1. Field of Invention
The present invention relates to a spring unit, and more particularly to a spring unit which is capable of providing adjustable and nonlinear elasticity.
2. Description of Related Arts
Spring units have widely been utilized in various fields throughout the world. The question of how to control and achieve an optimal elasticity for the spring units directly affects the range of applications of the spring units. Different products have different requirements in elasticity and this depends on the circumstances in which the product operate. As a result, there is a need to have a spring unit which is capable of achieving adjustable elasticity.
An objective of the present invention is to provide spring unit which is capable of providing adjustable and nonlinear elasticity. This is accomplished by providing a reciprocating unit and a pulling string which are coupled to a compressive spring for altering an elasticity performance thereof
In one aspect of the present invention, the present invention provides:
a spring unit, comprising a compressive spring, a reciprocating unit provided underneath the compressive spring, and a connecting device provided on an upper end of the compressive spring, the reciprocating unit comprising a base, a supporting frame movably supported on the base, and a pulling string, the pulling string having an upper end connected to the connecting device, and a lower end extended to connect to the base, and extending along a central space of the compressing spring and penetrating the supporting frame to connect between the connecting device and the base for normally exerting a predetermined downward force to the upper end of the compressive spring, so that the compressive spring being normally and slightly compressed by a pre-compression force exerted by the pulling string, wherein when the compressive spring is subject to an external force, an extension of the compressive spring is non-linear and not directly proportional to the external force.
When the reciprocating device is driven to move upwardly, the lower end of the compressive spring is pushed to move upwardly, the pulling string being stretched to exert a tension as a pre-compression force to pre-compress the compressive spring, wherein when the reciprocating device is driven to move downwardly, the lower end of the compressive spring is slightly released to move downwardly, the pulling string being slightly released so that the pre-compression force exerted to the compressive spring is be slightly decreased.
When the compressive spring is subject to external force, a relationship between the extension of the compressive spring and the external force is not linear, when the external force is smaller than the pre-compression force of the pulling string, the compressive spring does not deform, when the external force is larger than the pre-compression force, the compressive spring is extended or compressed in proportional to the external force.
The reciprocating device comprises a plurality of compressive springs and a plurality of supporting frames, which are configured as follows:
(1) when the supporting frame has a relatively large top surface, the compressive springs are mounted on the supporting frame;
(2) the spring unit further comprising a coupling device provided between the compressive spring and the supporting frame wherein the compressive springs and the supporting frames are attached on the coupling device for enabling synchronized movement of the supporting frames and the compressive springs;
(3) the spring unit further comprising a plurality of coupling devices so that each compressive springs are attached on the coupling devices respectively, the coupling devices are connected to the supporting frames respectively so that each of the supporting frames is capable of moving at different attitudes for compressing the compressive springs at different levels.
The reciprocating device comprising a wide variety of structures, which include:
(1) the reciprocating device is embodied as a piston assembly which comprises the base and the supporting frame received in the base to divide the base into a upper compartment and a lower compartment, the reciprocating device further comprising a guiding valve and a connecting pipe connected to the base for allowing a predetermined amount of fluid to be filled in the base;
when the guiding valve is configured such that the fluid is filled in the upper compartment of the base, the supporting frame is driven to move upwardly with respect to the base so as to pre-compress the compressive spring by a pre-compression force, when the guiding valve is configured such that the fluid is filled in the lower compartment of the base, the supporting frame is driven to move downwardly with respect to the base so as to reduce a predetermined amount of the pre-compression force from the compressive spring, when the guiding valve stops working, the fluid stops flowing in and out of the base, the supporting frame being retained in position in the base;
(2) the base and the supporting frame are configured as a nut unit and a screw respectively;
the reciprocating device is arranged to move vertically with respect to the base through rotation of the screw with respect to the nut unit;
(3) the reciprocating device comprises at least two structural components;
the reciprocating device is arranged to move vertically with respect to the base through external force.
The advantages of the present invention is as follows: when the reciprocating device is driven to move upwardly, the lower end of the compressive spring is pushed to move upwardly, the pulling string being stretched to exert a tension as a pre-compression force to pre-compress the compressive spring, wherein when the reciprocating device is driven to move downwardly, the lower end of the compressive spring is slightly released to move downwardly, the pulling string being slightly released so that the pre-compression force exerted to the compressive spring is be slightly decreased. A user is able to conveniently adjust the elasticity of the spring unit by operating on the reciprocating device so as to facilitate widespread applications of the present invention in different fields.
In which, 1 refers to compressive spring, 2 refers to connecting device, 3 refers to pulling string, 4 refers to supporting frame, 5 refers to base, 6 refers to guiding valve, and 7 refers to connecting pipe.
Referring to
The supporting frame 4 is arranged to be selectively moved upwardly and downwardly with respect to the base 5. At default position, the supporting frame 4 is moved so that the pulling string 3 is slightly extended such that it exerts a slight compressive force toward the compressive spring 1 so as to slightly pre-compresses the compressive spring 1 from its equilibrium position. When the supporting frame 4 moves upwardly with respect to the base 5, the lower end of the compressive spring 1 also moves upwardly. This increases the compressive tension exerted by the pulling string 3 so as to further compress the compressive spring 1, and this increases the tension of the compressive spring 1. On the other hand, when the supporting frame 4 moves downwardly with respect to the base 5, the pulling string 3 is slightly extended so as to reduce the force exerted to the compressive spring 1. The result is that the tension of the compressive spring 1 decreases accordingly. With the above configuration, when the compressive spring 1 is subject to external compressive or stretching force, the relationship between the extension of the compressive spring 1 and the external force will not be linear. Specifically, when the external force is smaller than the pre-compression force of the pulling string 3, the compressive spring 1 will not deform. It is only when the external force is larger than the pre-compression force that the compressive spring 1 will be extended or compressed in proportional to the external force.
The connection between the supporting frame 4 and the compressive spring 1 may be embodied as having various configurations as described below:
First alternative: when the supporting frame 4 has a relatively large top surface, more than one compressive spring 1 may be mounted on the supporting frame 4.
Second alternative: the spring unit further comprises a coupling device provided between the compressive spring 1 and the supporting frame 4 wherein more than one compressive spring 1 and more than one supporting frame 4 may be attached on the coupling device. The configuration enables synchronized movement of several supporting frames 4 and the compressive springs 1.
Third alternative: the third alternative is similar to the second alternative except there may be a plurality of coupling devices so that each compressive spring may be attached on the corresponding coupling device which is then connected to the corresponding supporting frame 4. As such, each of the supporting frames 4 may move at different attitude for compressing the compressive springs 1 at different levels or degrees.
The reciprocating device may be embodied as having various configurations as described below:
First configuration: the reciprocating device is embodied as a piston assembly which comprises the base 5 and the supporting frame 4 received in the base 5 to divide the base 5 into a upper compartment and a lower compartment, wherein the reciprocating device further comprises a guiding valve 6 and a connecting pipe 7 connected to the base 5 for allowing a predetermined amount of fluid, such as air, to be filled in the base 5. The base has an interior cavity while the supporting frame 4 is configured as a piston. When the guiding valve 6 is configured such that fluid is filled in the upper compartment of the base 5, the supporting frame 4 is driven to move upwardly with respect to the base 5 so as to pre-compress the compressive spring 1. Conversely, when the guiding valve 6 is configured such that fluid is filled in the lower compartment of the base 5, the supporting frame 4 is driven to move downwardly with respect to the base 5 so as to release a predetermined amount of the pre-compression force from the compressive spring 1. When the guiding valve 6 stops working, the fluid will stop flowing in or out of the base 5. At this moment, the supporting frame 4 may be retained in position in the base 5 for maintaining compression status of the compressive spring 1. Moreover, the gaps between the pulling string 3 and the supporting frame 4 and the base 5 may be sealed for preventing fluid from escaping through these gaps.
Second configuration: the base 5 and the supporting frame 4 may be configured as a nut unit and a screw respectively, wherein the screw is movably engaged with the nut unit in such a manner that when the screw is driven to rotate, the screw will move upwardly or downwardly for moving the lower end of the compressive spring 1 to move in a corresponding direction so as to adjust the pre-compression force of the compressive spring 1.
Third configuration: the reciprocating device comprises at least one base 5 and one supporting frame 4.
The supporting frame 4 is movably connected to the base 5 in such a manner that the supporting frame 4 may be upwardly or downwardly moved with respect to the base 5 so as to adjust the pre-compression force exerted to the compressive spring 1.
Referring to
The present invention, while illustrated and described in terms of a preferred embodiment and several alternatives, is not limited to the particular description contained in this specification. Additional alternatives or equivalent components could also be used to practice the present invention.
Number | Date | Country | Kind |
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201210401376.4 | Oct 2012 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2013/073758 | 4/3/2013 | WO | 00 |