Weather strip structure for vehicle mounted with opposite sliding doors
11186154 · 2021-11-30
Assignee
Inventors
Cpc classification
B60J10/36
PERFORMING OPERATIONS; TRANSPORTING
B60J10/23
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A weather strip structure for vehicle may include a body weather strip mounted on an opening flange and sealing a gap between a vehicle body and the doors; and an upper weather strip mounted on a roof panel and sealing a gap between the roof panel and the vehicle body; a bent portion into which a cowl cross bar is inserted and which is curvedly mounted along the vehicle body at a lateral side of a mounting unit mounted on the vehicle body; a rectilinear portion which rectilinearly connects end portions of the bent portion along the opening flange; and a frame portion which is connected to intersection points between the bent portion and the rectilinear portion and defines a frame of the body weather strip, wherein a hollow space is formed between the rectilinear portion and the bent portion, and the mounting unit is positioned inside the hollow space.
Claims
1. A weather strip structure for a vehicle mounted with opposite sliding doors, the weather strip structure comprising: a body weather strip which is mounted on an opening flange and seals a gap between a vehicle body and the doors when the opposite sliding doors are in a closed position; and an upper weather strip which is mounted on a roof panel and seals a gap between the roof panel and the vehicle body, wherein the body weather strip includes: a bent portion into which a cowl cross bar is configured to be inserted and which is curvedly mounted along the vehicle body at a lateral side of a mounting unit mounted on the vehicle body; a rectilinear portion which rectilinearly connects a first end portion and a second end portion of the bent portion along the opening flange; and a frame portion which is connected to intersection points between the bent portion and the rectilinear portion and defines a frame of the body weather strip, and wherein a hollow space is formed between the rectilinear portion and the bent portion, and the mounting unit is positioned inside the hollow space.
2. The weather strip structure of claim 1, wherein the frame portion is formed integrally with the bent portion, and the first end portion and the second end portion of the bent portion and the rectilinear portion are connected to the frame portion.
3. The weather strip structure of claim 2, wherein the bent portion and the rectilinear portion are connected by injection molding.
4. The weather strip structure of claim 1, wherein the frame portion is formed integrally with the rectilinear portion, and the rectilinear portion and the first end portion and the second end portion of the bent portion are connected to the frame portion.
5. The weather strip structure of claim 4, wherein the bent portion and the rectilinear portion are connected by injection molding.
6. The weather strip structure of claim 1, wherein the rectilinear portion has an ineffective sealing section, which is formed in an operating space of a roller coupled to the vehicle body and corresponds to a height of a door bulkhead bracket mounted inside the door.
7. The weather strip structure of claim 1, wherein the bent portion further includes a carrier fixed to a flange formed on an external panel of the vehicle body.
8. The weather strip structure of claim 7, wherein the bent portion further includes a ‘U’-shaped internal steel member and the carrier is inserted into an opening formed at a side of the ‘U’-shaped internal steel member so that the bent portion is mounted on the vehicle body.
9. The weather strip structure of claim 7, wherein the bent portion further includes a ‘T’-shaped internal steel member and the carrier is inserted into an opening formed at a side of the ‘T’-shaped internal steel member so that the bent portion is mounted on the vehicle body.
10. The weather strip structure of claim 7, wherein the bent portion further includes a ‘T’-shaped clip which is inserted into the carrier and penetrates the bent portion and the external panel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13) It may be understood that the appended drawings are not necessarily to scale, presenting a somewhat simplified representation of various features illustrative of the basic principles of the present invention. The specific design features of the present invention as included herein, including, for example, specific dimensions, orientations, locations, and shapes will be determined in part by the particularly intended application and use environment.
(14) In the figures, reference numbers refer to the same or equivalent parts of the present invention throughout the several figures of the drawing.
DETAILED DESCRIPTION
(15) Reference will now be made in detail to various embodiments of the present invention(s), examples of which are illustrated in the accompanying drawings and described below. While the present invention(s) will be described in conjunction with exemplary embodiments of the present invention, it will be understood that the present description is not intended to limit the present invention(s) to those exemplary embodiments. On the other hand, the present invention(s) is/are intended to cover not only the exemplary embodiments of the present invention, but also various alternatives, modifications, equivalents and other embodiments, which may be included within the spirit and scope of the present invention as defined by the appended claims.
(16) Hereinafter, the present invention will be described in detail with reference to the accompanying drawings. However, the present invention is not restricted or limited by exemplary embodiments. Like reference numerals indicated in the respective drawings refer to members which perform substantially the same functions.
(17)
(18) In a case in which the front door and a rear door of the vehicle are mounted to be slidable in opposite directions, it is necessary to ensure maximum opening amounts of the doors to prevent a user's foot from being caught by the door when the user gets in or out of the vehicle.
(19) However, referring to
(20) The shift of the opening flange 10 is accompanied with the modification of the body weather strip 200 which is mounted on the opening flange 10 and seals a gap between a vehicle body 1 and the door when the door is closed.
(21) Therefore, rectilinear sealing 2 in the related art is changed to a curved sealing 20 along the opening flange 10.
(22) If the body weather strip 200 is not modified corresponding to the shape of the opening flange 10, there may occur a serious problem with watertightness because the opening flange 10 and the body weather strip 200 are spaced from each other.
(23) A mounting unit 3 is positioned below a dashboard panel 5, allows a cowl cross bar to be inserted thereinto, and is mounted on the vehicle body 1 to connect the cowl cross bar to the vehicle body 1. The mounting unit 3 may be positioned at a rear side of the rectilinear sealing 2 in the related art, and fixing units 31, which mount the mounting unit 3 on the vehicle body 1, may also be positioned at the rear side of the rectilinear sealing 2.
(24)
(25) Referring to
(26) Like the opening flange 10, the mounting unit 3 is shifted in the direction toward the front side of the vehicle, such that the fixing unit 31, which is shifted forward, and an insertion portion 33, into which the cowl cross bar is inserted, are spaced from each other in a longitudinal direction of the vehicle body 1.
(27) In the instant case, since a center portion of the cowl cross bar and the fixing units 31 for fixing the cowl cross bar to the vehicle body 1 are spaced from one another, there is a problem of deterioration in steering vibration performance related to attenuation of steering vibration caused by the user's steering operation.
(28)
(29) When the opening flange 10 is shifted in the direction toward the front side of the vehicle, an external appearance of the door trim 7, which is formed to correspond to the opening flange 10 when the door is closed, may be modified.
(30) The door trim 7 is modified from the shape in the related art illustrated in
(31) To solve the aforementioned problem,
(32) Referring to
(33) The body weather strip 200 is mounted on the opening flange 10 and may seal a gap between the vehicle body 1 and the door. The upper weather strip 400 is mounted on a roof panel and may seal a gap between the roof panel and the vehicle body 1.
(34)
(35) Referring to
(36) The frame portion 210 is connected to intersection points 215 between the bent portion 220 and the rectilinear portion 205 and may define an entire frame of the body weather strip 200.
(37) The cowl cross bar is inserted into the bent portion 220. The bent portion 220 is mounted at a lateral side of the mounting unit 3 mounted on the vehicle body 1. The bent portion 220 is curvedly mounted along the vehicle body 1 which is shifted in the direction toward the front side of the vehicle to ensure the opening amount of the front door.
(38) Since the bent portion 220 is formed, the modified vehicle body 1 and the body weather strip 200 are not spaced from each other, and the gap between the vehicle body 1 and the door may be sealed.
(39) The rectilinear portion 205 is formed to rectilinearly connect both end portions of the bent portion 220. Since the rectilinear portion 205 is formed in a rectilinear shape, the rectilinear opening flange 10 may be maintained without being shifted toward the front side of the vehicle.
(40) Since the opening flange 10 is formed in a rectilinear shape, the door trim 7, which is formed to correspond to the opening flange 10, may have the same shape as the door trim 7 in the related art illustrated in
(41) A hollow space 225 having a vacant space is formed between the rectilinear portion 205 and the bent portion 220, and the mounting unit 3 may be positioned inside the hollow space.
(42) Since the hollow space 225 having a vacant space is formed between the rectilinear portion 205 and the bent portion 220, it is not necessary to shift the mounting unit 3 having the fixing units 31, which is configured to connect the cowl cross bar to the vehicle body 1, in the direction toward the front side of the vehicle.
(43) Therefore, the mounting unit 3 may be mounted on the vehicle body 1 through the hollow space 225. Since the mounting unit 3 and the center portion of the cowl cross bar are spaced from each other, there is no deterioration in steering vibration performance related to the attenuation of the steering vibration caused by the user's steering operation.
(44) A door parting line 500 may be maintained as it is, and as a result, the opposite sliding doors may be implemented without changing a door panel 77 or the door trim 7.
(45) The rectilinear portion 205 may have an ineffective sealing section in an operating space of a roller coupled to the vehicle body 1.
(46)
(47) The rail 72 and the roller may be provided so that the opposite sliding doors slide in the opposite directions.
(48) In the instant case, the rail 72, which is mounted at the center portion of the vehicle body 1 in the related art and allows the roller to roll to open the door, may be mounted inside the door so that the rail 72 is not exposed to the outside.
(49) In the case in which the rail 72 is mounted inside the door, the roller is mounted on the vehicle body 1 to correspond to the rail 72, and the rail 72 enables the roller to slide when opening or closing the door.
(50) A door bulkhead bracket 73 having a recessed shape may be mounted inside the door to ensure a mounting space of the roller and accommodate the roller when closing the door.
(51) In the case in which the door is mounted on the vehicle body 1, a portion of the rectilinear portion 205, which is in contact with the door and corresponds to a height of the door bulkhead bracket 73, has the ineffective sealing section.
(52) The portion of the rectilinear portion 205, except for the ineffective sealing section, may seal the gap between the door and the opening flange 10.
(53)
(54)
(55) In the instant case, the bent portion 220 and the rectilinear portion 205 may be connected to each other as the intersection points 215 are formed by injection molding.
(56)
(57)
(58) Referring to
(59) The carrier 201 is opened laterally and inserted into an opening 217 formed at a lateral side of the ‘U’-shaped internal steel member 61, such that the bent portion 220 may be mounted on the vehicle body 1.
(60)
(61) Referring to
(62) The carrier 201 is opened laterally and inserted into an opening 218 formed at a lower side of the ‘T’-shaped internal steel member 65, and the carrier 201 is inserted by being bent to an upper side of the ‘T’-shaped internal steel member, such that the bent portion 220 may be mounted on the vehicle body 1.
(63)
(64) Referring to
(65) The clip 69 is inserted into the vehicle body 1 to penetrate the external panel 11 from the internal of the bent portion 220, such that the bent portion 220 may be mounted on the vehicle body 1.
(66) For convenience in explanation and accurate definition in the appended claims, the terms “upper”, “lower”, “inner”, “outer”, “up”, “down”, “upper”, “lower”, “upwards”, “downwards”, “front”, “rear”, “back”, “inside”, “outside”, “inwardly”, “outwardly”, “internal”, “external”, “inner”, “outer”, “forwards”, and “backwards” are used to describe features of the exemplary embodiments with reference to the positions of such features as displayed in the figures.
(67) It will be further understood that the term “connect” or its derivatives refer both to direct and indirect connection.
(68) The foregoing descriptions of specific exemplary embodiments of the present invention have been presented for purposes of illustration and description. They are not intended to be exhaustive or to limit the present invention to the precise forms disclosed, and obviously many modifications and variations are possible in light of the above teachings. The exemplary embodiments were chosen and described to explain certain principles of the present invention and their practical application, to enable others skilled in the art to make and utilize various exemplary embodiments of the present invention, as well as various alternatives and modifications thereof. It is intended that the scope of the present invention be defined by the Claims appended hereto and their equivalents.