1. Field of the Invention
The present invention relates to an adjustable lift support apparatus, and more particularly to an adjustable lift support apparatus capable of preventing the function from failure after being used for a span of time.
2. Description of the Prior Art
Recently, flat panel displays have become increasingly popular substitutes for projection devices and cathode ray tube (CRT) displays. The flat panel display, e.g. liquid crystal display (LCD), is typically mounted on a lift apparatus to be lifted or lowered.
Ideally, the height of the flat panel display can be adjusted for optimum viewing. Various prior arts with regard to the lift apparatus have been used, such as mechanical ball track with constant force spring, mechanical linkages with springs, and so on. However, because the torsion of the springs of the above-mentioned lift apparatus always maintains constant and cannot be adjusted, it is inconvenient for various users. Furthermore, after the lift apparatus is used for a span of time, the spring may lose its elasticity due to the fatigue. Moreover, the cost of the above-mentioned lift apparatus is more expensive, and the structure is more complicated.
Therefore, the objective of the present invention is to provide an adjustable lift support apparatus to solve the above-mentioned problems.
The objective of the present invention is to provide an adjustable lift support apparatus utilizing at least one rack together with a corresponding elastic plate to fix a support of the apparatus at a desired height, such that the external force applied to lift or lower the support is adjustable. Furthermore, according to the present invention, the adjustable lift support apparatus won't lose its function after being used for a span of time. Moreover, the cost of the present invention is lower and the structure is simpler than the prior art.
According to a preferred embodiment of the present invention, the adjustable lift support apparatus includes a base, a sleeve, at least one meshing device, a shaft, and a support. The sleeve is attached onto the base via a tail end of the sleeve and has an inner surface. At least one groove is formed on the inner surface from a head end of the sleeve along a first axial direction. Each meshing device corresponds to one of the at least one groove, is mounted within the corresponding groove, and includes a flexible protrusion disposed toward the first axial direction. The shaft is inserted into the sleeve via a first end of the shaft and has an outer surface. At least one rack, consisted of a plurality of teeth, is provided along a second axial direction. Each rack respectively corresponds to one of the at least one groove and is partially disposed within the corresponding groove, such that the flexible protrusion of the corresponding meshing device is meshed between two neighboring teeth of the at least one rack. The support is attached onto a second end of the shaft.
According to the above-mentioned adjustable lift support apparatus, the lifting and the lowering of the support together with the shaft is actuated by applying an external force on the support or the shaft, so as to make each rack move with respect to the flexible protrusion of the corresponding meshing device until the flexible protrusion of the corresponding meshing device is meshed between the two neighboring teeth of the at least one rack at a desired height.
Accordingly, the adjustable lift support apparatus of the present invention utilizes at least one rack together with a corresponding elastic plate to fix a support of the apparatus at a desired height, such that the external force applied to lift or lower the support is adjustable. Furthermore, according to the present invention, the adjustable lift support apparatus won't lose its function after being used for a span of time. Moreover, the cost of the present invention is lower and the structure is simpler than the prior art.
The advantage and spirit of the invention may be understood by the following recitations together with the appended drawings.
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Referring to
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According to the above-mentioned adjustable lift support apparatus 10, the lifting and the lowering of the support 18 together with the shaft 16 is actuated by applying an external force on the support 18 or the shaft 16 to make each rack 20 move with respect to the flexible protrusion 140 of the corresponding meshing device 14, until the flexible protrusion 140 of the corresponding meshing device 14 is meshed between the two neighboring teeth of the rack 20 at a desired height. If the gap, between the protruding part 1400 and the teeth meshed with the protruding part 1400, is larger, the external force applied on the support 18 may be less. On the other hand, if the gap, between the protruding part 1400 and the teeth meshed with the protruding part 1400, is smaller, the external force applied on the support 18 should be more.
Referring to
Referring to
Furthermore, according to another preferred embodiment of the present invention, the sleeve 12 may have at least one rib (not shown) formed on the inner surface 122 and the at least one rib contacts the outer surface 162 of the shaft 16, so as to reduce friction when the sleeve 12 moves with respect to the shaft 16, or the shaft 16 may have at least one rib (not shown) formed on the outer surface 162 and the at least one rib contacts the inner surface 122 of the sleeve 12, so as to reduce friction when the sleeve 12 moves with respect to the shaft 16.
According to another preferred embodiment of the present invention, the rack 20 and the shaft 16 are formed integrally.
According to another preferred embodiment of the present invention, the adjustable lift support apparatus 10 further includes a resilient member (not shown) positioned within the sleeve 12 and between the first end 160 of the shaft 16 and the base (not shown), so as to assist the shaft 16 in moving with respect to the sleeve 12. On the other hand, the resilient member may also be positioned between the inner surface 122 of the sleeve 12 and the outer surface 162 of the shaft 16, via a third end of the resilient member attached onto the inner surface 122 of the sleeve 12, and via a fourth end of the resilient member attached onto the outer surface 162 of the shaft 16, so as to assist the shaft 16 in moving with respect to the sleeve 12. The resilient member may be a spring, such as tension spring or constant force spring.
Referring to
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According to the above-mentioned adjustable lift support apparatus 30, the lifting and the lowering of the support 38 together with the sleeve 32 is actuated by applying an external force on the support 38 or the sleeve 32 to make each rack 40 move with respect to the flexible protrusion 340 of the corresponding meshing device 34, until the flexible protrusion 340 of the corresponding meshing device 34 is meshed between the two neighboring teeth of the rack 40 at a desired height.
Furthermore, according to another preferred embodiment of the present invention, the sleeve 32 may has at least one rib (not shown) formed on the inner surface 322 and the at least one rib contacts the outer surface 362 of the shaft 36, so as to reduce friction when the sleeve 32 moves with respect to the shaft 36, or the shaft 36 may has at least one rib (not shown) formed on the outer surface 362 and the at least one rib contacts the inner surface 322 of the sleeve 32, so as to reduce friction when the sleeve 32 moves with respect to the shaft 36.
According to another preferred embodiment of the present invention, the rack 40 and the shaft 36 are formed integrally.
According to another preferred embodiment of the present invention, the adjustable lift support apparatus 30 further includes a resilient member (not shown) positioned within the sleeve 32 and between the support 38 and the second end 364 of the shaft 36, so as to assist the sleeve 32 in moving with respect to the shaft 36. On the other hand, the resilient member may also be positioned between the inner surface 322 of the sleeve 32 and the outer surface 362 of the shaft 36, via a third end of the resilient member attached onto the inner surface 322 of the sleeve 32, and via a fourth end of the resilient member attached onto the outer surface 362 of the shaft 36, so as to assist the sleeve 32 in moving with respect to the shaft 36. The resilient member may be a spring, such as tension spring or constant force spring.
Compared to the prior art, the adjustable lift support apparatus of the present invention utilizes at least one rack together with a corresponding elastic plate to fix a support of the apparatus at a desired height, such that the external force applied to lift or lower the support is adjustable. Furthermore, according to the present invention, the adjustable lift support apparatus won't lose its function after being used for a span of time. Moreover, the cost of the present invention is lower and the structure is simpler than the prior art.
With the example and explanations above, the features and spirits of the invention will be hopefully well described. Those skilled in the art will readily observe that numerous modifications and alterations of the device may be made while retaining the teaching of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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093141917 | Dec 2004 | TW | national |