Engine cover integrated captive fastener
09540997 ยท 2017-01-10
Assignee
Inventors
- John Carl Lohr (Beverly Hills, MI, US)
- Sandra Davidson Osip (Livonia, MI, US)
- Todd Rakus (Windsor Ontario, CA)
Cpc classification
F02F7/0082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T29/49231
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F16M1/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B77/11
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02B77/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M1/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An engine cover assembly having an integrally attached captive fastener or part-in-assembly fastener for attachment to an engine is disclosed. The engine cover assembly includes an engine cover having a fastener aperture formed in a recessed area thereof and a captive fastener assembly integrally attached to the cover. The captive fastener assembly includes an elongated fastener having a head or shoulder, a load limiting spacer disposed next to the shoulder of the elongated fastener, and a load limiter positioned next to the load limiting spacer. The load limiter has shoulders formed at both ends. The elongated fastener has a threaded end for attachment to a threaded insert positioned in the engine. Insulators are attached to the load limiting spacer and are positioned to either side of an area of the engine cover adjacent the fastener aperture, thus capturing the engine cover between the elongated fastener head and the load limiter.
Claims
1. A vehicle engine assembly comprising: an engine having a threaded insert; an engine cover having a fastener aperture; a fastener assembly integrally attached to said cover, said assembly comprising an elongated fastener for attachment to said insert, said fastener having a shoulder, a load limiter having first and second shoulders, a spacer fitted between said shoulder of said fastener and said first shoulder of said limiter, and an insulator fitted between said shoulder of said fastener and said cover.
2. The vehicle engine assembly of claim 1, wherein said spacer is a load limiting spacer.
3. The vehicle engine assembly of claim 1 wherein said fastener aperture is formed through a fastener portion of said engine cover and wherein said insulator is fitted between said shoulder of said elongated fastener and said fastener portion of said cover, said insulator being fitted around said spacer.
4. The vehicle engine assembly of claim 1 wherein said fastener aperture is formed through a fastener portion of said engine cover and wherein said insulator is fitted between said first shoulder of said load limiter and said fastener portion of said cover, said insulator being fitted around said spacer.
5. The vehicle engine assembly of claim 1 wherein said fastener aperture is formed through a fastener portion of said engine cover and wherein said insulator is fitted between said shoulder of said elongated fastener and said fastener portion of said cover and a second insulator fitted between said first shoulder of said load limiter and said fastener portion of said cover, said insulators being fitted around said spacer.
6. The vehicle engine assembly of claim 5 wherein said insulators are formed from rubber or a rubber-like material.
7. The vehicle engine assembly of claim 1 wherein said engine cover has a recessed area and wherein said fastener aperture is formed in said recessed area.
8. A cover assembly for a vehicle engine comprising: an engine cover having a fastener aperture; a fastener assembly integrally attached to said cover, said assembly comprising an elongated fastener having a shoulder, a load limiter having first and second shoulders, a spacer fitted between said shoulder of said fastener and said first shoulder of said limiter, and an insulator fitted between said shoulder of said fastener and said cover.
9. The vehicle engine assembly of claim 8, wherein said spacer is a load limiting spacer.
10. The cover assembly for a vehicle engine of claim 8 wherein said fastener aperture is formed through a fastener portion of said engine cover and wherein said insulator is fitted between said shoulder of said elongated fastener and said fastener portion of said cover, said insulator being fitted around said spacer.
11. The cover assembly for a vehicle engine of claim 8 wherein said fastener aperture is formed through a fastener portion of said engine cover and wherein said insulator is fitted between said first shoulder of said load limiter and said fastener portion of said cover, said insulator being fitted around said spacer.
12. The cover assembly for a vehicle engine of claim 8 wherein said fastener aperture is formed through a fastener portion of said engine cover and wherein said insulator is fitted between said shoulder of said elongated fastener and said fastener portion of said cover and a second insulator fitted between said first shoulder of said load limiter and said fastener portion of said cover, said insulators being fitted around said spacer.
13. The cover assembly for a vehicle engine of claim 12 wherein said insulators are formed from rubber or a rubber-like material.
14. The cover assembly for a vehicle engine of claim 8 wherein said engine cover has a recessed area and wherein said fastener aperture is formed in said recessed area.
15. A method for covering a vehicle engine comprising: forming an aperture in the engine and positioning a threaded insert therein; forming a cover assembly including a cover and a fastener assembly integrally attached thereto, said assembly comprising a fastener having a shoulder, a load limiter having a shoulder, a spacer fitted between said fastener shoulder and said limiter shoulder, and an insulator fitted between said shoulder of said fastener and said cover; positioning said cover assembly over the engine; and threading said fastener into said insert.
16. The method for covering a vehicle engine of claim 15, wherein said shoulder of said load limiter is a first shoulder, said load limiter including a second shoulder, and wherein said spacer is positioned against said first shoulder and said second shoulder is positioned against said aperture formed in the engine.
17. The method for covering a vehicle engine of claim 15, wherein said cover has a recessed area having a fastener-passing aperture formed therein and said fastener is fitted through said aperture.
18. The method for covering a vehicle engine of claim 17, wherein said fastener-passing aperture is formed through a fastener portion of said engine cover and wherein said insulator is fitted between said shoulder of said elongated fastener and said fastener portion of said cover, said insulator being fitted around said spacer.
19. The method for covering a vehicle engine of claim 17, wherein said fastener-passing aperture is formed through a fastener portion of said engine cover and wherein said insulator is fitted between said first shoulder of said load limiter and said fastener portion of said cover, said insulator being fitted around said spacer.
20. The method for covering a vehicle engine of claim 17, wherein said fastener-passing aperture is formed through a fastener portion of said engine cover and wherein said insulator is fitted between said shoulder of said elongated fastener and said fastener portion of said cover and a second insulator fitted between said first shoulder of said load limiter and said fastener portion of said cover, said insulators being fitted around said spacer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) For a more complete understanding of this invention, reference should now be made to the embodiments illustrated in greater detail in the accompanying drawings and described below by way of examples of the invention wherein:
(2)
(3)
(4)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(5) In the following figures, the same reference numerals will be used to refer to the same components. In the following description, various operating parameters and components are described for different constructed embodiments. These specific parameters and components are included as examples and are not meant to be limiting.
(6) Referring to
(7) In response to the limited clearances available in the engine 10 and the associated cam cover 14, a cam cover boss 18 is formed with the cam cover 14. The shape and placement of the cam cover boss 18 as shown in
(8) The cam cover boss 18 is provided for attachment of the engine cover assembly of the disclosed inventive concept, discussed below and in relation to
(9)
(10) A threaded fastener insert 38 is fitted in the fastener hole 20 formed in the cam cover boss 18. The threaded fastener insert 38 may be formed from any one of several materials including, for example, a plastic or a metal.
(11) As illustrated in
(12)
(13) The fastener assembly 40 includes an elongated fastener 42, such as an M6 fastener, although other fasteners may be suitable for the desired purpose. The elongated fastener 42 may also include any of a variety of heads, such as a Torx (trademark) button-head or a bolt-head 44 as illustrated. Regardless of the embodiment fastener head, a shoulder 46 is formed on the underside of the fastener head 44.
(14) To provide the needed structural support created by the air gap formed between the upper surface of the cam cover boss 18 and the lower surface of the recessed area 34, a load limiter 48 is positioned therebetween. The load limiter 48 may be formed from a variety of materials, including metal, and includes an upper shoulder 50 and a lower shoulder 52. The outer side of the lower shoulder 52 rests against the upper surface of the cam cover boss 18.
(15) In addition to the load limiter 48, structural support is also provided in the fastener assembly 40 by the provision of a spacer 54 that is fitted through the fastener-retaining aperture 36 and between the underside of the shoulder 46 and the outer side of the upper shoulder 50 of the load limiter 48. The spacer 54 also functions as a load limiter.
(16) An upper insulator 56 is provided between the underside of the shoulder 46 of the elongated fastener 42 and the outer side of the recessed area 34. A lower insulator 58 is provided between the outer surface of the upper shoulder 50 and the inner side of the recessed area 34. The insulators 56 and 58 may be made from any one of several possible insulating materials, such as rubber. The spacer 54 passes through middles of both the upper insulator 56 and the lower insulator 58.
(17) In use, the disclosed inventive concept provides a cost-effective and easy way of attaching an engine cover to an engine compared with known techniques. By providing an engine cover assembly according to the disclosed inventive concept that includes a captive attachment assembly, the number of production steps required to properly attach the engine cover assembly to the engine is significantly reduced. In the same manner, the number of steps needed to remove the engine cover assembly in case of engine is also reduced.
(18) Thus, the disclosed invention as set forth above overcomes the challenges faced by known engine cover assemblies by increasing ease of assembly and ease of repair. However, one skilled in the art will readily recognize from such discussion, and from the accompanying drawings and claims that various changes, modifications and variations can be made therein without departing from the true spirit and fair scope of the invention as defined by the following claims.