The present invention relates to a vehicle roof panel and a vehicle roof structure.
Patent document 1 discloses a conventional vehicle roof structure. The roof structure includes a roof window, an actuation mechanism, and a vehicle roof panel. The roof window is a transparent plate and includes a first surface located at an outer side of the vehicle and a second surface located at the opposite side of the first surface, that is, at an inner side of the vehicle. The actuation mechanism is arranged at an inner side of the vehicle body at a location opposing the second surface of the roof window. The actuation mechanism includes multiple driving motors and is configured to move the roof window in a front-rear direction of the vehicle. The vehicle roof panel is fixed to the vehicle body in a state sandwiched between the roof window and the actuation mechanism. The vehicle roof panel is formed from transparent inorganic glass. The vehicle roof panel includes an accommodation portion that accommodates the roof window. The vehicle roof panel and the roof window are both tinted.
With the roof structure, the vehicle roof panel forms the roof of the vehicle body. Further, the vehicle roof panel covers the actuation mechanism and protects the actuation mechanism from water and dust.
In order to reduce the weight of the vehicle and facilitate manufacturing, a roof structure having a plastic vehicle roof panel has been developed. In this case, there is a need for the vehicle roof panel to conceal the actuation mechanism so that the actuation mechanism is not exposed from the roof and so that the actuation mechanism does not adversely affect the aesthetic appeal. In this regard, the plastic vehicle roof panel is colored in an opaque color such as black.
However, in this case, the appearance of the colored vehicle roof panel will greatly differ from that of the transparent roof window. With such a roof structure, the roof window and the vehicle roof panel do not appear to have uniformity and it will be difficult to increase the aesthetic appeal. In this regard, the vehicle roof panel can be elaborately colored so that its appearance becomes close to that of the roof window. However, this will complicate the manufacturing process and increase the manufacturing cost.
The object of the present invention is to provide a vehicle roof panel and a vehicle roof structure that have high aesthetic appeal and reduce the manufacturing cost.
The present invention according to one mode provides a vehicle roof panel that is formed from a plastic and configured to be fixed to a vehicle body. The vehicle roof panel is configured to be arranged between a roof window that is a transparent plate and an actuation mechanism that actuates the roof window. The roof window includes a first surface and a second surface located on an opposite side of the first surface. The actuation mechanism is arranged to oppose the second surface of the roof window. The vehicle roof panel includes a main panel body and a surface layer. The main panel body is formed from an opaque plastic and includes an accommodation portion configured to accommodate the roof window. The main panel body is configured to conceal the actuation mechanism. The surface layer is formed from a transparent plastic, integrated with an outer surface of the main panel body, and substantially flush with the first surface.
The present invention according to another mode provides a roof window that includes a roof window, an actuation mechanism, and a vehicle roof panel. The roof window is a transparent plate and includes a first surface and a second surface located on an opposite side of the first surface. The actuation mechanism is arranged to oppose the second surface of the roof window and configured to actuate the roof window. The vehicle roof panel is formed from a plastic and arranged between the roof window and the actuation mechanism. The vehicle roof panel is configured to be fixed to a vehicle body. The vehicle roof panel includes a main panel body and a surface layer. The main panel body is formed from an opaque plastic and includes an accommodation portion configured to accommodate the roof window. The main panel body is configured to conceal the actuation mechanism. The surface layer is formed from a transparent plastic, integrated with an outer surface of the main panel body, and is substantially flush with the first surface.
First to fourth embodiments according to the present invention will now be described with reference to drawings.
As shown in
As shown in
As shown in
The roof window 3 is formed from colorless transparent inorganic glass having a uniform thickness. Accordingly, the roof window 3 has light-transmissivity from the first surface 3a to the second surface 3b. Further, as shown in
As shown in
The vehicle roof panel 7 is substantially rectangular. The vehicle roof panel 7 has a greater length in the frontward and rearward directions than in the leftward and rightward directions. The vehicle roof panel 7 is set to be larger in size than the actuation mechanism 5 to cover the entire actuation mechanism 5 from the upper side. The vehicle roof panel 7 includes a first opening 7a and a window 7b. The first opening 7a is formed in a front part of the vehicle roof panel 7 and configured to be in communication with the passenger compartment CR. The window 7b is arranged rearward from the first opening 7a. Further, the vehicle roof panel 7 includes a front end where a deflector is coupled so as to be pivotal upward and downward (not shown in
As shown in
As shown in
The bottom surface 711a is located at a lowermost part of the accommodation portion 711 and extends substantially horizontally. The bottom surface 711a is configured to collect water such as rain water as described above. Further, a deflector arm 11 is arranged on the bottom surface 711a to pivot the deflector upward and downward. The structure of the deflector arm 11 is the same as a known deflector arm and will not be described in detail. Further, to facilitate illustration the deflector arm 11 is schematically shown in
The first side wall 711b extends upward in a stepped manner from the bottom surface 711a and integrates with the peripheral portion 713 at its upper end. The second side wall 711c opposes the first side wall 711b and extends substantially vertically upward from the bottom surface 711a. The flange surface 711d is connected to the upper end of the second side wall 711c and extends toward the first opening 7a. A first weather strip 13a is attached by an adhesive to the flange surface 711d.
As shown in
As shown in
With the vehicle roof panel 7, as shown in
With the roof structure, as shown by the arrowed dashed lines in
As shown by the arrowed double-dashed lines in
In this manner, in the roof structure, the actuation mechanism 5 is arranged at a location opposing the second surface 3b of the roof window 3, and the vehicle roof panel 7 is located between the roof window 3 and the actuation mechanism 5. This completes the roof structure.
With the above roof structure, the roof window 3 and the window 7b of the vehicle roof panel 7 allow light to enter the passenger compartment CR from the vehicle roof. Further, the open-close devices 5b of the actuation mechanism 5 move the roof window 3 relative to the vehicle roof panel 7 in the frontward and rearward directions of the vehicle so that the first opening 7a, the accommodation portion 711, and consequently the passenger compartment CR can be opened and closed.
With the roof structure, the vehicle roof panel 7 is formed from a plastic. Thus, compared to when the vehicle roof panel 7 is formed from a metal, the weight of the roof structure and the vehicle is reduced. Further, the plastic vehicle roof panel 7 simplifies the manufacturing process.
The vehicle roof panel 7 includes the main panel body 71, which is formed from a black opaque plastic, and the surface layer 73, which is formed from a transparent plastic. Accordingly, as described above, when the vehicle roof panel 7 covers the actuation mechanism 5, the main panel body 71 conceals the actuation mechanism 5. In the roof structure, the roof window 3 includes the concealing portion 9. Thus, the concealing portion 9 can also conceal portions where the roof window 3 and the open-close devices 5b are coupled.
Moreover, with the vehicle roof panel 7, the surface layer 73 is formed integrally with the outer surface 71a of the main panel body 71. Accordingly, when viewing the vehicle roof panel 7 from the outer side of the vehicle, the black main panel body 71 is visible through the transparent surface layer 73. In this way, with the roof structure, the surface layer 73 has an appearance providing a sense of depth to the vehicle roof panel 7, and the appearance is close to that of the transparent roof window 3. When the roof window 3 is accommodated in the accommodation portion 711, the surface layer 73 is substantially flush with the first surface 3a. Accordingly, with the roof structure, the vehicle roof panel 7 has an aesthetic appeal and provides a uniform appearance with the roof window 3.
With the roof structure, the vehicle roof panel 7 includes the surface layer 73 formed from a transparent plastic. This eliminates the need for elaborative coloring of the main panel body 71 to obtain an appearance close to that of the roof window 3. In this respect, the roof structure also simplifies the manufacturing process.
Thus, the roof structure according to the first embodiment has high aesthetic appeal and reduces the manufacturing cost.
Particularly, with the roof structure, the surface layer 73 includes the extension portion 73a in the vehicle roof panel 7 so that the surface layer 73 extends in the accommodation portion 711 and covers part of the first side wall 711b. Accordingly, with the vehicle roof panel 7, the boundary between the accommodation portion 711 and the main panel body 71 is not visible. In this respect, the roof structure has high aesthetic appeal. Further, with the roof structure, the boundary between the main panel body 71 and the surface layer 73 is not exposed in the accommodation portion 711. This prevents water such as rain water from entering the boundary and separating the main panel body 71 from the surface layer 73. Further, with the roof structure, when forming the surface layer 73, the design of a mold can be simplified. This further simplifies the manufacturing process.
In a roof structure according to the second embodiment, as shown in
With this roof structure, there is no need to arrange the extension portion 73a to the surface layer 73 of the vehicle roof panel 7. This reduces the amount of the transparent plastic required for forming the surface layer 73. Accordingly, the roof structure further reduces the manufacturing cost. Other advantages of the roof structure are the same as the roof structure according to the first embodiment.
In a roof structure according to the third embodiment, as shown in
With this roof structure, the engaging projection 19 and the engagement portion 130 are engaged so that the second weather strip 13b is fixed to the vehicle roof panel 7. Accordingly, with this roof structure, compared to when attaching the second weather strip 13b to the vehicle roof panel 7, the second weather strip 13b is coupled more easily to the vehicle roof panel 7. Other advantages of the roof structure are the same as the roof structure according to the first embodiment.
A roof structure according to the third embodiment includes a vehicle roof panel 70 shown in
With the roof structure, the vehicle roof panel 70 is reduced in size thereby reducing the manufacturing cost in comparison with the roof structure according to the first embodiment. Further, when the vehicle roof panel 70 is reduced in size, the roof structure is also reduced in size. This enables the roof structure to be employed to a wider variety of vehicle types. Other advantages of the roof structure are the same as the roof structure according to the first embodiment.
It should be apparent to those skilled in the art that the present invention may be embodied in many other specific forms without departing from the spirit or scope of the invention. Therefore, the present examples and embodiments are to be considered as illustrative and not restrictive, and the invention is not to be limited to the details given herein, but may be modified within the scope and equivalence of the appended claims.
For example, the elements in the first to fourth embodiments may be combined when constructing the roof structure.
In addition, the roof window 3 in the roof structure according to the first embodiment is formed from an inorganic glass. Instead, the roof window 3 may be formed from a transparent plastic. The roof windows 3 in the second to fourth embodiments may also be formed in the same manner.
The window 7b may be omitted from the vehicle roof panel 7 while maintaining the length in the frontward and rearward directions. Further, the vehicle roof panel 7 may include a plurality of the windows 7b.
With the roof structure according to the first embodiment, the actuation mechanism 5 is fixed to the vehicle roof panel 7 on the inner surface 71b of the main panel body 71. Instead, the actuation mechanism 5 may be fixed to the body panel 1a on the side of the passenger compartment CR. The actuation mechanisms 5 in the second to fourth embodiments may also be arranged in the same manner.
Number | Date | Country | Kind |
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2016-145042 | Jul 2016 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2017/025104 | 7/10/2017 | WO | 00 |