FASTENER STRUCTURE AND ASSEMBLING METHOD THEREOF
A fastener structure and an assembling method thereof are introduced. The fastener structure includes a head portion and a body portion. The body portion is movably connected to the head portion and includes a connecting section for assembling to an intermediate member. The intermediate member includes a material retaining section and can be further connected to an object. Partial material of the object would move or flow into the material retaining section when the intermediate member is forcefully pressed against the object, so that the intermediate member and the object are connected together. Since the body portion can be assembled to the intermediate member and the intermediate member can be further connected to an object, and the fastener structure can be fastened to and released from a target object, at least two objects can be repeatedly and quickly connected to and disconnect from one another using the fastener structure.
This application is a divisional patent application of U.S. application Ser. No. 16/944,189 filed on Jul. 31, 2020, the entire contents of which are hereby incorporated by reference for which priority is claimed under 35 U.S.C. § 121.
BACKGROUND OF THE INVENTION 1. Field of the InventionThe present disclosure relates to a fastener structure and an assembling method thereof, and in particular to a fastener structure and an assembling method thereof that enable repeatable and quick connection and disconnection of at least two objects to and from one another.
2. Description of the Related ArtIn the case at least one object is to be connected to another object, screws are usually used to directly lock the two objects together.
However, while the aforesaid method is very often used to enable fixed and non-easily-separable connection of at least one object to another object, the two objects so connected might still become unstably movable relative to each other.
It is therefore tried by the inventor to develop a fastener structure and an assembling method thereof in an attempt to enable repeatable and quick connection and disconnection of at least two objects to and from one another.
BRIEF SUMMARY OF THE INVENTIONAn objective of the present disclosure is to overcome the disadvantages in the conventional fastening method by providing a fastener structure and an assembling method thereof to enable repeatable and quick connection and disconnection of at least two objects to and from one another.
To achieve at least the above objective, the fastener structure provided according to an embodiment of the present disclosure includes a head portion and a body portion. The body portion is movably connected to the head portion and includes a connecting section for assembling to an intermediate member. The intermediate member includes a material retaining section and can be further connected to an object. Part of the material of the object is caused to move or flow into the material retaining section when the intermediate member is forcefully pressed against the object, so that the intermediate member and the object are connected together.
The fastener structure provided according to another embodiment of the present disclosure includes a head portion and a body portion. The body portion is movably connected to the head portion and includes a connecting section for assembling to an intermediate member. The intermediate member includes a retaining section and can be further connected to an object. The retaining section is connected to the object through expansion connection when the retaining section is deformed under an external force applied thereto.
In the fastener structure provided according to any one of the above embodiments, the connecting section is assembled to the intermediate member through expansion connection when an external force is applied to the connecting section.
In the fastener structure provided according to any one of the above embodiments, the head portion includes a mating stop section and the body portion includes a stop section. The mating stop section and the stop section are pressed against each other when the head portion and the body portion are movably connected together, so that the head portion and the body portion do separate from each other.
In the fastener structure provided according to any one of the above embodiments, the head portion includes a fastening section.
In the fastener structure provided according to any one of the above embodiments, the fastening section can be a cylinder, a screw, a male fastener or a female fastener.
The fastener structure provided according to any one of the above embodiments further includes an elastic element, which has an end pressed against the head portion and another end pressed against the body portion.
In the fastener structure according to the above embodiments, the head portion has a width larger than that of the body portion, the intermediate member has a width larger than that of the head portion, and the object includes an assembling hole dimensionally larger than the head portion but smaller than the intermediate member.
In the fastener structure according to the above embodiments, the intermediate member and the object are respectively made of a metal material; and the intermediate member has a hardness that can be higher or lower than that of the object.
In the fastener structure according to the above embodiments, the body portion includes a shoulder section; and the intermediate member is clamped between the connecting section and the shoulder section.
In the fastener structure according to the above embodiments, the connecting section has a material filling recess. When the connecting section is pressed against the intermediate member, partial material of the intermediate member is caused to move or flow into the material filling recess, which makes the body portion to be connected to the intermediate member.
To achieve at least the above objective, the fastener structure assembling method provided according to an embodiment of the present disclosure includes the following steps: assembling a connecting section of the fastener structure to an intermediate member; and connecting a material retaining section of the intermediate member to an object by pressing the intermediate member against the object, so that partial material of the object is forced to move or flow into the material retaining section, which makes the intermediate member to be connected to the object.
The fastener structure assembling method provided according to another embodiment of the present disclosure includes the following steps: assembling a connecting section of the fastener structure to an intermediate member; and connecting a retaining section of the intermediate member to an object by applying an external force on the retaining section, so that the retaining section is deformed and connected to the object through expansion connection.
With the fastener structure and the assembling method thereof according to the present disclosure, when the body portion is assembled to the intermediate member and the intermediate member is then connected to the object, the fastener structure can be connected to and released from a target object. Therefore, at least two objects can be repeatedly and quickly connected to and disconnect from one another using the fastener structure.
To facilitate understanding of the objectives, characteristics and effects of this present disclosure, embodiments together with the attached drawings for the detailed description of the present disclosure are provided.
Please refer to
The body portion 12 is movably connected to the head portion 11 and includes a connecting section 121 for assembling to an intermediate member 2. The intermediate member 2, after having been assembled to the body portion 12, can be further connected to an object 3. The intermediate member 2 includes a material retaining section 21. The intermediate member 2 can be forcefully pressed against the object 3, so that partial material of the object 3 is caused to move or flow into the material retaining section 21, bringing the object 3 to be connected to the intermediate member 2.
To assemble the fastener structure 1, first place the body portion 12 thereof on the intermediate member 2. Then, use a die 4 to press against the connecting section 121 of the body portion 12, so that the connecting section 121 under the externally applied force is deformed and connected to the intermediate member 2 through expansion connection. As a result, the fastener structure 1 is preliminarily assembled to the intermediate member 2. Thereafter, place the intermediate member 2 on the object 3, and use another die 5 to press against the intermediate member 2, such that the intermediate member 2 is pressed against the object 3, causing partial material of the object 3 to move or flow into the material retaining section 21. As a result, the intermediate member 2 is connected to the object 3. In the above-described manner, the body portion 12 of the fastener structure 1 can be assembled to the intermediate member 2 and the latter can be then further connected to the object 3, while the fastener structure 1 can be fastened to a target object (not shown) or released from the target object. Thus, at least two objects can be repeatedly and quickly connected to and disconnected from one another.
In the illustrated first embodiment of the present disclosure, the head portion 11 includes a fastening section 111, which can be in the form of a cylinder as shown in
In the illustrated first embodiment of the present disclosure, the body portion 12 further includes a shoulder section 122; and the intermediate member 2 is clamped between the connecting section 121 and the shoulder section 122, such that the body portion 12 of the fastener structure 1 is firmly assembled to the intermediate member 2.
In the illustrated first embodiment of the present disclosure as shown in
According to a preferred embodiment of the present disclosure, the intermediate member 2 and the object 3 are respectively made of a metal material;
and the intermediate member 2 has a hardness higher than that of the object 3, so that a part of the material of the object 3 can move or flow into the material retaining section 21 when the intermediate member 2 is forcefully pressed against the object 3, enabling the intermediate member 2 and the object 3 to be connected to one another. Alternatively, in other operable embodiment, the intermediate member 2 may have a hardness lower than that of the object 3 to meet the actual need in connecting them to one another
Please refer to
Please refer to
To assemble the fastener structure 1 in the fourth embodiment, first place the body portion 12 thereof on the intermediate member 2. Then, use a die 4a to press against the head portion 11, so that the connecting section 121 of the body portion 12 under the externally applied force is assembled to the intermediate member 2 through expansion connection. As a result, the fastener structure 1 is preliminarily assembled to the intermediate member 2. Thereafter, place the intermediate member 2 on the object 3, and use another die 5a to press against the retaining section 22 of the intermediate member 2, such that the retaining section 22 under the external force is deformed, causing the intermediate member 2 to be connected to the object 3 through expansion connection. In the above-described manner, the body portion 12 of the fastener structure 1 can be assembled to the intermediate member 2 and the latter can be then further connected to the object 3, while the fastening section 111 of the fastener structure 1 can be fastened to a target object or released from the target object. Thus, with the fastener structure 1 of the present disclosure, at least two objects can be repeatedly and quickly connected to and disconnected from one another.
In the fourth embodiment, when the head portion 11 is pressed by the die 4a, the material filling recess 124 on the connecting section 121 of the body portion 12 is forced against the intermediate member 2, so that partial material of the intermediate member 2 is caused to move or flow into the material filling recess 124, bringing the body portion 12 and the intermediate member 2 to be assembled to one another. In this manner, the body portion 12 of the fastener structure 1 can also be firmly assembled to the intermediate member 2.
While the present disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the present disclosure set forth in the claims.
Claims
1. A fastener structure, comprising:
- a head portion; and
- a body portion being movably connected to the head portion and including a connecting section for assembling to an intermediate member; the intermediate member including a retaining section and being adapted to be further connected to an object; and the retaining section being connected to the object through expansion connection when the retaining section is deformed under an external force applied thereto.
2. A fastener structure, comprising:
- a body portion for movably connected to a head portion; the body portion including a connecting section for assembling to an intermediate member; the intermediate member including a retaining section and being adapted to be further connected to an object; and the retaining section being connected to the object through expansion connection when the retaining section is deformed under an external force applied thereto.
3. The fastener structure according to claim 1, wherein the connecting section has a material filling recess; and the connecting section being pressed against the intermediate member, so that partial material of the intermediate member is caused to move or flow into the material filling recess, which makes the body portion to be connected to the intermediate member.
4. The fastener structure according to claim 2, wherein the connecting section has a material filling recess; and the connecting section being pressed against the intermediate member, so that partial material of the intermediate member is caused to move or flow into the material filling recess, which makes the body portion to be connected to the intermediate member.
5. The fastener structure according to claim 1, wherein the head portion includes a mating stop section and the body portion includes a stop section; and the mating stop section and the stop section being pressed against each other when the head portion and the body portion are movably connected together, so that the head portion and the body portion do not separate from each other.
6. The fastener structure according to claim 5, wherein the head portion includes a fastening section.
7. The fastener structure according to claim 5, wherein the head portion has a width larger than that of the body portion, the intermediate member has a width larger than that of the head portion, and the object includes an assembling hole dimensionally larger than the head portion but smaller than the intermediate member.
8. The fastener structure according to claim 1, wherein the intermediate member and the object are respectively made of a metal material; and the intermediate member having a hardness that can be higher or lower than that of the object.
9. The fastener structure according to claim 2, wherein the intermediate member and the object are respectively made of a metal material; and the intermediate member having a hardness that can be higher or lower than that of the object.
10. A fastener structure assembling method for assembling the fastener structure according to claim 1, comprising the following steps: assembling a connecting section of the fastener structure to an intermediate member; and connecting a retaining section of the intermediate member to an object by applying an external force on the retaining section, so that the retaining section is deformed and connected to the object through expansion connection.
11. A fastener structure assembling method for assembling the fastener structure according to claim 2, comprising the following steps: assembling a connecting section of the fastener structure to an intermediate member; and connecting a retaining section of the intermediate member to an object by applying an external force on the retaining section, so that the retaining section is deformed and connected to the object through expansion connection.
Type: Application
Filed: Nov 11, 2021
Publication Date: Mar 3, 2022
Inventor: TING-JUI WANG (New Taipei City)
Application Number: 17/523,939