CN113415133A - Skylight water drainage tank sliding structure - Google Patents

Skylight water drainage tank sliding structure Download PDF

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Publication number
CN113415133A
CN113415133A CN202110843756.2A CN202110843756A CN113415133A CN 113415133 A CN113415133 A CN 113415133A CN 202110843756 A CN202110843756 A CN 202110843756A CN 113415133 A CN113415133 A CN 113415133A
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CN
China
Prior art keywords
skylight
sliding block
guide rail
sliding
limiting
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Granted
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CN202110843756.2A
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Chinese (zh)
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CN113415133B (en
Inventor
魏从伟
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Chongqing Changan Automobile Co Ltd
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Chongqing Changan Automobile Co Ltd
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Priority to CN202110843756.2A priority Critical patent/CN113415133B/en
Publication of CN113415133A publication Critical patent/CN113415133A/en
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Publication of CN113415133B publication Critical patent/CN113415133B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60JWINDOWS, WINDSCREENS, NON-FIXED ROOFS, DOORS, OR SIMILAR DEVICES FOR VEHICLES; REMOVABLE EXTERNAL PROTECTIVE COVERINGS SPECIALLY ADAPTED FOR VEHICLES
    • B60J7/00Non-fixed roofs; Roofs with movable panels, e.g. rotary sunroofs
    • B60J7/0084Water draining for non-fixed roofs or roof panels

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closing And Opening Devices For Wings, And Checks For Wings (AREA)

Abstract

The invention relates to a sliding structure of a skylight drainage channel, which comprises a skylight drainage channel body and a skylight guide rail matched with the skylight drainage channel body, wherein a plurality of sliding blocks are matched and connected on the skylight drainage channel body; the sliding block is cuboid, the lower surface of the sliding block is a downward convex arc surface, two mounting holes which are identical in shape and run through the side surface are arranged on the sliding block, clamping ribs are arranged in the mounting holes, and a concave lateral limiting surface is arranged between the two mounting holes; two lateral limiting ribs are arranged on the left side of the upper surface of the sliding block, and top limiting ribs which are arc-shaped are respectively arranged on the front side and the rear side of the upper surface of the sliding block; a plurality of sliders are connected with the skylight drainage groove body through mounting holes in a matched mode. The invention can avoid abnormal sound generated by unreliable limit of the drainage channel sliding block and the skylight guide rail, avoid abnormal sound generated by over-tight limit of the drainage channel sliding block and the skylight guide rail and avoid abnormal sound generated by friction of the drainage channel sliding block and the skylight guide rail.

Description

Skylight water drainage tank sliding structure
Technical Field
The invention is used for an automobile body, and particularly relates to a sliding structure of a skylight drainage channel.
Background
With the upgrading of automobile consumption, skylights are favored by most users and gradually become an essential part of vehicle configuration. The basic function of the skylight is to open the skylight glass and realize ventilation of the vehicle, and the skylight glass cannot interfere with peripheral objects in the movement process of the skylight glass. In order to ensure that the skylight glass can normally move in the skylight guide rail, the skylight drainage groove needs to slide along with the sliding of the glass. In order to enable the skylight drainage groove to slide smoothly in the guide rail, a sliding foot is designed at the matching position of the skylight drainage groove and the guide rail, and the skylight drainage groove slides in the guide rail through the sliding of the sliding foot.
A conventional sunroof drain groove sliding structure, see fig. 6 and 7, which includes a conventional sunroof drain groove 4 and a conventional sunroof rail 5; the existing skylight drainage groove 4 is provided with a sliding foot 41, an existing lateral limiting rib 42 and an existing top limiting rib 43; the conventional sunroof rail 5 has an upper limit surface 51, a lower limit surface 52, and side limit surfaces 53; the current side direction limiting rib 42 of the current skylight drainage groove 4 is matched with the side limiting surface 53 of the current skylight guide rail 5, the limiting drainage groove is rocked left and right in the current skylight guide rail, the current top limiting rib 43 of the current skylight drainage groove 4 is matched with the upper limiting surface 51 of the current skylight guide rail 5, and the limiting drainage groove shakes up and down in the current skylight guide rail. Through the current spacing muscle 42 of current side direction and the current spacing muscle 43 in top of current skylight water drainage tank 4 and the cooperation of current skylight guide rail 5 to guarantee that current skylight water drainage tank 4 can slide around in current skylight guide rail 5. Because current skylight water drainage tank is whole injection moulding, and the material is PA, and the whole size of component itself is great, leads to the not good control of quality fluctuation, when the cooperation has the clearance, leads to the automobile body to be jolting road surface vibration abnormal sound, when the cooperation is too tight, there are jamming and abnormal sound scheduling problem in the motion. Because the PA material has no self-lubricating property, the skylight drainage groove has friction abnormal sound in the front and back movement process.
CN 204432330U discloses a "skylight front-rear drainage channel structure", which at least includes a drainage channel frame, a metal pipe of a skylight transmission force output structure is embedded in the drainage channel frame, and an annular positioning groove is arranged in the drainage channel frame, and the annular positioning groove is in clearance fit with the metal pipe; the metal pipe, the annular positioning groove and the drainage groove frame are an integral piece formed by insert injection molding. Because the drainage groove frame is internally provided with the annular positioning groove which is in clearance fit with the metal pipe; in the injection molding process, the annular positioning groove can protect the metal pipe, so that the metal pipe is prevented from being subjected to large pressure, the problem that the metal pipe is exposed due to compression deformation is avoided, the production efficiency and the good product yield are greatly improved, and the possibility of noise generation of the whole skylight system is reduced.
CN 213565386U discloses "a bush for sunroof sliding mechanism", including the bush body, the bush body includes the bush basement, and the step groove has been seted up respectively to the preceding terminal surface both ends of bush basement, and the outside end extension of step groove has the elasticity swash plate that is used for with sunroof guide rail inside wall contact. The bushing is reasonable in structural design, can reduce the friction force of the skylight movement mechanism when sliding in the automobile skylight guide rail, increases the stability of the skylight movement mechanism in the movement process, and is favorable for reducing the noise generated by the shaking and the overlarge resistance of the skylight movement mechanism in the movement process.
The technical solutions disclosed in the above patent documents are, of course, a useful attempt in the technical field.
Disclosure of Invention
The invention aims to provide a sliding structure of a drainage channel of a skylight, which has reliable quality, can avoid abnormal sound generated by unreliable limit of a drainage channel sliding block and a skylight guide rail, can avoid abnormal sound generated by too tight limit of the drainage channel sliding block and the skylight guide rail, and can also avoid abnormal sound generated by friction of the drainage channel sliding block and the skylight guide rail.
The invention relates to a sliding structure of a skylight drainage channel, which comprises a skylight drainage channel body and a skylight guide rail matched with the skylight drainage channel body, and is characterized in that: the skylight drainage groove body is matched and connected with a plurality of sliding blocks and matched with the skylight guide rail through the sliding blocks; the sliding block is cuboid, the lower surface of the sliding block is a downward convex arc surface, two mounting holes which are identical in shape and run through the side surface are formed in the sliding block, clamping ribs are arranged in the mounting holes, and a concave lateral limiting surface is arranged between the two mounting holes; two lateral limiting ribs are arranged on the left side of the upper surface of the sliding block, and top limiting ribs which are arc-shaped are respectively arranged on the front side and the rear side of the upper surface of the sliding block; and the sliding blocks are respectively matched and connected with the skylight drainage groove body through mounting holes on the sliding blocks.
Furthermore, the skylight drainage groove body is provided with a plurality of clamping shafts and a limiting surface vertical to one end of each clamping shaft, and a clamping groove is formed below each clamping shaft; two adjacent clamping shafts on the skylight drainage tank body are correspondingly matched with the two mounting holes on the side surface of the sliding block; the clamping ribs in the mounting holes of the sliding blocks are correspondingly matched with the clamping grooves below the clamping shafts of the skylight drainage groove body; the lateral limiting surface of the sliding block is correspondingly matched with the limiting surface of the skylight drainage groove body.
Furthermore, the skylight guide rail is provided with a L-shaped through groove with a cross section, the upper surface of the straight part of the L-shaped through groove is a top limiting surface, and the lower surface of the straight part of the L-shaped through groove is a bottom limiting surface; the upper part of the right side of the vertical part of the L-shaped through groove is a side part limiting surface; two lateral limiting ribs on the sliding block are correspondingly matched with the lateral limiting surface of the skylight guide rail; the top limiting ribs on the front side and the back side of the upper surface of the sliding block are correspondingly matched with the top limiting surface of the skylight guide rail.
Furthermore, the lateral limiting rib and the top limiting rib on the sliding block are both of hollow structures and have certain elasticity.
Furthermore, the slider is made of POM and has good self-lubricating performance.
The invention has the beneficial effects that:
the top limiting surface, the bottom limiting surface and the side limiting surfaces on the skylight guide rail effectively limit the sliding block and provide a reliable sliding channel, so that the skylight drainage groove body can slide back and forth along the skylight guide rail, abnormal sound caused by unreliable limiting of the sliding block and the skylight guide rail which are matched and connected with the skylight drainage groove body due to component quality fluctuation can be avoided, and the problem of abnormal sound caused by over-tight limiting can be avoided; because the sliding block is made of POM with good self-lubricating performance, the friction abnormal sound generated by the sliding block which is connected to the skylight drainage groove body in a matched mode and the guide rail is avoided.
Drawings
FIG. 1 is a schematic view of a slider structure according to the present invention;
FIG. 2 is a schematic structural view of a skylight drainage channel body;
FIG. 3 is a schematic view of the configuration of the sunroof rail;
FIG. 4 is one of the schematic diagrams of the slider, the skylight drainage groove body and the skylight guide rail;
FIG. 5 is a second schematic view showing the fitting of the sliding block, the skylight drainage groove body and the skylight guide rail;
FIG. 6 is a schematic structural view of a drainage channel of a conventional sunroof;
fig. 7 is a schematic view of a conventional sunroof drain groove being fitted to a conventional sunroof rail.
In the figure:
1-a sliding block, 11-a mounting hole, 12-a clamping rib, 13-a lateral limiting surface, 14-a lateral limiting rib and 15-a top limiting rib;
2, a skylight drainage groove body, 21, a clamping shaft, 22, a clamping groove and 23, a limiting surface;
3-skylight guide rail, 31-top limit surface, 32-bottom limit surface, 33-side limit surface,
4-existing skylight drainage channel, 41-existing clamping shaft, 42-existing lateral limiting rib, 43-existing top limiting rib;
5-the existing sunroof rail, 51-the upper limit surface, 52-the lower limit surface 5, 53-the side limit surface.
Detailed Description
The invention is explained in detail below with reference to the figures and examples. It should be apparent that the described embodiment is only one embodiment of the present invention, and not all embodiments, and other embodiments obtained by those of ordinary skill in the art based on the present embodiment without creative efforts belong to the protection scope of the present invention.
Referring to fig. 1 to 5, the sliding structure of the drainage channel of the skylight includes a drainage channel body 2 of the skylight and a skylight guide rail 3 matched with the drainage channel body, and is characterized in that: the skylight drainage groove body 2 is connected with a plurality of sliding blocks 1 in a matching way, and the skylight drainage groove body 2 is matched with the skylight guide rail 3 through the plurality of sliding blocks 1; the skylight drainage groove body slides on the skylight guide rail through the sliding of the sliding blocks; the slider 1 is cuboid, the lower surface of the slider is a downward convex arc surface, two mounting holes 11 which are identical in shape and run through the side surfaces are arranged on the slider, clamping ribs 12 are arranged in the mounting holes 11, and a concave lateral limiting surface 13 is arranged between the two mounting holes 11; two lateral limiting ribs 14 are arranged on the left side of the upper surface of the sliding block 1, and top limiting ribs 15 which are arc-shaped are respectively arranged on the front side and the rear side of the upper surface of the sliding block; the sliding blocks 1 are respectively connected with the skylight drainage groove body 2 in a matching way through the mounting holes 11 on the sliding blocks.
The skylight drainage groove body 2 is provided with a plurality of clamping shafts 21 and a limiting surface 23 vertical to one end of each clamping shaft, and a clamping groove 22 is arranged below each clamping shaft; two adjacent clamping shafts 21 on the skylight drainage channel body 2 are correspondingly matched with the two mounting holes 11 on the side surface of the sliding block 1; the clamping ribs 12 in the mounting holes 11 of the sliding block 1 are correspondingly matched with the clamping grooves 22 below the clamping shafts 21 of the skylight drainage groove body 2 so as to limit the skylight drainage groove body from shaking forwards and backwards and shaking abnormal sound; the lateral limiting surface 13 of the sliding block 1 is correspondingly matched with the limiting surface 23 of the skylight drainage groove body 2 so as to limit the skylight drainage groove body to shake left and right and shake abnormal sound.
The skylight guide rail 3 is provided with a L-shaped through groove with a cross section, the upper surface of the straight part of the L-shaped through groove is a top limiting surface 31, and the lower surface is a bottom limiting surface 32; the upper part of the right side of the vertical part of the L-shaped through groove is a side part limiting surface 33; two lateral limiting ribs 14 on the sliding block 1 are correspondingly matched with a lateral limiting surface 33 of the skylight guide rail 3 to limit the sliding block to shake left and right and vibrate abnormal sound; the top limiting ribs 15 on the front side and the back side of the upper surface of the sliding block 1 are correspondingly matched with the top limiting surface 31 of the skylight guide rail 3 so as to limit the up-and-down shaking and the shaking abnormal sound of the sliding block.
The lateral limiting rib 14 and the top limiting rib 15 on the sliding block 1 are both hollow structures and have certain elasticity; the structure can absorb the fluctuation caused by reasonable tolerance of the component, so that the problems of difficult movement and abnormal friction sound caused by over-tight matching of the sliding block or the problems of vibration and abnormal sound of parts caused by over-loose matching are caused.
The sliding block 1 is made of POM and has good self-lubricating property; the friction abnormal sound generated in the sliding process of the component can be effectively solved.
Through as above cooperation structure, can utilize the POM material attribute of slider self, solve the friction abnormal sound of skylight water drainage tank body slip in-process, can absorb the tolerance that the component quality fluctuation produced again through the structural attribute of the spacing muscle in side direction on the slider, the spacing muscle in top, reduce the manufacturing degree of difficulty of each component, promote the qualification rate of system.

Claims (5)

1. The utility model provides a skylight water drainage tank sliding construction, includes skylight water drainage tank body (2) and rather than complex skylight guide rail (3), characterized by: the skylight drainage groove body (2) is connected with a plurality of sliding blocks (1) in a matching way, and the skylight drainage groove body (2) is matched with a skylight guide rail (3) through the plurality of sliding blocks (1); the sliding block (1) is cuboid, the lower surface of the sliding block is a downward convex arc surface, two mounting holes (11) which are identical in shape and penetrate through the side surface are formed in the sliding block, clamping ribs (12) are arranged in the mounting holes (11), and a concave lateral limiting surface (13) is arranged between the two mounting holes (11); two lateral limiting ribs (14) are arranged on the left side of the upper surface of the sliding block (1), and top limiting ribs (15) which are arc-shaped are respectively arranged on the front side and the rear side of the upper surface of the sliding block; the sliding blocks (1) are respectively matched and connected with the skylight drainage groove body (2) through mounting holes (11) in the sliding blocks.
2. The sunroof drain chute sliding structure of claim 1, wherein: the skylight drainage channel body (2) is provided with a plurality of clamping shafts (21) and a limiting surface (23) vertical to one end of each clamping shaft, and a clamping groove (22) is arranged below each clamping shaft; two adjacent clamping shafts (21) on the skylight drainage channel body (2) are correspondingly matched with the two mounting holes (11) on the side surface of the sliding block (1); the clamping ribs (12) in the mounting holes (11) of the sliding blocks (1) are correspondingly matched with the clamping grooves (22) below the clamping shafts (21) of the skylight drainage groove body (2); and the lateral limiting surface (13) of the sliding block (1) is correspondingly matched with the limiting surface (23) of the skylight drainage groove body (2).
3. The sunroof drain chute sliding structure according to claim 1 or 2, wherein: the skylight guide rail (3) is provided with a L-shaped through groove with a cross section, the upper surface of the straight part of the L-shaped through groove is a top limiting surface (31), and the lower surface of the straight part of the L-shaped through groove is a bottom limiting surface (32); the upper part of the right side of the vertical part of the L-shaped through groove is a side part limiting surface (33);
two lateral limiting ribs (14) on the sliding block (1) are correspondingly matched with lateral limiting surfaces (33) of the skylight guide rail (3); the top limiting ribs (15) on the front side and the rear side of the upper surface of the sliding block (1) are correspondingly matched with the top limiting surface (31) of the skylight guide rail (3).
4. The sunroof drain chute sliding structure of claim 1, wherein: the lateral limiting rib (14) and the top limiting rib (15) on the sliding block (1) are both of hollow structures and have certain elasticity.
5. The sunroof drain chute sliding structure of claim 1, wherein: the sliding block (1) is made of POM and has good self-lubricating performance.
CN202110843756.2A 2021-07-26 2021-07-26 Skylight water drainage tank sliding structure Active CN113415133B (en)

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CN202110843756.2A CN113415133B (en) 2021-07-26 2021-07-26 Skylight water drainage tank sliding structure

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Application Number Priority Date Filing Date Title
CN202110843756.2A CN113415133B (en) 2021-07-26 2021-07-26 Skylight water drainage tank sliding structure

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115092026A (en) * 2022-06-30 2022-09-23 东风汽车集团股份有限公司 Single slide rail handrail and car

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Publication number Priority date Publication date Assignee Title
CN115092026A (en) * 2022-06-30 2022-09-23 东风汽车集团股份有限公司 Single slide rail handrail and car

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