LIGHT-WEIGHT AND HIGH-ELASTIC VIBRATION ABSORPTION ASSEMBLY FOR BIKE SADDLE
20190291801 ยท 2019-09-26
Inventors
Cpc classification
B62J1/06
PERFORMING OPERATIONS; TRANSPORTING
F16F13/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B62J1/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A lightweight and high-elastic vibration absorption assembly for a bike saddle includes a pair of vibration-absorption blocks mounted to a bottom of a saddle. The vibration-absorption blocks are each formed with a central hole extending in a vertical direction between a top surface and a bottom surface thereof. A fastening member is received through a through hole of a support base and a central hole of each of the vibration-absorption blocks to be fixed to an underside positioning hole of the saddle. The vibration-absorption blocks are each formed of a plurality of foamed units that are bonded to each other with a bonding portion therebetween. Each of the foamed units includes a plurality of foaming pores formed therein. The vibration-absorption blocks are permitted to be temporarily deformed when receiving a pressing force acting on the saddle so that the pressing force is absorbed by the vibration-absorption blocks.
Claims
1. A lightweight and high-elastic vibration absorption assembly for a bike saddle having a sitting surface and a bottom surface, the saddle being provided with a bracket having a front end coupled to a bottom front end of the saddle and a rear end coupled to a support base, the vibration absorption assembly comprising: a pair of vibration-absorption blocks mounted between the support base and a bottom rear end of the saddle; each of the vibration-absorption blocks having a top surface supporting a bottom of the saddle and a bottom surface positioned on and supported by the support base; the vibration-absorption blocks being each formed with a central hole extending in a vertical direction between the top surface and the bottom surface of the vibration-absorption block; a fastening member being received through a through hole of the support base and the central hole of each of the vibration-absorption blocks to be fixed to an underside positioning hole of the saddle so as to securely position the vibration-absorption block between the support base and the bottom of the saddle; and the vibration-absorption blocks being each formed of a plurality of foamed units that are bonded to each other with a bonding portion therebetween, each of the foamed units comprising a plurality of foaming pores formed therein.
2. The lightweight and high-elastic vibration absorption assembly according to claim 1, wherein the vibration-absorption blocks are each coupled with an enclosure barrel arranged around an outer circumference thereof.
3. The lightweight and high-elastic vibration absorption assembly according to claim 2, wherein the enclosure barrel is formed of one of a rubber material and a plastic material.
4. The lightweight and high-elastic vibration absorption assembly according to claim 1, wherein the vibration-absorption blocks are each combined with an internally-mounted spring arranged in an interior space thereof.
5. The lightweight and high-elastic vibration absorption assembly according to claim 4, wherein the internally-mounted spring comprises a helical spring.
6. The lightweight and high-elastic vibration absorption assembly for a bike saddle according to claim 1, wherein the vibration-absorption blocks are each formed therein with an enclosed hollow air chamber.
7. The lightweight and high-elastic vibration absorption assembly for a bike saddle according to claim 1, wherein the two vibration-absorption blocks are connected via a coupling portion that couples the two vibration-absorption blocks to each other.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] The present invention will be apparent to those skilled in the art by reading the following description of preferred embodiments of the present invention, with reference to the attached drawings, in which:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
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[0024] In the instant embodiment, the vibration-absorption block 4 is formed of a plurality of foamed units 42 that are arranged adjacent to and bonded with each other to form a solid form of vibration-absorption block 4. Each of the foamed units 42 comprises, formed in an interior thereof, with a plurality of foaming pores 43. In actual fabrication, fabrication of the foamed unit 42 can be done with for example foaming of a thermoplastic polyurethane polymer material so as to form, in the interior of the foamed unit 42, a plurality of foaming pores 43, thereby providing a unitary particle having a light weight and a property of high elasticity. Then, a suitable adhesive material is used to adhesively bond a number of the foamed units 42 together or heat is applied to melt surfaces of the foamed units 42 to have the adjacent ones of the foamed units 42 bonded to each other through the bonding portions 44 therebetween and shaped to form a desired configuration of the block to thereby provide the vibration-absorption block 4.
[0025] To mount the vibration-absorption block 4 to the saddle 1, the bracket 2, and the support base 3, a fastening member 5 is received through a through hole 31 of the support base 3 and a central hole 41 of the vibration-absorption block 4 to thereby fix to an underside positioning hole 15 of the saddle 1 thereby securely position the vibration-absorption block 4 between the support base 3 and the bottom of the saddle 1.
[0026] Since the vibration-absorption block 4 is formed of a plurality of foamed units 42 and since each of the foamed units 42 is formed, in the interior thereof, with a plurality of foaming pores 43, when the sitting surface 11 of the saddle 1 receives a pressing force P acting thereon in the vertical direction, the top surface and the bottom surface of the vibration-absorption block 4 are acted upon by the pressing force P and thus compressed and undergoing temporary deformation to allow the vibration-absorption block 4 to absorb the pressing force P. The pressing force P is removed, the vibration-absorption block 4 restores back to the original configuration.
[0027] In addition to the pressing force P acting on the saddle 1 in the vertical direction, there may be a pushing force in a direction other than the vertical direction. Since in this invention, the fastening member 5 is received through the through hole 31 of the support base 3 and the central hole 41 of the vibration-absorption blocks 4 to get fixed to the underside positioning hole 15 of the saddle 1, it is possible to constrain the pushing force acting in a non-vertical direction by the fastening member 5. Further, in case the pressing force P acting in the vertical direction to the vibration-absorption block 4 is excessively large, since the fastening member 5 is received, in a movable manner, through the through hole 31 of the support base 3, the fastening member 5 of which a top end is fixed to the underside positioning hole 15 of the saddle 1 to serve as a fixed supporting point is allowed to have a bottom end thereof to move upward or downward according to the magnitude of the pressing force.
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[0033] Although the present invention has been described with reference to the preferred embodiments thereof, it is apparent to those skilled in the art that a variety of modifications and changes may be made without departing from the scope of the present invention which is intended to be defined by the appended claims.