USRE20014E - Hollow forged valve and method of - Google Patents
Hollow forged valve and method of Download PDFInfo
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- USRE20014E USRE20014E US20014DE USRE20014E US RE20014 E USRE20014 E US RE20014E US 20014D E US20014D E US 20014DE US RE20014 E USRE20014 E US RE20014E
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- 239000002184 metal Substances 0.000 description 15
- 229910052751 metal Inorganic materials 0.000 description 15
- 238000004519 manufacturing process Methods 0.000 description 10
- 240000002444 Sphenoclea zeylanica Species 0.000 description 9
- 238000007493 shaping process Methods 0.000 description 9
- XEEYBQQBJWHFJM-UHFFFAOYSA-N iron Chemical compound [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 description 8
- 238000000034 method Methods 0.000 description 7
- 238000003754 machining Methods 0.000 description 5
- 238000005242 forging Methods 0.000 description 4
- 229910052742 iron Inorganic materials 0.000 description 4
- 239000000956 alloy Substances 0.000 description 3
- 229910045601 alloy Inorganic materials 0.000 description 3
- 230000015572 biosynthetic process Effects 0.000 description 3
- 238000005755 formation reaction Methods 0.000 description 3
- 230000002093 peripheral Effects 0.000 description 3
- 229910000831 Steel Inorganic materials 0.000 description 2
- REDXJYDRNCIFBQ-UHFFFAOYSA-N aluminium(3+) Chemical class [Al+3] REDXJYDRNCIFBQ-UHFFFAOYSA-N 0.000 description 2
- 238000002485 combustion reaction Methods 0.000 description 2
- 238000001816 cooling Methods 0.000 description 2
- 239000000203 mixture Substances 0.000 description 2
- 238000005096 rolling process Methods 0.000 description 2
- 239000010959 steel Substances 0.000 description 2
- 230000002459 sustained Effects 0.000 description 2
- OHYPPUOVSUINHM-UHFFFAOYSA-N 4-(methylamino)phenol;sulfuric acid Chemical compound OS(O)(=O)=O.CNC1=CC=C(O)C=C1 OHYPPUOVSUINHM-UHFFFAOYSA-N 0.000 description 1
- 238000005266 casting Methods 0.000 description 1
- 238000003776 cleavage reaction Methods 0.000 description 1
- 239000000498 cooling water Substances 0.000 description 1
- 230000000875 corresponding Effects 0.000 description 1
- 238000005553 drilling Methods 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 238000003825 pressing Methods 0.000 description 1
- 230000002787 reinforcement Effects 0.000 description 1
- 239000000126 substance Substances 0.000 description 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21K—MAKING FORGED OR PRESSED METAL PRODUCTS, e.g. HORSE-SHOES, RIVETS, BOLTS OR WHEELS
- B21K1/00—Making machine elements
- B21K1/20—Making machine elements valve parts
- B21K1/22—Making machine elements valve parts poppet valves, e.g. for internal-combustion engines
-
- Y—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
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T29/00—Metal working
- Y10T29/49—Method of mechanical manufacture
- Y10T29/49229—Prime mover or fluid pump making
- Y10T29/49298—Poppet or I.C. engine valve or valve seat making
- Y10T29/49307—Composite or hollow valve stem or head making
- Y10T29/49309—Composite or hollow valve stem or head making including forging
Definitions
- Thisinvention relates to valves for use in engines, and particularly to poppet valves of the water-cooled variety such as are commonly used in internal combustion engines of the Diesel type.
- valves being ordinarily of the poppet type, are provided with enlarged or mushroom" heads and relatively slender stems, and both the head and stem of the valve must be hollow to permit the introduction into, and circulation through, the valve of water for cooling purposes.
- valves of this type water-cooling feed pipes and their adjuncts omitted
- water-cooling feed pipes and their adjuncts omitted water-cooling feed pipes and their adjuncts omitted
- none of the valves for this service so' far produced have been satisfactory in service for the reason that, after sustained service for any appreciable length of time, cleavage will occur between the parts of the valve at their seams or joint, and the cooling water will leak into the combustion spaces of the engine cylinders with the result of improper functioning of the engine and probable damage thereto.
- Objects of my invention are to provide onepiece, seamless valves which are free from the objections noted above, and to provide a practical and economical method of making such valves.
- my invention consists in a valve formed preferably of a heat-resisting, non-magnetic and non-corrodible alloy, having a. hollow 5 head and stem all in one integral piece in the strict sense, whereby the failures due to assefliled valve structures are eliminated, and a durable,
- Figs. 1 and 2 are side and end views respectively of a blank from which the one piece valve may be manufactured;
- Figs. 3 and 4 are a longitudinal section and an ezied view of the blank after completion of the first 8 D;
- Figs. 5 and 6 are corresponding sectional and end views, respectively, of the blank and forging 5 dies at the end of the succeeding step in the process of manufacture;
- Figs. '7, 8 and 9 are sectional views through the blank at progressively'later steps in the formation of the finished valve; 0
- Fig. 10 is a longitudinal section through a blank composed of cast, ductile metal
- Fig. 11 is a side elevatioii of a blank from which two valves may be formed.
- Fig. 12 is a diagrammatic end view of swaging 15 dies.
- Figs. 1 and 2 illustrate a short cylindrical billet or blank I which has a diameter equal or approximately equal to the rough-finished diameter of the head of the valve.
- the 20 length of the blank is determined by quantity of metal in the finished valve, proper allowance being made for the metal which is removed during the first, or machining step.
- the blank I is 25 bored outto leave an end wall 2 having a small boss 3 at -the axis of the bore.
- Theinner end. of the bore is flared outwardly and the outer surface is machined, adjacent the closed end of the blank, to provide a peripheral groove or de- 30 provide the extended thin walled stem of the valve.
- the next step in the process comprises die-shaping the 4:! closed end of the blank to rough-finish the end wall 2 and rear face of the valve head.
- This operation may be effected by dies -6, by a forging hammer, a spring forging die, or by similar known die stamping. operations. 50
- the elongated stem is produced by swaging or rolling the cylin drical section of the blank I.
- Fig. 7 the blank is shown as it appears at an. intermediate stage
- the stem may be rifle bored by first countersinking the end of the valve head at 9, the boss 3 on the internal face of the end wall providing such reinforcement that the end wall is not weakened by the countersink.
- the machining step may be omitted by castingthe blank I to the form illustrated inrFig. 10, i. e., to substantiallythesame shapeasthatshowninFigA.
- the blank then takes the double-ended cup-shaped form illustrated in Fig. 11, and comprises what is, in eflect, two valve blanks such as shown in Figs.'3 and 10, the closed ends of the blanks being joined by an integral cylindrical section Ii.
- the section II is preferablyof somewhat reduced diameter in order that it may indicate the control center of the forging.
- Fig. 12 I have shown the blank in position in dies l2, for working-down the diameter of the cylindrical stem.
- the dies may be operated by a steam or electric hammer in the usual manner, and, asshown in the drawing, the dieaperture is of approximately oval cross-section to permit some lateral flow of the metal during the swaging operation.
- the swaging operations are carried out in the usual manner, due care beingexercised, of course, to prevent the dies fromcontacting with the head of the valve while the stem is being forged.
- Iron of this composition is commercially known as stainless iron, is non-magnetic and may be readily forged and drawn at temperatures between 2100 F. and 1l50 F.
- iron, steel and alloys having widely different chemical compositions may be used in the formation of hollow, one-piece valves when the metal is of such a nature that it maybe die stamped and drawn.
- a one-piece forged hollow valve of the poppet type comprising a hollow head, and a hollow stem integral with said head and of materially less diameter, said stem having been drawn down from a mass of metal which was initially of substantially the same diameter 'as said head.
- a one-piece forged valve of the poppet type comprising a hollow head, and a stem integral with said head and of materially less diameter
- a one-piece, seamless, hollow valve of the poppet type substantially identical with one made 29 by thehereindescribed process which comprises shaping the closedend of a short, thick-walled cylindrical blank having an external diameter of working downthe short, thick-walled cylindrical portion of said blank to form an elongated, thinwalledstem.
- a one-piece forged valve having a hollow head and substantially identical with one made ,by the hereindescribed process of pressure-shaping the closed end of a substantially cylindrical hollow blank to rough finish said closed end-as the hollow head of the valve, and working down elongated, small diameter stem integral with the said hollow head.
- a poppet valve of the type having a hollow ized by the fact that said head and stem consist of a single, seamless piece of metal, and said stem was worked down from a short, large diameter tubular blank integral with said hollow head.
- A- hollow, one-piece and seamless poppet valve made by shaping the closed end of a short hollow metallic blank to the approximate form of the finished valve head, and by elongating the remainder of the blank to form a long, hollow stem.
- a hollow, one-piece poppet valve made by casting steel in the form of a short hollow blank approximate form of the hollow headof the finished valve, and by elongating the remainder oi the blank to form a long, hollow stem integral with said hollow valve head.
- a hollow, one-piece poppet valve made by counterboring a cylindrical blank and grooving the exterior adjacent the closed end, die-shaping the blank to give the closed end the form of the hollow head of the finished valve, and elongating the remainder of the blank toformm long,.
- a hollow, one-piece and seamless poppet valve made by shaping the closed end of a short, thick-walled cylindrical blank to the shape and approximate size of the hollow head of the valve
- a hollow, one-piece and seamless poppet valve made by die-stamping a relatively short, thick-walled blank having a diameter of the order of that of the head of the finished valve and having one closed end to rough finish said closed end oi the blank as, the head of said valve, and working down the remaining portion of the blank to form a long, relatively thin-walled hollow stem.
- the method of forming a one-piece valve of the P p t typc which comprises forming a substan im! cylindrical tubular blank having and working down the remainder of said blank to one closed. end and a diameter materially in excess of that of the finished valve stem, pressureshaping the closed end portion of said blank to the form of a hollow valve head, and working down the remainingportion of said blank to form an elongatedstem of relatively small diameter.
- the method 01 forming a one-piece forged hollow valve oi the poppet type which comprises die-stamping a relatively short, thick-walled blank having a diameter of the order of that of the head of the finished valve and having one closed end to rough finish said closed end or the blank as the head of said valve, and working down the remaining portion oi the blank to form a long, relatively thin-walled hollow stem.
- a 18 The method of making a valve which comprises forming a cup-shaped blank 01' substantlally the diameter of the desired valvev head, and reducing the cylindrical portion of the blank from adjacent the base portion to substantially the diameter of the desired stem.
- the method of making a valve which comprises forming a. cup-shaped blank of substantially the diameter of the desired valve head. reducing the cylindrical portion of the blank from adjacent the base portion to substantially the diameter of the desired valve stem, and thereafter machining the part-engaging por-. tions of the exterior of the valve.
- the method of making hollow-headed poppet valves which comprises forming a doubleended cup-shaped blank having recesses extending inwardly from the opposite ends thereof to a central base portion, forming a pair of hollow head portionsby swaging the sections of the blank surrounding the r to reduce the diameter adjacent the ends of the recesses, severing the blank through the said base section, 35 and finishing each of the two pieces so formed as a a separate valve.
- valve which- (bmprises forming a substantially cylindrical blank having recesses extending into the ends 40 thereof, forming a pair of hollow head portions by swaging the portions of the blank surrounding the recesses to reduce the diameter adjacent the ends of the recesses, severing the blank through the portion between the recesses. and 46 finishing each of the two pieces so formed as a separate valve.
- valves of the character described comprising the steps of providing a blank having itsgreater diameter 80 equal to that of the head portion of the finished valve without deforming the metal in said head portion, and then reducing a portion of said blank to a diameter and length equal to that of the stem 5 25.
- the method comprising "the steps, of providing a blank having its greater diameter equal to that of the head portion of the finished valve without deforming the metal in said head a portion, reducing a portion of said blank to a diameter and length equal to that of the stem portion of the valve, and then drilling out the interior of said stem portion.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- Forging (AREA)
Description
June 23, 1936. Re. 20,014
HOLLOW FORGED VALVE AND METHOD OF MAKING THE SAME w. SCRIMGEOUR Originai Filed March 16, 1929 Jwumtot:
Reissued June 23, 1936 PATENT ,OFFICE,
HOLLOW FORGED VALVE AND DIETHOD OF MAKING THE SAME William Serlmgeonr, Washington, D. 0.
Original No. 1,959,951I dated March 13, 1934,
Serial No. 347,671, March 16, 1929. Application forreissne November 18, 1935, Serial No.
25 Claims. (o1. 29-l56. 7);
Thisinvention relates to valves for use in engines, and particularly to poppet valves of the water-cooled variety such as are commonly used in internal combustion engines of the Diesel type.
This application is a continuation in, part of my copending application Ser, No. 259,541, filed March 6, 1928.
In Diesel engines it is the present practice, due
to the excessive heat developed, and the heavy duty and sustained operation to which such engines are customarily subjected, to control the exhaust of the engine by means of hollow, watercooled valves. Such valves, being ordinarily of the poppet type, are provided with enlarged or mushroom" heads and relatively slender stems, and both the head and stem of the valve must be hollow to permit the introduction into, and circulation through, the valve of water for cooling purposes.
The bodies proper of all valves of this type (water-cooling feed pipes and their adjuncts omitted) are, so far as I am aware, made of at least two pieces, and these pieces are united in various ways apparently best suited to the purposer Some .are welded together, some are cast together and others are appropriately machined and assembled and then fixed in their assembled relation. But none of the valves for this service so' far produced have been satisfactory in service for the reason that, after sustained service for any appreciable length of time, cleavage will occur between the parts of the valve at their seams or joint, and the cooling water will leak into the combustion spaces of the engine cylinders with the result of improper functioning of the engine and probable damage thereto.
Objects of my invention are to provide onepiece, seamless valves which are free from the objections noted above, and to provide a practical and economical method of making such valves.
To these ends my invention consists in a valve formed preferably of a heat-resisting, non-magnetic and non-corrodible alloy, having a. hollow 5 head and stem all in one integral piece in the strict sense, whereby the failures due to assefliled valve structures are eliminated, and a durable,
leak-proof, non-rusting, non-magnetic, and nonwarping valve is provided, as I will proceed now to explain and finally claim.
These and other objects of the invention will be apparent from the following specification when taken with the accompanying drawing, in which: Figs. 1 and 2 are side and end views respectively of a blank from which the one piece valve may be manufactured;
Figs. 3 and 4 are a longitudinal section and an ezied view of the blank after completion of the first 8 D;
Figs. 5 and 6 are corresponding sectional and end views, respectively, of the blank and forging 5 dies at the end of the succeeding step in the process of manufacture;
Figs. '7, 8 and 9 are sectional views through the blank at progressively'later steps in the formation of the finished valve; 0
Fig. 10 is a longitudinal section through a blank composed of cast, ductile metal;
Fig. 11 is a side elevatioii of a blank from which two valves may be formed; and
Fig. 12 is a diagrammatic end view of swaging 15 dies. I
In the drawing, Figs. 1 and 2 illustrate a short cylindrical billet or blank I which has a diameter equal or approximately equal to the rough-finished diameter of the head of the valve. The 20 length of the blank is determined by quantity of metal in the finished valve, proper allowance being made for the metal which is removed during the first, or machining step.
As indicated in Figs. 3 and 4, the blank I is 25 bored outto leave an end wall 2 having a small boss 3 at -the axis of the bore. Theinner end. of the bore is flared outwardly and the outer surface is machined, adjacent the closed end of the blank, to provide a peripheral groove or de- 30 provide the extended thin walled stem of the valve.
The next step in the process, as indicated graphically in Fig. 5, comprises die-shaping the 4:! closed end of the blank to rough-finish the end wall 2 and rear face of the valve head. This operation may be effected by dies -6, by a forging hammer, a spring forging die, or by similar known die stamping. operations. 50
After the formation of the head, the elongated stem. is produced by swaging or rolling the cylin drical section of the blank I. In Fig. 7, the blank is shown as it appears at an. intermediate stage,
the swaging or rolling operations being repeated 55 until the, short thick-walled cylindrical portion of the blank is worked down to form an elongated stem 8 having a'comparatively thin wall.
At the-close of the swaging operations, or if, necessary or desirable between successive steps, the stem may be rifle bored by first countersinking the end of the valve head at 9, the boss 3 on the internal face of the end wall providing such reinforcement that the end wall is not weakened by the countersink.
'Ihe valve is then ready for the machining and/or grinding operations which finish the valve to the desiredsize and shape. .In Fig. 9, I have shown the stem 8 as of uniform cross-section throughout its length, but it will be apparent that suitable peripheral ridges or grooves be machinedin the stem to fitthe valve for use with any desired type of guide sleeves, springs and the like. -Whenthevalveistobeformedofametalor alloy which may bereadily cast, the machining step may be omitted by castingthe blank I to the form illustrated inrFig. 10, i. e., to substantiallythesame shapeasthatshowninFigA.
It is often convenient, particularly with com paratively small valves, to forge two valves at a time. The blank then takes the double-ended cup-shaped form illustrated in Fig. 11, and comprises what is, in eflect, two valve blanks such as shown in Figs.'3 and 10, the closed ends of the blanks being joined by an integral cylindrical section Ii. The section II is preferablyof somewhat reduced diameter in order that it may indicate the control center of the forging. After die shaping the united valve blanks, they may be separated by machining away or sawing through the section II, or if desired or convenient, both stems may be simultaneously drawn down through a pair of alined drawing dies before the valves are separated.
In Fig. 12, I have shown the blank in position in dies l2, for working-down the diameter of the cylindrical stem. The dies may be operated by a steam or electric hammer in the usual manner, and, asshown in the drawing, the dieaperture is of approximately oval cross-section to permit some lateral flow of the metal during the swaging operation. The swaging operations are carried out in the usual manner, due care beingexercised, of course, to prevent the dies fromcontacting with the head of the valve while the stem is being forged.
As an example of a metal which may. be worked by die stamping and drawing to form a hollow one-piece seamless valve, attention is directed to the iron identified as CRS" in Navy Department specifications, and which includes the other elements in the percentages stated below:
Iron of this composition is commercially known as stainless iron, is non-magnetic and may be readily forged and drawn at temperatures between 2100 F. and 1l50 F.
It is obvious that iron, steel and alloys having widely different chemical compositions may be used in the formation of hollow, one-piece valves when the metal is of such a nature that it maybe die stamped and drawn.
Various changes in the form. material and superficial characteristics of the valve are deemed said stem having been worked down from a mass the order of that of the finished valve head to the approximate form of the valve head, and
T the remaining .portion of the blank to form an tubular blank having been pressure-shaped to head of relatively large diameter and a long hollow stem of relatively small diameter characterhaving one end closed and conforming to the to be within the spirit of my invention and the scope of the following claims, it being understood that the invention resides in the hollow, onepiece, seamless valve formed of a single integral piece of metal, and its method of manufacture.
I claim: 4
l. A one-piece forged hollow valve of the poppet type comprising a hollow head, and a hollow stem integral with said head and of materially less diameter, said stem having been drawn down from a mass of metal which was initially of substantially the same diameter 'as said head.
2. A one-piece forged valve of the poppet type comprising a hollow head, and a stem integral with said head and of materially less diameter,
of metal which was initially of substantially the same diameter as the head.
3. A one-piece, seamless, hollow valve of the poppet type substantially identical with one made 29 by thehereindescribed process which comprises shaping the closedend of a short, thick-walled cylindrical blank having an external diameter of working downthe short, thick-walled cylindrical portion of said blank to form an elongated, thinwalledstem. n
4. A one-piece forged valve having a hollow head and substantially identical with one made ,by the hereindescribed process of pressure-shaping the closed end of a substantially cylindrical hollow blank to rough finish said closed end-as the hollow head of the valve, and working down elongated, small diameter stem integral with the said hollow head.
I 5. A one-piece forgedhollow valve substantially identical with one made by the hereindescribed process of die-shaping the closed end of a short, 40 thick-walled tubular blank to rough-finish said closed end as the hollowhead of said valve, and working down the short, thick-walled tubular portion of said blank to form a relatively long and thinhollow stem. V V
6. A poppet valve of the type having a hollow head'of relatively large diameter and an elongated stem of relatively small diameter characterized by the fact that said head and stem consist of a single piece of metal which previously had theform of a tubular blank with one closed end, the metal at the closed end of the the form of the hollow head and the remaining metal having been worked down to form an elongated stem integral with the head.
7. A poppet valve of the type having a hollow ized by the fact that said head and stem consist of a single, seamless piece of metal, and said stem was worked down from a short, large diameter tubular blank integral with said hollow head.
' 8. A- hollow, one-piece and seamless poppet valve made by shaping the closed end of a short hollow metallic blank to the approximate form of the finished valve head, and by elongating the remainder of the blank to form a long, hollow stem. w 9. A hollow, one-piece poppet valve made by casting steel in the form of a short hollow blank approximate form of the hollow headof the finished valve, and by elongating the remainder oi the blank to form a long, hollow stem integral with said hollow valve head.
10. A hollow, one-piece poppet valve made by counterboring a cylindrical blank and grooving the exterior adjacent the closed end, die-shaping the blank to give the closed end the form of the hollow head of the finished valve, and elongating the remainder of the blank toformm long,.
hollow stem integral with said hollow head.
11. A hollow, one-piece and seamless poppet valve made by shaping the closed end of a short, thick-walled cylindrical blank to the shape and approximate size of the hollow head of the valve,
form a thin-walled elongated stem integral with said head.
12. A hollow, one-piece and seamless poppet valve made by die-stamping a relatively short, thick-walled blank having a diameter of the order of that of the head of the finished valve and having one closed end to rough finish said closed end oi the blank as, the head of said valve, and working down the remaining portion of the blank to form a long, relatively thin-walled hollow stem.
13. The method of forming a one-piece valve of the P p t typc,,which comprises forming a substan im! cylindrical tubular blank having and working down the remainder of said blank to one closed. end and a diameter materially in excess of that of the finished valve stem, pressureshaping the closed end portion of said blank to the form of a hollow valve head, and working down the remainingportion of said blank to form an elongatedstem of relatively small diameter.
14. The method of forming a one-piece, seamless, hollow valve of the poppet type, which comprises shaping the closed end of a short, thickwalled cylindrical blank to the shape and approximate size of the hollow head of the valve, and
working down the remainder oi said blank to form a thin-walled said head.
15. The method 01 forming a one-piece forged hollow valve oi the poppet type which comprises die-stamping a relatively short, thick-walled blank having a diameter of the order of that of the head of the finished valve and having one closed end to rough finish said closed end or the blank as the head of said valve, and working down the remaining portion oi the blank to form a long, relatively thin-walled hollow stem.
16. The process of forming a one-piece. seamless, hollow valve of the poppet type, which comprises dle-pressing a short, thick-walled cylindrlcal blank having one closed end and an external diameter substantially equal to that or the finished valve head, to shape the peripheral wall adjacent said closed end to the approximate shape of the rear face of the finished head. and working down the remaining shortthick-walled elongated stem integral with cylindrical portion of the blank to form an elon gated hollow stem.
17. The process as set forth in claim 18 wherein the working down 01' said cylindrical stem is portion.
eilected by the alternating steps of working and of reaming the cylindrical stem. a 18. The method of making a valve which comprises forming a cup-shaped blank 01' substantlally the diameter of the desired valvev head, and reducing the cylindrical portion of the blank from adjacent the base portion to substantially the diameter of the desired stem.
19. The method of making a valve which comprises forming a. cup-shaped blank of substantially the diameter of the desired valve head. reducing the cylindrical portion of the blank from adjacent the base portion to substantially the diameter of the desired valve stem, and thereafter machining the part-engaging por-. tions of the exterior of the valve.
20. The method of making a valve which conprises forming a cup-shaped blank of a diameter materially in excess of the diameter of the desired valve stem, and reducing the cylindrical portion of the blank from adjacent the base portion to form a hollow stem.
21. The method of making a valve as claimed in claim 20, wherein the base portion of the blank is pressure-shaped to form a hollow valve head.
22. The method of making hollow-headed poppet valves which comprises forming a doubleended cup-shaped blank having recesses extending inwardly from the opposite ends thereof to a central base portion, forming a pair of hollow head portionsby swaging the sections of the blank surrounding the r to reduce the diameter adjacent the ends of the recesses, severing the blank through the said base section, 35 and finishing each of the two pieces so formed as a a separate valve.
23. The method of producing a valve which- (bmprises forming a substantially cylindrical blank having recesses extending into the ends 40 thereof, forming a pair of hollow head portions by swaging the portions of the blank surrounding the recesses to reduce the diameter adjacent the ends of the recesses, severing the blank through the portion between the recesses. and 46 finishing each of the two pieces so formed as a separate valve.
24. In the manufacture of valves of the character described, the method comprising the steps of providing a blank having itsgreater diameter 80 equal to that of the head portion of the finished valve without deforming the metal in said head portion, and then reducing a portion of said blank to a diameter and length equal to that of the stem 5 25. Inthemanufacture of valves of the character described, the method comprising "the steps, of providing a blank having its greater diameter equal to that of the head portion of the finished valve without deforming the metal in said head a portion, reducing a portion of said blank to a diameter and length equal to that of the stem portion of the valve, and then drilling out the interior of said stem portion.
-- WILLIAM SCRIMGHJUR.
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5413073A (en) * | 1993-04-01 | 1995-05-09 | Eaton Corporation | Ultra light engine valve |
US20110174259A1 (en) * | 2008-09-18 | 2011-07-21 | Mitsubishi Heavy Industries, Ltd. | Method for production of valve head portion of hollow engine valve and hollow engine valve |
US20160186621A1 (en) * | 2014-12-11 | 2016-06-30 | Mahle International Gmbh | Device for producing at least one hollow valve |
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0
- US US20014D patent/USRE20014E/en not_active Expired
Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5413073A (en) * | 1993-04-01 | 1995-05-09 | Eaton Corporation | Ultra light engine valve |
US20110174259A1 (en) * | 2008-09-18 | 2011-07-21 | Mitsubishi Heavy Industries, Ltd. | Method for production of valve head portion of hollow engine valve and hollow engine valve |
US8522434B2 (en) * | 2008-09-18 | 2013-09-03 | Mitsubishi Heavy Industries, Ltd. | Method for production of valve head portion of hollow engine valve and hollow engine valve |
US20130313463A1 (en) * | 2008-09-18 | 2013-11-28 | Yoshimura Company | Method for Production of Valve Head Portion of Hollow Engine Valve and Hollow Engine Valve |
US9194263B2 (en) | 2008-09-18 | 2015-11-24 | Mitsubishi Heavy Industries, Ltd. | Method for production of valve head portion of hollow engine valve and hollow engine valve |
US9447711B2 (en) * | 2008-09-18 | 2016-09-20 | Fuji Hollow Valve Inc. | Method for production of valve head portion of hollow engine valve and hollow engine valve |
US20160186621A1 (en) * | 2014-12-11 | 2016-06-30 | Mahle International Gmbh | Device for producing at least one hollow valve |
US9828892B2 (en) * | 2014-12-11 | 2017-11-28 | Mahle International Gmbh | Device for producing at least one hollow valve |
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