HINGE STRUCTURE AND PORTABLE ELECTRONIC DEVICE
20180284847 ยท 2018-10-04
Assignee
Inventors
- Yu-Chin HUANG (New Taipei City, TW)
- Yu-Nan LIN (New Taipei City, TW)
- Wen-Neng Liao (New Taipei City, TW)
Cpc classification
E05Y2999/00
FIXED CONSTRUCTIONS
F16C11/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E05D11/081
FIXED CONSTRUCTIONS
International classification
E05D11/08
FIXED CONSTRUCTIONS
Abstract
A hinge structure including an axis body, a torque member, and a pressing assembly is provided. The axis body includes a contact surface. The torque member leans against the contact surface of the axis body. The torque member and the axis body are rotatable relatively around a central axis of the axis body. The contact surface pushes the torque member to move around the central axis of the axis body when the torque member and the axis body rotate relatively. The pressing assembly provides a pushing force to the torque member to push the torque member to push towards the contact surface. A plurality of electronic devices having the hinge structure are further provided.
Claims
1. A hinge structure, comprising: an axis body, comprising a contact surface; a torque member, leaning against the contact surface of the axis body, the torque member and the axis body being rotatable relatively around a central axis of the axis body, the contact surface pushing the torque member to move along the central axis of the axis body when the torque member and the axis body being rotatable relatively; and a pressing assembly, the pressing assembly providing a pushing force to the torque member, the torque member pushing towards the contact surface through the pushing force.
2. The hinge structure as claimed in claim 1, wherein the axis body has an external thread, the torque member has a first internal thread, the torque member is threaded to the axis body, and the contact surface of the axis body is located on the external thread.
3. The hinge structure as claimed in claim 2, wherein the external thread is located on one end portion of the axis body, and the torque member is located between the pressing assembly and the axis body.
4. The hinge structure as claimed in claim 1, wherein the contact surface is located at an end of the axis body, the contact surface is an eccentric concave surface, an eccentric convex surface, an irregular curved surface, a bevel, or a spiral end surface, a contour of an end surface of the torque member is shaped to be fitted into a contour of the contact surface of the axis body, and the end surface of the torque member is in contact with the contact surface of the axis body.
5. The hinge structure as claimed in claim 1, wherein the pressing assembly is an elastic member and is in contact with the torque member to provide the pushing force.
6. The hinge structure as claimed in claim 1, wherein the pressing assembly comprises two magnetic members, the two magnetic members are repulsive with each other, and one of the magnetic members leans against the torque member to provide the pushing force.
7. The hinge structure as claimed in claim 1, wherein the torque member and the pressing assembly are both magnetic, and the torque member and the pressing assembly are repulsive with each other.
8. A portable electronic device, comprising the hinge structure as claimed in claim 1, further comprising: a first housing, comprising a containing groove recessed on a surface, the torque member and the pressing assembly being located in the containing groove, the first housing leaning against an outer contour of the torque member to disable the torque member from being rotatable around the central axis of the axis body relative to the first housing; and a second housing, the axis body being secured to the second housing.
9. A portable electronic device, comprising the hinge structure as claimed in claim 1, further comprising: a first housing, comprising a containing groove recessed on a surface, the torque member and the pressing assembly being located in the containing groove; a cover body, secured to the first housing and located in the containing groove, the cover body leaning against the outer contour of the torque member to disable the torque member from being rotatable around the central axis of the axis body relative to the cover body; and a second housing, the axis body being secured to the second housing.
10. The portable electronic device as claimed in claim 8, wherein a cross section of the torque member transverse to the central axis of the axis body is a non-circular cross section.
11. The portable electronic device as claimed in claim 9, wherein a cross section of the torque member transverse to the central axis of the axis body is a non-circular cross section.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
DESCRIPTION OF THE EMBODIMENTS
[0028]
[0029] In the portable electronic device 100 provided by the embodiment, the hinge structure 120 may be secured to the first housing 110 with no screws; moreover, a volume of the hinge structure 120 is relatively small, such that much space in the first housing 110 is saved. In addition, in the embodiment, a torque value of the hinge structure 120 of the portable electronic device 100 may be adjusted easily, and detailed description is as follows.
[0030]
[0031] The shell body 180 includes a chamber body 182 configured to accommodate the pressing assembly 150 and leaning against a side of the cover body 160, so as to prevent the cover body 160 from moving randomly in the containing groove 112. In other embodiments, the cover body 160 and the shell body 180 may be integrated into one body to accommodate the torque member 140 and the pressing assembly 150 together and to be equipped with a chamber body to secure the torque member 140.
[0032] In addition, in the embodiment, the first housing 110 includes a first engagement member 114, and the first engagement member 114 protrudes inwardly facing the containing groove 112. Moreover, the first housing 110 has an opening groove 116 (shown is
[0033] In addition, as shown in
[0034] Back to
[0035] In the embodiment, the pressing assembly 150 includes two magnetic members, the same magnetic properties are provided at respective sides of the magnetic members close to each other, such that the two magnetic members are repulsive with each other. The two magnetic members are placed in the chamber body 182 of the shell body 180 in advance and assembled and located in the containing groove 112 along with the shell body 180 and leans against the torque member 140. When the axis body 130 rotates, the torque member 140 is pushed rightwards. The torque member 140 then pushes the magnetic member on the left of the two magnetic members rightwards, such that the two magnetic members are pushed closer to each other, and that magnetic repulsive force between the magnetic member on the right and the magnetic member on the left increases. The magnetic member on the left then pushes the torque member 140 leftwards; resistance force is thus generated when the torque member 140 moves rightwards or when the axis body 130 rotates. A pressure is then applied to the torque member 140 and the contact surface 132 of the axis body 130, friction between the torque member 140 and the axis body 130 is thus increased, and a predetermined torque value of the hinge structure 120 is therefore generated.
[0036] In the embodiment, the pressing assembly 150 is constituted by two magnetic members repulsive with each other, and the torque member 140 is pushed by one of the magnetic member. In other possible embodiments of the invention, the pressing assembly 150 may include only a single magnetic member, and the torque member 140 is magnetic. As the pressing assembly 150 and the torque member 140 are repulsive with each other, a pushing force pushing towards the contact surface 132 may also be provided by the pressing assembly 150 to the torque member 140 to obtain similar usage effect.
[0037] It is worth noting that in the embodiment as shown in
[0038] Naturally, how the pressing assembly 150 presses the torque member 140 is not limited thereto. In other embodiments, the pressing assembly 150 may also be a tubular or columnar shape elastic member, such as a tubular rubber or a compression spring, and is in contact with the torque member 140 to provide the pushing force. Similar usage effect is thus obtained. In addition, in another possible embodiment of the invention, if the cover body 160 and the shell body 180 are to be integrated to form a cover body of a single assembly, the elastic member may be directly accommodated in a chamber body of the integrated cover body. As such, an end of the elastic member leans against a wall surface of the chamber of the cover body, and the other end leans against the torque member 140. Similar usage effect is thus obtained.
[0039] Besides, as shown in
[0040] Through such arrangement, in the portable electronic device 100 provided by the embodiment, when the second housing 170 rotates relative to the first housing 110, the axis body 130 rotates along with the second housing 170. The cover body 160 leans against the torque member 140, as such the torque member 140 is disabled from being rotatable relative to the first housing 110, and that the axis body 130 rotates relative to the torque member 140. The torque member 140 is pushed by the contact surface 132 of the axis body 130 towards the right side of
[0041] The following provides other types of hinge structures and other ways to dispose the hinge structures and the first housing. In the following embodiments, elements identical or similar to the previous embodiment are denoted by the same or similar reference numerals, only differences among different embodiments are described, and similar content will not be described again hereinafter.
[0042]
[0043] Furthermore, the pressing assembly 150 and a pressing assembly 150a are different in forms. In the embodiment, the pressing assembly 150a is a single element with a size close to the chamber body 182 of the shell body 180, and that the pressing assembly 150a may be pressed by a bottom wall surface of the chamber body 182. In the embodiment, the pressing assembly 150a is, for example, rubber and may be slightly elastic and flexible. As a contour of the contact surface 132a is asymmetric to the central axis, when the axis body 130a rotates, the torque member 140a is pushed by the contact surface 132a of the axis body 130a and moved towards a direction of the pressing assembly 150a (right side of
[0044] Thereby, if the torque force is to be adjusted, the pressing assembly 150a with different length or different hardness may be adopted, such that, when the pressing assembly 150a is pushed and pressed by the torque member 140a, degree of the reaction force provided to the torque member 140a may be different, and that the torque force of the hinge structure is changed.
[0045] It is worth mentioning that the contact surfaces 132 and 132a are not limited to the above forms. As long as the contact surfaces 132 and 132a are eccentric concave surfaces, eccentric convex surfaces, irregular curved surfaces, bevels or spiral end surfaces, when the axis bodies 130 and 130a rotate, the torque members 140 and 140a may be pushed rightwards.
[0046] Referring to
[0047]
[0048] In the embodiment, the pressing assemblies 150 are located between the torque member 140 and the inner wall of the containing groove 112c. The torque member 140 is driven to move towards the direction of the pressing assemblies 150 and the pressing assemblies 150 are thus pushed and pressed when the axis body 130 (as shown in
[0049] To sum up, in the portable electronic device provided by the embodiments of the invention, the inner contour of the containing groove of the first housing is shaped to be fitted into the outer contour of the torque member of the hinge structure; alternatively, the inner contour of the cover body secured to the first housing is shaped to be fitted into the outer contour of the torque member of the hinge structure, such that the torque member in the containing groove is disabled from being rotatable relative to the first housing. Therefore, the hinge structure is secured to the first housing with no screws, and less space in the first housing is thus allocated to accommodate the hinge structure. In addition, in the hinge structure provided by the embodiments of the invention, the torque member is designed to leans against the contact surface of the axis body and to be located between the axis body and the pressing assembly, such that the torque member is pushed by the contact surface when the axis body rotates and moved towards the direction of the pressing assembly, and a pushing force (possibly be a reaction force, a magnetic force, or an elastic force) is correspondingly provided by the pressing assembly to the torque member, the contact surface of the axis body is thus pushed by the torque member. As the torque value provided by the hinge structure is related to friction between the torque member and the contact surface of the axis body, friction (friction is the product of friction coefficient and normal force) between the torque member and the contact surface of the axis body may be changed through adjusting the size, the degree of magnetic force, the elastic coefficient, etc. of the pressing assembly, and usage effect delivering easy design and easy change of setting parameters is thus provided.
[0050] It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.