Heart-shaped self-locking button
09934914 ยท 2018-04-03
Assignee
Inventors
- Zhong Hui Chen (Suzhou, CN)
- Wei Ge (Tiantai, CN)
- Ling LI (Suzhou, CN)
- Song Liu (Suzhou, CN)
- Lei Tao (Shanghai, CN)
Cpc classification
International classification
Abstract
A heart-shaped self-locking button includes one housing and one push rod. The push rod is slidably arranged within the housing. A heart-shaped structure is formed on the push rod. The button includes one pin and one flexible element. One end of the pin is fixed on the housing, while the other end is fitted with the heart-shaped structure. The flexible element is arranged between the housing and the push rod and presses the pin towards the heart-shaped structure to allow the pin to be in constant contact with the heart-shaped structure. The heart-shaped structure is arranged on the push rod. Also, the flexible element between the housing and the push rod is utilized to press the pin towards the heart-shaped structure on the push rod to allow the pin to be in constant contact with the heart-shaped structure when moving.
Claims
1. A heart-shaped self-locking button, comprising: a housing having a groove formed therein; a push rod, the push-rod being slideably installed in the housing; a heart-shaped structure formed on the push rod; a pin; and an elastic element having two bases located outside of the groove and on an inner surface of the housing, each base being configured to limit movement of the elastic element in a direction perpendicular to a longitudinal axis of the groove, wherein one end of the pin is fixed to the housing and another end of the pin is configured to cooperate with the heart-shaped structure, the elastic element being disposed between the housing and the push rod and being configured to press the pin towards the heart-shaped structure so that the pin maintains contact with the heart-shaped structure.
2. The heart-shaped self-locking button of claim 1, wherein the pin includes a body, an installation part and an insertion part; the installation part is formed at the one end of the pin in a perpendicular fashion and is fixed to the housing; the insertion part is formed at 85-88 at the another end of the pin and is configured to cooperate with the heart-shaped structure; and the elastic element is configured to bear against the body and press the pin towards the push rod.
3. The heart-shaped self-locking button of claim 2, wherein the body is linear; and wherein the insertion part and the installation part extend in opposite directions from the one end and the another end of the pin.
4. The heart-shaped self-locking button of claim 2, wherein the elastic element comprises a spring plate; the spring plate is disposed in a sloping fashion between the housing and the push rod; the spring plate is configured to bear against the body and press the pin towards the push rod.
5. The heart-shaped self-locking button of claim 4, wherein the elastic element further comprises at least one connecting part located between and connecting the two bases; the connecting part is disposed in a protruding fashion on the two bases; the connecting part is in the groove; and the spring plate is disposed in a sloping fashion on the connecting part.
6. The heart-shaped self-locking button of claim 5, wherein at least one stop block is formed inside the housing; the stop block is disposed so as to be spaced apart from the inner surface of the housing; and the two bases are held between the inner surface of the housing and the stop block.
7. The heart-shaped self-locking button of claim 6, wherein a stop part is formed inside the housing; the groove extends to the stop part in an axial direction of the housing; a first connecting part is formed on the stop part; a second connecting part is formed on the bases; and the second connecting part and the first connecting part are configured to cooperate.
8. The heart-shaped self-locking button of claim 7, wherein the second connecting part is a hole structure/projection structure formed on the bases; and wherein the first connecting part is a projection structure/hole structure formed on the stop part.
9. The heart-shaped self-locking button of claim 6, wherein a stop is formed on the bases; and wherein the stop forms an interference fit with the stop block.
10. The heart-shaped self-locking button of claim 2, wherein the heart-shaped structure comprises a heart, a channel and at least two step parts; the heart including a recess; the channel being arranged to extend around the heart, and including a starting position and a self-locking position; the starting position being the position of the insertion part in the channel when the heart-shaped self-locking button has not been pressed, the self-locking position being located at the recess on the heart; and the step parts being located in the channel, and heights of the step parts relative to a relatively lowest surface of the channel unidirectionally decreasing progressively in a direction in which the heart is encircled, starting from the starting position.
11. The heart-shaped self-locking button of claim 1, wherein the pin is formed by bending a metal wire.
12. The heart-shaped self-locking button of claim 11, wherein an end face of the insertion part is smooth.
13. The heart-shaped self-locking button of claim 1, wherein at least one tubular body limiting part and at least one engagement block are formed inside the housing; and at least one push rod limiting part and at least one engagement hook are formed on the push rod, the push rod limiting part and the engagement hook being configured to cooperate with the tubular body limiting part and the engagement block, respectively, so as to define a range of movement of the push rod in the housing.
14. The heart-shaped self-locking button of claim 2, wherein the pin is formed by bending a metal wire.
15. The heart-shaped self-locking button of claim 14, wherein an end face of the insertion part is smooth.
16. The heart-shaped self-locking button of claim 2, wherein at least one tubular body limiting part and at least one engagement block are formed inside the housing; and at least one push rod limiting part and at least one engagement hook are formed on the push rod, the push rod limiting part and the engagement hook being configured to cooperate with the tubular body limiting part and the engagement block, respectively, so as to define a range of movement of the push rod in the housing.
17. The heart-shaped self-locking button of claim 2, wherein the heart-shaped structure protrudes from the outer surface of the pipe body toward the housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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(12) The labels used in the accompanying drawings comprise: 100 heart-shaped self-locking button 110 housing 112 head part 113 tubular body 1130 inner surface 1132 tubular body limiting part 1134 installation hole 1135 groove 1137 stop block 1138 stop part 1139 first connecting part 1140 engagement block 120 push rod 121 operating part 123 pipe body 1230 outer surface 1231 heart-shaped structure 1232 heart 1233 channel 1234 engagement hook 1235 self-locking position 1236 step part 1237 starting position 1238 turning-point position 1239 push rod limiting part 1240 lowest surface 130 return spring 150 pin 151 body 152 installation part 153 insertion part 160 elastic element 161 base 1612 stop 1613 second connecting part 162 connecting part 163 spring plate
DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS
(13) In order to clarify the technical problems solved by embodiments of the present invention, as well as the technical solution and beneficial effects thereof, the present invention is explained in further detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the particular embodiments described here are merely intended to explain the present invention, not to define it.
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(15) Specifically, as
(16) As
(17) The push rod 120 is slideably installed in the housing 110. As
(18) Furthermore, as
(19) The return spring 130 surrounds the push rod 120 and is located in the housing 110. The return spring 130 may be used to return the push rod 120 to an initial position.
(20) The pin 150 may be formed by bending a metal wire etc. In the embodiment shown in
(21) As
(22) Furthermore, in order to limit movement of the elastic element 160 in the axial direction of the tubular body 113, as shown in
(23) The specific structure of the heart-shaped self-locking button 100 in an embodiment of the present invention is described above; the method of use thereof is described briefly below.
(24) During use, a user presses the operating part 121 of the push rod 120 so that the push rod 120 moves in direction D1 substantially in the axial direction of the tubular body 113; at the same time, the insertion part 153 of the pin 150 begins to move from the starting position 1237 in the channel 1233 towards the self-locking position 1235 in the direction indicated by arrow A in
(25) As
(26) Throughout the above process, the spring plate 163 bears against the body 151 of the pin 150 and presses the pin 150 towards the push rod 120, so that the insertion part 153 is in contact with each surface of the channel 1233 throughout the process of the insertion part moving in the channel 1233. Furthermore, since the heights of the multiple step parts 1236 relative to the lowest surface 1240 of the channel 1233 unidirectionally decrease progressively in the anticlockwise direction, movement of the pin 150 in the opposite direction can be prevented, so that faults caused by the pin 150 moving round in a backwards direction can be avoided.
(27) As stated above, the heart-shaped self-locking button 100 in an embodiment of the present invention can have the following key features:
(28) 1. The heart-shaped structure 1231 of the heart-shaped self-locking button 100 is made on the push rod 120, so that the mold is simple and costs are low.
(29) 2. The heart-shaped self-locking button 100 uses the elastic element 160 between the housing 110 and the push rod 120 to press the pin 150 towards the heart-shaped structure 1231 on the push rod 120, so that the insertion part 153 of the pin 150 is in contact with the heart-shaped structure 1231 throughout the process of the insertion part moving in the heart-shaped structure 1231, and the heart-shaped self-locking button 100 can more reliably realize the self-locking function and have a longer mechanical lifespan; in one embodiment, the mechanical lifespan of the heart-shaped self-locking button 100 can reach about 1 million times, which is approximately twice the mechanical lifespan of an existing self-locking button.
(30) 3. Since the elastic element 160 and pin 150 have relatively small dimensions in the radial direction of the heart-shaped self-locking button 100, the push rod 120 can be given a relatively large internal diameter D, as shown in
(31) 4. Arc-surface contact may be employed between the spring plate 163 of the elastic element 160 and the pin 150, reducing frictional losses between components, and further increasing the service life of the product.
(32) In summary, disclosed in embodiments of the present invention is a heart-shaped self-locking button, comprising a housing and a push rod; the push-rod is slideably installed in the housing; a heart-shaped structure is formed on the push rod; the heart-shaped self-locking button further comprises a pin and an elastic element; one end of the pin is fixed to the housing, while another end of the pin cooperates with the heart-shaped structure; the elastic element is disposed between the housing and the push rod and presses the pin towards the heart-shaped structure so that the pin maintains contact with the heart-shaped structure. The heart-shaped structure of the heart-shaped self-locking button in one embodiment of the present invention is made on the push rod, so that the mold is simple and costs are low; moreover, the heart-shaped self-locking button uses the elastic element between the housing and the push rod to press the pin towards the heart-shaped structure on the push rod, so that the pin is in contact with the heart-shaped structure throughout the process of the pin moving in the heart-shaped structure, and the heart-shaped self-locking button can more reliably realize the self-locking function and have a longer mechanical lifespan.
(33) The above embodiments are merely preferred embodiments of the present invention, which are not intended to limit it. Any amendments, equivalent substitutions or improvements etc. made within the spirit and principles of the present invention shall be included in the scope of protection thereof.