Novel drainer bouncing assembly and drainer

By designing a new type of drainer bounce assembly, using the combination of mounting cylinder, mounting seat, slide rod and other components, the problem of poor rebound performance of existing drainer bounce assembly is solved, more efficient spring compression and rebound, and the practicality of drainer is improved.

CN222923863UActive Publication Date: 2025-05-30BONKE KITCHEN & IND CO LTD
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Patent Information

Application Number
CN202421427359.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-20
Publication Date
2025-05-30
Estimated Expiration
2034-06-20

AI Technical Summary

Technical Problem

During the assembly and use of existing drainer bouncing components, due to the limited size of the heart-shaped bouncing guide groove, the movement distance of the bouncing hook is limited, and the compression amount of the spring is small, which reduces the spring's rebound performance and affects the practicality of the drainer.

Method used

A new type of drainer bounce assembly is designed, including a bounce core body, which adopts a combination of mounting cylinder, mounting seat, slide rod, convex ring, wedge block, connecting rod, mounting cover, silicone pad, bounce spring, bounce cover, first spring, block and first magnet block. Through the combination of these components, the closing and opening function of the bounce cover is realized, and the compression amount and rebound performance of the spring are increased.

Benefits of technology

By increasing the compression amount and rebound performance of the spring, the practicality of the drain is improved, the effective operation of the bounce assembly is ensured, and the effectiveness of the drain is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a novel drainer bouncing assembly and a drainer, and relates to the technical field of bathroom accessories, the novel drainer bouncing assembly comprises a bouncing core body, the bouncing core body comprises a mounting cylinder, a mounting seat is mounted at the bottom end in the mounting cylinder, a sliding rod is mounted at the upper end of the mounting seat, and a wedge-shaped block is mounted at the upper end of the sliding rod; a connecting rod is movably inserted into the portion, close to the upper end, of the mounting cylinder, the upper end of the connecting rod is in threaded connection with a bouncing cover, a mounting cover is mounted at the bottom end of the connecting rod, a bouncing spring is arranged between the mounting cover and the mounting cylinder, mounting grooves are formed in the two sides of the inner wall of the mounting cover, and abutting blocks are movably inserted into the mounting grooves. The upper end of the abutting block abuts against the bottom end of the wedge-shaped block, the outer portion of the sliding rod is slidably connected with a protruding ring, the bottom end of the protruding ring abuts against the top end of the mounting base, and the protruding ring is matched with the wedge-shaped block. According to the utility model, the rebound resilience of the bouncing component can be effectively improved, the practicability of the drainer is improved, and the drainer has higher practical value.
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Description

Technical Field

[0001] The utility model belongs to the technical field of sanitary wares, and more specifically, particularly relates to a novel pop-up assembly of a drainer and a drainer. Background Art

[0002] A drainer is a daily necessity, such as a washbasin drainer, a kitchen sink drainer, a mop sink drainer, a floor drainer, etc., which functions as a switch for draining water. Generally, it includes two types: a flip-type and a pop-up type drainer. The pop-up type drainer generally includes a pop-up switch assembly and a fixed seat fixed to the pop-up switch; when the pop-up switch is pressed, the pop-up switch pops up, the water path is conducted, and drainage is carried out. When the pop-up switch is pressed again, the pop-up switch resets, and the water sealing plate closes the water path of the downpipe to store water. Currently, the pop-up switch assembly of the drainer includes a pop-up housing, a positioning convex column, a pop-up hook, a heart-shaped pop-up guide groove and a spring.

[0003] Based on the above, the inventor found the following problems: during the assembly and use of the current pop-up assembly of the drainer, one end of the pop-up hook is clamped in the positioning hole on the positioning convex column of the pop-up housing, the other end is clamped in the heart-shaped pop-up guide groove, and then one end of the return spring is abutted against the pop-up hook, and the other end is abutted against the inside of the pop-up housing. Since the size of the heart-shaped pop-up guide groove in the pop-up housing is limited, the moving distance of the pop-up hook locked on the new pop-up guide groove is limited, so that the compression amount of the spring is small, which in turn leads to poor resilience of the spring, and further reduces the practicability of the drainer.

[0004] Therefore, in view of this, the existing structure and deficiencies are studied and improved to provide a novel pop-up assembly of a drainer and a drainer, in order to achieve a more practical value. Content of the Utility Model

[0005] In order to solve the above technical problems, the utility model provides a novel pop-up assembly of a drainer and a drainer to solve the problems in the current background art.

[0006] The purpose and effect of the novel pop-up assembly of the drainer and the drainer of the utility model are achieved by the following specific technical means:

[0007] A new type of pop-up component and drainer for a sink, including a pop-up core body. The pop-up core body includes an installation cylinder. At the inner bottom end of the installation cylinder, there is an installation seat. At the upper end of the installation seat, there is a sliding rod. At the upper end of the sliding rod, there is a wedge-shaped block. Inside the installation cylinder near the upper end, there is a connecting rod inserted movably. At the upper end of the connecting rod, there is a pop-up cover connected by threads, and at the bottom end of the connecting rod, there is an installation cover. Between the installation cover and the installation cylinder, there is a pop-up spring. On both sides of the inner wall of the installation cover, there are installation grooves. Inside the installation grooves, there are abutting blocks inserted movably. The upper end of the abutting block abuts against the bottom end of the wedge-shaped block.

[0008] Further, an annular protrusion is slidably connected to the outside of the sliding rod. The bottom end of the annular protrusion abuts against the top end of the installation seat, and the annular protrusion matches the wedge-shaped block.

[0009] Further, one end of the abutting block is fixedly connected to a first spring. The other end of the first spring away from the abutting block is fixedly connected to the inner wall of the installation groove. The end of the abutting block away from the first spring is inclined.

[0010] Further, at the upper end inside the installation cylinder and at the upper end of the installation cover, there are silica gel pads installed. The silica gel pads are in the shape of a hollow circle, and the inner wall of the silica gel pad fits the outer wall of the connecting rod. At the inner bottom end of the installation cylinder, there is a first magnet block installed.

[0011] Further, it includes a drainer body. The drainer body includes a housing. There are several overflow grooves on the housing. At the center of the bottom end of the housing, there is a through hole. The inner wall of the through hole fits the outer wall of the first magnet block.

[0012] Further, at the bottom end of the housing near the through hole, there is a fixed cylinder installed. The fixed cylinder and the through hole are on the same axis line. Inside the inner wall of the fixed cylinder, there is a hollow magnet block embedded. The inner wall of the hollow magnet block fits the outside of the first magnet block, and the hollow magnet block and the first magnet block adsorb to each other.

[0013] Further, several limiting blocks are installed on the inner wall of the housing. A filtering block is movably arranged inside the housing. There are several limiting grooves on the outside of the filtering block. The limiting grooves match the limiting blocks and are slidably connected.

[0014] Compared with the prior art, the present utility model has the following beneficial effects:

[0015] By the coordinated use of the mounting tube, the mounting seat, the sliding rod, the convex ring, the wedge block, the connecting rod, the mounting cover, the silicone pad, the bouncing spring, the bouncing cover, the first spring, the resist block and the first magnet block, and by setting the bouncing cover, when the bouncing cover is squeezed downward, the bouncing cover, the connecting rod and the mounting cover move downward and squeeze the bouncing spring to compress the bouncing spring. At this time, the resist blocks inside the mounting grooves on both sides of the inner wall of the mounting cover resist against the outside of the wedge block during the continuous downward movement, so that the resist blocks shrink under the elastic force of the first spring. When the resist blocks are located at the bottom end of the wedge block during the continuous downward movement, the extrusion force on the resist blocks disappears and the resist blocks are reset under the elastic force of the first spring, which makes the top end of the resist block resist against the bottom end of the wedge block, thereby realizing the closing function of the bouncing cover and preventing water from being discharged. When drainage is required, the bouncing cover continues to be squeezed downward to resist. When the block continuously moves downward so that one end thereof abuts against the outside of the convex ring, the convex ring is clamped between the pair of abutting blocks under the action of the first spring, and then no downward force is applied to the pop-up cover, and as the pop-up cover continuously moves downward, the compression amount of the pop-up spring increases to a certain extent, so that the pop-up cover moves up and resets under the action of the rebound of the pop-up spring. At this time, the pair of abutting blocks also move upward, driving the convex ring between the pair of abutting blocks to move on the sliding rod until the outer side of the upper end of the convex ring fits with the inner side of the bottom end of the wedge-shaped block, thereby completing the engagement between the wedge-shaped block and the convex ring. At this time, the abutting block slowly moves from the outer side of the convex ring to the outer side of the wedge-shaped block and thus completes the opening function of the pop-up cover, which is convenient for subsequent drainage. The utility model has a simple and reasonable structure, a novel design, and is simple and convenient to operate. It can effectively improve the resilience of the pop-up assembly, improve the practicality of the drainer, and has a high practical value. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a three-dimensional structure diagram of the utility model. Figure 1 .

[0017] Figure 2 This is a three-dimensional structure diagram of the utility model. Figure 2 .

[0018] Figure 3 It is a schematic diagram of the explosion three-dimensional structure of the utility model.

[0019] Figure 4 It is a front cross-sectional schematic diagram of the interior of the installation cylinder of the utility model.

[0020] In the figure, the corresponding relationship between the component names and the figure numbers is as follows:

[0021] 100. Bouncing core body; 1001. Installation cylinder; 1002. Installation base; 1003. Slide bar; 1004. Convex ring; 1005. Wedge block; 1006. Connecting rod; 1007. Installation cover; 1008. Silicone pad; 1009. Bouncing spring; 1010. Bouncing cover; 1011. First spring; 1012. Block; 1013. First magnet block; 200. Drain body; 2001. Housing; 2002. Overflow tank; 2003. Limit block; 2004. Fixed cylinder; 2005. Filter block; 2006. Limit groove; 2007. Hollow magnet block. Detailed implementation mode

[0022] The following further describes in detail the implementation mode of the present utility model in conjunction with the drawings and embodiments. The following embodiments are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.

[0023] Embodiment:

[0024] As shown in the Figure 1 to the Figure 4 accompanying drawings:

[0025] The present utility model provides a novel drain bouncing assembly and a drain, including a bouncing core body 100. The bouncing core body 100 includes an installation cylinder 1001. An installation base 1002 is installed at the inner bottom end of the installation cylinder 1001. A slide bar 1003 is installed at the upper end of the installation base 1002. A wedge block 1005 is installed at the upper end of the slide bar 1003. A connecting rod 1006 is movably inserted into the inner part of the installation cylinder 1001 near the upper end. The upper end of the connecting rod 1006 is threadedly connected to a bouncing cover 1010. And the bottom end of the connecting rod 1006 is installed with an installation cover 1007. A bouncing spring 1009 is arranged between the installation cover 1007 and the installation cylinder 1001. Installation grooves are arranged on both sides of the inner wall of the installation cover 1007. A block 1012 is movably inserted into the inner part of the installation groove. The upper end of the block 1012 abuts against the bottom end of the wedge block 1005. By arranging the block 1012, when the bouncing cover 1010 is pressed downward, the bouncing cover 1010, the connecting rod 1006 and the installation cover 1007 move downward and compress the bouncing spring 1009, so that the bouncing spring 1009 is compressed. At this time, the blocks 1012 in the installation grooves on both sides of the inner wall of the installation cover 1007 abut against the outside of the wedge block 1005 during the continuous downward movement, causing the blocks 1012 to contract. When the blocks 1012 are located at the bottom end of the wedge block 1005 and reset during the continuous downward movement, the top ends of the blocks 1012 will abut against the bottom end of the wedge block 1005, thereby realizing the closing function of the bouncing cover 1010 and preventing water flow from discharging.

[0026] Among them, an annular protrusion 1004 is slidably connected to the outside of the sliding rod 1003. The bottom end of the annular protrusion 1004 abuts against the top end of the mounting base 1002, and the annular protrusion 1004 is matched with the wedge-shaped block 1005. By providing the annular protrusion 1004, when the abutting block 1012 continuously moves downward so that one end thereof abuts against the outside of the annular protrusion 1004, the force for moving the bounce cover 1010 downward is no longer applied, and the bounce cover 1010 moves upward and resets under the action of the bounce spring 1009. At this time, the pair of abutting blocks 1012 also move upward, driving the annular protrusion 1004 between the pair of abutting blocks 1012 to move on the sliding rod 1003 until the outer upper end of the annular protrusion 1004 fits with the inner bottom end of the wedge-shaped block 1005, thereby completing the engagement between the wedge-shaped block 1005 and the annular protrusion 1004. At this time, the abutting block 1012 slowly moves from the outside of the annular protrusion 1004 to the outside of the wedge-shaped block 1005, thus completing the opening function of the bounce cover 1010, which is convenient for subsequent drainage.

[0027] Among them, one end of the abutting block 1012 is fixedly connected to a first spring 1011. The end of the first spring 1011 away from the abutting block 1012 is fixedly connected to the inner wall of the mounting groove. The end of the abutting block 1012 away from the first spring 1011 is inclined. By providing the first spring 1011, since the two ends of the first spring 1011 are respectively fixedly connected to the abutting block 1012 and the inner wall of the mounting groove, when the abutting block 1012 is squeezed, it is convenient for the abutting block 1012 to contract under the elastic force of the first spring 1011. When the squeezing force applied to the abutting block 1012 disappears, it is convenient for the abutting block 1012 to reset under the elastic force of the first spring 1011.

[0028] Among them, silica gel pads 1008 are installed at the upper end inside the mounting cylinder 1001 and the upper end of the mounting cover 1007. The silica gel pads 1008 are in the shape of a hollow circle, and the inner wall of the silica gel pad 1008 fits with the outer wall of the connecting rod 1006. A first magnet block 1013 is installed at the bottom end inside the mounting cylinder 1001. By providing the silica gel pads 1008, the upper end inside the mounting cylinder 1001 and the upper end of the mounting cover 1007 are protected during the rebound process of the mounting cover 1007. At the same time, by installing the silica gel pads 1008 at the upper end of the mounting cylinder 1001 and the inner wall of the silica gel pad 1008 fitting with the outer wall of the connecting rod 1006, the sealing performance between the connecting rod 1006 and the mounting cylinder 1001 is improved, and water ingress into the inside of the mounting cylinder 1001 is avoided.

[0029] Among them, it includes a drain body 200. The drain body 200 includes a housing 2001. A plurality of overflow grooves 2002 are provided on the housing 2001. A through hole is provided at the center of the bottom end of the housing 2001. The inner wall of the through hole is fitted with the outer wall of the first magnet block 1013. By providing the overflow grooves 2002, it is convenient for water to flow into the interior of the drain housing 2001 when the bounce lid 1010 is opened and discharged through the overflow grooves 2002. By providing the through hole, since the inner wall of the through hole is fitted with the outer wall of the first magnet block 1013, it is convenient for the insertion connection between the mounting cylinder 1001 and the housing 2001.

[0030] Among them, a fixing cylinder 2004 is installed at the bottom end of the housing 2001 near the through hole. The fixing cylinder 2004 and the through hole are on the same axis line. A hollow magnet block 2007 is embedded and installed on the inner wall of the fixing cylinder 2004. The inner wall of the hollow magnet block 2007 is in mutual fit with the outside of the first magnet block 1013, and the hollow magnet block 2007 and the first magnet block 1013 adsorb each other. By providing the fixing cylinder 2004 and arranging the hollow magnet block 2007 inside the fixing cylinder 2004, since the inner wall of the hollow magnet block 2007 is in fit and adsorption with the outside of the first magnet block 1013, the magnetic adsorption surface is enlarged, so as to facilitate fixing the first magnet block 1013 inside the fixing cylinder 2004, thereby realizing the connection between the housing 2001 and the mounting cylinder 1001, and further realizing the fixation between the drain body 200 and the bounce core body 100.

[0031] Among them, a plurality of limiting blocks 2003 are installed on the inner wall of the housing 2001. A filter block 2005 is movably arranged inside the housing 2001. A plurality of limiting grooves 2006 are provided on the outside of the filter block 2005. The limiting grooves 2006 are mutually matched and slidably connected with the limiting blocks 2003. By providing the filter block 2005, a circular groove adapted to the mounting cylinder 1001 is provided inside the filter block 2005. When the bounce lid 1010 is rotated to separate it from one end of the connecting rod 1006, the filter block 2005 does not displace under the engagement of the limiting groove 2006 on its outside and the limiting block 2003 inside the housing 2001. At the same time, by providing the filter block 2005, it is avoided that mosquitoes and other insects enter the interior of the drain body 200 through the drain pipe.

[0032] The specific usage mode and function of this embodiment:

[0033] When using this product, first check whether the new pop-up component of the drainer and each mechanism inside the drainer are complete. After ensuring completeness, when the pop-up cover 1010 is squeezed downward, the pop-up cover 1010, the connecting rod 1006, and the mounting cover 1007 move downward, and the pop-up spring 1009 is squeezed, causing the pop-up spring 1009 to be compressed. At this time, the abutting blocks 1012 inside the mounting grooves on both sides of the inner wall of the mounting cover 1007 abut against the outside of the wedge-shaped block 1005 during the continuous downward movement, causing the abutting blocks 1012 to contract under the elastic force of the first spring 1011. When the abutting blocks 1012 are located at the bottom end of the wedge-shaped block 1005 during the continuous downward movement, the squeezing force on the abutting blocks 1012 disappears and they reset under the elastic force of the first spring 1011, causing the top end of the abutting blocks 1012 to abut against the bottom end of the wedge-shaped block 1005, thereby realizing the closing function of the pop-up cover 1010 and preventing water from draining. When drainage is required, continue to squeeze the pop-up cover 1010 downward. When one end of the abutting blocks 1012 abuts against the outside of the convex ring 1004 during the continuous downward movement, the convex ring 1004 is clamped between a pair of abutting blocks 1012 under the action of the first spring 1011. Then, no downward moving force is applied to the pop-up cover 1010. Since the continuous downward movement of the pop-up cover 1010 increases the compression amount of the pop-up spring 1009 to a certain extent, the pop-up cover 1010 moves upward and resets under the action of the rebound of the pop-up spring 1009. At this time, a pair of abutting blocks 1012 also move upward, driving the convex ring 1004 between the pair of abutting blocks 1012 to move on the sliding rod 1003 until the outside of the upper end of the convex ring 1004 fits with the inside of the bottom end of the wedge-shaped block 1005, thereby completing the engagement between the wedge-shaped block 1005 and the convex ring 1004. At this time, the abutting blocks 1012 slowly move from the outside of the convex ring 1004 to the outside of the wedge-shaped block 1005, thus completing the opening function of the pop-up cover 1010, facilitating drainage. Water flows into the interior of the drainer housing 2001 and is discharged through the overflow tank 2002 after passing through the filter block 2005.

[0034] The embodiments of the present invention are given for purposes of illustration and description, and are not exhaustive or limit the present invention to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles of the present invention and its practical applications, and to enable those of ordinary skill in the art to understand the present invention and design various embodiments with various modifications suitable for specific purposes.

Claims

1. A novel water dropper bouncing assembly, characterized in that: The invention comprises a bouncing core body (100), wherein the bouncing core body (100) comprises a mounting tube (1001), wherein a mounting seat (1002) is mounted on the bottom of the mounting tube (1001), a sliding rod (1003) is mounted on the upper end of the mounting seat (1002), a wedge block (1005) is mounted on the upper end of the sliding rod (1003), a connecting rod (1006) is movably inserted in the inner part of the mounting tube (1001) near the upper end, and the connecting rod (1006) is 6) is threadedly connected to a bouncing cover (1010), and a mounting cover (1007) is installed at the bottom end of the connecting rod (1006), a bouncing spring (1009) is arranged between the mounting cover (1007) and the mounting tube (1001), mounting grooves are arranged on both sides of the inner wall of the mounting cover (1007), and a stop block (1012) is movably inserted inside the mounting groove, and the upper end of the stop block (1012) is abutted against the bottom end of the wedge block (1005).

2. The novel water dropper bouncing assembly as claimed in claim 1, characterized in that: The outside of the sliding rod (1003) is slidably connected with a convex ring (1004), the bottom end of the convex ring (1004) abuts against the top end of the mounting seat (1002), and the convex ring (1004) and the wedge block (1005) match each other.

3. The novel water dropper bouncing assembly as claimed in claim 2, characterized in that: One end of the stop block (1012) is fixedly connected to a first spring (1011); the first spring (1011) is fixedly connected to the inner wall of the mounting groove at the end away from the stop block (1012); and the stop block (1012) is inclined at the end away from the first spring (1011).

4. The novel water dropper bouncing assembly as claimed in claim 3 is characterized in that: A silicone pad (1008) is installed at the upper end of the interior of the installation tube (1001) and the upper end of the installation cover (1007). The silicone pad (1008) is in the shape of a hollow circle, and the inner wall of the silicone pad (1008) fits the outer wall of the connecting rod (1006). A first magnet block (1013) is installed at the inner bottom end of the installation tube (1001).

5. A drain using the novel drain bouncing assembly as claimed in any one of claims 1 to 4, characterized in that: The invention comprises a drain body (200), wherein the drain body (200) comprises a shell (2001), a plurality of overflow grooves (2002) are provided on the shell (2001), a through hole is provided at the center of the bottom end of the shell (2001), and the inner wall of the through hole is in contact with the outer wall of the first magnet block (1013).

6. The drain as claimed in claim 5, characterized in that: The shell (2001) is provided with a fixing cylinder (2004) at the bottom end near the through hole, the fixing cylinder (2004) and the through hole are located on the same axial line, and a hollow magnetic block (2007) is embedded and installed on the inner wall of the fixing cylinder (2004), the inner wall of the hollow magnetic block (2007) is in contact with the outside of the first magnet block (1013), and the hollow magnetic block (2007) and the first magnet block (1013) are attracted to each other.

7. The drain as claimed in claim 6, characterized in that: A plurality of limit blocks (2003) are installed on the inner wall of the shell (2001), a filter block (2005) is movably arranged inside the shell (2001), a plurality of limit grooves (2006) are arranged outside the filter block (2005), and the limit grooves (2006) and the limit blocks (2003) are matched with each other and slidably connected.