1. Field of the Invention
The present invention relates to a suspension type swing mechanism, especially to a suspension type swing mechanism connected between a fastening base and a hung article, the suspension type swing mechanism is capable of enabling to the hung article to swing in a to-and-fro manner at a pre-determined angle.
2. Description of Related Art
A swing mechanism is commonly seen in our lives, for example a cooling fan or a hot air fan, which is a design of to-and-fro swinging according to a pre-determined angle. On the other hand, fixing an article with a suspension means is often designed for corresponding to the installation environment.
Take a cool or hot air fan for instance, a conventional to-and-fro swing mechanism generally comprises an upright supporter, and a casing body equipped with an axial flow or centrifugal type fan and pivoted on the supporter, and meanwhile an eccentric output of a motor drives a crank set then a pivotal shaft is driven, such that the casing body capable of outputting cool or hot air can be to-and-fro swung at a pre-determined angle.
The mentioned to-and-fro swing mechanism has been developed for years, and the mechanism can achieve the basic function of driving a casing body to swing; but one disadvantage is that when the casing body capable of outputting cold or hot air is operated, the swing motion often exceeds the outlines of the supporter; as such, while being installed and positioned, a certain space has to be reserved for allowing the casing body to to-and-fro swing. Moreover, in an open or public location, the mentioned to-and-fro swing mechanism may generate some safety issues.
The Taiwan Utility Model Publication No. M274459 (corresponding to the U.S. Pat. No. 7,244,149 and the China Patent No. 200520119279.1) titled in “Suspension type oscillation mechanism” issued the present applicant has over come several shortages of conventional to-and-fro swing mechanism. With the suspension type swing mechanism, a hung article can be to-and-fro swung at a pre-determined angle inside a supporter set, so the swing motion is confined in the supporter set due to the suspension means, and no space is required to be reserved for the to-and-fro swing motion of the casing body, so operation safety is provided and consumers have positive responses to the final products.
One primary object of the present invention is to provide a suspension type swing mechanism, wherein a hung object is installed at the bottom of a fastening base, so the hung object is able to be to-and-fro swung in a supporter according to a pre-determined angle, and the production cost is greatly reduced and the operation safety is enhanced.
For achieving the mentioned object, one solution according to the present invention is to provide a suspension type swing mechanism, which comprises:
a fastening base, the circumference thereof is radially pivoted with a supporter, and the bottom thereof is installed with an axial hole;
a swing member, the bottom thereof is connected to the top of a hung article, and the swing member is installed with an axially-extended axial tube which passes through the axial hole and penetrates into the fastening base;
a transmission device, a motor thereof is fixed at the periphery of the axial hole, an output shaft of the motor is connected to the inner end of a crank set, the outer end of the crank set is provide with a sleeve member sleeved on the axial tube for forming a synchronous motion; and
an axial rotation device, which further includes:
a first rolling mechanism, wherein a bottom ring is installed at the bottom of the swing member so the outer end of the bottom ring is adjacent to the hung article and is linked to swing with the swing member; a top ring is provided and combined on top of the bottom ring, so the top of the top ring is adjacent to the fastening base, the two rings are passed through by the axial tube, and engaging surfaces of the two rings are respectively and oppositely formed with an annular rail for receiving a plurality of rolling balls and allowing the rolling balls to roll therein; and
a second rolling mechanism, wherein an outer ring is fixed in the axial hole, so the bottom surface of the outer ring is adjacent to and presses against the top ring, an inner ring is provided and combined on top of the outer ring, so the inner ring is sleeved with the axial tube, and engaging surfaces of the two rings are respectively and oppositely formed with an annular rail for receiving a plurality of rolling balls and allowing the rolling balls to roll therein; with the output of the motor, the sleeve member at the output end of the crank set drives the axial tube and the hung article to to-and-fro swing at a pre-determined angle.
According to following embodiments of the present invention, the suspension type swing mechanism can be adopted in, e.g. but not limited to, a hot air fan, especially a ceramic electric heating fan; alternatively, a cooling fan, fan, air filter, light device, photographic device, monitor, etc. can also adopt the suspension type swing mechanism provided by the present invention.
For fully disclosing the characteristics of the present invention, please referring to
As shown from
The fastening base 1 is a base member wherein the top thereof being opened for the installation of transmission device 4. The circumference of the fastening base 1 is radially and oppositely installed with a pair of pivot holes 11 for being combined to the supporter 2, such that the fastening base 1 is installed and fastened on the top of the supporter 2. Moreover, for forming a suspending function, the bottom of the fastening base 1 is provided with an axial hole 12 for allowing an axial tube 32 of the swing member 3 to penetrate so as to be installed on the transmission device 4, such that the swing member 3 is capable of to-and-fro swinging at a pre-determined angle.
The opening on the top of the fastening base 1 is sealed by a top cover 13. The interior of the top cover 13 is provided with a conventional control circuit board (not shown) which can be controlled by a button set 131 exposed outside the top cover 13, for the controls of power ON/OFF, setting operation timing, adjusting wing speed, switching hot air modes and whether turning on the swinging function; the mentioned controls for the hot air fan are commonly known by skilled people in the art so no further illustration is provided.
The supporter 2 is a rack member pivoted to the fastening base 1 for regulating the hung article 6, which is suspended below the fastening base 1, to be confined in a space surrounded by the supporter 2. As shown in
The swing member 3 is installed on the top of the hung article 6, as shown in
The transmission device 4 is installed at the periphery of the axial hole 12 of the fastening base 1. The transmission device 4 includes a motor 41 e.g. a synchronous motor, an output shaft of the motor 41 is connected to the inner end of a crank set 42, and the outer end of the crank set 42 is installed with a sleeve member 43. The sleeve member 43 is a noncircular aperture and sleeved at a passive portion 321 correspondingly formed at the exterior of the axial tube 32. As such, when the motor 41 is operated, the sleeve member 43 at the output end of the crank set 42 drives the axial tube 32 of the swing member 3 to to-and-fro swing at a pre-determined angle.
The axial rotation device 5 is provided for reducing the friction and wearing between the fastening base 1 and the swing member 3, meanwhile the operation of swing member 3 is enhanced to be smoother. As shown in
A bottom ring 511 of the first rolling mechanism 51 is installed in the ring hole 622, so the bottom surface of the bottom ring 511 is adjacent to the bottom connection sheet 31 of the swing member 3 and is linked to be swung; and a top ring 512 is provided above the bottom ring 511, wherein engaging surfaces of the two rings 511, 512 are respectively and oppositely installed with an annular rail 53 for receiving plural rolling balls 54 and allowing the rolling balls 54 to roll therein. Moreover, the circumference of the bottom ring 511 is vertically installed with a block wall 511a abutted against the outer periphery of the top ring 512 for preventing the top ring 512 from being radially released.
An outer ring 521 of the second rolling mechanism 52 is installed in the axial hole 12, and a plurality of convex lugs 521b are radially extended from the top of a block wall 521a vertical to the circumference of the outer ring 521, and each convex lug 521b is fixed on convex columns preset at the periphery of the axial hole 12, so the bottom surface of the outer ring 521 is adjacent to and presses against the top ring 512; then an inner ring 522 is combined on top of the outer ring 521, wherein engaging surfaces of the two rings 521, 522 are respectively and oppositely installed with an annular rail 53 for receiving plural rolling balls 54 and allowing the rolling balls 54 to roll therein. The inner ring 522 is in a reversed-L shape so the inner diameter being able to be sleeved in the axial tube 32 and linked to swing therewith. Lastly extending parts 551 at two ends of a pressing ring sheet 55 are locked on the convex columns preset at the periphery of the axial hole 12, such that the pressing ring sheet 55 presses against the engaging surfaces on the tops of the inner and outer rings 522, 521, so the inner ring 522 is prevented from being axially released.
Beside the rolling balls 54, the first and second rolling mechanisms 51, 52 are formed through plastic injection molding, and the interiors of the two rolling mechanisms are not installed with retainers which serve to regulate balls rolling inside a bearing, so the production cost can be greatly saved; and with the installation of the two rolling mechanisms, the conventional expensive bearing can be replaced.
When the axial tube 32 passes through the first and second rolling mechanisms 51, 52, and the passive portion 321 of the axial tube 32 is sleeved with the sleeve member 43 at the output end of the crank set 42, lastly an end sealing member 44, e.g. a nut, is connected to a thread connection portion 322 formed on the top of the axial tube 32, so the sleeve member 43 is prevented from being axially released.
The hung article 6 is composed through a front shell 61 engaging with a rear shell 62; as mentioned above, the engagement ring 621 on the top of the rear shell 62 is connected to the swing member 3, and the interior of the hung article 6 is installed with a device, e.g. but not limited to a ceramic electric heating device 63. Wires of the ceramic electric heating device 63 are passed through the axial tube 32 and connected to the circuit board inside the top cover 13.
According to the present invention, a partition member 7 can be further provided, the outer end thereof is fixed at the convex columns installed at the periphery of the axial hole 12 formed inside the fastening base 1, an partition tube 71 axially extended at the inner end penetrates in the axial tube 32, so when the transmission device 4 is operated and the axial tube 32 of the swing member 3 are to-and-fro swung, the wires are prevented from rubbing against the inner wall of the axial tube 32.
As shown in
As such, when the motor 41 is operated, the sleeve member 43 at the output end of the crank set 42 is to-and-fro swung at a pre-determined angle, because the axial tube 32 is driven by the sleeve member 43, the hung article 6 connected to the swing member 3 is also to-and-fro swung at a pre-determined angle with respect to the fastening base 1 and the supporter 2.
As shown in
The advantages of the present invention are as followings: the top of the supporter is directly pivoted to the fastening base, and the transmission device inside the fastening base is connected to the hung article through the swing member, and the first rolling mechanism of the axial rotation device is installed between the hung article and the fastening base, and the second rolling mechanism is installed between the fastening base and the swing member. As such, the hung article is enabled to swing at a pre-determined angle in the fastening base and the supporter, and the swing motion is restrained within the supporter due to the suspension means. Moreover, the present invention utilizes the first and second rolling mechanisms to replace expensive radial and axial bearings, and the swing member is able to smoothly operate without increasing friction and wearing, and the production cost can be greatly reduced and the operation safety is enhanced.
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.
Number | Date | Country | Kind |
---|---|---|---|
099205522 | Mar 2010 | TW | national |