Not applicable.
Not applicable.
Not applicable.
The present invention relates generally to a deflector, and more particularly to a deflector installed to the body of a car and considered to be a type of car accessory.
To improve the smoothness and stability of driving, it is common to install a deflector on the outside of a car body.
Another problem is that different makes of cars have different widths; thus, deflectors of different sizes are needed. The conventional deflectors are made for specific makes of cars, and cannot be used on a car with a different make and size. Hence, the practicality of the deflector is limited.
Also, the boring technology used in the screwing method often requires skilled workers and professional tools. It could only be done by auto shops or professional workers, resulting in inconvenient assembly and high costs.
Thus, to overcome the aforementioned problems of the prior art, it would be an advancement in the art to provide an improved structure that can significantly improve the efficacy.
To this end, the inventor has provided the present invention of practicability after deliberate design and evaluation based on years of experience in the production, development and design of related products.
1. The deflector is fastened to the side B (such as the engine hood, and trunk hood) of the car body via a fastener unit 20, and the deflector is connected to the connecting unit 30 via a universal joint 40. The deflector of the present invention requires no drilling on the car body nor using adhesives, thus the car body is not damaged. The fastener plate 21 of the fastener unit 20 could be fastened to the car body so that the deflector 10 could be secure and durable.
2. The sliding groove 11 of the deflector 10 and the first and second connecting ends 311312 of the connecting bar 31 could be fine tuned before the bolt 45 of the universal joint 40 is fastened, so that the deflector 10 could be adjusted to the suitable position for different makes of cars.
3. The universal joint 40 has the feature of universal direction, so that the first and second connecting ends 311312 of the connecting bar 31 could follow the arc surface of the deflector 10, and allow the connecting part to fit smoothly.
4. The supporting unit 50 provides support and a buffer to the deflector 10, and the supporting unit 50 improves the quality of the deflector device. Also, the supporting block 51 has several ring grooves 511 spaced in equal length to be used as reference for cutting of the supporting block 51.
5. The fastener unit 20 contains a wear-resisting spacer 23, which is placed at one side B of the fastener unit 20. The bottom of the wear-resisting spacer 23 can allow the positioning component 22 to lean on. The top surface can allow the fastening bar section 313 of the connecting bar 31 to lean on, so as to prevent the positioning component 22 and the fastening bar section 313 from having direct contact with the car body and resulting in damage.
6. The ball connector 41 has a coupling end 411, which is connected with the connecting end 311 or 312 of the connecting bar 31 to form a spiral design. It allows the ball connector 41 to be fine tuned with the screw. When the first and second connecting ends 311312 of the connecting bar 31 and the sliding groove 11 of the deflector 10 are positioned, the ball connector 41 can be fine tuned for tightening. So, the deflector 10 and the connecting bar 31 are more secured.
The features and the advantages of the present invention will be more readily understood upon a thoughtful deliberation of the following detailed description of a preferred embodiment of the present invention with reference to the accompanying drawings.
As shown in
The present invention has a deflector 10 with two ends, each having at least two sliding grooves 11. The shape of the sliding groove could be an elliptic hole; the two sliding grooves 11 on the same end are staggered; and the sliding groove 11 could be fitted with a sheath 12. The middle section of the deflector 10 has two connecting holes 13.
A fastener unit 20 contains at least two fastener plates 21. A positioning component 22 affixes the fastener plate 21 to the pre-determined side, such as the side of the hood, of the car body. The fastener plate 21 comprises a bottom positioning edge 211 and top fastening edge 212. The cross-section of the fastener plate 21 can be a Π shape, the positioning edge 211 can be a plane, and the fastening edge 212 can be an arc. The positioning edge 211 has two through screw holes 213, which can be screwed by two bolts to form the positioning component 22. The fastener unit 20 may contain wear-resisting spacer 23, used as illustrated in
A connecting unit 30 includes two connecting bars 31 and a universal joint 40. The connecting bar 31 is in a Π shape and forms a first connecting end 311 and a second connecting end 312 extending toward the sliding groove 11 of the deflector 10. The section of the connecting bar 31 that is between the first and second connecting ends 311312 is a fastening bar section 313, which can be fastened to the fastening edge 212 of the fastener plate 21. The fastening bar section 313 can lean against the top of the said wear-resisting spacer 23. The first and second connecting ends 311312 are staggered from the sliding groove 11 of the deflector 10 in uneven lengths.
The universal joint 40 of the connecting unit 30 comprises: a ball connector 41, an upper spherical socket 42, a lower spherical socket 43, a positioning base 44, and a bolt 45.
The ball connector 41 has one end as the coupling end 411, which is connected with the connecting end 311 or 312 of the connecting bar 31. The other end is a spherical connector 412, which has a through hole 413.
The upper spherical socket 42 is at the upper part of the spherical connector 412 of the ball connector 41. The upper spherical socket 42 has a semi-spherical socket 421, which matches up with the upper part of the spherical connector 412. One side of the semi-spherical socket 421 has a concave edge 422, which can avoid the ball connector 41. The upper spherical socket 42 has a boring hole 423, which faces the through hole 413 of the ball connector 41. The top 424 of the upper spherical socket 42 is leaned against the bottom of the sliding groove 11 of the deflector 10.
The lower spherical socket 43 is at the lower part of the spherical connector 412 of the ball connector 41. The lower spherical socket 43 has a semi-spherical socket 431, which matches up with the lower part of the spherical connector 412. One side of the semi-spherical socket 431 has a concave edge 432 to avoid the ball connector 41. The lower spherical socket 43 has a screw hole 433, which faces the through hole 413 of the ball connector 41.
The positioning base 44 leans against the top of the sliding groove 11 of the deflector 10. The positioning base 44 has a boring hole 441, which faces the boring hole 423 of the sliding groove 11 and the upper spherical socket 42.
The bolt 45 has a screw thread that goes through the boring hole 441 of the positioning base 44, the sliding groove 11 of the deflector 10, the boring hole 423 of the upper spherical socket 42, the through hole 413 of the ball connector 41, and the screw hole 433 of the lower spherical socket 43 in the said sequence.
The coupling end 411 of the ball connector 41 can be a screw hole, so that the connecting end 311 or 312 of the connecting bar 31 can have corresponding screw threads 314 and can be screwed with the ball connector 41. The ball connector 41 can be fine tuned with the screwing function. The screw threads 314 have a nut 315, which fasten the ball connector 41 to the position. The upper and lower spherical sockets 4243 can have protruding edge 424 and concave edge 434 for positioning. After the bolt 45 is tightened, the spherical connector 412 is limited to the spherical surface between the upper and lower spherical sockets 4243. It forms the ball connector 41 with universal movement, as shown in
The present invention also includes a supporting unit 50, which comprises a supporting block 51 and a positioning fitting 52. The supporting block 51 can be affixed to the pre-determined position of the deflector 10 via the positioning fitting 52. As shown in the embodiment, the supporting block 51 is affixed to the middle section of the deflector 10. The appearance is a hollow column. The top of the supporting block 51 has two holes 510, which face the connecting holes 13 of the deflector 10. The positioning fitting 52 comprises a bolt 521, a top button 522, a spacer 523, and a nut 524.
The supporting block 51, as shown in
The assembly procedures of the deflector device of the present invention are detailed as follows.
The deflector 10 can be installed on the engine hood (as shown in
| Number | Date | Country | Kind |
|---|---|---|---|
| 094216479 | Sep 2005 | TW | national |