Rivet
11821450 · 2023-11-21
Assignee
Inventors
- Qiang Sun (Novi, MI, US)
- Shengbao Cai (Shanghai, CN)
- Yong Wu (Jiangsu, CN)
- Dapeng Duan (Jiangsu, CN)
- Xiaofei Yan (Jiangsu Province, CN)
Cpc classification
F16B19/1027
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The present rivet invention has a main body comprising a first end and a second end opposite to the first end, wherein the main body further comprises a lateral wall disposed at the second end and circumferentially extending around the main body; and a core part disposed at the second end of the main body and contained inside the lateral wall of the main body, wherein the core part has an end surface for pressing against at least an end surface of one of the work pieces when the rivet is being operated to rivet the work pieces, to allow materials of the work pieces flow outwardly of the core part. An accommodation space is formed between the core part and the lateral wall to receive materials of the work pieces flowing into the space and deform outwardly at least a portion of the lateral wall of the main body.
Claims
1. A two-piece rivet for operably riveting work pieces together face-on-face, the rivet comprising: a main body; a core part, wherein the main body and the core part are two individual component parts; the main body comprising a first end and a second end opposite to the first end, wherein the main body further comprises a lateral wall disposed at the second end and circumferentially defining an inner surface of the lateral wall and the main body; the core part disposed at the second end of the main body and rigidly affixed to the inner surface of the lateral wall of the main body, wherein the core part has a pressing end surface configured to press against at least an end surface of one of the work pieces when the rivet is being operated to rivet the work pieces, whereby materials of the work pieces flow outwardly of the core part and interlock together without the rivet penetrating through said one of the work pieces; wherein an accommodation space is defined by the core part and the inner surface of the lateral wall of the main body between a portion of the core part adjacent the core part pressing end surface and the adjacent inner surface of the lateral wall, and is configured, such that when the rivet is being operated to rivet the work pieces together face-on-face the materials of said one of the work pieces flow into the accommodation space causing at least a portion of the lateral wall at the second end of the main body to deform outwardly; and wherein a top of the rivet comprises a substantially flat surface covering the accommodation space, the lateral wall, and the core part.
2. The rivet of claim 1, wherein the main body and the core part are formed separately.
3. The rivet of claim 1, wherein the accommodation space comprises a gap between the inner surface of the lateral wall and an outer surface of the core part.
4. The rivet of claim 1, wherein the end surface of the core part protrudes over the second end of the main body, or the end surface of the core part is aligned with the second end of the main body.
5. The rivet of claim 1, wherein the core part extends from the second end to the first end of the main body.
6. The rivet of claim 1, wherein the main body has an outer diameter at its first end greater than that at its second end.
7. The rivet of claim 1, wherein the core part has adjacent to its end surface a length where an outer diameter of the core part gradually decreases from the end surface toward the first end of the main body.
8. The rivet of claim 1, wherein the lateral wall of the main body has an increasing inner diameter from the first end to the second end.
9. The rivet of claim 1, wherein the lateral wall has a chamfered inner wall.
10. The rivet of claim 1, wherein the end surface of the core part is chamfered.
11. The rivet of claim 1, wherein the main body and the core part are formed separately, and the main body and the core part are connected through transitional fit, interference fit, threaded connection or gluing.
12. The rivet of claim 1, wherein the core part has a lateral cross section shaped as a circle, an ellipse, a diamond, a semicircle, a trapezoid, a rectangle or a triangle.
13. The rivet of claim 1, wherein the core part has a lateral cross section that changes or does not change in its lengthwise direction.
14. The rivet of claim 1, wherein either or both of the main body and the core part is made of aluminum, cold-heading steel, stainless steel or steel alloy.
15. The rivet of claim 1, wherein the core part has adjacent to its end surface a skirt section protruding from an outer surface of the core part.
16. The rivet of claim 15, wherein the skirt section has an inward_slope towards the first end of the main body.
17. The rivet of claim 15, wherein the skirt section is a step surface protruding from the outer surface of the core part.
18. A system comprising two work pieces and a two-piece rivet for operatively riveting the two work pieces together face-on-face, wherein the system comprises: the two work pieces; and the two-piece rivet, the rivet comprising: a main body comprising a first end and a second end opposite to the first end, wherein the main body further comprises a lateral wall disposed at the second end and circumferentially defining an inner surface of the lateral wall and the main body; and a core part is disposed at the second end of the main body and is rigidly affixed to the inner surface of the lateral wall of the main body, wherein the core part has an end surface configured to press against at least an end surface of one of the two work pieces when the rivet is being operated thereby causing materials of the work pieces to flow outwardly of the core part; wherein an accommodation space adjacent the end surface of the core part, and defined between the core part and the lateral wall of the main body, is configured such that, when the rivet is being operated to rivet the work pieces together face-on-face the materials of the work pieces flow thereinto and deform outwardly at least a portion of the lateral wall at the second end of the main body whereby the work pieces are joined by the interlocking deformation of the work pieces without the rivet penetrating through said one of the two work pieces; and wherein a top of the rivet comprises a substantially flat surface covering the accommodation space, the lateral wall, and the core part.
19. The system of claim 18, wherein the work pieces comprises two or more work pieces arranged face-on-face in a direction from the first end to the second end of the main body, and a first of the work pieces closest to the second end is not penetrated through by the rivet after the work pieces are riveted together by the rivet.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the accompanying drawings used in the embodiments or the description of the prior art will be briefly described below. Obviously, these drawings depict only a few embodiments of the contents of the present application, and other drawings can be obtained according to these drawings for those skilled in the art without any creative work.
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15) The reference numbers for the accompanying drawings above are: 11—head portion, 12—foot portion, 13—chamber, 21—first work piece, 22—second work piece, 31—lower die, 311—embossment, 32—upper die, 33—pressing device, 4—main body, 41—first end, 42—second end, 43—accommodation space, 44—lateral wall, 5—core part, 51—end surface, 52—skirt section.
DETAILED DESCRIPTION OF THE EMBODIMENTS
(16) The technical solutions in the embodiments of the present invention will be clearly and completely described in the following with reference to the accompanying drawings in the embodiments of the present invention. It is apparent that the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All the other embodiments that can be obtained by a person of ordinary skill in the art according to the embodiments of the present invention without creative work are within the protection scope of the present invention.
(17)
(18) The main body 4 comprises a first end 41 and a second end 42 opposite to the first end 41. The main body 4 further comprises a lateral wall 44 disposed at the second end 42 and circumferentially extending around the main body 4.
(19) The core part 5 is disposed at the second end 42 of the main body 4, wherein the core part 5 is disposed inside the second end 42 of the main body 4 and contained inside the lateral wall 44 of the main body 4.
(20) An accommodation space 43 is formed between the core part 5 and the lateral wall 44 of the main body 4, and configured to, when the rivet is being operated to rivet the work pieces, accommodate the materials of the work pieces flowing into the space and deform outwardly at least a portion of the lateral wall 44 of the main body 4. Specifically, in the present embodiment, a least a portion of the lateral wall 44 of the main body 4 being deformed outwardly refers to that the shape of a least a portion of the lateral wall 44 of the main body 4 changes. In some other embodiments, the deforming refers to that the lateral wall 44 moves outwardly relative to the main body 4 so that the entire shape of the rivet changes.
(21) The core part 5 has an end surface 51 for pressing against at least an end surface of one of the work pieces when the rivet is being operated to rivet the work pieces, to allow materials of the work pieces flow outwardly of the core part 5.
(22) As illustrated in
(23) As explained above with regard to
(24) With the structure described above, the rivet described in the present embodiment has the advantages as follows.
(25) 1. During the stamping of the riveting process, due to the axial limitation of the core part, most of the material of the two work pieces that corresponds to the rivet can only flow outwardly of the rivet, which increases the amount of the material at the interlock portion between the rivet and the work piece to ensure that the first work piece 21 is not penetrated by the shear force from the second end 42 of the main body 4. Thus, the interlocking function is realized while solving the sealing requirement, such as waterproofing, of the riveted portion.
(26) 2. When riveting with a rivet of the present invention, a flat die can be used as the mounting die. That is, the cavity of the lower die uses a simple plane and no special shape is required, which makes the structure of the mounting die simple and at the same time reduces the centering requirement between the riveting device and the mounting die (as shown in
(27) In some embodiments, as shown in
(28) In some embodiments, as illustrated by
(29) With the above embodiment, the rivet can be made in a more flexible and convenient manner. The manner of forming the main body 4 and the core part 5 separately can simplify the manufacture difficulty for the mold of the main body and improve the service life of the mold.
(30) In some embodiments, as illustrated by
(31) As illustrated by
(32) For example, as illustrated in
(33) In some embodiments, the inner diameter of the lateral wall of the main body increases gradually as viewed in the direction from the first end to the second end. If the outer diameter of the lateral wall 44 remains constant, the increasing inner diameter causes the thickness of the lateral wall 44 to gradually increase from the second end to the first end, which forms a wedge structure that facilitates the lateral wall 44 to be folded outwardly of the rivet and partially inserted into the first work piece 21.
(34) In some embodiments, when the main body 4 and the core part 5 are formed separately, and the main body 4 and the core part 5 may be connected through transition fit, interference fit, threaded connection or glue connection. The transition fit includes clearance fit and interference fit. However, the amount of gap obtained by the transition fit is small, so that the core part 5 will not easily detach from the second end 42 of the main body 4 in a free state. Therefore, during the riveting process, the material of the first work piece 21 does not flow into the accommodation space 43 in a large amount, and will not cause the first work piece 21 to be sheared off by the second end 42 of the main body 4, thus will not affect the sealing of the riveting.
(35) In some embodiments, as illustrated in
(36) In particular, thanks to the interlocking principle of the rivet in accordance with the present embodiment (that is, the main body of the rivet does not need to penetrate through the first work piece 21, so the hardness and strength requirements of the main body of the rivet are relatively low), either or both of the main body 4 and the core part 5 can be made of any material as aluminum, cold-heading steel, stainless steel or steel alloy, and the like. The rivet made of aluminum can eliminate the electroplating process, thereby reducing production cost and greatly reducing the weight of the rivet to achieve a lightweight design. According to the material requirements of the work pieces to be riveted, the material of the main body 4 and the core part 5 in one rivet may be the same or different, so as to realize the interlocking effect while saving cost.
(37) Specific embodiments have been used in the present invention to explain the principles and implementation of the present invention, and the description of the embodiments above only serves to help understand the main idea of the present invention. Meanwhile, a person ordinarily skilled in the art will be able to make changes to the specific implementation and the scope of application in accordance with the idea of the present invention. In all, the contents of the specification shall not be construed as limiting the scope of the invention.