Sliding sleeve socket

By using a combination structure of knob housing driving knob component and spring, the problem of traditional sliding sockets requiring two-hand operation is solved, achieving the convenience and stability of adjusting the height of the sliding socket with one hand.

CN223583312UActive Publication Date: 2025-11-21XIAMEN BRIGHT SHOWERS
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Patent Information

Application Number
CN202423180706.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-21
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Traditional sliding sockets require both hands to adjust their height, and the button design makes it difficult to position the socket in one go, resulting in low adjustment efficiency.

Method used

The knob housing drives the knob component to move, and the preload of the spring allows for one-handed adjustment of the sliding sleeve socket height. The combination of the knob component, the clamping shaft, and the spring enables the outer sliding sleeve to be loosened and fixed on the lifting rod.

Benefits of technology

The height of the sliding socket can be adjusted arbitrarily with a single hand rotation, making operation convenient and labor-saving, and improving adjustment efficiency and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of shower equipment, in particular to a sliding sleeve socket which comprises a lifting rod, an outer sliding sleeve is arranged on the lifting rod, a lining is arranged in the outer sliding sleeve, a knob shell is arranged on one side of the outer sliding sleeve, a knob piece is arranged in the knob shell, a connecting piece is arranged on the inner side of the knob piece, a connecting groove is formed in one end of the connecting piece, and a spring is arranged in the connecting groove. When the position of the outer sliding sleeve on the lifting rod needs to be adjusted, the knob shell is rotated, the knob piece is driven to move, the pressing shaft moves in the connecting groove and compresses the spring and the rubber pad to lose the pre-pressing amount, then the lifting rod is loosened, at the moment, the outer sliding sleeve slides up and down along the lifting rod, and after the outer sliding sleeve moves to a proper position, the knob shell is reversely rotated, so that the lifting rod is loosened. The spring rebounds to push the pressing shaft, the rubber pad abuts against the lifting rod through the pre-tightening force of the spring, and then the outer sliding sleeve can be fixed to the specific position of the lifting rod, so that the height of the sliding sleeve socket can be adjusted at will through single-hand rotation, and operation is convenient and saves labor.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a sliding sleeve socket and belongs to the technical field of shower equipment. BACKGROUND

[0002] The lifting rod structure in the shower equipment is usually composed of a sliding sleeve that can be adjusted up and down and a stable lifting rod, and the position of the sliding sleeve on the lifting rod is adjusted to meet the height and shower habit requirements of different users.

[0003] The traditional sliding sleeve socket clamping structure clamps the lifting rod by rotating the screw, and when the height needs to be frequently adjusted, the user must work with both hands, one hand fixing the sliding sleeve socket and the other hand rotating the screw component to clamp and loosen the lifting rod, which not only consumes a lot of time and effort, but also in some special working environments, the operation of both hands may be limited and cannot be completed, and the button type seems convenient, but it needs to be pressed all the time to move, which makes it difficult for the user to be distracted to accurately position the height, and once the button sliding sleeve is released, it stops moving, and it is difficult to adjust it in place at one time, which leads to repeated attempts, thereby seriously affecting the adjustment efficiency.

[0004] Therefore, it is urgent to improve the sliding sleeve socket to solve the above problems. CONTENT OF THE UTILITY MODEL

[0005] The utility model aims at providing a sliding sleeve socket, when the position of the outer sliding sleeve on the lifting rod needs to be adjusted, the knob shell is rotated to drive the knob to move, the compression shaft moves in the connecting groove and compresses the spring, the rubber pad loses the pre-pressing amount and releases the lifting rod, at this time, the outer sliding sleeve slides up and down along the lifting rod, after the outer sliding sleeve moves to the appropriate position, the knob shell is rotated in the opposite direction, the spring rebounds to push the compression shaft, the rubber pad is pushed against the lifting rod by the pre-tightening force of the spring, and then the outer sliding sleeve can be fixed on the specific position of the lifting rod, so that the height of the sliding sleeve socket can be adjusted at will by single-handed rotation, which is convenient and labor-saving.

[0006] In order to achieve the above purpose, the utility model adopts the main technical scheme:

[0007] The utility model provides a sliding sleeve socket, including the elevating lever, be provided with the outer sliding sleeve on the elevating lever, the inside joint of outer sliding sleeve is provided with the bushing, the bushing is equipped in the outside of elevating lever, and one side of outer sliding sleeve is provided with knob shell, the inside joint of knob shell is provided with knob piece, the inside of knob piece is provided with connecting piece, one end of connecting piece is provided with connecting groove, the inside of connecting groove is provided with spring, and one side of connecting piece is provided with compression shaft, one end of compression shaft extends to the inside of connecting groove and is pasted with spring, and the other end of compression shaft penetrates bushing and embeds rubber pad, and rubber pad corresponds with the outside wall of elevating lever.

[0008] Preferably, two inclined strips are fixedly installed on the knob piece, and two inclined blocks are fixedly installed on the compression shaft, an inclined groove is formed in the inclined block, and the inclined groove is matched with the inclined strip.

[0009] Preferably, positioning holes are formed in the upper and lower end blocks of the knob piece, and positioning pins are arranged in the positioning holes.

[0010] Preferably, two positioning grooves are formed in the connecting piece, and one end of the positioning pin penetrates the positioning hole and abuts against the positioning groove.

[0011] Preferably, two pin shafts are arranged on the connecting piece.

[0012] Preferably, the connecting piece is clamped with the outer sliding sleeve through two clamping pins.

[0013] Preferably, a friction pad is clamped on one side of the outer sliding sleeve, a socket is arranged on the side of the friction pad away from the outer sliding sleeve, a connecting shaft is arranged in the outer sliding sleeve, the connecting shaft is fixed with the outer sliding sleeve through a screw, and the outer sliding sleeve, the friction pad and the socket are fixed through the connecting shaft and the screw.

[0014] The utility model at least has the following beneficial effects:

[0015] 1. When the position of the outer sliding sleeve on the elevating lever needs to be adjusted, the knob shell is rotated to drive the knob piece to move, the compression shaft moves in the connecting groove and compresses the spring, the rubber pad loses the pre-pressing amount and releases the elevating lever, at this time, the outer sliding sleeve slides up and down along the elevating lever, after the outer sliding sleeve moves to the appropriate position, the knob shell is rotated in the opposite direction, the spring rebounds to push the compression shaft, the rubber pad is pressed against the elevating lever through the pre-tightening force of the spring, and the outer sliding sleeve can be fixed on the specific position of the elevating lever, so that the height of the sliding sleeve socket can be adjusted at will by single-handed rotation, which is convenient and labor-saving. BRIEF DESCRIPTION OF DRAWINGS

[0016] The accompanying drawings, which are included to provide a further understanding of the application and are incorporated in and constitute a part of this application, illustrate embodiments of the application and serve to explain the principles of the application, and, together with the specification, make known the application. In the drawings:

[0017] Figure 1 Part structure explosion schematic view provided by the utility model;

[0018] Figure 2 Part structure schematic view provided by the utility model;

[0019] Figure 3 Part structure sectional view provided by the utility model;

[0020] Figure 4 Whole structure schematic view provided by the utility model.

[0021] In the figure, 1, lifting rod; 2, outer sliding sleeve; 3, bushing; 4, knob shell; 41, knob piece; 42, inclined rib; 43, positioning hole; 44, positioning pin; 5, connecting piece; 51, connecting groove; 52, positioning groove; 53, pin shaft; 54, catch pin; 6, spring; 7, compression shaft; 71, inclined block; 72, inclined groove; 8, rubber pad; 9, friction pad; 10, socket; 11, connecting shaft; 12, screw. DETAILED DESCRIPTION

[0022] The embodiments of the present application will be described in detail below with the accompanying drawings and examples, so that the realization process of how to apply technical means to solve technical problems and achieve technical effects of the present application can be fully understood and implemented.

[0023] As Figures 1-4As shown, the sleeve socket provided by the embodiment comprises a lifting rod 1, an outer sleeve 2 is arranged on the lifting rod 1, a bushing 3 is clamped in the inner part of the outer sleeve 2, the bushing 3 is sleeved on the outer side of the lifting rod 1, one side of the outer sleeve 2 is provided with a knob shell 4, a knob piece 41 is clamped in the inner part of the knob shell 4, a connecting piece 5 is arranged on the inner side of the knob piece 41, a connecting groove 51 is formed in one end of the connecting piece 5, a spring 6 is arranged in the inner part of the connecting groove 51, one side of the connecting piece 5 is provided with a pressing shaft 7, one end of the pressing shaft 7 extends into the inner part of the connecting groove 51 and is in close contact with the spring 6, the other end of the pressing shaft 7 penetrates through the bushing 3 and is embedded with a rubber pad 8, the rubber pad 8 corresponds to the outer side wall of the lifting rod 1, when it is needed to adjust the position of the outer sleeve 2 on the lifting rod 1, the knob shell 4 is rotated by one hand, the rotating shell 4 is rotated clockwise by a certain angle, the knob piece 41 is driven to move, the pressing shaft 7 moves in the connecting groove 51 and compresses the spring 6, the rubber pad 8 loses the pre-pressing amount and loosens the lifting rod 1, at this time, the outer sleeve 2 is in a loosened state and can slide up and down along the lifting rod 1, after the outer sleeve 2 is moved to a suitable position, the knob shell 4 is reversely rotated, the rotating shell 4 is flush with the outer sleeve 2, the spring 6 rebounds to push the pressing shaft 7, the rubber pad 8 is pressed against the lifting rod 1 by the pre-tightening force of the spring 6, at this time, the outer sleeve 2 is in a clamped state with the lifting rod 1, and then the outer sleeve 2 can be fixed on a specific position of the lifting rod 1, so that the height of the sleeve socket can be adjusted arbitrarily by one-hand rotation, which is convenient and labor-saving.

[0024] Further, as shown in the drawings, Figures 1-4 Two inclined ribs 42 are fixedly installed on the knob piece 41, two inclined blocks 71 are fixedly installed on the pressing shaft 7, and an inclined groove 72 is formed in the inclined block 71 and is in close contact with the inclined rib 42, when the knob piece 41 rotates, the inclined rib 42 on the knob piece 41 interacts with the inclined groove 72 of the inclined block 71 on the pressing shaft 7, the rotary motion of the knob piece 41 is converted into the linear motion of the pressing shaft 7, the pressing shaft 7 can stably stretch and contract in the connecting groove 51, so that the pressing or loosening state of the rubber pad 8 and the wall of the lifting rod 1 can be controlled, and the precise adjustment and stable fixation of the position of the outer sleeve 2 on the lifting rod 1 can be realized.

[0025] Further, as shown in the drawings, Figures 1-4 A positioning hole 43 is formed in the upper and lower end clamps of the knob piece 41, a positioning pin 44 is arranged in the inner part of the positioning hole 43, two positioning grooves 52 are formed in the connecting piece 5, one end of the positioning pin 44 penetrates through the positioning hole 43 and abuts against the positioning groove 52, when the knob piece 41 rotates, the positioning pin 44 moves along the path defined by the positioning groove 52, which can not only ensure that the inclined rib 42 does not deviate from the inclined block 71, so that the pressing shaft 7 moves linearly along the predetermined track and controls the pressing degree of the rubber pad 8 on the lifting rod 1, but also prevents the relative displacement deviation between the knob piece 41 and the connecting piece 5, thereby effectively enhancing the stability of the sleeve socket in operation.

[0026] Further, as shown in Figures 1-4 The connecting piece 5 is provided with two pin shafts 53, and the connecting piece 5 is clamped with the outer sleeve 2 through two clamping pins 54. The pin shafts 53 on the connecting piece 5 cooperate with the clamping pins 54, so that the connecting piece 5 is tightly connected with the outer sleeve 2. When the knob piece 41 rotates, it can drive the compression shaft 7 to move linearly, thereby controlling the compression state between the rubber pad 8 and the lifting rod 1, so as to ensure the stability of the position adjustment of the outer sleeve 2 on the lifting rod 1.

[0027] Further, as shown in Figures 1-4 The outer sleeve 2 is clamped with a friction pad 9 on one side, and the friction pad 9 is provided with a socket 10 away from the outer sleeve 2. The inner part of the outer sleeve 2 is provided with a connecting shaft 11, and the connecting shaft 11 is fixed with the outer sleeve 2 through a screw 12. The outer sleeve 2, the friction pad 9 and the socket 10 are fixed through the connecting shaft 11 and the screw 12. The friction pad 9 can increase the friction force with the external contact object, so that the outer sleeve 2 and the socket 10 are more stable. The connecting shaft 11 and the screw 12 can connect the outer sleeve 2, the friction pad 9 and the socket 10 into a whole, thereby improving the strength and durability of the whole sleeve socket.

[0028] As shown in Figures 1-4 The principle of the sleeve socket provided by the embodiment is as follows:

[0029] When it is necessary to adjust the position of the outer sleeve 2 on the lifting rod 1, the knob shell 4 is rotated clockwise by one hand, so that the rotating shell 4 is rotated by a certain angle, and the knob piece 41 is rotated. The inclined strip 42 on the knob piece 41 interacts with the inclined groove 72 on the inclined block 71 of the compression shaft 7, so that the rotary motion is converted into the linear motion of the compression shaft 7 in the connecting groove 51. The compression spring 6 releases the rubber pad 8 from the lifting rod 1. At this time, the outer sleeve 2 is in a released state, and can slide up and down along the lifting rod 1. After the outer sleeve 2 is moved to the appropriate position, the knob shell 4 is rotated in the opposite direction, so that the rotating shell 4 is flush with the outer sleeve 2. The spring 6 rebounds to push the compression shaft 7. The rubber pad 8 is pressed against the lifting rod 1 by the pre-tightening force of the spring 6. At this time, the outer sleeve 2 and the lifting rod 1 are in a clamped state, and the outer sleeve 2 can be fixed at a specific position on the lifting rod 1, so that the height of the sleeve socket can be adjusted arbitrarily by one-handed rotation, which is convenient and labor-saving.

[0030] Certain terminology can also be used in the summary or detailed description of the present application for the purpose of brevity but are intended to be in no way limiting of the application. For example, the terms "right," "left," "rear," "front," "up," "down," "under" and the like as can be referenced herein can mean such terms only in the context of the particular figure to which the terminology is introduced and are not intended to more generally apply.

[0031] It is to be understood that the terminology "including", "containing", or any other variation thereof, is intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements is not necessarily limited to those elements, but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0032] The above description discloses and describes several preferred embodiments of the present application, but as previously mentioned, the present application is not limited to the forms disclosed herein, but should be understood to encompass various other combinations, modifications and environments, and can be modified and changed within the scope of the present application conceived herein by the above teachings or related art or knowledge. Any modification and change made by those skilled in the art without departing from the spirit and scope of the present application should be within the scope of protection of the claims attached herewith.

Claims

1. A sliding sleeve receptacle comprising a lifting rod (1), characterized in that: The lifting rod (1) is provided with an outer sliding sleeve (2), the inner part of the outer sliding sleeve (2) is clamped with a bushing (3), the bushing (3) is sleeved on the outer side of the lifting rod (1), one side of the outer sliding sleeve (2) is provided with a knob shell (4), the inner part of the knob shell (4) is clamped with a knob piece (41), the inner side of the knob piece (41) is provided with a connecting piece (5), one end of the connecting piece (5) is provided with a connecting groove (51), the inner part of the connecting groove (51) is provided with a spring (6), one side of the connecting piece (5) is provided with a compression shaft (7), one end of the compression shaft (7) extends into the inner part of the connecting groove (51) and is fitted with the spring (6), the other end of the compression shaft (7) penetrates through the bushing (3) and is embedded with a rubber pad (8), the rubber pad (8) corresponds to the outer side wall of the lifting rod (1).

2. A sliding sleeve receptacle according to claim 1, characterised in that: Two inclined strips (42) are fixedly installed on the knob piece (41), two inclined blocks (71) are fixedly installed on the compression shaft (7), and an inclined groove (72) is formed in the inclined block (71) and fitted with the inclined strip (42).

3. A sliding sleeve receptacle according to claim 2, wherein: Positioning holes (43) are formed in the upper and lower clamping blocks of the knob piece (41), and positioning pins (44) are arranged in the inner part of the positioning holes (43).

4. A sliding sleeve receptacle according to claim 3, wherein: Two positioning grooves (52) are formed in the connecting piece (5), one end of the positioning pin (44) penetrates through the positioning hole (43) and abuts against the positioning groove (52).

5. A sliding sleeve receptacle according to claim 1, wherein: Two pin shafts (53) are arranged on the connecting piece (5).

6. A sliding sleeve receptacle according to claim 1, characterized in that: The connecting piece (5) is clamped with the outer sliding sleeve (2) through two clamping pins (54).

7. A sliding sleeve receptacle according to claim 1, wherein: A friction pad (9) is clamped on one side of the outer sliding sleeve (2), the side, away from the outer sliding sleeve (2), of the friction pad (9) is provided with a socket (10), the inner part of the outer sliding sleeve (2) is provided with a connecting shaft (11), the connecting shaft (11) is fixed with the outer sliding sleeve (2) through a screw (12), and the outer sliding sleeve (2), the friction pad (9) and the socket (10) are fixed through the connecting shaft (11) and the screw (12).