Connection assembly for connecting metallic and plastic components and method of connecting plastic and metallic components

US8973248B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-8973248-B2
Application numberUS-201213645841-A
CountryUS
Kind codeB2
Filing dateOct 5, 2012
Priority dateOct 5, 2012
Publication dateMar 10, 2015
Grant dateMar 10, 2015

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A connection assembly for attaching metallic and plastic components by a heat staking operation includes a first component, a second component, a compressible protrusion, an annular collar, and a deformable stud. The first component is formed of a metallic material and includes an inner surface. The second component includes an interior surface facing the inner surface of the first component and an opposite exterior surface. The second component includes a plurality of apertures which extend between the interior surface and the exterior surface. During the heat staking operation the deformable stud is deformed so as to restrain relative movement between the first and second components. The compressible protrusion plastically deforms to absorb pressure to prevent cracking of the second component and the annular collar absorbs heat to prevent the second component adjacent the aperture from melting.

First claim

Opening claim text (preview).

It is claimed: 1. A connection assembly for attaching two components by heat staking a deformable stud, said assembly comprising: a first component formed of a metallic material, said first component having an inner surface; a second component formed of a plastic material, said second component having an interior surface and an opposite exterior surface, said interior surface facing said inner surface of said first component, said second component having an aperture extending between said interior surface and said exterior surface, the second component having a compressible protrusion extending outwardly from said exterior surface adjacent said aperture; and a hollow annular collar having a radially extending flange at a first end, said annular collar positioned within said aperture such that a bottom surface of said flange covers said compressible protrusion. 2. The connection assembly of claim 1 , wherein upon application of heat and pressure to the deformable stud, positioned within said annular collar, deforms so as to restrain relative movement of said first component and said second component, said compressible protrusion plastically deforms to absorb pressure to prevent cracking of said second component and said annular collar absorbs heat to prevent melting of said second component adjacent said aperture. 3. The connection assembly of claim 2 , wherein said deformable stud and said annular collar are formed of a metallic material. 4. The connection assembly of claim 2 , wherein said first component is a cylinder head cover and said second component is a baffle plate. 5. The connection assembly of claim 2 , wherein said second component includes a plurality of compressible protrusions arranged around said aperture. 6. The connection assembly of claim 5 , wherein said plurality of compressible protrusions are equally spaced and form a discontinuous ring that is coaxial with said aperture. 7. The connection assembly of claim 5 , wherein a first portion of said plurality of compressible protrusions having a first shape and a second portion of said plurality of compressible protrusions having a second shape different from said first shape. 8. The connection assembly of claim 7 , wherein one of said first portion and said second portion is positioned between said aperture and said other of first portion and said second portion. 9. The connection assembly of claim 7 , wherein said first portion and said second portion of said plurality of compressible protrusions form a discontinuous annular ring that is coaxial with said aperture. 10. The connection assembly of claim 9 , wherein each of said first portion of said plurality of compressible protrusions are equally spaced, and wherein each of said second portion of said plurality of compressible protrusions are equally spaced. 11. The connection assembly of claim 9 , wherein a third portion of said plurality of said compressible protrusions having a third shape different from said first shape and said second shape, and wherein one of said third portion and said discontinuous annular ring formed by said first portion and said second portion is positioned between said aperture and said other of said third portion and said discontinuous annular ring formed by said first portion and said second portion. 12. The connection assembly of claim 11 , wherein said third shape is a continuous annular ring that is coaxial with said aperture. 13. The connection assembly of claim 7 , wherein a third portion of said plurality of compressible protrusions having a third shape different from said first shape and said second shape. 14. The connection assembly of claim 13 , wherein one of said first portion, said second portion, and said third portion is positioned between the remaining two of said first portion, said second portion, and said third portion. 15. The connection assembly of claim 7 , wherein said first shape is a semispherical shape. 16. The connection assembly of claim 7 , wherein said second shape is an elongated semicircular segmental shape which forms a discontinuous annular ring that is coaxial with said aperture. 17. A connection assembly for attaching two components by a heat staking operation, said assembly comprising: a first component formed of a metallic material, said first component having an inner surface; a second component formed of a plastic material, said second component having an interior surface and an opposite exterior surface, said interior surface facing said inner surface of said first component, said second component having at least one aperture extending between said interior surface and said exterior surface, said second component having a compressible protrusion extending outwardly from said exterior surface adjacent said aperture; a hollow annular collar having a radially extending flange at a first end, said annular collar positioned within said aperture such that said flange covers said compressible protrusion; and a deformable stud having a proximate end and an opposite distal end, said deformable stud positioned within said annular collar, said deformable stud deforms upon the application of heat and pressure such that said distal end bonds with said inner surface of said first component and said proximate end deforms to restrain relative movement between said first component and said second component; wherein upon an application of heat and pressure to deform said deformable stud said compressible protrusion plastically deforms to absorb pressure to prevent cracking of said second component and said annular collar absorbs heat to prevent melting of said second component adjacent said aperture. 18. The connection assembly of claim 17 , wherein said compressible protrusion has a shape selected from the group consisting of semispherical, elongated circular segment, and continuous annular ring. 19. A method of attaching two components by heat staking, said method comprising: providing a first component formed of a metallic material, said first component having an inner surface; providing a second component formed of a plastic material, said second component having an interior surface and an opposite exterior surface, said interior surface facing said inner surface of said first component, said second component having at least one aperture extending between said interior surface and said exterior surface, said second component having a compressible protrusion extending outwardly from said exterior surface adjacent said aperture; providing a hollow annular collar having a radially extending flange at a first end, said annular collar positioned within said aperture such that said flange covers said compressible protrusion; and deforming a deformable stud using heat and pressure such that a distal end of said deformable stud bonds with said inner surface of said first component and a proximate end of said deformable stud deforms to restrain relative movement between said first component and said second component; wherein upon an application of heat and pressure to deform said deformable stud said compressible protrusion plastically deforms to absorb pressure to prevent cracking of said second component and said annular collar absorbs heat to prevent melting of said second component adjacent said aperture. 20. The method of claim 19 , wherein said compressible protrusion has a shape selected from the group consisting of semispherical, elongated circular segment, and continuous annular ring.

Assignees

Inventors

Classifications

  • without the use of separate rivets · CPC title

  • characterized by specific pressure, force, mechanical power or displacement values or ranges · CPC title

  • Uniting components to form integral members, e.g. turbine wheels and shafts, caulks with inserts, with or without shaping of the components (uniting by interference- or press-fitting B23P11/02, B21K19/02) · CPC title

  • said joint lines being formed by a single dot or dash or by several dots or dashes, i.e. spot joining or spot welding · CPC title

  • Solid rivets made in one piece · CPC title

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What does patent US8973248B2 cover?
A connection assembly for attaching metallic and plastic components by a heat staking operation includes a first component, a second component, a compressible protrusion, an annular collar, and a deformable stud. The first component is formed of a metallic material and includes an inner surface. The second component includes an interior surface facing the inner surface of the first component an…
Who is the assignee on this patent?
Toyota Eng & Mfg North America
What technology area does this patent fall under?
Primary CPC classification B29C65/44. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Mar 10 2015 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).