US1823158A - Axle and method of making the same - Google Patents

Axle and method of making the same Download PDF

Info

Publication number
US1823158A
US1823158A US451229A US45122930A US1823158A US 1823158 A US1823158 A US 1823158A US 451229 A US451229 A US 451229A US 45122930 A US45122930 A US 45122930A US 1823158 A US1823158 A US 1823158A
Authority
US
United States
Prior art keywords
axle
socket
blank
knuckle
shank
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US451229A
Inventor
Edmund C Mogford
Spatta George
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Doosan Bobcat North America Inc
Original Assignee
Clark Equipment Co
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from US363362A external-priority patent/US1899347A/en
Application filed by Clark Equipment Co filed Critical Clark Equipment Co
Priority to US451229A priority Critical patent/US1823158A/en
Application granted granted Critical
Publication of US1823158A publication Critical patent/US1823158A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21KMAKING FORGED OR PRESSED METAL PRODUCTS, e.g. HORSE-SHOES, RIVETS, BOLTS OR WHEELS
    • B21K1/00Making machine elements
    • B21K1/06Making machine elements axles or shafts
    • B21K1/12Making machine elements axles or shafts of specially-shaped cross-section
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G2200/00Indexing codes relating to suspension types
    • B60G2200/40Indexing codes relating to the wheels in the suspensions
    • B60G2200/44Indexing codes relating to the wheels in the suspensions steerable
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G2204/00Indexing codes related to suspensions per se or to auxiliary parts
    • B60G2204/10Mounting of suspension elements
    • B60G2204/14Mounting of suspension arms
    • B60G2204/149Mounting of rigid axle on wheel knuckle
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G2206/00Indexing codes related to the manufacturing of suspensions: constructional features, the materials used, procedures or tools
    • B60G2206/01Constructional features of suspension elements, e.g. arms, dampers, springs
    • B60G2206/012Hollow or tubular elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G2206/00Indexing codes related to the manufacturing of suspensions: constructional features, the materials used, procedures or tools
    • B60G2206/01Constructional features of suspension elements, e.g. arms, dampers, springs
    • B60G2206/30Constructional features of rigid axles
    • B60G2206/312Cranked axle
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G2206/00Indexing codes related to the manufacturing of suspensions: constructional features, the materials used, procedures or tools
    • B60G2206/01Constructional features of suspension elements, e.g. arms, dampers, springs
    • B60G2206/30Constructional features of rigid axles
    • B60G2206/32Hollow cross section
    • YGENERAL 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
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49826Assembling or joining
    • Y10T29/49908Joining by deforming
    • Y10T29/49925Inward deformation of aperture or hollow body wall
    • Y10T29/49927Hollow body is axially joined cup or tube
    • Y10T29/49929Joined to rod
    • YGENERAL 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
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49826Assembling or joining
    • Y10T29/49908Joining by deforming
    • Y10T29/49936Surface interlocking
    • YGENERAL 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
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T403/00Joints and connections
    • Y10T403/49Member deformed in situ

Definitions

  • an'axle made in accordance with the teachings of our invention is much lighter than an axle of either the solid forged type or prior known tubular axles, for example, the particular embodiment herein shown is at least twelve pounds lighter than a corresponding size of forgedaxle. This saving in unsprung weight is, of course, a great advantage as is well known to those skilled in the art.
  • the axle is then formed to shape and spring pads are welded in place on it.
  • the spring pads are preferably made of sheet metal stampings although for certain pur-' poses forgings may be used.
  • Figure l is a cross-sectional view of the blank from which the axle is made
  • Figure 2 is a cross-sectional view of the blank after it hasbeen upset by endwise forging
  • Figure 7 is a cross-sectional view through a similar axle showing a slightly different method of attaching the knuckle piece to the blank.
  • Figure 8 is a cross sectional View through a completed axle.
  • the socket 5 is then reamed out to an accurate diameter to receive the shank of the knuckle piece of the axle.
  • the knuckle piece 10 illustrated as a knuckle piece of a reverse Elliott type axle,
  • a circular shank 11 which is provided with transversely disposed round bot tom slots 13 machined or forged into its top and bottom surfaces.
  • the external surface of the shank 11 is machined to accurately fit into the socket 5 in the end of the blank.
  • a shoulder 12' formed at the junction of the shank 11 and the knuckle piece 10 serves as an abutment for the end of the axle 1 thereby insuring that the knuckle piece will be properly inserted into the socket 5.
  • the protuberances 7 are forged into the transverse slots 13 in the shank 11 of the knuckle. piece, this operation restoring the circular contour of the outside of the axle and securely locking the shank 11 into the axle against both endwise and rotary movement.
  • the disposalof the metal from the protuberances-on the top and bottom sides of the axle places it in a position where it has maximum, value for increasing the moment of,inertia in bending.
  • the tubular shape ,of the body of the-axle is highly desirable because of the maximum strength against bending in any direction and also because of its high torsional strength.
  • a tubular axle comprising a thin walled cylindrical central portion, thickened walled spring seat portions on opposite ends thereof, arms extending beyond said seat portions, said arms containing sockets,
  • A. tubular axle comprising a thin walled cylindrical central portion, thickened walled spring seat portions on opposite ends thereof, arms extendin beyond said seat portions, said arms having thickened walls and containing 'ta er'ed sockets, knuckle 1 pieces, shanks on said knuckle pieces fitting into said sockets, said shanks having slots disposed transversely of their axes and into 5 which .the walls of .the sockets are forged to lock the knuckle pieces onto the axle.
  • a tubular axle comprising a thin walled cylindrical central portion,'-thickened walled spring seat portions on opposite ends thereof, arms extending beyond said seat 7 portions, said arms containing sockets,
  • knuckle pieces comprising cylindrical knuckles, integral frusto-conical. shanks, 'and 50 shoulders at the junctions of the knuckles and shanks, said shanks fitting into said sockets and containing, recesses into which the walls of th sgckets are forged to llOCk the knuckle ieci L011 the a'xle, said walls '55 abutting sai ;shouldersi' aud being welded thereto to seal interior-of the axle.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Forging (AREA)

Description

Sept. 15, 1931. E. c. MOGFORD ETAL 1,323,158
AXLE AND HETHOD OF MAKING THE SAME Original Filed May 15, 1929 WMW Q Fatented Sept. 15, 1931 UNITED STATES CLARK EQUIPMENT MICHIGAN PATENT OFFICE EDMUND C. MOGFORD GEORGE SPATTA, OF BUCHANAN, MICHIGAN, ASSIGNORS TO COMPANY, OF BUCHANAN, MICHIGAN, A CORPORATION OF AXLE AND METHOD OF MAKING SAME Original application filed May 15, 1929, Serial No. 363,362. Divided and this Serial No. 451,229.
Our invention relates to tubular front axles for automobiles and the like and to the method of making the same.
This application is a division .of our copending application Serial No. 363,362, filed is avoided in our method of construction as the spring pads are of pressedsteel and the knuckles in the end of the tubing can be forged very nearly to the size required with much less Work or machining and less waste of metal. v
Our method of constructing axles may also be employed in axles of the Elliott type and constitutes an improvement over devices of the prior art.
In such tubular axles of the prior art the tubing is of the same section from end to end'whereas in the axle made in accordance with the teachings of our invention the arms are upset from a region under the spring pads to the outer ends thus strengthening and stiffening the axles where the maximum bending movement occurs.
As, compared with an axle of the same strength, an'axle made in accordance with the teachings of our invention is much lighter than an axle of either the solid forged type or prior known tubular axles, for example, the particular embodiment herein shown is at least twelve pounds lighter than a corresponding size of forgedaxle. This saving in unsprung weight is, of course, a great advantage as is well known to those skilled in the art.
In carrying out our invention, we upset application filed May 10, 1980.
knuckle piece against movement longitudinally of the axle and also against movement about the axis of the axle.
The axle is then formed to shape and spring pads are welded in place on it. The spring pads are preferably made of sheet metal stampings although for certain pur-' poses forgings may be used.
Now inorder to acquaint those skilled in the art with the manner of constructing an axle in accordance with the teachings of our invention,,we shall describe in conjunction with the accompanying drawings a specific embodiment of the invention.
In the drawings:
Figure l is a cross-sectional view of the blank from which the axle is made;
Figure 2 is a cross-sectional view of the blank after it hasbeen upset by endwise forging;
Figure 3 is a similar view showing the protuberances upset into the walls of the blank and showing the knuckle piece inserted in it;
' Figure 4 is a cross-sectional view taken along the line 4-4 of Figure 3 showing the position of the protuberances on the blank;
Figure 5 is a cross-sectional view similar to Figure 3 showing the blank after the protuberances ,have been forged into the slots in the knuckle piece;
Figure 6 is a cross-sectional view taken along the line 66 of Figure 5;
Figure 7 is a cross-sectional view through a similar axle showing a slightly different method of attaching the knuckle piece to the blank; and
Figure 8 is a cross sectional View through a completed axle.
Referring now to thedrawings in more detail, the blank 1 from which the axle is made comprises a piece of seamless or welded steel tubing having an Outside diameter and a wall thickness dependent upon the size of the particular axle being made. In
one embodiment,- the tube 1 has an outside,
diameter of 2 inches and a wall thickness of inch, the length of the tube being approximately 60 inches. The lengthwise dimension of the tube will of course vary with the particular type of axle being made.
In fabricating an axle from the blank 1 the end of the tubeis first swaged down as by rolling to taper the outer end 2 as indicated in Figure 1. This results in a slight elongation of the blank and a slight thickening of the walls of the outer ends wltich later form the arms of the axle. This rolling down is preferably accomplished at each end either simultaneously or individually and is preferably done hot. The tube is then brought to a proper forging heat and is upset endwise to thicken the walls about the entire periphery of the part which is upset, at a point 3 within the space where a spring seat is later attached.
At the same time or by subsequent operation, the upsetting of the outer end to form a socket 5 is accomplished, the inside diameter of the socket being held to a definite shape by a mandrel and the maximum wall thickness of the tubular blank being produced just back of the socket as indicated at 6 in Figure 2.
Simultaneously with the forming of the socket 5 and thickening of the walls at the end of the tube, we form external protuberances 7 in the top and bottom surfaces of the blank, these protuberances'being crescent shaped and formed from metal upset during the endwise forging and consequent shortening of the blank.
The socket 5 is then reamed out to an accurate diameter to receive the shank of the knuckle piece of the axle.
The knuckle piece 10, illustrated as a knuckle piece of a reverse Elliott type axle,
contains a circular shank 11 which is provided with transversely disposed round bot tom slots 13 machined or forged into its top and bottom surfaces. The external surface of the shank 11 is machined to accurately fit into the socket 5 in the end of the blank. A shoulder 12' formed at the junction of the shank 11 and the knuckle piece 10 serves as an abutment for the end of the axle 1 thereby insuring that the knuckle piece will be properly inserted into the socket 5.
The protuberances 7 are forged into the transverse slots 13 in the shank 11 of the knuckle. piece, this operation restoring the circular contour of the outside of the axle and securely locking the shank 11 into the axle against both endwise and rotary movement. The disposalof the metal from the protuberances-on the top and bottom sides of the axle places it in a position where it has maximum, value for increasing the moment of,inertia in bending.
- The operation of forcing the metal infrusto-conical or frusto-pyramidal recesses 20 disposed about the periphery of the shank, as shown in Figure 7. Protuberances similar to the protuberances 7 of Figure are formed in the walls of the blank by an endwise upsettin operation, and these protuberances are subsequently forged into the recesl'ses 20 to lock the shank in place in the ax e. v
The end of the axle blank 1 and the shoulder 12 of the knuckle piece 10 may be welded if desired but if properly for ed this welding is not necessary. The we ded joint has the advantage that the inside of the axle is completely closed off from the outside and moisture cannot get into it and corrode the axle. Y
The same operations as herein described are performed on the other end of the axle, which is then heated and formed ,to the desired shape in any preferredmanner such as welding at the point 3 where the wall thickness of the tube has been increased as hereinbefore described.
Although the knuckle piece 10 is shown as for the reverse Elliott type axle, obviously knuckle pieces for an Elliott type axle or any other desired type of axle may be attached to the tubular member by the process herein pointed out withinthe teachings of our invention. v
Tests made upon this axle indicate its superiority inperformance as against axles of the prior art. The tubular shape ,of the body of the-axle is highly desirable because of the maximum strength against bending in any direction and also because of its high torsional strength.
What we claim is:
- 1. In a method of forming a tubular axle, the following steps, viz., taperirg the end portions of the tubular blank, upsetting said end portions to increase'the wall thickness thereof and to form a tapered socket, upset- I the following steps, viz., upsetting the end of a tubular blank to'form a conical socket,
projecting the metal of the socket outwardly to form protuberances, forming a knuckle piece with a conical tapered shank and forming recesses in said shank, inserting the shank into the socket with the recesses in alignment with the protuberances and pressing said protuberances inwardly to throw metal into the recesses in the shank'.
.3. The method of joining a plug andsocket which comprises upsetting the socket to draw metal outwardly, forming recesses in the plug, inserting the plug in the socket and pressing the metal of the socket inwardly to cause the same to flow into the recesses.
4. In a method of forming'a tubular axle, the following steps, viz., tapering the end portions of the tubular blank, upsetting said end portions to increase the wall thickness thereof and to form a tapered socket, upsetting said socket to throw metal outwardly while maintaining the ta cred form of the socket, reaming the tapere socket, forming a knuckle piece with a tapered shank, forming recesses in the shank, inserting the shank into thesocket with the recesses in alignment with the outwardly projected metal of the socket and then pressing the outwardly projected metal of the socket in-,
wardly to fill said recesses in the shank.
5. In a method of forming a tubular axle, the following steps, viz., upsetting the walls of a tubular blank to thicken them in the region of a spring seat, upsetting the end of the blank to, thicken them and to form a tapered socket, projecting the metal of the socket outwardly by' endwise upsetting to form protubernnces on the top and bottom sides of the blank, forming a knuckle piece with a tapered shank, forming recesses in the top and bottom sides of the shank, inserting the shank into the socket with the recesses in alignment with the protuberances, pressing said protuberances inwardly to throw metal into the recesses in the shank, clamping the blank intermediate its ends and repeating the steps on its other end,
6. In a method of forming a tubular axle,
the following steps, viz., rolling a taper in end of the blank, upsetting the walls endwise of the blank to thicken them adjacent said taper and about theirentire periphery, upsetting the tapered end of the blank to form a tapered socket projecting the metal -of the'socket outwardly by endwise upsetting to form protuberances on the top and bottom sides of the blank, forming a knuckle piece with a tapered shank, forming recesses to throw metal into the recesses in the shank,
clamping the blank intermediate its ends and repeating the steps on its other end.
7. In a method of forming a tubular axle, the following steps, viz., tapering the end portions ofthe tubular blank, upsetting said end portions to increase the wall thickness thereof and to form a tapered socket, upsetting said socket to throw metal outwardly while maintaining the tapered form of the socket, reaming the tapered socket, forming a knuckle piece with a tapered shank, forming recesses in the shank, inserting the shank into the socket with the recesses in alignment with the outwardly projected metal of the socket and then pressing the outwardly projected metal of the socket inwardly to fill said recesses in the-shank and welding the ends of the tubular blank to the knuckle piece.
8. A tubular axle comprising a thin walled cylindrical central portion, thickened walled spring seat portions on opposite ends thereof, arms extending beyond said seat portions, said arms containing sockets, knuckle pieces, shanks on said knuckle pieces fittin into said sockets, said shanks having slots isposedtransversely of their 'axes and into WhlCll the" walls of the sockets are forged to lock the knuckle pieces onto the axle.
9. A tubular axle comprising a thin walled cylindrical central portion, thickened walled spring seat portions on opposite ends thereof, arms extending beyond said seat portions, said arms containing sockets,
knuckle pieces, shanks on said knuckle pieces fitting into said sockets, said shanks having slots disposed transversely of their axes and intofwhich the walls of the sockets are forged to" lock the knuckle pieces onto the axle, against rotation about said axes and movement longitudinally. of them.
11. A. tubular axle comprising a thin walled cylindrical central portion, thickened walled spring seat portions on opposite ends thereof, arms extendin beyond said seat portions, said arms having thickened walls and containing 'ta er'ed sockets, knuckle 1 pieces, shanks on said knuckle pieces fitting into said sockets, said shanks having slots disposed transversely of their axes and into 5 which .the walls of .the sockets are forged to lock the knuckle pieces onto the axle.
12. A tubular axle comprising a thin walled cylindrical central portion,'-thickened walled spring seat portions on opposite ends thereof, arms extending beyond said seat 7 portions, said arms containing sockets,
knuckle pieces comprising cylindrical heads and frusto-conicalshanks, said shanks fitting into said sockets and containing slots into which the walls of the sockets are forged to lock the knuckle pieces onto the axle.
13. A tubular axle comprising 'ra thin walled cylindrical central portion, thickened 20 walled spring seat portions on opposite ends therof, arms extending beyond said seat portions, said arms' containing sockets, knuckle pieces comprising cylindrical heads "and frusto-conical shanks projected with- 25 their axes intersecting at an angle of less than 90, .said shanks fitting into said socketsand containing slots into which the walls of the sockets are forged to lock the knuckle pieces onto the axle. X o 14. A tubular axle comprising a thin walled cylindrical central portion, thickened walled spring seat'portions on opposite ends thereof, arms extending beyond said seat p" 'ons, said arms containing sockets,
' 3 knucklggpices comprising cylindrical knuck-' 1% which are longer than the diameter of said cylindrical axle portion, frusto-conical shanks formed integral with said knuckles and disposed in said sockets, said shanks L 0 containing recesses into whichihe walls ofthe sockets are forged to'lock the knuckle pieces onto the axle.
15. A tubular axle comprising a thin walled cylindrical central portion, thickened 1 5 walled spring seat portions on opposite ends thereof, arms extending .beyond said seat 7 portions, said arms containing sockets,-
. knuckle pieces comprising cylindrical knuckles, integral frusto-conical. shanks, 'and 50 shoulders at the junctions of the knuckles and shanks, said shanks fitting into said sockets and containing, recesses into which the walls of th sgckets are forged to llOCk the knuckle ieci L011 the a'xle, said walls '55 abutting sai ;shouldersi' aud being welded thereto to seal interior-of the axle.
In witness whereofiye hereunto subscribe our names this- 6th day .of-May, 1930.
' EDMUND ."C. MOGFORD,
' no a 1 ORG -spank-
US451229A 1929-05-15 1930-05-10 Axle and method of making the same Expired - Lifetime US1823158A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US451229A US1823158A (en) 1929-05-15 1930-05-10 Axle and method of making the same

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US363362A US1899347A (en) 1929-05-15 1929-05-15 Axle
US451229A US1823158A (en) 1929-05-15 1930-05-10 Axle and method of making the same

Publications (1)

Publication Number Publication Date
US1823158A true US1823158A (en) 1931-09-15

Family

ID=27002041

Family Applications (1)

Application Number Title Priority Date Filing Date
US451229A Expired - Lifetime US1823158A (en) 1929-05-15 1930-05-10 Axle and method of making the same

Country Status (1)

Country Link
US (1) US1823158A (en)

Cited By (54)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2557722A (en) * 1946-02-01 1951-06-19 Charles A Brauchler Method of forging hollow articles
DE928929C (en) * 1948-10-02 1955-06-13 Eisen & Stahlind Ag Process for the production of tubular hollow bodies, in particular hollow piston slide rods for steam locomotives
US2852843A (en) * 1955-04-25 1958-09-23 Aerojet General Co Method of making metal joint
US3112150A (en) * 1956-08-16 1963-11-26 Aircraft Marine Prod Inc Electrical connections
US3432916A (en) * 1966-04-18 1969-03-18 Up Right Inc Method for making a joint for hardened aluminum tubing
US3501928A (en) * 1966-11-10 1970-03-24 Nadella Universal joints
US3633951A (en) * 1970-03-03 1972-01-11 Shur Lok Corp Rod end coupling with double helix interlock
USRE28457E (en) * 1968-06-24 1975-07-01 Coupling fitting for connecting two pipes
US4138141A (en) * 1977-02-23 1979-02-06 General Signal Corporation Force absorbing device and force transmission device
EP0015648A1 (en) * 1979-03-05 1980-09-17 Siegfried Kuether Process for making an axle
US4365824A (en) * 1979-09-07 1982-12-28 Nhk Spring Co., Ltd. Stabilizer for vehicle
US4372576A (en) * 1979-12-22 1983-02-08 Nhk Spring Co., Ltd. Hollow stabilizer for vehicle
US4378122A (en) * 1979-09-07 1983-03-29 Nhk Spring Co., Ltd. Hollow stabilizer for vehicle
US4429899A (en) 1979-09-07 1984-02-07 Nhk Spring Co., Ltd. Hollow stabilizer for vehicle
US4535525A (en) * 1981-08-24 1985-08-20 Crown Metal Mfg. Company Adapter for bracket securement to wall studs and method of manufacture
US4561164A (en) * 1980-10-29 1985-12-31 Fichtel & Sachs Ag Method of making piston rod for shock absorbers
DE3742869A1 (en) * 1986-12-19 1988-06-30 Rockwell Int Suspens Syst Co TUBULAR STABILIZER ROD AND METHOD FOR THE PRODUCTION THEREOF
US4763922A (en) * 1984-07-31 1988-08-16 Nhk Spring Co., Ltd. Axle supporting rod for motor vehicle
US4871216A (en) * 1985-07-03 1989-10-03 General Dynamics Land Systems, Inc. Hollow pin assembly for shoe assembly of track laying vehicle
US5084963A (en) * 1990-09-28 1992-02-04 Burndy Corporation Preconnection deforming die and method of connecting a grounding rod with an electrical cable
US5235734A (en) * 1991-11-04 1993-08-17 Itt Corporation Collapsible steering shaft apparatus and method of making same
US5314204A (en) * 1991-09-11 1994-05-24 Itt Corporation Collapsible steering shaft apparatus
US5522280A (en) * 1993-12-23 1996-06-04 United Technologies Motor Systems, Inc. Connecting links for windshield wipers and method for fabricating the link
US5606790A (en) * 1993-04-09 1997-03-04 Charles E. Laue Method of making a two piece pedal rod
US5810338A (en) * 1995-06-23 1998-09-22 Mercedes-Benz Ag Longitudinally-divided torsion bar optimized for weight and stability
US6125682A (en) * 1998-01-26 2000-10-03 Framatome Connectors Usa, Inc. Hydraulic tool alignment guard
US20030086756A1 (en) * 2001-11-07 2003-05-08 Trotter Jason K Modular linkage system
US6585331B2 (en) * 2001-09-06 2003-07-01 Meritor Heavy Vehicle Technology, Llc Tubular axle beam
US6609764B2 (en) * 2001-04-27 2003-08-26 The Boler Company Fabricated vehicle axle
US20040155520A1 (en) * 2001-08-27 2004-08-12 Varela Tomaz Dopico Hydroformed axle with weldless brake flange and bearing shoulder
US20040180567A1 (en) * 2002-05-24 2004-09-16 Wilfried Lustig Housing for receiving a bearing component and process for manufacturing same
US20040253049A1 (en) * 2003-06-10 2004-12-16 Bissonnette Lee A. Tubular link with integral crimp socket joint and optional secondary side crimp
US20050110336A1 (en) * 2003-11-25 2005-05-26 Martin Blessing Variable wall thickness trailer axles
WO2006007821A1 (en) * 2004-07-20 2006-01-26 Zf Friedrichshafen Ag Joint housing
US20060043692A1 (en) * 2004-09-01 2006-03-02 Visteon Global Technologies, Inc. Crimp-ring for stabilizer bar
US20060152070A1 (en) * 2005-01-10 2006-07-13 Doud Stephen C Axle housing assembly and method
US20070183861A1 (en) * 2004-01-21 2007-08-09 Delphi Technologies, Inc. Destruction-free press connection on pyromechanical securing elements
US20080072654A1 (en) * 2006-08-31 2008-03-27 Makoto Nishimura Butt joining method
WO2008104396A1 (en) * 2007-03-01 2008-09-04 Saf-Holland Gmbh Axle body
US20090038364A1 (en) * 2004-10-28 2009-02-12 Arcelormittal Tubular Products Canada Inc. Tubular articles with varying wall thickness
US20090230760A1 (en) * 2008-03-12 2009-09-17 John Stephen Bubulka Fabricated vehicle axle
US20100187789A1 (en) * 2007-03-29 2010-07-29 Hendrickson Usa, L.L.C. Leading and trailing arm suspensions having a fully integrated arm
US8029008B2 (en) 2005-04-27 2011-10-04 Hendrickson Usa, L.L.C. Vehicle suspensions having leaf springs and alternative clamp groups
US8177246B2 (en) 2005-04-27 2012-05-15 Hendrickson Usa, L.L.C. Axle seat for vehicle suspensions
US20130056114A1 (en) * 2008-10-17 2013-03-07 Arcelormittal Tubular Products Canada, Inc. Twist-axle with longitudinally-varying wall thickness
WO2012154021A3 (en) * 2011-05-06 2013-03-28 Stucki De Mexico S, De R.L. De C.V. Connection bar
US8544961B2 (en) 2010-09-02 2013-10-01 Hendrickson Usa, L.L.C. Fabricated vehicle axle
CN103398133A (en) * 2011-12-27 2013-11-20 日立汽车系统株式会社 Joined body, shock absorber, and method for manufacturing shock absorber
US8616566B2 (en) 2010-12-14 2013-12-31 Hendrickson Usa, L.L.C. Head plate for vehicle axle
US9630451B2 (en) 2014-06-18 2017-04-25 American Axle & Manufacturing, Inc. Method of manufacturing hollow axle shaft for a vehicle
US9670951B2 (en) 2014-04-08 2017-06-06 A.A.M International S.A.R.L. Variable-wall light-weight axle shaft with an integral flange member and method for making the same
US20170184084A1 (en) * 2015-12-29 2017-06-29 Whirlpool S.A. Two-Parts Telescopic Connecting Rod for Alternative Compressors and Method of Assembling Two-Parts Telescopic Connecting Rod in Alternative Compressors
US9724965B2 (en) 2012-04-20 2017-08-08 Hendrickson Usa, L.L.C. Fabricated vehicle axle
WO2018020445A1 (en) * 2016-07-27 2018-02-01 Aam International S.A.R.L. Axle beam with variable wall thickness and/or variable cross-sectional shape and method of making same

Cited By (84)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2557722A (en) * 1946-02-01 1951-06-19 Charles A Brauchler Method of forging hollow articles
DE928929C (en) * 1948-10-02 1955-06-13 Eisen & Stahlind Ag Process for the production of tubular hollow bodies, in particular hollow piston slide rods for steam locomotives
US2852843A (en) * 1955-04-25 1958-09-23 Aerojet General Co Method of making metal joint
US3112150A (en) * 1956-08-16 1963-11-26 Aircraft Marine Prod Inc Electrical connections
US3432916A (en) * 1966-04-18 1969-03-18 Up Right Inc Method for making a joint for hardened aluminum tubing
US3501928A (en) * 1966-11-10 1970-03-24 Nadella Universal joints
USRE28457E (en) * 1968-06-24 1975-07-01 Coupling fitting for connecting two pipes
US3633951A (en) * 1970-03-03 1972-01-11 Shur Lok Corp Rod end coupling with double helix interlock
US4138141A (en) * 1977-02-23 1979-02-06 General Signal Corporation Force absorbing device and force transmission device
EP0015648A1 (en) * 1979-03-05 1980-09-17 Siegfried Kuether Process for making an axle
US4378122A (en) * 1979-09-07 1983-03-29 Nhk Spring Co., Ltd. Hollow stabilizer for vehicle
US4365824A (en) * 1979-09-07 1982-12-28 Nhk Spring Co., Ltd. Stabilizer for vehicle
US4429899A (en) 1979-09-07 1984-02-07 Nhk Spring Co., Ltd. Hollow stabilizer for vehicle
US4372576A (en) * 1979-12-22 1983-02-08 Nhk Spring Co., Ltd. Hollow stabilizer for vehicle
US4561164A (en) * 1980-10-29 1985-12-31 Fichtel & Sachs Ag Method of making piston rod for shock absorbers
US4535525A (en) * 1981-08-24 1985-08-20 Crown Metal Mfg. Company Adapter for bracket securement to wall studs and method of manufacture
US4763922A (en) * 1984-07-31 1988-08-16 Nhk Spring Co., Ltd. Axle supporting rod for motor vehicle
US4871216A (en) * 1985-07-03 1989-10-03 General Dynamics Land Systems, Inc. Hollow pin assembly for shoe assembly of track laying vehicle
DE3742869A1 (en) * 1986-12-19 1988-06-30 Rockwell Int Suspens Syst Co TUBULAR STABILIZER ROD AND METHOD FOR THE PRODUCTION THEREOF
DE3742869B4 (en) * 1986-12-19 2005-02-03 Rockwell International Suspension Systems Co., Milton Tubular stabilizer bar and method for its manufacture
US5084963A (en) * 1990-09-28 1992-02-04 Burndy Corporation Preconnection deforming die and method of connecting a grounding rod with an electrical cable
US5314204A (en) * 1991-09-11 1994-05-24 Itt Corporation Collapsible steering shaft apparatus
US5235734A (en) * 1991-11-04 1993-08-17 Itt Corporation Collapsible steering shaft apparatus and method of making same
US5606790A (en) * 1993-04-09 1997-03-04 Charles E. Laue Method of making a two piece pedal rod
US5522280A (en) * 1993-12-23 1996-06-04 United Technologies Motor Systems, Inc. Connecting links for windshield wipers and method for fabricating the link
US5810338A (en) * 1995-06-23 1998-09-22 Mercedes-Benz Ag Longitudinally-divided torsion bar optimized for weight and stability
US6125682A (en) * 1998-01-26 2000-10-03 Framatome Connectors Usa, Inc. Hydraulic tool alignment guard
USRE40888E1 (en) * 2001-04-27 2009-09-01 Hendrickson Usa, L.L.C. Fabricated vehicle axle
US6609764B2 (en) * 2001-04-27 2003-08-26 The Boler Company Fabricated vehicle axle
US20040155520A1 (en) * 2001-08-27 2004-08-12 Varela Tomaz Dopico Hydroformed axle with weldless brake flange and bearing shoulder
US6585331B2 (en) * 2001-09-06 2003-07-01 Meritor Heavy Vehicle Technology, Llc Tubular axle beam
US20030086756A1 (en) * 2001-11-07 2003-05-08 Trotter Jason K Modular linkage system
US20040180567A1 (en) * 2002-05-24 2004-09-16 Wilfried Lustig Housing for receiving a bearing component and process for manufacturing same
US7001076B2 (en) * 2002-05-24 2006-02-21 ZF Lemförder Metallwaren AG Housing for receiving a bearing component and process for manufacturing same
US20040253049A1 (en) * 2003-06-10 2004-12-16 Bissonnette Lee A. Tubular link with integral crimp socket joint and optional secondary side crimp
WO2004110815A3 (en) * 2003-06-10 2005-05-26 Valeo Electrical Sys Inc Tubular link with integral crimp socket joint and optional secondary side crimp
US20050110336A1 (en) * 2003-11-25 2005-05-26 Martin Blessing Variable wall thickness trailer axles
US7090309B2 (en) * 2003-11-25 2006-08-15 Dana Corporation Variable wall thickness trailer axles
US20070183861A1 (en) * 2004-01-21 2007-08-09 Delphi Technologies, Inc. Destruction-free press connection on pyromechanical securing elements
US7744319B2 (en) * 2004-01-21 2010-06-29 Delphi Technologies, Inc. Destruction-free press connection on pyromechanical securing elements
WO2006007821A1 (en) * 2004-07-20 2006-01-26 Zf Friedrichshafen Ag Joint housing
US20060043692A1 (en) * 2004-09-01 2006-03-02 Visteon Global Technologies, Inc. Crimp-ring for stabilizer bar
US7290322B2 (en) 2004-09-01 2007-11-06 Automotive Components Holdings, Llc Method of crimping a ring shaped stop within an annular groove of a stabilizer bar
US8245734B2 (en) 2004-10-28 2012-08-21 U.S. Manufacturing Corporation Tubular articles with varying wall thickness
US20110070385A1 (en) * 2004-10-28 2011-03-24 Mamad Jahani Tubular articles with varying wall thickness
US7866759B2 (en) * 2004-10-28 2011-01-11 Arcelormittal Tubular Products Canada Inc. Tubular axle housing with varying wall thickness
US20090038364A1 (en) * 2004-10-28 2009-02-12 Arcelormittal Tubular Products Canada Inc. Tubular articles with varying wall thickness
US7377598B2 (en) 2005-01-10 2008-05-27 American Axle & Manufacturing, Inc. Axle housing assembly and method
US20080196233A1 (en) * 2005-01-10 2008-08-21 American Axle & Manufacturing, Inc. Axle housing assembly and method
US8469462B2 (en) 2005-01-10 2013-06-25 American Axle & Manufacturing, Inc. Axle housing assembly and method
US20060152070A1 (en) * 2005-01-10 2006-07-13 Doud Stephen C Axle housing assembly and method
US7984552B2 (en) 2005-01-10 2011-07-26 American Axle & Manufacturing, Inc. Axle housing assembly and method
US8177246B2 (en) 2005-04-27 2012-05-15 Hendrickson Usa, L.L.C. Axle seat for vehicle suspensions
US8029008B2 (en) 2005-04-27 2011-10-04 Hendrickson Usa, L.L.C. Vehicle suspensions having leaf springs and alternative clamp groups
US7784394B2 (en) * 2006-08-31 2010-08-31 Hitachi, Ltd. Butt joining method
US20080072654A1 (en) * 2006-08-31 2008-03-27 Makoto Nishimura Butt joining method
CN101135350B (en) * 2006-08-31 2010-10-13 株式会社日立制作所 Butt joining method, Mechanical joint device, joining rod and oil cylinder manufacture method
EP2133164A3 (en) * 2007-03-01 2010-04-21 SAF-HOLLAND GmbH Axle body
EP2077921B2 (en) 2007-03-01 2018-01-24 SAF-HOLLAND GmbH Axle body
AU2008220976B2 (en) * 2007-03-01 2010-08-26 Saf-Holland Gmbh Axle body
WO2008104396A1 (en) * 2007-03-01 2008-09-04 Saf-Holland Gmbh Axle body
US20100013295A1 (en) * 2007-03-01 2010-01-21 Rolf Spielmann Axle body
US8353562B2 (en) 2007-03-01 2013-01-15 Saf-Holland Gmbh Axle body
US20100187789A1 (en) * 2007-03-29 2010-07-29 Hendrickson Usa, L.L.C. Leading and trailing arm suspensions having a fully integrated arm
US8038163B2 (en) 2007-03-29 2011-10-18 Hendrickson Usa, L.L.C. Leading and trailing arm suspensions having a fully integrated arm
US20090230760A1 (en) * 2008-03-12 2009-09-17 John Stephen Bubulka Fabricated vehicle axle
US7862058B2 (en) * 2008-03-12 2011-01-04 Hendrickson Usa L.L.C. Fabricated vehicle axle
US20130056114A1 (en) * 2008-10-17 2013-03-07 Arcelormittal Tubular Products Canada, Inc. Twist-axle with longitudinally-varying wall thickness
US10583705B2 (en) * 2008-10-17 2020-03-10 Arcelormittal Tubular Products Canada G.P. Twist-axle with longitudinally-varying wall thickness
US9150073B2 (en) * 2008-10-17 2015-10-06 Arcelormittal Tubular Products Canada, Inc. Twist-axle with longitudinally-varying wall thickness
US20180229566A1 (en) * 2008-10-17 2018-08-16 Arcelormittal Tubular Products Canada G.P. Twist-axle with longitudinally-varying wall thickness
US9919572B2 (en) 2008-10-17 2018-03-20 Arcelormittal Tubular Products Canada Inc. Twist-axle with longitudinally-varying wall thickness
US8544961B2 (en) 2010-09-02 2013-10-01 Hendrickson Usa, L.L.C. Fabricated vehicle axle
US8616566B2 (en) 2010-12-14 2013-12-31 Hendrickson Usa, L.L.C. Head plate for vehicle axle
WO2012154021A3 (en) * 2011-05-06 2013-03-28 Stucki De Mexico S, De R.L. De C.V. Connection bar
CN103398133B (en) * 2011-12-27 2016-06-22 日立汽车系统株式会社 The manufacture method of coalition, buffer and buffer
CN103398133A (en) * 2011-12-27 2013-11-20 日立汽车系统株式会社 Joined body, shock absorber, and method for manufacturing shock absorber
US9724965B2 (en) 2012-04-20 2017-08-08 Hendrickson Usa, L.L.C. Fabricated vehicle axle
US9670951B2 (en) 2014-04-08 2017-06-06 A.A.M International S.A.R.L. Variable-wall light-weight axle shaft with an integral flange member and method for making the same
US10543717B2 (en) 2014-04-08 2020-01-28 Aam International S.À R.L. Variable-wall light-weight axle shaft with an integral flange member and method for making the same
US9630451B2 (en) 2014-06-18 2017-04-25 American Axle & Manufacturing, Inc. Method of manufacturing hollow axle shaft for a vehicle
US20170184084A1 (en) * 2015-12-29 2017-06-29 Whirlpool S.A. Two-Parts Telescopic Connecting Rod for Alternative Compressors and Method of Assembling Two-Parts Telescopic Connecting Rod in Alternative Compressors
US10584693B2 (en) * 2015-12-29 2020-03-10 Whirlpool S.A. Two parts telescopic connecting rod for alternative compressors and method of assembling two-parts telescopic connecting rod in alternative compressors
WO2018020445A1 (en) * 2016-07-27 2018-02-01 Aam International S.A.R.L. Axle beam with variable wall thickness and/or variable cross-sectional shape and method of making same

Similar Documents

Publication Publication Date Title
US1823158A (en) Axle and method of making the same
US1899347A (en) Axle
US3314278A (en) Forging process and product therefrom
US2124406A (en) Axle housing and method of forming same
US1873453A (en) Method of making a front axle
US2007793A (en) Tubular front axle and method of making same
US2685479A (en) Tubular axle beam
DE102011086481A1 (en) Suspension system for commercial vehicles
CN106573292B (en) Method for the hollow semiaxis and manufacture of the vehicle hollow semiaxis
US4487357A (en) Method for forming well drill tubing
US1762407A (en) Method of making axles
US1978685A (en) Method of making rear axle housings
US2213004A (en) Torsion rod mounting
US2183563A (en) Fabricated structure
US2227436A (en) Method of making axles
US2953674A (en) Tubular elements with integral end fittings and method of making
US3535762A (en) Concentric tube forging
US2202909A (en) Drag link body and method of making same
US2013786A (en) Axle
US1670532A (en) Method of making tubular end sockets
US1899645A (en) Method of forming links
US1811501A (en) Producing pipe fittings and other hollow articles
US1721695A (en) Method of making tubular front axles
US3094107A (en) Push rod structure
US1991199A (en) Method of forming rear axle housings