Vehicle door sealing assembly, vehicle door and vehicle
By designing the sealing lips of the mounting base and glass guide channel to fit snugly against the door glass, combined with the abutment of the door frame seal, the problem of poor sealing in frameless doors is solved, achieving better sealing effect and user experience.
Patent Information
- Application Number
- CN202423240908.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-26
AI Technical Summary
Existing door sealing components are insufficient to achieve a good seal between frameless doors and the door sheet metal, affecting the user experience.
A door sealing assembly has been designed, including a mounting base and a glass guide channel. Multiple sealing lips are used to fit against the door glass to increase the sealing area. The elasticity of the lips achieves a tight fit. Combined with the door frame seal, the assembly abuts against the door glass to enhance the sealing effect.
It improves the sealing effect between the frameless door and the door sheet metal, enhancing the user experience.
Smart Images

Figure CN223672259U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of vehicles, in particular to a vehicle door sealing assembly, a vehicle door and a vehicle. BACKGROUND
[0002] In the related art, when a frameless vehicle door is sealed with a vehicle body, the sealing is achieved by cooperation between the vehicle door glass and the vehicle door sealing assembly. However, the existing vehicle door sealing assembly cannot meet the corresponding sealing requirements, resulting in poor sealing effect between the frameless vehicle door and the vehicle door sheet metal, which affects the user experience. CONTENT OF THE UTILITY MODEL
[0003] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, one object of the present application is to provide a vehicle door sealing assembly, a vehicle door and a vehicle, which can cooperate with the vehicle door glass to form good sealing, thereby improving the sealing effect between the frameless vehicle door and the vehicle door sheet metal and the user experience.
[0004] In a first aspect, the embodiments of the present application provide a vehicle door sealing assembly, comprising a mounting seat and a glass guide groove; the mounting seat is arranged on a vehicle door sheet metal, and the mounting seat has a first mounting groove; the glass guide groove is arranged in the first mounting groove; wherein the glass guide groove comprises a top plate, first and second side plates located on both sides of the top plate, a first sealing lip provided on the first side plate, a second sealing lip provided on the second side plate, the first and second sealing lips being arranged opposite to each other, a third sealing lip provided on the first side plate, the third sealing lip being arranged adjacent to the top plate compared with the first sealing lip, the first and second sealing lips being used to seal the vehicle door glass on both sides of the vehicle door glass, and the extension direction of the third sealing lip being parallel to the extension direction of the top plate, and the third sealing lip being adapted to seal the vehicle door glass at the edge of the vehicle door glass.
[0005] According to the vehicle door sealing assembly of the embodiments of the present application, the mounting seat arranges the glass guide groove on the vehicle door sheet metal, and then the first and second sealing lips in the glass guide groove are in contact with the side wall of the vehicle door glass, and the edge of the vehicle door glass is pushed by the third sealing lip. Thus, when the vehicle door glass rises to the glass guide groove, the contact between the multiple lips and the vehicle door glass increases the sealing area between the glass guide groove and the vehicle door glass, and the tight fit between them is achieved based on the elastic effect of the lips, so as to achieve good sealing between the frameless vehicle door and the vehicle door sealing assembly on the vehicle door sheet metal when the vehicle door is closed, thereby improving the user experience.
[0006] According to a further embodiment of this application, one end of the first sealing lip is connected to the free end of the first side panel, and the other end extends toward the top panel; one end of the second sealing lip is connected to the free end of the second side panel, and the other end extends toward the top panel, so as to define a guide portion suitable for guiding the door glass by means of the first sealing lip and the second sealing lip on the side surface toward the door glass.
[0007] Furthermore, a first guide groove is defined between the first sealing lip and the first side plate, and a second guide groove is defined between the second sealing lip and the second side plate.
[0008] According to a further embodiment of this application, the door sealing assembly further includes: a door frame seal, the door frame seal being located on the side of the first side panel away from the second side panel and connected to the door sheet metal, the door frame seal being adapted to abut and seal against the door glass.
[0009] Secondly, this application proposes a car door, including a car door sheet metal and a car door sealing assembly as described in the above embodiments, wherein the car door sealing assembly is disposed on the car door sheet metal.
[0010] Furthermore, the door sheet metal includes a first plate, a second plate, and a third plate connected in sequence. The first plate and the second plate have an angle between them, and the second plate and the third plate have an angle between them. The first plate defines the exterior surface of the door, and the third plate is used to fix the mounting bracket.
[0011] Furthermore, the mounting base includes: a body portion and an extension arm located on the side of the body portion facing the third plate, the extension arm extending toward the first plate, and at least a portion of the projected outline of the extension arm covering the second plate in a projection direction perpendicular to the first plate.
[0012] Furthermore, a seal is provided between the main body and the third plate. The seal is connected to the extension arm and the main body and is adapted to seal the gap between the third plate and the main body.
[0013] Furthermore, the sealing element includes: a sealing plate and a connecting portion located on one side of the sealing plate, the connecting portion being connected to the main body, and the sealing plate being provided with a fourth sealing lip that seals with the second plate and a fifth sealing lip that seals with the third plate.
[0014] Thirdly, this application proposes a vehicle including the door described in the above embodiments.
[0015] Additional aspects and advantages of this application will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this application. Attached Figure Description
[0016] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0017] Figure 1 is a structural schematic diagram of a vehicle door sealing assembly assembled to a vehicle door panel according to some embodiments of the present application;
[0018] Figure 2 is a structural schematic diagram of a vehicle door glass deep into a glass guide channel according to some embodiments of the present application;
[0019] Figure 3 is a structural schematic diagram of a door frame sealing member in contact with a vehicle door glass according to some embodiments of the present application;
[0020] Figure 4 is a structural schematic diagram of a sealing member and part of a vehicle door panel, a mounting seat according to some embodiments of the present application.
[0021] Reference signs:
[0022] 100 - vehicle door sealing assembly;
[0023] 110 - mounting seat, 111 - body part, 1111 - first mounting groove, 11111 - first protruding part, 11112 - second protruding part, 1112 - clamping groove, 112 - extending arm;
[0024] 120 - glass guide channel, 121 - top plate, 122 - first side plate, 123 - second side plate, 124 - first sealing lip, 1241 - first flow guide groove, 125 - second sealing lip, 1251 - second flow guide groove, 126 - third sealing lip, 1261 - third flow guide groove;
[0025] 130 - door frame sealing member, 131 - bubble tube, 1311 - fixed side, 1312 - pushing side, 1313 - elastic side, 132 - clamping part;
[0026] 140 - sealing member, 141 - sealing plate, 142 - connecting part, 143 - fourth sealing lip, 1431 - fourth flow guide groove, 1432 - fifth flow guide groove, 144 - fifth sealing lip, 1441 - flow guide groove, 145 - ball;
[0027] a - cavity;
[0028] 200 - vehicle door panel, 210 - first plate, 220 - second plate, 230 - third plate;
[0029] 300 - vehicle door glass;
[0030] 400 - fixing screw. DETAILED DESCRIPTION
[0031] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.
[0032] In the description of this application, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc., indicating the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.
[0033] In the description of this application, "first feature" and "second feature" may include one or more of the features.
[0034] In the description of this application, "multiple" means two or more.
[0035] In the description of this application, the first feature being "above" or "below" the second feature may include the first and second features being in direct contact, or the first and second features being in contact through another feature between them.
[0036] In the description of this application, the terms "above," "over," and "on top" for the first feature and the second feature include the first feature being directly above or diagonally above the second feature, or simply indicate that the first feature is at a higher horizontal level than the second feature.
[0037] The following is for reference. Figures 1-4 This application describes a door sealing assembly 100, a door, and a vehicle according to embodiments thereof.
[0038] According to an embodiment of this application, the door sealing assembly 100 is used to cooperate with the door glass 300 and form a seal when the frameless door is closed. The door sealing assembly 100 includes a mounting base 110 and a glass guide channel 120.
[0039] like Figure 1As shown, the mounting seat 110 is arranged on the door panel 200, and the mounting seat 110 has a first mounting groove 1111. One side of the mounting seat 110 is connected to the door panel 200, and the other side of the mounting seat 110 is formed with the first mounting groove 1111. The side of the mounting seat 110 connected to the door panel 200 is fixedly connected between the door panel 200, and the glass guide groove 120 is clamped in the first mounting groove 1111, so that the glass guide groove 120 is fixed to the door panel 200 through the mounting seat 110.
[0040] As shown, Figures 1-2 The glass guide groove 120 is arranged in the first mounting groove 1111, and the opening direction of the first mounting groove 1111 is towards the edge of the door glass 300. A plurality of protrusions are extended on the wall surface in the groove body, and each protrusion cooperates with the glass guide groove 120 to fix the glass guide groove 120.
[0041] For example, Figure 2 As shown in the figure, the glass guide groove 120 includes a top plate 121, a first side plate 122 and a second side plate 123 located on both sides of the top plate 121, and the first mounting groove 1111 extends a protrusion including a first protrusion 11111 and a second protrusion 11112. The first protrusion 11111 is embedded in the first side plate 122, and the first protrusion 11111 is bent and extended towards the top plate 121 to provide good lifting effect for the glass guide groove 120; the second protrusion 11112 is embedded in the second side plate 123, and is parallel to the extension direction of the top plate 121. Therefore, the first protrusion 11111 and the second protrusion 11112 are embedded between the glass guide groove 120, so that the first mounting groove 1111 clamps the glass guide groove 120 therein, and then stably sets the glass guide groove 120 in the first mounting groove 1111.
[0042] In combination Figures 1-2 , the first side plate 122 of the glass guide groove 120 is provided with a first sealing lip 124, and the second side plate 123 is provided with a second sealing lip 125. The first sealing lip 124 and the second sealing lip 125 are oppositely arranged, and are used to seal the door glass 300 on both sides of the door glass 300.
[0043] Specifically, the top plate 121, the first side plate 122 and the second side plate 123 of the glass guide groove 120 together define a cavity a, and the cavity a is used to accommodate the edge portion of the door glass 300. The first sealing lip 124 and the second sealing lip 125 are oppositely arranged to form contact on both sides of the door glass 300. For example, in Figures 1-2In the shown case, the upper region of the door glass 300 is lifted into the cavity a, and the first sealing lip 124 and the second sealing lip 125 are respectively pushed against the two sides of the door glass 300, thereby forming a good seal with the door glass 300.
[0044] In the shown case, the upper region of the door glass 300 is lifted into the cavity a, and the first sealing lip 124 and the second sealing lip 125 are respectively pushed against the two sides of the door glass 300, thereby forming a good seal with the door glass 300.
[0045] In the shown case, the upper region of the door glass 300 is lifted into the cavity a, and the first sealing lip 124 and the second sealing lip 125 are respectively pushed against the two sides of the door glass 300, thereby forming a good seal with the door glass 300.
[0046] Further, the first side plate 122 is further provided with a third sealing lip 126, the third sealing lip 126 is arranged adjacent to the top plate 121 compared with the first sealing lip 124, the extending direction of the third sealing lip 126 is parallel to the extending direction of the top plate 121, and the third sealing lip 126 is adapted to seal the door glass 300 at the edge of the door glass 300.
[0047] Specifically, the third sealing lip 126 extends from the inner wall surface of the first side plate 122 towards the inside of the cavity a, and is arranged closer to the top plate 121 compared with the first sealing lip 124, thereby forming an upper sealing adapted to seal the edge of the door glass 300, so as to seal the tiny gap between the top edge of the door glass 300 and the glass guide groove 120. Therefore, when the door glass 300 enters the cavity a along the glass guide groove 120, the top edge of the door glass 300 will contact the third sealing lip 126. Correspondingly, the third sealing lip 126 sealing the edge of the door glass 300 further increases the area of the sealing region, so as to reduce the potential leakage space, and the third sealing lip 126 will be slightly compressed to enhance the contact pressure between the sealing lip and the glass edge, thereby further improving the sealing effect.
[0048] More specifically, the third sealing lip 126 extends in a direction parallel to the extension direction of the top plate 121, in other words, the side wall of the third sealing lip 126 is perpendicular to the edge of the door glass 300 after the door sealing assembly 100 is assembled to the door. Therefore, the edge of the door glass can have as much contact area as possible with the side wall of the third sealing lip 126 to enhance the sealing effect on the edge of the door glass.
[0049] According to the door sealing assembly 100 of the embodiments of the present application, the mounting base 110 sets the glass guide groove 120 on the door panel 200, and then the first sealing lip 124 and the second sealing lip 125 in the glass guide groove 120 are attached to the side wall of the door glass 300, and the edge of the door glass 300 is pushed by the third sealing lip 126. Therefore, when the door glass 300 is lifted to the glass guide groove 120, the sealing area between the glass guide groove 120 and the door glass 300 is increased by the attachment between the multiple lips and the door glass 300, and the tight fit between the two is achieved based on the elastic effect of the lips to achieve good sealing between the frameless door and the door sealing assembly 100 on the door panel 200 when the door is closed, thereby improving the user experience.
[0050] In some embodiments, continuing to refer to Figure 2 As shown, one end of the first sealing lip 124 is connected to the free end of the first side plate 122, and the other end extends towards the top plate 121, and one end of the second sealing lip 125 is connected to the free end of the second side plate 123, and the other end extends towards the top plate 121, so as to define a guide portion suitable for guiding the door glass 300 by the first sealing lip 124 and the second sealing lip 125 towards one side surface of the door glass 300.
[0051] Specifically, the first sealing lip 124 and the second sealing lip 125 extend from the inner walls of the first side plate 122 and the second side plate 123, respectively, at an angle towards the center position of the cavity a, and both extend towards the top plate 121, so that the first sealing lip 124 and the second sealing lip 125 form a "V"-shaped guide structure in the cavity a, or the first sealing lip 124 and the second sealing lip 125 can be regarded as two opposite inclined surfaces, and the inclined surfaces thereof are directed towards the central axis of the cavity a. Then, the first sealing lip 124 and the second sealing lip 125 construct a guide portion in the cavity a along the center line of the glass guide groove 120 and towards the top plate 121.
[0052] In some preferred embodiments, the first sealing lip 124 and the second sealing lip 125 are symmetrically arranged so that the guide structure formed by the two can provide stable force on both sides of the door glass 300 and cancel each other in the thickness direction of the door.
[0053] It can be understood that the door glass 300 can be configured to face the center of the glass guide groove 120, so that when the door glass 300 is lifted into the cavity a, the guide part formed by the first sealing lip 124 and the second sealing lip 125 can guide the door glass 300 along the center line of the glass guide groove 120 and towards the top plate 121 to provide stable guiding force on both sides of the door glass 300, so that the door glass 300 does not move when it is lifted and moved to the glass guide groove 120.
[0054] In a further embodiment, a first flow guide groove 1241 is defined between the first sealing lip 124 and the first side plate 122, and a second flow guide groove 1251 is defined between the second sealing lip 125 and the second side plate 123. Wherein the first sealing lip 124 will bend towards the direction of the first side plate 122 after contacting the door glass 300, thereby defining the first flow guide groove 1241 between the bending structure and the first side plate 122. The second sealing lip 125 will bend towards the direction of the second side plate 123 after contacting the door glass 300, thereby defining the first flow guide groove 1241 between the bending structure and the second side plate 123. Similarly, the third sealing lip 126 can also define a third flow guide groove 1261 with the first side plate 122, which will not be described here.
[0055] Wherein the first flow guide groove 1241, the second flow guide groove 1251 and the third flow guide groove 1261 are used to guide and drain the water or other liquid that seeps into the interior of the glass guide groove, so as to prevent the liquid from further seeping into the vehicle through the glass guide groove, thereby improving the sealing effect.
[0056] It can be understood that when the door glass 300 contacts the sealing lip and moves relatively (such as lifting and lowering), water or water mist may seep into the small gap between the glass guide groove 120 and the door glass 300 due to friction, wind pressure or car washing. The flow guide groove can effectively collect these water or water mist and guide it to drain along a specific path, preventing water from accumulating in the sealing area to improve the sealing effect.
[0057] In order to further improve the sealing effect between the door glass 300 of the frameless door and the door sealing assembly 100 when the door is closed, the door sealing assembly 100 further comprises a door frame sealing member 130, which is located on the side of the first side plate 122 away from the second side plate 123 and connected with the door panel 200. The door frame sealing member 130 is adapted to abut and seal with the door glass 300.
[0058] Specifically, referring to Figure 3As shown, the door frame seal 130 includes a bubble tube 131 arranged towards one side of the first side plate 122 and a clamping portion 132 for fixing the bubble tube 131 to the door seal assembly 100, the cross section of the bubble tube 131 is approximately triangular structure, and is located below the glass guide groove 120, here the three side walls of the bubble tube 131 are defined as a fixed side 1311, a pushing side 1312 and an elastic side 1313 respectively, the fixed side 1311 is fixed with the door panel 200, the pushing side 1312 is used to push the door glass 300, and the elastic side 1313 is connected between the pushing side 1312 and the fixed side 1311 and has elasticity.
[0059] When the bubble tube 131 extends beyond the lifting area of the door glass 300, the pushing side 1312 is in contact with the door glass 300 and is extruded to move towards the side away from the door glass 300, thereby causing the elastic side 1313 to bend and produce elasticity. Under the action of the elastic side 1313, the pushing side 1312 will push the side of the door glass 300 to achieve the sealing effect. Therefore, after the door glass 300 rises, its stroke interferes with the bubble tube 131, thereby abutting against the pushing side 1312 and extruding the bubble tube 131 by the side wall of the door glass 300, thereby providing a pushing force of the pushing side 1312 towards the side wall of the door glass 300 and forming a seal.
[0060] It can be understood that the door frame seal 130 provides an additional sealing contact area in the direction of the side wall of the door glass 300, further increases the sealing area to improve the sealing effect between the door glass 300 and the door panel 200.
[0061] It is worth noting that since the bubble tube 131 pushes the side of the door glass 300, the door glass 300 lacking door frame guidance has a pushing force towards the outside of the door, and among the oppositely arranged first lip and second lip in the embodiment of the present application, the second lip arranged on the second side wall can provide a reaction force for this pushing force to prevent the door glass 300 from flashing out under the action of the bubble tube 131.
[0062] The door according to the embodiment of the present application includes the door panel 200 and the door seal assembly 100 in the above embodiment, and the door seal assembly 100 is arranged on the door panel 200.
[0063] Continuing to refer to Figure 1 It is understood that the part of the door panel 200 used for cooperating with the door glass 300 includes the first plate 210, the second plate 220 and the third plate 230 connected in sequence, the first plate 210 and the second plate 220 have an included angle, the second plate 220 and the third plate 230 have an included angle, and the first plate 210 defines the appearance profile of the door, and the third plate 230 is used to fix the mounting seat 110.
[0064] Specifically, as shown in Figure 1 The appearance profile is the appearance surface of the door panel 200, which is understood in a broad sense as the surface area that can be observed by a user within the visual range, and thus the first plate 210 located on the appearance profile is not blocked by the door sealing assembly 100. The first plate 210 extends towards the door and is bent towards the inner side of the door to form the second plate 220, which is blocked by the door sealing member 140. The second plate 220 continues to be bent towards the inner side of the door to extend out of the third plate 230 to fix the door sealing assembly 100.
[0065] For example Figure 1 The first plate 210 is parallel to the third plate 230, and the second plate 220 is used to set the mounting seat 110. The mounting seat 110 is fixed to the part of the side of the door panel 200 extending out of the auxiliary clamping groove 1112. The fixing screw 400 is clamped in the auxiliary clamping groove 1112, so as to fix the mounting seat 110 to the third plate 230 through the fixing screw 400.
[0066] Further, in order to avoid a large gap between the mounting seat 110 and the first plate 210, affecting the appearance, the mounting seat 110 in some embodiments includes a body part 111 and an extension arm 112 located on the side of the body part 111 towards the third plate 230. The extension arm 112 extends towards the first plate 210, and at least part of the projection profile of the extension arm 112 covers the second plate 220 in the projection direction perpendicular to the first plate 210.
[0067] Specifically, one side of the body part 111 is provided with a first mounting groove 1111, and the other side is provided with an auxiliary clamping groove 1112 and extends out of the extension arm 112. As shown in Figure 1 and Figure 4 The extension arm 112 extends in a direction parallel to the first plate 210 and extends all the way to completely block the second plate 220 (i.e., at least part of the projection profile of the extension arm 112 covers the second plate 220 in the projection direction perpendicular to the first plate 210). When a user looks at the vehicle from the appearance surface of the door (i.e., the surface where the first plate 210 is located), the second plate 220 is blocked by the extension arm 112, and thus the extension arm 112 and the first plate 210 are smoothly transitioned without causing a large gap on the appearance profile, thereby improving the visual aesthetic effect.
[0068] In some embodiments, considering that there is also a gap between the mounting seat 110 and the door panel 200 (such as the third plate 230), there is a potential leakage path between the two, which may also affect the overall sealing effect of the door sealing assembly 100.
[0069] Therefore, a sealing member 140 is arranged between the body part 111 and the third plate 230, as shown in Figure 4As shown, the seal 140 is arranged at a side region close to the extension arm 112, and the seal 140 is connected with the extension arm 112 and the body part 111 to seal the gap between the third plate 230 and the body part 111. The mounting seat 110 is configured with a clamping groove at a side facing the third plate 230. One side of the seal 140 is clamped with the clamping groove to stably arrange the seal 140 in the mounting seat 110, and one side is adapted to abut to the inner side of the extension arm 112, and one side is abutted to the third plate 230 to form a seal.
[0070] It can be understood that the seal 140 is arranged between the third plate 230 and the body part 111, and abuts with the extension arm 112 to seal the gap between the third plate 230 and the body part 111, thereby blocking the potential leakage path to improve the sealing effect between the mounting seat 110 and the third plate 230.
[0071] Specifically, the seal 140 includes a sealing plate 141 and a connecting part 142 at one side of the sealing plate 141, and the connecting part 142 is connected with the auxiliary clamping groove 1112 of the mounting seat 110, wherein the connecting part 142 is configured as a boss, and the boss cooperates with the auxiliary clamping groove 1112. The sealing plate 141 is provided with a fourth sealing lip 143 sealingly cooperating with the second plate 220 and a fifth sealing lip 144 sealingly cooperating with the third plate 230.
[0072] For example Figure 4 As shown, the fourth sealing lip 143 is pressed to one side wall of the second plate 220 under the fixing of the mounting seat 110 (the pressing state is not shown in the figure), and the side wall abutting to the second plate 220 forms a fourth flow guide groove 1431 after being tightly attached to the second plate 220, and the fourth lip is pressed to form a fifth flow guide groove 1432 with the sealing plate 141 on one side of the sealing plate 141. The fourth flow guide groove 1431 and the fifth flow guide groove 1432 are basically the same as the principle of the first flow guide groove 1241 described above, and will not be described here.
[0073] The fifth sealing lip 144 is also pressed to one side of the third plate 230 under the fixing of the mounting seat 110 (the pressing state is not shown in the figure), and the other side defines a guide groove 1441 with the connecting part 142. And, as Figure 4 As shown, the sealing plate 141 is further configured with a ball 145 on the side away from the connecting part 142 (i.e. the side facing the door panel 200 after assembly), and the ball 145 is attached to the fifth sealing lip 144 after the fifth sealing lip 144 is pressed, thereby defining the guide groove 1441 with the fifth sealing lip 144 through the outer surface of the ball 145.
[0074] When it rains, the fourth sealing lip 143 can form a seal with the second plate 220, and guide liquid to drain through the fourth flow guide groove 1431. A small amount of water can seep into the fifth flow guide groove through the push gap between the fourth lip 143 and the second plate 220, at which time the fifth flow guide groove 1432 also plays a certain flow guiding role. In addition, the fifth sealing lip 144 is configured as a water-absorbing material to absorb the small amount of water that seeps in, thereby improving the sealing effect between the door sealing assembly 100 and the door glass 300.
[0075] In the example, the side of the fifth sealing lip 144 that is pressed against the sphere 145 to define the guide groove 1441 is actually a hollow cavity a structure, which can provide good sound insulation, thereby improving the sealing effect between the door sealing assembly 100 and the door glass 300. In addition, when part of the liquid continues to seep from the fifth flow guide groove 1432 to the guide groove 1441, the guide groove 1441 can also play a certain waterproof role.
[0076] It can be understood that the two seals formed between the sealing member 140 and the door panel 200 are the first seal formed between the fourth sealing lip 143 and the second plate 220, and the second seal formed between the fifth sealing lip 144 and the third plate 230 (including the structure formed by cooperation of the sphere 145). Through the two seal structures, a good seal is formed at the installation gap between the mounting seat 110 and the door panel 200 to improve the sealing effect of the door sealing assembly 100.
[0077] In some examples, the first sealing lip 124, the second sealing lip 125, the third sealing lip 126, the fourth sealing lip 143, and the fifth sealing lip 144 are preferably made of a material with high elasticity, wear resistance, and aging resistance, such as rubber or other plastic elastomer materials, so as to have good flexibility and recovery of the sealing lip.
[0078] The vehicle according to the embodiments of the present application includes the door in the above-described embodiments. When the vehicle is closed, the door glass of the door and the door sealing assembly 100 can be tightly fitted to achieve a good sealing effect and improve the user experience.
[0079] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the exemplary description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0080] While the embodiments of the application have been shown and described, it is to be understood that the embodiments can be varied, modified, substituted and changed by those skilled in the art without departing from the principles and spirit of the application, the scope of which is defined by the claims and their equivalents.
Claims
1. A vehicle door seal assembly, characterized by, Comprising: a mounting seat (110) provided on a door panel (200), and the mounting seat (110) has a first mounting groove (1111); a glass guide groove (120) provided in the first mounting groove (1111); wherein the glass guide groove (120) comprises a top plate (121), a first side plate (122) and a second side plate (123) located on both sides of the top plate (121), a first sealing lip (124) is provided on the first side plate (122), a second sealing lip (125) is provided on the second side plate (123), the first sealing lip (124) and the second sealing lip (125) are oppositely arranged, a third sealing lip (126) is further provided on the first side plate (122), the third sealing lip (126) is arranged adjacent to the top plate (121) compared with the first sealing lip (124), and the first sealing lip (124) and the second sealing lip (125) are used for sealing the door glass (300) on both sides of the door glass (300), the extending direction of the third sealing lip (126) is parallel to the extending direction of the top plate (121), and the third sealing lip (126) is adapted to seal the door glass (300) on the edge of the door glass (300).
2. The door seal assembly of claim 1, wherein, One end of the first sealing lip (124) is connected with the free end of the first side plate (122), and the other end extends towards the top plate (121), one end of the second sealing lip (125) is connected with the free end of the second side plate (123), and the other end extends towards the top plate (121), so as to define a guide part adapted to guide the door glass (300) by the first sealing lip (124) and the second sealing lip (125) towards one side surface of the door glass (300).
3. The door seal assembly of claim 2, wherein, The first sealing lip (124) and the first side plate (122) define a first flow guide groove (1241), and the second sealing lip (125) and the second side plate (123) define a second flow guide groove (1251).
4. The door seal assembly of claim 1, wherein, Further comprising: a door frame sealing member (130) located on the side of the first side plate (122) away from the second side plate (123) and connected with the door panel (200), and the door frame sealing member (130) is adapted to abut and seal with the door glass (300).
5. A vehicle door characterized by Comprising: a door panel (200); the door sealing assembly of any one of claims 1-4 is provided on the door panel (200).
6. The vehicle door of claim 5, wherein The door panel (200) comprises a first plate (210), a second plate (220) and a third plate (230) connected in sequence, the first plate (210) and the second plate (220) have an included angle, the second plate (220) and the third plate (230) have an included angle, the first plate (210) defines an appearance profile of the door, and the third plate (230) is used for fixing the mounting seat (110).
7. The vehicle door of claim 6, wherein The mounting seat (110) comprises a body portion and an extension arm (112) located on a side of the body portion facing the third plate (230), the extension arm (112) extends towards the first plate (210), and at least part of a projection profile of the extension arm (112) covers the second plate (220) in a projection direction perpendicular to the first plate (210).
8. The vehicle door of claim 7, wherein A seal (140) is arranged between the body portion and the third plate (230), the seal (140) is connected with the extension arm (112) and the body portion, and is adapted to seal a gap between the third plate (230) and the body portion.
9. The vehicle door of claim 8, wherein, The seal (140) comprises a sealing plate (141) and a connecting portion (142) located on a side of the sealing plate (141), the connecting portion (142) is connected with the body portion, and the sealing plate (141) is provided with a fourth sealing lip (143) sealingly matched with the second plate (220) and a fifth sealing lip (144) sealingly matched with the third plate (230).
10. A vehicle characterized by comprising: Comprise: The door according to any one of claims 5-9.