Joint structure and method for assembling a joint structure
11635100 · 2023-04-25
Assignee
Inventors
- Yao-Yu Yang (Taipei, TW)
- Chia-Ming Chang (Taipei, TW)
- Fang-Yao Yeh (Taipei, TW)
- Shih-Chung Kang (Taipei, TW)
Cpc classification
F16B5/008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B45/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A joint structure installed in the physical structure is provided. The joint structure includes a first latching member and a second latching member. The first latching member includes a first main body, a head portion extending from the first main body and a first convex portion extending from the first main body. The second latching member includes a second main body, a second convex portion extending from the second main body and a third convex portion extending from the second main body. When the first latching member and the second latching member are in an assembling status, the first convex portion slides between the second convex portion and the third convex portion.
Claims
1. A method for assembling a joint structure, the joint structure including a first latching member and a second latching member, the first latching member including a first main body, a headend extending from the first main body, and a first convex portion extending from the first main body, the second latching member including a second main body, a second convex portion extending from the second main body, and a third convex portion extending from the second main body, the method for assembling the joint structure comprising: calculating a first installed position of the first latching member and a second installed position of the second latching member, wherein the first installed position is located on a surface of a first entity, and the second installed position is located on a surface of a second entity; installing the first latching member in the first installed position and installing the second latching member in the second installed position; calculating a hanging position and a center position on a second surface of the first entity according to a centroid position of the first entity, wherein a first included angle is defined by a line connecting the hanging position and the centroid position and a line connecting the center position and the centroid position; hanging the first entity at the hanging position; and assembling the first latching member and the second latching member by abutting the headend on a second inner side of the second convex portion to make the first entity rotate about the headend by a second included angle.
2. The method for assembling a joint structure of claim 1, wherein when the first entity rotates about the headend by the second included angle, an outer peripheral edge of the first convex portion is engaged to an outer peripheral edge of the second convex portion, and slidably engaged between the second convex portion and the third convex portion.
3. The method for assembling a joint structure of claim 1, wherein an inner side edge of the first convex portion is arc-shaped, a degree corresponding to the inner side edge of the first convex portion is the same as the second included angle.
4. The method for assembling a joint structure of claim 3, wherein a curvature rate corresponding to the inner side edge of the first convex portion is the same as a curvature rate corresponding to an outer side edge of the second convex portion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(10) Please refer to
(11) Please refer to
(12) Afterwards, as shown in
(13) Please refer to
(14) Afterwards, the method 400 firstly executes step S410 to calculate a first installed position of the first latching member and a second installed position of the second latching member, and step S420 to install the first latching member in the first installed position and to install the second latching member in the second installed position. In the embodiment, reference is made to
(15) Afterwards, the method 400 executes step S430 to calculate a hanging position according to a centroid position of the first entity and to calculate a center position of the surface of the first entity, when the first entity is in a hanging status, a first included angle is formed by a connecting direction of the hanging position and the centroid position and a connecting direction of the center position and the centroid position. In the embodiment, reference is made to
(16) Afterwards, reference is made to
(17) Afterwards, the method 400 executes step S440 to assemble the first latching member and the second latching member, when the first latching member and the second latching member are in an assembling status, the first entity is utilized the headend as a rotation center to rotate an angle formed by a second included angle to drive the first latching member to engage with the second latching member. In the embodiment, reference is made to
(18) Afterwards, reference is made to
(19) Afterwards, when the first latching member 1 and the second latching member 3 are in an assembling status, the first entity 1 is utilized the headend 12 as the rotation center to rotate the angle formed by the second included angle θ2, so that an outer peripheral edge of the first convex portion 13 is engaged to an outer peripheral edge of the second convex portion 32, and slidably engaged to the concave portion. The concave portion is formed between the second convex portion 32 and the third convex portion 33. It is noticed that, because the degrees that the first entity 1 drives the first engaging member 1 to rotate (the second included angle θ2) is the same as the degree corresponding to the inner side edge 131 of the first convex portion 13, the first convex portion 13 is slidably engaged to the concave portion.
(20) Afterwards, in the embodiment, the headend 12 of the first engaging member 1 is engaged to the second engaging member 3, and the first engaging member 1 is utilized the headend 12 as the rotation center and slidably engaged between the second convex portion 32 and the third convex portion 33. In this way, the crane truck can use the joint structure to directly assemble the suspended objects (e.g. steel bars and cement blocks), and does not require additional manpower and additional equipment to assist in calibration during assembly. Therefore, the joint structure can increase the speed of assembly and is easier to introduce into the existing construction environment.
(21) In another embodiment, when the first latching member 1 and the second latching member 3 are in the assembling status, the second latching member 3 abuts against the circular side 121 of the headend 12, and the second latching member 3 is slidably engaged between the headend 12 and the first convex portion 13 with the headend 12 as a rotation center. It is noticed that, when the first latching member 1 and the second latching member 3 are engaged, another bolt structure can be used to strengthen the connection between the first latching member 1 and the second latching member 3. However, the disclosure is not limited thereto.
(22) Based on aforesaid embodiments, the joint structure and the method for assembling a joint structure are capable of utilizing the weight of the suspended object and its own rotation, and cooperating with the joint structure to achieve the effect of automatic assembly. Thus, the crane truck can use the joint structure to directly assemble the suspended objects, and does not require additional manpower and additional equipment to assist in calibration during assembly. In some embodiments, this disclosure is able to achieve the effect of reducing labor costs and increasing the speed of assembly.
(23) The above examples are intended for illustrating the embodiments of the subject invention and the technical features thereof, but not for restricting the scope of protection of the subject invention. Many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed. The scope of the subject invention is based on the claims as appended.