against and unlock the elastic locking member 400.

[0071] Reference Figure 6 and Figure 13 As shown, in some embodiments, the bracket shell 310 may include a cavity shell 313 and a bottom plate 314, the cavity shell 313 has an inner cavity opening toward the side away from the slide body 100, the elastic locking member 400, the first limiting boss 320 and the second limiting boss 330 are all located in the inner cavity, and the bottom plate 314 covers the opening; the first avoidance opening 311 and the second avoidance opening 312 are both provided in the cavity shell 313.

[0072] In a specific implementation, to facilitate placement of the elastic locking member 400, the first limiting boss 320, and the second limiting boss 330 within the bracket housing 310, the bracket housing 310 can be configured as two parts: a cavity housing 313 and a bottom plate 314, which are connected and enclosed to form an inner cavity. Specifically, the bottom plate 314 can be positioned over the opening of the cavity housing 313, with the two parts being snap-fitted or threadedly connected.

[0073] For example, the first limiting boss 320 , the second limiting boss 330 and the bracket housing 310 are integrally formed, so as to save manufacturing steps and improve the structural strength of the entire bracket housing 310 .

[0074] Reference Figures 13 and 14 As shown, a first connecting hole 370 is provided on the bracket 300, and a second connecting hole is provided on the slide body 100. The bracket 300 is connected to the slide body 100 by a fastener 315 passing through the first connecting hole 370 and the second connecting hole, thereby achieving a reliable connection between the two.

[0075] For example, one of the first connection hole 370 and the second connection hole can be a plain hole, the other of the first connection hole 370 and the second connection hole can be a threaded hole, and the fastener 315 can be a bolt or a screw. Alternatively, the first connection hole 370 and the second connection hole can both be plain holes, and the fastener 315 can be a fastening pin.

[0076] Alternatively, in other implementations, the bracket 300 and the slide body 100 may also be fixed by snapping.

[0077] Reference Figures 1 to 12 、 Figure 18 As shown, in some embodiments, the slide body 100 includes a shell 110, and the shell 110 is provided with a through hole 111 passing through the sliding direction of the slide body 100. The mobile operating component 200 is movably provided in the through hole 111 and part of the mobile operating component 200 extends out of the shell 110 to form a pressing end 210. A third avoidance opening 112 is provided on the side of the shell 110 facing the bracket 300, and part of the mobile operating component 200 can be contact-engaged with the elastic locking member 400 through the third avoidance opening 112.

[0078] In specific implementation, the shell 110 has an inner cavity, and a through-hole 111 is provided on the wall of the inner cavity, and the through-hole 111 is provided along the sliding direction of the slide body 100, that is, the walls on opposite sides of the inner cavity are provided with a through-hole 111, and the mobile operating component 200 can be movably provided in the through-hole 111 and partially extended to the outside of the shell 110 to form a pressing end 210, so that the user can press the pressing end 210 to push against either end of the elastic locking member 400 to move and release the locking connection with the locking portion 610.

[0079] Part of the mobile operating assembly 200 is located in the housing 110 , and the other part extends into the bracket 300 through the third avoidance opening 112 on the housing 110 and the first avoidance opening 311 on the bracket 300 to engage with the elastic locking member 400 in a contact manner.

[0080] Specifically, when unlocking is required, force can be applied to the pressing end 210 , and the pressing end 210 moves to drive the moving operating assembly 200 to move as a whole and push against one end of the elastic locking member 400 to release the lock from the locking portion 610 .

[0081] For example, refer to Figure 18 As shown, the upper end of the movable operating component 200 extends out of the shell 110 to form a pressing end 210. At this time, a downward pressing force can be applied to the pressing end 210, so that the pressing end 210 moves downward and drives the movable operating component 200 to move downward as a whole and causes the lower end of the elastic locking member 400 to move to release the lock from the locking portion 610. At this time, the slide seat can slide relative to the shower column 600 to achieve position adjustment.

[0082] For example, refer to Figure 18 As shown, the lower end of the movable operating component 200 extends out of the shell 110 to form a pressing end 210. At this time, an upward pressing force can be applied to the pressing end 210, so that the pressing end 210 moves upward and drives the movable operating component 200 to move upward as a whole and causes the upper end of the elastic locking member 400 to move to release the lock from the locking portion 610. At this time, the slide seat can slide relative to the shower column 600 to achieve position adjustment.

[0083] Alternatively, refer to Figure 18 As shown, the upper and lower ends of the mobile operating component 200 can also be arranged to extend out of the shell 110 to form a pressing end 210. At this time, an upward pressing force can be applied to the lower pressing end 210 or a downward pressing force can be applied to the upper pressing end 210 according to actual conditions. This embodiment does not make specific limitations on this.

[0084] Specifically, the housing 110 may include a main shell 115 and a shell plate 114 , which are buckled or snapped together to enclose an air chamber for accommodating the pressing column 220 . The main shell 115 is provided with a through hole 111 and a third avoidance opening 112 .

[0085] Reference Figure 6 、 Figure 16 and Figure 18As shown, in some embodiments, the mobile operating component 200 includes a pressing column 220 and a slider 230 connected to the pressing column 220. The pressing column 220 is movably arranged in the through-hole 111 and at least one of the two ends of the pressing column 220 extends out of the shell 110 to form a pressing end 210. Part of the slider 230 is located in the shell 110 and part of the slider 230 extends out of the shell 110 through the third avoidance opening 112 and is contactably engaged with the elastic locking member 400.

[0086] In a specific implementation, a portion of the pressing post 220 extends outside the housing 110 to form the pressing end 210. The slider 230 can be snap-fitted or threadedly engaged with the pressing post 220. To unlock, the pressing post 220 can be pressed, causing it to move and thereby drive the slider 230. The slider 230 then moves and abuts against either end of the elastic locking member 400, releasing the locking portion 610.

[0087] For example, the upper and lower ends of the pressing post 220 may be extended from the housing 110 to form the pressing end 210. In this case, the length of the pressing post 220 needs to be set to be greater than the length of the housing 110 along the moving direction of the pressing post 220. The specific length difference can be set according to actual needs.

[0088] In addition, since part of the slider 230 extends out of the shell 110 through the third avoidance hole, the slider 230 acts as a limiter for the pressing column 220. Since the slider 230 is arranged in the third avoidance hole 112 of the shell 110, the pressing column 220 will not fall off the shell 110.

[0089] Reference Figure 14 、 Figure 15 、 Figure 16 As shown, in some embodiments, the slider 230 includes a main slider 231 and a guide block 232 arranged on the outer periphery of the main slider 231, and the two ends of the main slider 231 respectively cooperate with the pressing column 220 and the elastic locking member 400; a guide groove 360 ​​is provided on the bracket 300 for allowing the guide block 232 to move along the height direction of the shower column 600.

[0090] In a specific implementation, the main slider 231 can be snap-fitted or screw-fitted to the pressing post 220. When unlocking is required, the pressing post 220 can be pressed, causing the pressing post 220 to move and drive the main slider 231 to move. The main slider 231 moves and abuts against either end of the elastic locking member 400 until it is unlocked from the locking portion 610.

[0091] At the same time, a guide block 232 is provided on the outer periphery of the main slider 231 . The guide block 232 can move along the guide slot 360 on the housing 110 , so that the main slider 231 can be guided while moving.

[0092] Furthermore, a portion of the main slider 231 extends into the bracket 300 through the third escape opening 112 and the first escape opening 311 and is located within the limiting space 350. In other words, in this embodiment, the slider 230 can be guided reliably and accurately during movement by the dual guidance of the guide slot 360 and the limiting space 350, thereby preventing it from tilting and affecting the unlocking operation of the elastic locking member 400.

[0093] Reference Figure 6 、 Figure 17 As shown, in some embodiments, the elastic locking member 400 includes a first elastic arm 410 and a second elastic arm 420 set at an acute angle, one end of the first elastic arm 410 is connected to one end of the second elastic arm 420, and the other end of the first elastic arm 410 and the other end of the second elastic arm 420 both have a locking matching portion 430 for locking with the locking portion 610, and a portion of the mobile operating component 200 is located between the first elastic arm 410 and the second elastic arm 420, so that when the mobile operating component 200 moves and presses against any one of the first elastic arm 410 and the second elastic arm 420, the corresponding locking matching portion 430 is unlocked from the locking portion 610.

[0094] In a specific implementation, the first elastic arm 410 and the second elastic arm 420 are arranged at an acute angle. Such an arrangement allows the other end of the first elastic arm 410 and the other end of the second elastic arm 420 to be arranged in a direction close to the locking portion 610, so as to facilitate locking with the locking portion 610 to realize the locking operation of the slide.

[0095] For example, the first elastic arm 410 and the second elastic arm 420 may be arranged at an acute angle, so that the elastic locking member 400 may be arranged in a V-shape as a whole.

[0096] The other end of the first elastic arm 410 and the other end of the second elastic arm 420 are provided with a locking engagement portion 430. When both locking engagement portions 430 are engaged and locked with the locking portion 610, the slide is locked, i.e., it cannot slide relative to the shower column 600. When either of the two locking engagement portions 430 is disengaged from the locking portion 610, the slide is unlocked, i.e., it can slide relative to the shower column 600.

[0097] Furthermore, to facilitate unlocking by abutting against either the first elastic arm 410 or the second elastic arm 420, the portion of the mobile operating assembly 200 that extends into the bracket 300 can be positioned between the first elastic arm 410 and the second elastic arm 420. This allows the mobile operating assembly 200 to abut against the first elastic arm 410 when an external force is applied toward the first elastic arm 410, thereby releasing the locking engagement portion 430 disposed thereon from the locking portion 610. Alternatively, the mobile operating assembly 200 can abut against the second elastic arm 420 when an external force is applied toward the second elastic arm 420, thereby releasing the locking engagement portion 430 disposed thereon from the locking portion 610. Specifically, positioning the portion of the mobile operating assembly 200 between the first elastic arm 410 and the second elastic arm 420 allows for flexible selection of either the first elastic arm 410 or the second elastic arm 420 for unlocking, thereby providing greater operational flexibility.

[0098] Reference Figure 6 、 Figure 7 、 Figure 9 、 Figure 11 、 Figure 13 、 Figure 17 As shown, in some embodiments, the locking fitting portion 430 is a locking protrusion bent in a direction away from the locking portion 610. The locking portion 610 is a plurality of locking slots 611 arranged at intervals along the axial direction of the shower column 600. The locking protrusion is used to be engaged in the locking slot 611 to limit the sliding of the slide, or to be moved out of the locking slot 611 to release the sliding restriction on the slide.

[0099] Reference Figure 11 As shown, when the two locking protrusions at both ends of the elastic locking member 400 are both engaged in the corresponding two locking slots 611, the slide is in a locked state. Figure 7 and Figure 9 As shown, when one of the two locking protrusions is separated from the corresponding locking slot 611, the slide is in an unlocked state.

[0100] When implementing it, refer to Figure 17 As shown, the locking protrusion is formed by bending the other end of the first elastic arm 410 and the other end of the second elastic arm 420 in a direction away from the locking portion 610. The entire structure is simple and easy to manufacture.

[0101] For example, the elastic locking member 400 is made of metal springs or plastic, as long as it has sufficient elastic deformation capability.

[0102] Reference Figure 6 、 Figure 7 、 Figure 9 、 Figure 11 、 Figure 13 、 Figure 17 As shown, in some embodiments, the elastic locking member 400 also includes an intermediate arm 440, and the two ends of the intermediate arm 440 are respectively connected to one end of the first elastic arm 410 and one end of the second elastic arm 420. The intermediate arm 440 extends along the sliding direction of the sliding seat body 100 to facilitate the connection of the first elastic arm 410 and the second elastic arm 420 and avoid the problem of a larger structural volume of the entire elastic locking member 400 due to the direct connection of one end of the first elastic arm 410 and one end of the second elastic arm 420 without providing the intermediate arm 440.

[0103] For example, the first elastic arm 410 , the second elastic arm 420 and the middle arm 440 may be integrally formed, thereby saving manufacturing steps and improving the structural strength of the entire elastic locking member 400 .

[0104] In addition, for ease of operation, the movable operating assembly 200 is configured to move along the height direction of the shower column 600. At this time, the first elastic arm and the second elastic arm 420 are also configured to be arranged in sequence along the height direction of the shower column 600. Therefore, the intermediate arm 440 can be configured to extend along the sliding direction of the slide body 100, that is, to extend along the height direction of the shower column 600, making the structure of the entire elastic locking member 400 simpler.

[0105] Reference Figure 1 、 Figure 5 、 Figure 7 、 Figure 9 、 Figure 11 As shown, in some embodiments, a sliding groove 620 is provided on the shower column 600 , and at least a portion of the bracket 300 slides in the sliding groove 620 . A locking portion 610 is provided on one side wall of the sliding groove 620 .

[0106] That is to say, the bracket 300 can slide along the sliding groove 620, so that the sliding seat can slide more smoothly without being skewed, and a locking portion 610 is provided on one side wall of the sliding groove 620 to facilitate locking cooperation with the elastic locking member 400.

[0107] Reference Figures 1 to 20 As shown, the embodiment of the present application further provides a shower device including a shower column 600, a shower head 500 and a sliding seat.

[0108] The specific structure and implementation principle of the slide in this embodiment are the same as the structure of the slide provided in the above embodiment, and can bring the same or similar technical effects. They will not be described one by one here, and the details can be referred to the description of the above embodiment.

[0109] In a specific implementation, the slide also includes a mounting seat 700 arranged on a side of the slide body 100 away from the bracket 300. The mounting seat 700 is provided with a snap-in slot 710, and the shower head 500 is snap-fitted into the snap-in slot 710, thereby achieving the purpose of reliably fixing the shower head 500 on the slide.

[0110] For example, the mounting seat and the sliding seat body 100 may be connected by bolts or by snap-fitting.

[0111] In the description of the embodiments of the present application, specific features, structures, materials or characteristics may be combined in an appropriate manner in any one or more embodiments or examples.

[0112] The above are only specific embodiments of the present application, but the scope of protection of this application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of this application. Therefore, the scope of protection of this application should be based on the scope of protection of the claims.

Claims

1. A sliding seat, characterized in that: It comprises a sliding seat body (100), a moving operating assembly (200), a bracket (300) and an elastic locking member (400); The bracket (300) is provided on one side of the slide body (100) and is used for slidingly cooperating with the shower column (600) of the shower equipment. The shower column (600) is provided with a locking portion (610). The elastic locking member (400) is provided on the bracket (300), and both ends of the elastic locking member (400) are used for engaging and locking with the locking portion (610) to limit the sliding of the slide body (100) relative to the shower column (600). The movable operating component (200) is movably arranged on the slide body (100) and can be contact-matched with the elastic locking member (400), so that when the movable operating component (200) moves under the action of an external force, at least one end of the elastic locking member (400) is pressed against and unlocked from the locking portion (610), thereby releasing the sliding restriction on the slide body (100).

2. The slide according to claim 1, wherein: The bracket (300) comprises a bracket shell (310), and the elastic locking member (400) is disposed in the bracket shell (310); The bracket housing (310) is provided with a first avoidance opening (311) and a second avoidance opening (312), respectively; the movable operating assembly (200) extends into the bracket housing (310) through the first avoidance opening (311) and can be contact-matched with the elastic locking member (400); and both ends of the elastic locking member (400) extend out of the bracket housing (310) through the second avoidance opening (312) and can be locked and matched with the locking portion (610).

3. The slide according to claim 2, characterized in that The bracket (300) further includes a first limiting boss (320) and a second limiting boss (330) disposed within the bracket housing (310), wherein the outer wall surface of the first limiting boss (320), the outer wall surface of the second limiting boss (330) and a portion of the inner wall of the bracket housing (310) together form a accommodating limiting cavity (340) adapted to the elastic locking member (400).

4. The slide according to claim 3, characterized in that The first limiting boss (320) and the second limiting boss (330) are spaced apart in a sliding direction perpendicular to the sliding seat body (100); The interval between the first limiting boss (320) and the second limiting boss (330) forms a limiting space (350) extending along the sliding direction of the slide body (100), and a portion of the moving operating component (200) is arranged in the limiting space (350) and can move along the limiting space (350).

5. The slide according to any one of claims 1 to 4, characterized in that: The slide body (100) comprises a shell (110), the shell (110) is provided with a through hole (111) penetrating along the sliding direction of the slide body (100), the movable operating component (200) is movably arranged in the through hole (111), and a portion of the movable operating component (200) extends out of the shell (110) to form a pressing end (210); A third avoidance opening (112) is provided on one side of the housing (110) facing the bracket (300), and a portion of the movable operating assembly (200) can be contact-matched with the elastic locking member (400) via the third avoidance opening (112).

6. The slide according to claim 5, characterized in that The moving operation assembly (200) includes a pressing column (220) and a slider (230) connected to the pressing column (220); The pressing column (220) is movably inserted into the through hole (111) and at least one of the two ends of the pressing column (220) extends out of the shell (110) to form the pressing end (210), a portion of the slider (230) is located in the shell (110) and a portion of the slider (230) extends out of the shell (110) through the third avoidance opening (112) and is contactably engaged with the elastic locking member (400).

7. The slide according to claim 6, characterized in that The slider (230) includes a main slider (231) and a guide block (232) arranged on the outer periphery of the main slider (231); The two ends of the main slider (231) respectively cooperate with the pressing column (220) and the elastic locking member (400); The bracket (300) is provided with a guide slot (360) for allowing the guide block (232) to move along the sliding direction of the slide body (100).

8. The slide according to any one of claims 1 to 4, characterized in that The elastic locking member (400) comprises a first elastic arm (410) and a second elastic arm (420) arranged at an acute angle, one end of the first elastic arm (410) being connected to one end of the second elastic arm (420); The other end of the first elastic arm (410) and the other end of the second elastic arm (420) both have a locking fitting portion (430) for locking with the locking portion (610), and part of the moving operation component (200) is located between the first elastic arm (410) and the second elastic arm (420) so as to move the moving operation component (200) and press against any one of the first elastic arm (410) and the second elastic arm (420) to release the corresponding locking fitting portion (430) from the locking portion (610).

9. The slide according to claim 8, characterized in that The locking fitting portion (430) is a locking protrusion bent in a direction away from the locking portion (610); the locking portion (610) is a plurality of locking slots (611) arranged at intervals along the axial direction of the shower column (600); the locking protrusion is used to be engaged in the locking slots (611) to restrict the sliding of the slide seat, or to be moved out of the locking slots (611) to release the sliding restriction on the slide seat; And / or, the elastic locking member (400) further includes an intermediate arm (440), two ends of the intermediate arm (440) are respectively connected to one end of the first elastic arm (410) and one end of the second elastic arm (420), and the intermediate arm (440) extends along the sliding direction of the sliding seat body (100); And / or, a sliding groove (620) is provided on the shower column (600), at least a portion of the bracket (300) is slidably disposed in the sliding groove (620), and the locking portion (610) is provided on a side wall of the sliding groove (620); And / or, the first elastic arm (410) and the second elastic arm (420) are arranged in sequence along the height direction of the shower column (600), and the moving operation component (200) can move relative to the sliding seat body (100) along the height direction of the shower column (600).

10. A shower device, characterized in that: The invention comprises a shower column (600), a shower head (500) and a sliding seat according to any one of claims 1 to 9.