This application claims priority of Chinese Utility Model Patent Application No. 201920715747.3, filed on May 17, 2019.
The disclosure relates to a lifting device, and more particularly to a lifting device drivable to move a carrier.
Referring to
Therefore, an aspect of the disclosure is to provide a lifting device that can alleviate the drawback of the prior art.
The lifting device is adapted for being connected between a seat body and a carrier, and is drivable to move the carrier upward or downward relative to the seat body.
The lifting device includes a guide unit, a support unit and a lifting unit. The guide unit is adapted for being connected between the seat body and the carrier. The guide unit is extendable and retractable along a top-bottom direction and defines an inner space extending along the top-bottom direction. The support unit is disposed in the inner space and includes a securing connector, a support tube and a support member. The securing connector is adapted for being fixed to the seat body and is made of an elastic material. The support tube has a bottom portion connected to the securing connector, and extends along the top-bottom direction. The support member is disposed at a top portion of the support tube and has a connecting hole which is spatially communicated with the inside of the support tube. The lifting unit includes a first rod-actuating screw member and a threaded rod unit. The first rod-actuating screw member is disposed on the support member inside the inner space, and has a first threaded hole aligned with the connecting hole. The threaded rod unit is adapted for being connected to the carrier and includes a first threaded rod which extends through the first threaded hole into the support tube, and which is threadedly engaged with the first threaded hole of the first rod-actuating screw member in such a manner that the first threaded rod is rotatable by an external force and movable along the top-down direction. All of the first rod-actuating screw member, the support member and the guide unit have identical cross sectional shapes which are non-circular.
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 disclosure 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
Since the structures of the lifting devices 100 are identical to each other, only one of the lifting devices 100 is described hereinafter for the sake of brevity.
Referring to
The support unit 2 is disposed in the inner space 10, and includes a securing connector 21, a support tube 22 and a support member 23. The securing connector 21 is adapted for being fixed to the seat body 200, and is made of an elastic material. In this embodiment, the securing connector 21 is made of polyamide 6 (also known as PA 6 or nylon 6). The support tube 22 has a bottom portion that is connected to the securing connector 21, and extends along the top-bottom direction (D1). The support member 23 is disposed at a top portion of the support tube 22, and has a connecting hole 231 which is spatially communicated with the inside of the support tube 22.
In this embodiment, the support unit 2 further includes two first fasteners 24, a securing plate 25 and a second fastener 26. The securing connector 21 has a main body portion 211 that is disposed inside the support tube 22 in abutment with an inner tube surface 221 of the support tube 22, a flange portion 212 that protrudes laterally from the main body portion 211 and is disposed outwardly from the support tube 22 to abut against a bottom edge of the support tube 22, and an extending portion 213 that extends downwardly from a bottom portion of the main body portion 211. The first fasteners 24 secure the main body portion 211 of the securing connector 21 to the support tube 22. In this embodiment, the two first fasteners 24 are screws. However, the number of the first fasteners 24 may be varied to be one or more than two, based on practical requirements. The securing plate 25 is disposed below the support tube 22 to abut against the securing connector 21, is adapted for being connected to the seat body 200 by screws or bolts (not shown), and has a through hole 251 to receive and engage with the extending portion 213 of the securing connector 21. The second fastener 26 extends into the extending portion 213 of the securing connector 21 to secure the securing connector 21 to the securing plate 25.
The lifting unit 3 includes a first rod-actuating screw member 31 and a threaded rod unit 32. The first rod-actuating screw member 31 is disposed on the support member 23 inside the inner space 10, and has a first threaded hole 311 aligned with the connecting hole 231 of the support member 23. The threaded rod unit 32 is adapted for being connected to the carrier 300, and includes a first threaded rod 321 which is rotatably connected to the carrier 300, which extends through the first threaded hole 311 into the support tube 22, and which is threadedly engaged with the first threaded hole 311 of the first rod-actuating screw member 31 in such a manner that the first threaded rod 321 is rotatable by an external force (i.e., a driving force from one of the driving units 400) and is movable along the top-bottom direction (D1). In this embodiment, the threaded rod unit 32 of the lifting unit 3 further includes an annular sleeve 322 that is sleeved on a bottom portion of the first threaded rod 321 and that is disposed between the first threaded rod 321 and the support tube 22 to prevent the first threaded rod 321 of the threaded rod unit 32 from colliding the support tube 22.
Referring to
Referring to
Moreover, since the securing connector 21 is elastic, it is capable of absorbing the vibration of the support tube 22 and the support member 23, thereby reducing the stresses that cause the support member 23 to hit the second guide tube 12 and hence the noises resulting from the rubbing between the guide sleeve 13 and the guide tube 12. In addition, the elastic securing connector 21 allows the support tube 22 to slightly tilt about the bottom end of the support tube 22 as a fulcrum when being subjected to a load, thereby compensating assembly tolerance between the support tube 22 and the first threaded rod 321. The smoothness of the operation of the lifting device 100 can thus be improved.
In the second embodiment, the support unit 2 includes four of the first fasteners 24, and the support unit 2 further includes a nut 27 that is connected to the extending portion 213 of the securing connector 21 for the second fastener 26 to be fixed to the nut 27.
In the second embodiment, the first threaded rod 321′ of the threaded rod unit 32′ of the lifting unit 3′ is hollow, and has an inner surface 325 that defines a plurality of guiding grooves 326 each extending along the top-bottom direction (D1). The lifting unit 3′ further includes a second rod-actuating screw member 33 that is fixed to a top portion of the first threaded rod 321′, that is capable of permitting rotation of the first threaded rod 321′, and that has a second threaded hole 331. The threaded rod unit 32′ further includes a second threaded rod 323 and a coupling member 324. The second threaded rod 323 of the threaded rod unit 32′ extends into the first threaded rod 321′ and threadedly engages the second threaded hole 331 of the second rod-actuating screw member 33, and has atop end adapted for being connected to the carrier 300. The coupling member 324 of the threaded rod unit 32′ is connected to a bottom end of the second threaded rod 323 and has a plurality of protruding blocks 327 which are respectively and slidably engaged with the guiding grooves 326 of the first threaded rod 321′. In this embodiment, the lifting unit 3 further includes a ball bearing 34 that is connected between the second rod-actuating screw member 33 and the first threaded rod 321′ to permit rotation of the first threaded rod 321′ without translational motion relative to the second rod-actuating screw member 33.
When the second embodiment is in use, the user can operate the driving unit 400 to drive the second threaded rod 323 to rotate relative to the second rod-actuating screw member 33 and to drive rotation of the coupling member 324, which in turn cause the first threaded rod 321′ to rotate, such that the first threaded rod 321′ and the second threaded rod 323 move telescopically along the top-bottom direction (D1). Therefore, the lifting device 100 changes between a lowered state (see
All of the guide unit 1, the support member 23 of the support unit 2, and the first rod-actuating screw member 31 and the second rod-actuating screw member 33 of the lifting unit 3′ have identical cross sectional shapes which are non-circular, and, in this embodiment, all of them are rectangular in cross section.
The second embodiment has the following additional advantages. Firstly, the nut 27 connected to the extending portion 213 of the securing connector 21 can prevent the securing connector 21 and the second fastener 26 from becoming loose. Secondly, because the first threaded rod 321′ and the second threaded rod 323 move upward simultaneously, the lifting speed of the lifting device 100 can be increased.
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 maybe 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 embodiment 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 |
---|---|---|---|
201920715747.3 | May 2019 | CN | national |