Resin torque rod
09533559 ยท 2017-01-03
Assignee
Inventors
Cpc classification
F16F1/3849
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16M1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
To heighten the rigidity of a torque rod at the time of compression. A rod section 12, a second ring section 16 and a main body portion 18 are integrally formed of resin. The rod section 12 is provided with a pair of intermediate ribs 44 which extends in parallel in the direction of a center axis CO. A center groove 45 is formed between the intermediate ribs 44. Front end portions 44a of the intermediate ribs 44 located on a first ring section 14 side spread apart in the direction away from each other. A connecting rib 46 provided in a front end portion 45a of the center groove 45 provides a connection between the front end portions 44a. With this construction, even if a compression load is imposed on the front end portions 44a in the direction to forcibly spread these end portions apart, this is suppressed by the connecting rib 46. The connecting rib 46 is arranged in the vicinity of the first ring section 14 whereby effective reinforcement can be achieved.
Claims
1. A resin torque rod comprising: a rod section; ring sections integrally formed in both ends in a longitudinal direction of the rod section, and the rod section is arranged on a center axis connecting centers of both ring sections; a pair of lateral ribs provided in the rod section and extending in the direction on both sides of the center axis in a parallel relationship; wherein respective one ends in the longitudinal direction of a pair of the lateral ribs are located in the vicinity of one of the ring sections, and a connecting rib which provides a connection between respective one end portions in the longitudinal direction of the pair of lateral ribs is integrally provided in the rod section and wherein respective one ends in the longitudinal direction of a pair of lateral ribs provide a spreading portion spreading curvedly in the direction away from each other and the connecting rib provides a connection between these spreading end portions at the position away from one end portion in the longitudinal direction of the lateral ribs.
2. The resin torque rod according to claim 1, wherein a center groove is formed in the shape of a groove along the center axis between the pair of lateral ribs, and the connecting rib is formed in an end portion in the longitudinal direction of the center groove.
3. The resin torque rod according to claim 2, wherein a projecting height of the connecting rib is smaller than those of the one end portions in the longitudinal direction of the lateral ribs.
4. The resin torque rod according to claim 3, wherein the connecting rib is located on the center axis.
5. The resin torque rod according to claim 4, wherein the connecting rib possesses a portion spreading linearly in a rectangular direction of the center axis (CO) and connecting to one end portions in the longitudinal direction of the pair of the lateral ribs.
6. The resin torque rod according to claim 5, wherein the connecting rib projects along the center axis (CO) and possesses a projecting portion connecting to a front wall of the center groove.
7. The resin torque rod according to claim 6, wherein the projecting portion is not connected to each of the one end portions in the longitudinal direction of the pair of lateral ribs.
8. The resin torque rod according to claim 1, wherein the ring portion is a portion formed continuously as an enlarged part from the one end portion of the rod portion and provided with a ring hole, an inside member is connected to an inside of the ring hole through an elastic body and wherein respective one end portions of the pair of lateral ribs is shaped in the vicinity of the ring portion of the rod section and spread apart while being curved in such a way as to be gradually spaced apart from each other so that is arranged to be located between the respective front end portions.
9. The resin torque rod according to claim 7, wherein the center groove is formed as an enlarged portion in which width of an end portion side is enlarged between those of the one end portions of the pair of lateral ribs and the connecting rib having the projecting portion is arranged in the enlarged part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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BEST MODE FOR CARRYING OUT THE INVENTION
(8) Hereinafter, an embodiment of the present invention will be explained with reference to accompanying drawings.
(9) This torque rod 10 has a main body portion 18 which is made of publicly known proper resin such as FRP, etc. and which is integrally formed with a rod section 12 of long bar shape, a first ring section 14 and a second ring section 16 provided on both sides in the longitudinal direction of the rod section 12.
(10) The first ring section 14 is provided with a ring hole 15 (see
(11) The second ring section 16 has a ring hole 17 (see
(12) The second inside member 32 is a pipe member made of metal and the like and is mounted on a vehicle body (not shown in the drawing) by a bolt and the like (not shown in the drawing) which is inserted into the second inside member 32.
(13) Herein, a center of the first ring section 14 is designated by O1, a center of the second ring section 16 is designated by O2, and a straight line connecting these centers is designated as a center axis C0. In addition, a center axis of the first ring section 14 is designated by C1 and a width thereof is designated by W1 (
(14) The respective center axes C1 and C2 intersect at right angles with each other and are twisted at 90 relative to each other. However, the torque rod of the present invention is not limited to such twisted type and may be of the type that has the center axes C1 and C2 which extend in parallel with each other.
(15) The center axis C0 intersects at right angles with these center axes C1 and C2. Moreover, in this embodiment, the rod section 12 is symmetrically formed about the center axis C0 (see
(16) Herein, the direction of the center axis C0 shall be the forward and rearward direction, and the direction of the center axis C2 shall be the upward and downward direction. In addition, the left side of
(17) As shown in
(18) The arm sections 34 are formed in substantially a V-shape which is convexed in the forward direction in a plan view and spreads laterally toward the rear. The second inside member 32 is opposed to a stopper 38 through a void 36 which passes through in the upward and downward direction. Also in front of the arm section 34 there is formed a void 39 which passes through in the upward and downward direction.
(19) When the engine and the vehicle body are connected by the torque rod 10, the vibrations of the engine in the upward and downward direction and in the forward and rearward direction are inputted through the first inside member 22 to the first ring section 14 so that the first elastic body 20 is elastically deformed. At that time, the first elastic body 20 is twisted, and the torque rod 10 is rocked about the first inside member 22 as a rocking center, so that the second ring section 16 moves in the forward and rearward direction to thereby allow the arm sections 34 to be elastically deformed. Due to this operation, the vibrations are isolated by the torque rod 10 whereby to reduce the vibration transmission to the vehicle body.
(20) Next, the construction of ribs will be explained. As shown in
(21) The rod section 12 is integrally provided with upper and lower ribs 40 which project in the left and right directions from upper and lower sides thereof and with a columnar section 42 (see
(22) In a plan view, the upper and lower ribs 40 each are formed with curved portions 41 which are constricted toward the center in an intermediate part in the forward and rearward direction (see
(23) The intermediate ribs 44 are thicker than the upper and lower ribs 40 and formed as lateral ribs extending along the center axis C0 in the forward and rearward direction.
(24) Between each of the intermediate ribs 44 and each of the upper and lower ribs 40 there are formed long upper and lower grooves 41 which extend along the intermediate ribs 44 in the forward and rearward direction.
(25) Also between the pair of intermediate ribs 44 there is formed a center groove 45. The width in the upward and downward direction of the center groove 45 is narrower than the upper and lower grooves 41, and the center groove 45 is formed long in the forward and rearward direction along the center axis C0.
(26) As shown in
(27) Front end portions 41a of the upper and lower grooves 41 are also curved in such a condition as to be spaced apart from each other in the upward and downward directions. Front end positions of the front end portions 41a each are located above and below the first inside member 22 in the upward and downward direction. In other words, the first inside member 22 is located in such a position as to enter between front ends of the front end portions 41a.
(28) A front end portion 45a of the center groove 45 is formed as an enlarged part which is widened in the upward and downward direction. Each of the front end portions 44a of the intermediate ribs 44 is formed in a curved fashion between the front end portion 45a and each of the front end portions 41a of the upper and lower grooves 41. The front end portions 44a of the intermediate ribs 44 are curved in such a condition as to be spaced apart from each other in the upward and downward directions.
(29) A front end of the front end portion 45a of the center groove 45 is positioned rearwardly of each of the front end positions of the front end portions 41a of the upper and lower grooves 41 and located in the vicinity of a rear of the first inside member 22 on the center axis C0. Accordingly, when the first inside member 22 moves backwardly on the center axis C0, namely, when the load in the direction of compression is applied to the torque rod 10, the first inside member 22 acts in the direction to forcibly spread apart each of the front end portions 44a of the upper and lower intermediate ribs 44.
(30) The front end portions 44a of the intermediate ribs 44 each are connected by connecting ribs 46. As shown in an enlarged part of
(31) By the way, the connecting rib 46 is located also in the front end portions 41a of the upper and lower grooves 41, so that the connecting ribs 46 provide a connection between each of the front end portions 44a of the intermediate ribs 44 and each of the front end portions 40a of the upper and lower ribs 40 (see
(32) As shown in
(33) Next, the operation of this embodiment will be explained. As shown in
(34) Therefore, when the load in the direction of compression is applied to the first ring section 14 of the torque rod 10, the first inside member 22 moves backwardly on the center axis C0, and the force is exerted on each of the front end portions 44a in such a way as to forcibly spread the front end portions 44a apart further in the direction away from each other.
(35) However, as shown in
(36) Further, since the connecting ribs 46 are provided in the enlarged groove area of the front end portion 45a of the center groove 45, these can be easily provided by utilizing the enlarged groove area of the front end portion 45a of the center groove 45. In addition, since the projecting heights of the connecting ribs 46 in the left and right directions are smaller than those of the front end portions 44a of the intermediate ribs 44, the neighboring region of the first ring section 14 can be compactified due to this.
(37) The present invention is not limited to the above embodiment, and various changes and modifications may be made in the invention without departing from the spirit and scope thereof. For instance, although the connecting ribs 46 are provided with respect to the first ring section 14 in the above embodiment, these connecting ribs 46 may be provided with respect to the second ring section 16.