This application claims priority of Taiwanese Invention Patent Application No. 108117153, filed on May 17, 2019.
The disclosure relates to a transmission turning device, more particularly to a front wheel transmission turning device for a vehicle.
Referring to
However, since the hardness of the outer socket seat 12 is lower than that of the balls 14, after long-term use, the sockets 121 of the outer socket seat 12 are worn by the balls 14 and the entire universal joint 1 must be replaced, increasing the cost of maintenance.
Therefore, the object of the disclosure is to provide a front wheel transmission turning device for a vehicle that has a longer service life.
According to the disclosure, a front wheel transmission turning device for a vehicle is adapted to be coupled to a transmission shaft and installed at a vehicle wheel. The front wheel transmission turning device for a vehicle includes a plurality of balls, an outer annular seat, an inner annular seat, a holding member, and a connecting shaft.
A quantity of the balls being not smaller than three;
The outer annular seat includes a base wall and an annular wall that extends from the base wall. The annular wall has an inner annular surface, an outer annular surface opposite to and surrounding the inner annular surface, and a top annular surface interconnecting the inner and outer annular surfaces and opposite to the base wall. The inner annular surface surrounds an axis and defines a receiving space. The inner annular surface has a plurality of angularly spaced-apart outer grooves extending from the top annular surface toward the base wall. A quantity of the outer grooves is a multiple of and larger than the quantity of the balls.
The inner annular seat is removably disposed in the receiving space of the outer annular seat and rotatable relative to the outer annular seat. The inner annular seat includes an inner wall surface and an outer wall surface that is opposite to and that surrounds the inner wall surface. The inner wall surface defines a connection hole adapted for engagingly fitting the transmission shaft. The outer wall surface has a plurality of angularly spaced-apart inner grooves. A quantity of the inner grooves is a multiple of and not smaller than the quantity of the balls. Each of the inner grooves faces a corresponding one of the outer groove.
The holding member is removably disposed between the outer and inner annular seats, and co-rotatable with the inner annular seat relative to the outer annular seat. The holding member has an inner surrounding surface, an outer surrounding surface opposite to and surrounding the inner surrounding surface, and a plurality of angularly spaced-apart through holes extending from the inner surrounding surface to the outer surrounding surface. A quantity of the through holes is a multiple of and not smaller than the quantity of the balls. Each of the through holes faces a corresponding one of the outer grooves.
The connecting shaft is mounted to the base wall of the outer annular seat, extends along the axis away from the annular wall, and is adapted for connecting to the vehicle wheel.
The balls are equiangularly arranged. Each of the balls is removably disposed in a corresponding one of the through holes of the holding member, and removably received between a corresponding one of the outer grooves and a corresponding one of the inner grooves.
Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiments with reference to the accompanying drawings, of which:
Before the present invention is described in greater detail, it should be noted that where considered appropriate, reference numerals or terminal portions of reference numerals have been repeated among the figures to indicate corresponding or analogous elements, which may optionally have similar characteristics.
Referring to
The outer annular seat 2 includes a base wall 21 and an annular wall 22 that extends from the base wall 21. The annular wall 22 has an inner annular surface 221, an outer annular surface 222 opposite to and surrounding the inner annular surface 221, and a top annular surface 223 interconnecting the inner and outer annular surfaces 221, 222 and opposite to the base wall 21. The inner annular surface 221 surrounds an axis (L), defines a receiving space 220, and has a plurality of angularly spaced-apart outer grooves 224 that extend from the top annular surface 223 toward the base wall 21.
The inner annular seat 3 is removably disposed in the receiving space 220 of the outer annular seat 2 and is rotatable relative to the outer annular seat 2. Specifically, the inner annular seat 3 is capable of tilting relative to the outer annular seat 2 so that a rotational axis of the inner annular seat 3 is at an angle to the axis (L) of the outer annular seat 2, thereby enabling the inner annular seat 3 to transmit rotation to the outer annular seat 2 even when the vehicle wheel 92 in a state of turning. The inner annular seat 3 includes an inner wall surface 31 and an outer wall surface 32 opposite to and surrounding the inner wall surface 31. The inner wall surface 31 defines a connection hole 30 adapted for engagingly fitting the transmission shaft 91. The outer wall surface 32 has a plurality of angularly spaced-apart inner grooves 321, each of the inner grooves 321 facing a corresponding one of the outer groove 224. The inner annular seat 3 is made of a material that has a greater hardness than that of the outer annular seat 2.
The holding member 4 is removably disposed between the outer and inner annular seats 2, 3, and co-rotatable with the inner annular seat 3 relative to the outer annular seat 2. The holding member 4 has an inner surrounding surface, an outer surrounding surface opposite to and surrounding the inner surrounding surface, and a plurality of angularly spaced-apart through holes 41 extending from the inner surrounding surface to the outer surrounding surface, each of the through holes 41 facing a corresponding one of the outer grooves 321.
The connecting shaft 6 is mounted to the base wall 21 of the outer annular seat 2, extends along the axis (L) away from the annular wall 22, and is adapted for connecting to the vehicle wheel 92.
The balls 5 are equiangularly arranged, and each of the balls 5 is removably disposed in a corresponding one of the through holes 41 of the holding member 4, and removably received between a corresponding one of the outer grooves 224 and a corresponding one of the inner grooves 321.
A quantity of the balls 5 is not smaller than three, a quantity of the outer grooves 224 is a multiple of and larger than the quantity of the balls 5, a quantity of the inner grooves 321 is a multiple of and not smaller than the quantity of the balls 5, and a quantity of the through holes 41 is a multiple of and not smaller than the quantity of the balls 5.
In certain embodiments, the quantity of the outer grooves 224 is twelve, the quantity of the inner grooves 321 is one of three, six and twelve, the quantity of the through holes 41 is one of three, six and twelve, and the quantity of the balls 5 is three.
In certain embodiments, the quantity of the outer grooves 224 is twelve, the quantity of the inner grooves 321 is four, the quantity of the through holes 41 is one of four and twelve, and the quantity of the balls 5 is four.
In certain embodiments, the quantity of the outer grooves 224 is twelve, the quantity of the inner grooves 321 is six, the quantity of the through holes 41 is one of six and twelve, and the quantity of the balls 5 is one of three and six.
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In the aforesaid embodiments and the variations thereof, the front wheel transmission turning device for a vehicle is a universal joint, e.g., a constant-velocity joint.
In sum, the front wheel transmission turning device for a vehicle of this disclosure has the outer grooves 224 with a quantity that is larger than and a multiple of the balls 5 so that the balls 5 may sequentially be received in multiple sets of the outer grooves 224 before the entire front wheel transmission turning device for a vehicle needs to be replaced, which lengthens the service life of the front wheel transmission turning device for a vehicle of this disclosure compared to the conventional transmission device.
In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiments. It will be apparent, however, to one skilled in the art, that one or more other embodiments may be practiced without some of these specific details. It should also be appreciated that reference throughout this specification to “one embodiment,” “an embodiment,” an embodiment with an indication of an ordinal number and so forth means that a particular feature, structure, or characteristic may be included in the practice of the disclosure. It should be further appreciated that in the description, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of various inventive aspects, and that one or more features or specific details from one embodiment may be practiced together with one or more features or specific details from another embodiment, where appropriate, in the practice of the disclosure.
While the disclosure has been described in connection with what are considered the exemplary embodiments, it is understood that this disclosure is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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108117153 | May 2019 | TW | national |