FLUID DRIVING DEVICE, MOTOR ASSEMBLY AND CENTRIFUGAL FRICTION CLUTCH THEREOF
20170058905 ยท 2017-03-02
Inventors
- Yue LI (Hong Kong, CN)
- Li Sheng LIU (Shen Zhen, CN)
- Yong WANG (Shen Zhen, CN)
- Ya Ming ZHANG (Shen Zhen, CN)
Cpc classification
F16D43/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D43/215
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D43/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D43/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D25/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D2043/145
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D43/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/282
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02K7/14
ELECTRICITY
International classification
F04D25/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A centrifugal friction clutch is provided which includes a first friction member to be fixed on a rotary shaft; a support portion to be fixed on the rotary shaft; a centrifugal device disposed on the support portion, the centrifugal device including a cam portion and a centrifugal arm extending the cam portion, the cam portion being rotating relative to the support portion when the centrifugal arm moves; and a friction connecting member disposed between the first friction member and the support portion. When the support portion rotates along with the rotary shaft, a free end of the centrifugal arm moves radially outwardly under a centrifugal force and drives the cam portion to rotate, the cam portion urges the friction connecting member toward the first friction member when the cam portion rotates.
Claims
1. A centrifugal friction clutch comprising: a first friction member to be fixed on a rotary shaft; a support portion to be fixed on the rotary shaft; a centrifugal device disposed on the support portion, the centrifugal device comprising a cam portion and a centrifugal arm extending from the cam portion, the cam portion being rotating relative to the support portion when the centrifugal aim moves; and a friction connecting member disposed between the first friction member and the support portion, wherein when the support portion rotates along with the rotary shaft, a free end of the centrifugal arm moves radially outwardly under a centrifugal force and drives the cam portion to rotate, the cam portion urges the friction connecting member toward the first friction member when the cam portion rotates.
2. The centrifugal friction clutch of claim 1, wherein the friction connecting member comprises a second friction member connected thereto, and the second friction member is configured to abut against the cam portion.
3. The centrifugal friction clutch of claim 1, wherein the centrifugal friction clutch further comprises an elastic member for applying a pulling force to the centrifugal arm to move the centrifugal arm toward a central axis of the support portion.
4. The centrifugal friction clutch of claim 3, wherein there is a plurality of said centrifugal devices arranged on the support portion.
5. The centrifugal friction clutch of claim 3, wherein the elastic member is an elastic ring attached around a radially outer side of the centrifugal arm.
6. The centrifugal friction clutch of claim 5, wherein the radially outer side of the centrifugal arm forms a receiving slot, and the elastic member is received in the receiving slot.
7. The centrifugal friction clutch of claim 1, wherein the centrifugal friction clutch further includes a loading connecting member fixedly connected relative to the friction connecting member.
8. A motor assembly comprising a single phase motor and a centrifugal friction clutch according to claim 1.
9. A fluid driving device comprising an impeller and a motor assembly according to claim 8.
10. The fluid driving device of claim 9, wherein the motor assembly further comprises a position-limiting member disposed on the rotary shaft of the motor to limit axial movement of the impeller, and the position-limiting member is disposed at one side of the centrifugal friction clutch opposite from a main body of the motor.
11. The fluid driving device of claim 9, wherein the fluid driving device is a blower.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly describe the technical solutions in the prior art or the embodiments of the present invention, the accompanying drawings to be used in the descriptions of the prior art or the embodiments are briefly introduced as follows. Obviously, the following accompanying drawings just illustrate some embodiments of the present invention, and people skilled in the art can obtain other drawings from these drawings without paying creative efforts.
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0024] The present invention discloses a centrifugal friction clutch which reduces the rotational inertia and startup load applied to the rotary shaft, reduces the vibrational noises and avoids the damage caused by motor startup failure. The present invention further discloses a motor assembly and a blower employing the above centrifugal friction clutch.
[0025] The technical solutions of the embodiments of the present invention will be clearly and completely described as follows with reference to the accompanying drawings. Apparently, the embodiments as described below are merely part of, rather than all, embodiments of the present invention. Based on the embodiments of the present disclosure, any other embodiment obtained by a person skilled in the art without paying any creative effort shall fall within the protection scope of the present invention.
[0026]
[0027] The centrifugal friction clutch in accordance with the embodiment of the present invention includes a first friction member 21, a friction connecting member 22, a support portion 23, a centrifugal device 24 and a support shaft 25.
[0028] The first friction member 21 and the support portion 23 are fixed on the rotary shaft 11 of the motor 1. The centrifugal device 24 includes a cam portion 241 and a centrifugal arm 242 fixedly connected with the cam portion 241. The cam portion 241 is hinged to the support portion 23 through the support shaft 25, such that the cam portion 241 is capable of rotating about an axis of the support shaft 25. A highest point of the cam portion 241 corresponds to a location of an outer surface of the cam portion 241 that is spaced from an axis of rotation of the cam portion by a maximal distance. At an initial state, the highest point of the cam portion 241 is located at one side of the axis of the support shaft 25 away from a center of the support portion 23. The friction connecting member 22 is disposed between the first friction member 21 and the support portion 23. Through this configuration, when the support portion 241 rotates along with the rotary shaft, a free end of the centrifugal arm 242 of the centrifugal device 24 moves radially and outwardly under a centrifugal force and, at the same time, drives the cam portion 241 to rotate. When rotating, the cam portion 241 urges the friction connecting member 22 toward the first friction member. The friction connecting member 22 is a connecting member that is directly or indirectly fixedly connected with the impeller 3. Alternatively, the friction connecting member 22 and the impeller 3 are formed into an integral structure, or the friction connecting member 22 acts directly as the impeller 3, in which case only a circumferential positioning between the friction connecting member 22 and the impeller 3 needs to be ensured.
[0029] In the centrifugal friction clutch of the embodiment of the present invention, at startup of the motor 1, the first friction member 21 and the support portion 23 rotate along with the rotary shaft 11. When the rotational speed of the rotary shaft 11 is low, the free end of the centrifugal arm 242 of the centrifugal device 24 experiences a small radial outward displacement because the free end is subject to a small centrifugal force, such that the cam portion 241 rotates a small angle relative to the support portion 23. Therefore, the urging force of the cam portion 241 applied to the friction connecting member 22 is small and, accordingly, the pressing force between the friction connecting member 22 and the first friction member 21 is small, such that a small frictional force is generated between the friction connecting member 22 and the first friction member 21. In addition, the impeller 3 and the friction connecting member 22 are connected and circumferentially positioned relative to teach other, such that the friction connecting member 22 slides relative to the first friction member 21 (and the rotary shaft 11). As the rotational speed of the rotary shaft 11 increases, the centrifugal force applied to the centrifugal arm 242 of the centrifugal device 24 significantly increases, and the radial outward displacement of the centrifugal arm 242 increases under the centrifugal force, which drives the cam portion 241 to rotate about the support shaft 25 at the same time. Because the highest point of the cam portion 241 is located at one side of the axis of the support shaft 25 away from the center of the support portion 23, the rotation of the cam portion 241 causes the highest point of the cam portion 241 moves toward the friction connecting member 22, thus progressively increasing the urging to the friction connecting member 22 and hence increasing the pressing force of the cam portion 241 applied to the friction connecting member 22. In addition, the pressing force is transmitted from the friction connecting member 22 to the first friction member 21, which effectively increases the frictional force between the friction connecting member 22 and the first friction member 21. As the rotational speed of the motor 1 increases, the pressing force that the cam portion 241 applies to the friction connecting member 22 progressively increases, and the frictional force between the friction connecting member 22 and the first friction member 21 also progressively increases. When the frictional force becomes large enough so that the friction connecting member 22 is driven by the first friction member 21 to rotate synchronously, i.e. the impeller 3 and the first friction member 21 become stationary relative to each other, the rotary shaft 11 drives the loading wheel 26 to rotate at the same speed. By means of the above configuration, the frictional force between the friction connecting member 22 and the first friction member 21 is small at startup of the motor 1 (the rotational speed of the rotary shaft 11 is low). Because the impeller 3 is stationary at the startup of the motor 1, the first friction member 21 and the friction connecting member 22 form a sliding friction pair. Because the impeller 3 and the friction connecting member 22 are connected and circumferentially positioned relative to each other, a relative sliding movement takes place between the first friction member 21 and the impeller 3. As the rotational speed of the rotary shaft 11 of the motor 1 increases, the highest point of the cam portion 241 moves in a direction toward the friction connecting member 22, thus progressively increasing the frictional force between the friction connecting member 22 and the first friction member 21. The amount of relative sliding movement between the first friction member 21 and the impeller 3 decreases until the first friction member 21 and the impeller 3 become stationary relative to each other, thereby achieving the progressive increase of the rotational speed of the impeller 3. In the centrifugal friction clutch of the embodiment of the present invention, the cam portion 241 of the centrifugal device 24 applies the pressing force to the friction connecting member 22, and this pressing force is proportional to the centrifugal force of the centrifugal arm 242. Therefore, the frictional force between the friction connecting member 22 and the first friction member 21 is proportional to a square of the rotational speed of the rotary shaft 11. When at low speed (startup of the motor 1), the friction connecting member 22 and the first friction member 21 slide relative to each other, such that the impeller 3 and the first friction member 21 slide relative to each other, which reduces the rotational inertia and startup load torque applied to the rotary shaft 11, reduces the vibration noises at startup of the motor 1, and avoids the startup failure of the motor 1.
[0030] In order to increase the frictional force applied to the friction connecting member 22, the friction connecting member 22 of the centrifugal friction clutch of the embodiment of the present invention includes a second friction member 28 fixed thereto. The cam portion 241 and the second friction member 28 directly contact with each other. As the cam portion 241 rotates, the frictional force between the second friction member 28 and the friction connecting member 22 steadily increases, thus increasing the frictional force applied to the friction connecting member 22.
[0031] As shown in
[0032] In this embodiment, there is a plurality of the centrifugal devices 24 uniformly arranged on the support portion 23. By means of the above configuration, multiple centrifugal devices 24 uniformly apply the pressing force to the friction connecting member 22, which increases the uniformity of the distribution of the force applied to the friction connecting member 22 and the first friction member 21. In this embodiment, the number of the centrifugal devices 24 is four, with two adjacent centrifugal devices 24 spaced circumferentially by an angle of 90. Alternatively, the number of the centrifugal devices 24 can also be another value such as three, two, or more than five, which are not described herein one by one.
[0033] In another embodiment, a plurality of the elastic members 27 may be disposed in a one-to-one correspondence with the multiple centrifugal arms 242. If the elastic member 27 is a spring, one end of the spring is connected with the support portion 23, and the other end is connected with one corresponding centrifugal arm 242. In this embodiment, in order to simplify the structure, there is only one elastic member 27. As shown in
[0034] A receiving slot 2421 is formed in the outer side of the centrifugal arm 242, and the elastic member 27 is received in the receiving slot 2421. The presence of the receiving slot 2421 effectively increases the stability of the connection between the elastic member 27 and the centrifugal arm 242 and prevents falling off of the elastic member 27.
[0035] The centrifugal friction clutch of the embodiment of the present invention further includes a loading wheel 26 fixedly connected with the friction connecting member 22. That is, in this embodiment, the friction connecting member 22 and the impeller 3 are indirectly fixed through the loading wheel 26.
[0036] Understandably, the friction connecting member 22 and the loading wheel 26 may be connected with bolts. When the cam portion 241 exerts the pressing force to the friction connecting member 22, the friction connecting member 22 moves in a direction away from the loading wheel 26. Alternatively, the friction connecting member 22 may also be made from a flexible plate to increase the frictional force between the friction connecting member 22 and the first friction member 21.
[0037] In order to ensure the circumferential positioning between the loading wheel 26 and the impeller 3, the loading wheel 26 is formed with latching grooves 27 for latching with the impeller 3. Alternatively, circumferential positioning between the loading wheel 26 and the impeller 3 may also be achieved by using bolts, pins, rivets or adhesive.
[0038] As shown in
[0039] As shown in
[0040] Alternatively, the loading wheel 26 and the impeller 3 may also be integrally formed.
[0041] One embodiment of the present invention further provides a motor assembly including a single phase motor 1 and a centrifugal friction clutch 2. The centrifugal friction clutch 2 is any one of the above-described centrifugal friction clutches. Since the above-described centrifugal friction clutches achieve the above-described technical results, the motor assembly employing the above-described centrifugal friction clutch can also achieve the same technical results, which are not described further herein one by one.
[0042] In order to facilitate the axial positioning of the impeller, the motor assembly in accordance with the embodiment of the present invention further includes a position-limiting member 12 disposed on the rotary shaft 11 of the motor 1 to limit axial movement of the impeller 3. The position-limiting member 12 is disposed at one side of the centrifugal friction clutch 2 opposite from a main body of the motor 1.
[0043] As shown in
[0044] As shown in
[0045] All embodiments in the specification are described in a progressive way, each embodiment mainly describes the differences from other embodiments, and the same and similar parts among the embodiments can be referenced mutually.
[0046] Although the invention is described with reference to one or more embodiments, the above description of the embodiments is used only to enable people skilled in the art to practice or use the invention. It should be appreciated by those skilled in the art that various modifications are possible without departing from the spirit or scope of the present invention. The embodiments illustrated herein should not be interpreted as limits to the present invention, and the scope of the invention is to be determined by reference to the claims that follow.