EMBEDDED PISTON STRUCTURES
20240263598 ยท 2024-08-08
Inventors
Cpc classification
F05C2201/021
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02F3/0084
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A piston, comprising a crown, an insert having an outer ring, an inner ring, and at least one interconnection between the outer ring and the inner ring, and a skirt integrally formed with the crown through the insert so that the crown and skirt are made from a type of aluminum and the insert is made from a material other than aluminum.
Claims
1. A piston, comprising: a crown; an insert having an outer member, an inner member, and at least one interconnection between the outer member and the inner member; and a skirt integrally formed with the crown through the insert, wherein the crown and skirt are made from a type of aluminum and the insert is made from a material other than aluminum.
2. The piston of claim 1, further comprising a groove in the outer member in the same plane as a circumference of the piston.
3. The piston of claim 2, further comprising a plurality of interconnections between the outer member and the inner member.
4. The piston of claim 3, further comprising an aperture through the inner member.
5. The piston of claim 1, further comprising an aperture through the inner member.
6. The piston of claim 5, further comprising a plurality of interconnections between the outer member and the inner member.
7. The piston of claim 1, further comprising a plurality of interconnections between the outer member and the inner member.
8. The piston of claim 7, wherein each of the plurality of interconnections is equally spaced about a common center of the outer member and the inner member.
9. The piston of claim 7, further comprising an aperture through the inner member.
10. The piston of claim 1, further comprising a channel through a thickness of the outer member.
11. The piston of claim 1, further comprising a channel along a radial direction of the outer member and a groove in the outer member.
12. The piston of claim 1, wherein the piston is operatively connected to an engine for a vehicle.
13. The piston of claim 1, wherein the outer member is an annular shape.
14. The piston of claim 13, wherein the inner member is an annular shape.
15. The piston of claim 1, wherein the at least one interconnection is angled so that the inner member and the outer member are not in the same plane.
16. The piston of claim 15, further comprising a plurality of interconnections between the outer member and the inner member.
17. The piston of claim 16, further comprising a channel through a thickness of the outer member and a groove in the outer member.
18. The piston of claim 17, wherein the piston is operatively connected to an engine for a vehicle.
19. The piston of claim 16, wherein the outer member is an annular shape.
20. The piston of claim 19, wherein the inner member is an annular shape.
Description
DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026] In the drawings like characters of reference indicate corresponding parts in the different and interchangeable and interrelated figures. Parts and components of each figure may be substitutes for other components in other figures to achieve the various methods and embodiments disclosed herein. Methods and protocols disclosed in any embodiment may be run in any order so as to affect their disclosed goals and/or enable performance of the systems as described. Additionally, any one embodiment may utilize any method or protocol described and in any portions, sequences, and combinations thereof.
DETAILED DESCRIPTION
[0027] With reference to the illustrative embodiments described herein and illustrated in
[0028] As illustrated in
[0029] With reference to the exemplary embodiment illustrated by
[0030] Referring now to the illustrative embodiment of
[0031]
[0032] Alternatively, pin 8 may be one or more types of remnants of the molding process in which the exemplary insert 10 may be insertion molded within the piston 20 material during its casting.
[0033] In other words, pin 8 may be a structure that may be used to suspend an exemplary insert 10 in the casting mold so that when the material forming the piston 20 is poured therein, it would engulf and flow through all available spacings formed between stems 3 and/or aperture 5 adjacent rings 1 and 2. In a further alternative embodiment, an exemplary retainer pin 8 may not be needed due to the nature in which the material making up the piston 20 is poured into and through the spacings formed by the stem(s) 3 and aperture 5 formed in and between ring 1 and/or ring 2. The aforementioned may also be true of other structures that are not retainer pin 8. As further detailed in
[0034] Referring now to the illustrative embodiment depicted in
[0035] The illustrative embodiments of
[0036] An exemplary piston 20 and exemplary insert 10 may be integrally formed by a metal casting process. An exemplary insert 10 may be first produced by a process of centrifugal casting, after which it may be pre-machined and then coated with aluminum by immersing it in a molten aluminum bath to facilitate bonding to the aluminum comprising an exemplary piston 20. An exemplary piston 20 may be cast from molten aluminum by a gravity casting process. According to one exemplary embodiment, an exemplary insert 10 may be placed in the mold while the piston 20 is being cast so that the piston 20 is formed with a groove 6 as a result of the insert 10 being insertion-molded within the piston 20. According to this exemplary embodiment, the integrally formed piston 20 and insert 10 may then be subjected to heat treatment for hardening of the materials, for relieving stress in the formed structures, and/or other such objectives. Thereafter, in further accordance with this exemplary embodiment, an exemplary piston 20 and integrated insert 10 may then be anodized to create a corrosion proof surface.
[0037] According to a yet further different exemplary embodiment, in which some or all of the prior techniques may be used, an exemplary retainer pin 8 may be used to suspend insert 10 within a casting mold so that no aluminum passing through insert 10 may get within groove 6 formed therein In other words, the casting mold may be only a one part mold with a cylindrical or other type passage through its thickness and into the cavity of the casting mold. Using an appropriately sized retainer pin 8 at one or more positions about outer ring 1 (e.g., an outer ring 1 having a plurality of channels 4, each capable of receiving an exemplary retainer pin 8 therein), an exemplary insert 10 may be held within the casting at a single location via the plurality of retainer pins so that aluminum can be passed over the same. According to this different exemplary embodiment, the retainer pins 8 may be removed after the casting process is completed so that the integrally molded piston 20 and insert 10 may be free to move out of the single cavity casting.
[0038] In an alternative embodiment, an exemplary piston 20 may be integrally molded with insert 10 using one or more of the techniques described, except that insert 10 does not yet have groove 6 therein. According to this alternative embodiment, groove 6 may be machined into the integrally molded insert 10 after casting piston 20 material therethrough, making the groove 6 a post-casting feature of the integrated piston 20. After casting of the piston 20 and insert 10, and after machining the groove 6 in the integrally molded insert 10 (e.g., machining outer ring 1 while it is embedded in piston 20), an exemplary milling operation may be used to form channel 4 through groove 6 for an exemplary retainer pin 8.
[0039] In an alternative embodiment, the stems 3 of the insert 10 may be directly connected to one another at a central hub or node, like the spokes of a car wheel, to be used to provide additional advantages. Alternatively, the stems 3 may be a plurality of different shapes and patterns depending on needs.
[0040] In each of the above embodiments, an exemplary insert 10 may be made of hardened steel, stainless steel, and alloys and composites of the same. In each of the above embodiments, an exemplary piston 20 may be made of aluminum or alloys of the same.
[0041] Many further variations and modifications may suggest themselves to those skilled in art upon making reference to above disclosure and foregoing interrelated and interchangeable illustrative embodiments, which are given by way of example only, and are not intended to limit the scope and spirit of the interrelated embodiments of the invention described herein.