US20140205365A1 - Premium performance ball joint and system - Google Patents

Premium performance ball joint and system Download PDF

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Publication number
US20140205365A1
US20140205365A1 US14/148,995 US201414148995A US2014205365A1 US 20140205365 A1 US20140205365 A1 US 20140205365A1 US 201414148995 A US201414148995 A US 201414148995A US 2014205365 A1 US2014205365 A1 US 2014205365A1
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United States
Prior art keywords
housing
ball
retainer
ball joint
elongated shaft
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.)
Abandoned
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US14/148,995
Inventor
Kelly Molenaar
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Individual
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Individual
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Application filed by Individual filed Critical Individual
Priority to US14/148,995 priority Critical patent/US20140205365A1/en
Publication of US20140205365A1 publication Critical patent/US20140205365A1/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C11/00Pivots; Pivotal connections
    • F16C11/04Pivotal connections
    • F16C11/06Ball-joints; Other joints having more than one degree of angular freedom, i.e. universal joints
    • F16C11/0695Mounting of ball-joints, e.g. fixing them to a connecting rod
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G7/00Pivoted suspension arms; Accessories thereof
    • B60G7/001Suspension arms, e.g. constructional features
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G7/00Pivoted suspension arms; Accessories thereof
    • B60G7/005Ball joints
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C11/00Pivots; Pivotal connections
    • F16C11/04Pivotal connections
    • F16C11/06Ball-joints; Other joints having more than one degree of angular freedom, i.e. universal joints
    • F16C11/0619Ball-joints; Other joints having more than one degree of angular freedom, i.e. universal joints the female part comprising a blind socket receiving the male part
    • F16C11/0623Construction or details of the socket member
    • F16C11/0642Special features of the plug or cover on the blind end of the socket
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G2200/00Indexing codes relating to suspension types
    • B60G2200/10Independent suspensions
    • B60G2200/14Independent suspensions with lateral arms
    • B60G2200/144Independent suspensions with lateral arms with two lateral arms forming a parallelogram
    • 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
    • B60G2202/00Indexing codes relating to the type of spring, damper or actuator
    • B60G2202/30Spring/Damper and/or actuator Units
    • B60G2202/31Spring/Damper and/or actuator Units with the spring arranged around the damper, e.g. MacPherson strut
    • B60G2202/312The spring being a wound spring
    • 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
    • B60G2204/12Mounting of springs or dampers
    • B60G2204/129Damper mount on wheel suspension or knuckle
    • 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
    • B60G2204/143Mounting of suspension arms on the vehicle body or chassis
    • 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
    • B60G2204/148Mounting of suspension arms on the unsprung part of the vehicle, e.g. wheel knuckle or rigid axle
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60GVEHICLE SUSPENSION ARRANGEMENTS
    • B60G2204/00Indexing codes related to suspensions per se or to auxiliary parts
    • B60G2204/40Auxiliary suspension parts; Adjustment of suspensions
    • B60G2204/416Ball or spherical joints
    • 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
    • B60G2206/10Constructional features of arms
    • B60G2206/12Constructional features of arms with two attachment points on the sprung part of the vehicle
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C2326/00Articles relating to transporting
    • F16C2326/01Parts of vehicles in general
    • F16C2326/05Vehicle suspensions, e.g. bearings, pivots or connecting rods used therein
    • 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
    • Y10T403/32Articulated members
    • Y10T403/32114Articulated members including static joint
    • Y10T403/32196Articulate joint is ball and socket
    • Y10T403/32204Articulate joint is ball and socket with threaded joint
    • 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
    • Y10T403/32Articulated members
    • Y10T403/32606Pivoted
    • Y10T403/32631Universal ball and socket
    • 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
    • Y10T403/32Articulated members
    • Y10T403/32606Pivoted
    • Y10T403/32631Universal ball and socket
    • Y10T403/32647Plural concave surfaces with diverse curvature
    • 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
    • Y10T403/32Articulated members
    • Y10T403/32606Pivoted
    • Y10T403/32631Universal ball and socket
    • Y10T403/32647Plural concave surfaces with diverse curvature
    • Y10T403/32663Outer surfaces
    • 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
    • Y10T403/32Articulated members
    • Y10T403/32606Pivoted
    • Y10T403/32631Universal ball and socket
    • Y10T403/32737Universal ball and socket including liner, shim, or discrete seat
    • 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
    • Y10T403/32Articulated members
    • Y10T403/32606Pivoted
    • Y10T403/32631Universal ball and socket
    • Y10T403/32803Separable socket sections

Definitions

  • the invention disclosed and claimed herein deals with premium performance ball joints, systems in which they are used, and suspension systems in which the ball joint systems are employed.
  • the ball joints, systems and suspension mechanisms are especially useful for racing vehicles in which premium performance is desired.
  • the products of this invention are especially appreciated because of the ability to quickly and easily replace or change the ball and shaft (ball stud combination) in the ball joints.
  • the ball stud is what is damaged in accidents, and, it wears out first from normal use.
  • the ability to change the ball stud rather than changing the entire ball joint is a decided advantage of this invention.
  • upper ball joints do not have the load between the sprung mass of the vehicle and the suspension spring to keep them seated.
  • Most prior art ball joints used in the upper ball joint position use an internal spring over the ball and in the void space above the ball to hold the ball in place. In high cornering situations, the lateral force on the ball joint creates sufficient force to compress the spring and unseat the ball. This problem makes it impossible to maintain the optimum camber in the tire to maximize the tire contact patch on the roadway. This movement also causes minor directional changes in the automobile steering that are detrimental to stability of the automobile.
  • the premium performance aspect of this invention is based on the fact that prior art ball joints used for the same applications, all have a mechanical means for applying pressure to the ball within the ball joint to accommodate wear as the ball joint is in use, while the ball joint of this invention has no such mechanical means.
  • the lubricants that are commonly used in these types of ball joints provide the pressure, required within the inventive ball joint for accommodating the wear of the ball joints of this invention.
  • the result is a ball that has minimal restriction in movement because of the reduction in friction and is therefore essentially “free-wheeling” within the housing in which it is contained, thus, providing ease of steering.
  • ball joints and systems employing them are used in front wheel suspension of automotive vehicles.
  • the ball joint lends flexibility for steering the wheels while accommodating changes in angles between the wheel and the suspension members.
  • a pin or shaft on which the wheel is mounted carries a ball, which is rigid with the shaft, the ball being housed in a housing wherein the ball is seated and retained.
  • the surface of the ball slides over a lining of the housing.
  • Such means are, for example, springs under tension, which are placed on the top of the ball and retained by some kind of insert over the top of the ball.
  • springs under tension are placed on the top of the ball and retained by some kind of insert over the top of the ball.
  • ball joints in which the pressure is provided by compressible nylon particles that are situated in the open space and impinge on and essentially surround the exposed top surface of the ball.
  • All such ball joints require lubrication, and some means is provided to allow for the lubricant to be injected into the housing and onto and around the ball of the ball joint.
  • the ball per se often contains shallow, usually disconnected, channels in which the lubricant can take up residence. These channels help a situation that can occur in the ball joint in which the lubricant, contained within the housing, can block off all air into the housing and create a vacuum within the housing, which provides a lock. This lock is experienced when one tries to put grease into the housing, as the grease gun connector locks onto the grease zerk fitting and cannot be removed.
  • the grooves not only provide a channel for the grease to reach the ball, but they also create vents that allow the grease to enter the ball joint housing and air to escape.
  • the instant invention eliminates or reduces the above-mentioned problems with ball joints and provides a premium performance ball joint wherein the ball and shaft is easily installed, removable, and easily replaced without having to replace the entire ball joint, and, furthermore, the ball joint system provides premium performance in the operation of automobiles.
  • a ball joint comprising in combination an elongated shaft having an upper end and a lower end and having a longitudinal axis running through said upper end and said lower end, wherein the elongated shaft has threads on its lower end.
  • a ball rigidly fixed and surmounted on the upper end of the elongated shaft.
  • the ball at the highest point opposite the attachment of the elongated shaft, has a truncated flat face.
  • a housing having an outside surface, a middle portion, and a lower end.
  • the housing is internally conformed at the lower end to seat the ball and retain it in the housing, and the seat allows a pivotal movement of the ball about the longitudinal axis of the elongated shaft relative to the housing.
  • the middle portion of the housing is internally threaded to receive the retaining member and the middle portion is externally threaded on the outside surface.
  • a fastening means for fastening the retaining member in the housing.
  • the socket comprises a cylindrical housing having a wall with an internal surface wherein the internal surface is threaded to receive the housing in it and the socket has a means of attachment for attachment near a terminal end of a carrier for the ball joint system.
  • FIG. 2 is a full view of the ball and the elongated shaft of this invention.
  • FIG. 4 is a full top view of the housing of this invention without the retaining member in place.
  • FIG. 5 is a full top view of the housing of this invention with the retaining member in place.
  • FIG. 6 is a full cross-sectional view of the housing of FIG. 4 through the line 6 - 6 of FIG. 3 .
  • FIG. 8 is a full cross-sectional view of the retaining member of FIG. 7 through the lines 8 - 8 of FIG. 7 .
  • FIG. 9A is a full view of a fully assembled ball joint system of this invention and including the socket.
  • FIG. 9B is a full view of a fully assembled ball joint system of this invention and including the socket wherein the elongated shaft is longer than the elongated shaft of FIG. 9A .
  • FIG. 10 is a full top view of the socket of FIG. 9 .
  • FIG. 11 is a schematic drawing of one type of automotive suspension system showing the use of the ball joint systems of this invention.
  • FIG. 12 is a full view in perspective of a portion of the suspension system of FIG. 11 , wherein there is shown a wishbone support arm containing a ball joint system of this invention.
  • FIG. 13 is a full top view of the wishbone support arm of FIG. 12 .
  • FIGS. 1 , 9 A and 9 B are full views of ball joint systems 27 and 27 A of this invention that are fully assembled components thereof, comprising elongated shafts 2 and 2 a and in FIG. 1 , the ball 3 (only a portion of the bottom of the ball is shown therein), the housing 4 , with external threads 5 , a retaining member 6 , and a fastening means 7 , which is a set screw 8 set into a threaded (not shown) opening 9 , in an upper flange 10 of the housing 4 .
  • FIG. 2 is a full view of the combination 1 of the ball 3 and the elongated shaft 2 without the remainder of the components being shown, for clarification.
  • the ball 3 the elongated shaft 3 , a truncated flat surface 14 at the topmost point of the ball 3 , and the treaded portion 13 at the lower end 11 , along with the opening 12 .
  • the preferred combination of ball 3 and elongated shaft 2 is that in which the two are joined as a unitary component. This combination is manufactured from hardened steel or the like to endure the wear that usually accompanies such devices.
  • the truncated flat surface 14 is provided so that there is a space or void 25 (see FIG. 8 ) formed above the ball 3 when in the housing 4 .
  • the space 25 is intended to contain lubricant, namely, a thickened oil or grease which is not shown in this Figure, but which can be any common lubricant known in the art.
  • Filling the void 25 above the truncated surface 14 allows for pressure to be applied to the ball 3 , while in the housing 4 , and is employed to help seat the ball in the seat 18 (see FIG. 4 ) provided at the lower end of the housing 4 .
  • the pressure created by lubricants inserted into the void 25 is also a means to help adjust the ball 3 in the housing 4 to accommodate for any wear an the ball 3 .
  • this means of accommodating for wear on the ball 3 is not known independently of mechanical means, or as a sole means for providing such pressure.
  • the housing 4 which houses and seats the ball 3 is shown in FIG. 3 .
  • the threaded exterior surface 5 which inserts into the socket 16 , that is described infra
  • the lower edge 15 which in this Figure is beveled to fit into the bottom of the socket 16
  • the flange 10 which is configured such that it can be used to turn the housing 4 into the socket 16
  • the flange 10 is shown as a hexagon configuration. Any convenient configuration that allows the turning of the housing 4 is contemplated within the scope of this invention.
  • the threaded exterior surface 5 used to attach the housing to the support arm of a suspension system.
  • This means for attaching the housing to the support arm of the suspension system is external threads 5 on the external surface of the middle portion of the housing.
  • a fastening means for the housing 4 to retain the retaining member 6 in the housing 4 , which fastening means 7 is comprised of a simple set screw combination wherein there is shown the threaded opening 9 , into which a set screw 8 is inserted and turned down to complete the fastening.
  • fastening means 7 is not critical in this invention, and any fastening means which will secure the retaining member 6 in the housing 4 and which is fairly simple to use, is acceptable.
  • FIG. 4 which is a top view of the housing 4 , there is shown the flange 10 , the fastening means opening 9 , in phantom, the internal threads 17 for accommodating the external threads 18 of the retaining member 6 , and the seat 18 for the ball 3 , which is located near the bottom edge 15 of the housing 4 .
  • FIG. 5 is a top view of the housing 4 , wherein there is shown the flange 10 , therein is situated in the housing 4 , a retaining member 6 , wherein there is shown the top 19 of the retaining member 6 , a concavity 20 in the top 19 , and detachedly fixed in the concavity 20 , a grease zerk fitting 21 .
  • such grease zerk fittings 21 are threaded and screwed into a threaded opening and that is contemplated within the scope of this invention as well as any convenient means of inserting and fastening the grease zerk fitting 21 .
  • indentions 22 which are indented in the wall of the concavity 20 , which indentions 22 are useful for applying a wrench or some other viable means to turn the retaining member 6 in and out of the housing 4 .
  • the indentions 22 are not critical to this invention and can be optionally included in the retaining member 6 , and can be configured other than as an indention as shown.
  • FIG. 6 is a cross-sectional view of the housing 4 , taken through line 6 - 6 of FIG. 4 , wherein there is shown the flange 10 , the opening 9 , the set screw 8 tail end, the external threads 5 , and the internal threads 17 , which accommodate the external threads 24 of the retaining member 6 (see also FIGS. 7 and 8 ).
  • FIG. 7 is a full view of the retaining member 6 , showing the top 19 and the external threads 24 .
  • FIG. 8 is a full cross-sectional view of the retaining member 6 through line 8 - 8 of FIG. 7 , wherein, there is shown the top 19 , the external threads 24 , the concavity 20 , and the grease fitting 21 . Also shown is the duct 23 , which carries lubricant applied to the grease fitting 21 to be carried to the void 25 (see FIG. 8 ), wherein the ball 3 is shown and wherein the majority of the lubricant resides. Also shown in FIG.
  • the shallow channels 26 which in the prior art ball joints are typically placed into the ball 2 , but which in this invention are placed in the interior of the socket 16 .
  • the reason for this placement of the shallow channels 26 is primarily cost, as placing the shallow channels 26 in the socket 16 , means that expensive machining does not have to be done in the ball 2 , which is the part that is replaced more often.
  • FIG. 9A there is shown a full view of the fully assembled ball joint system 27 wherein components shown therein have like numbers for like components as shown in FIG. 1 , except, there is shown in addition, the socket 16 , into which the ball joint system 27 is screwed pursuant to the internal threads 28 of the socket 16 , and the external threads 5 on the housing 4 .
  • the socket 16 is comprised of a hollow cylinder housing, which has a sidewall 29 and an upper rim 30 .
  • the socket 16 is fastened securely into the support arms of a suspension system of an automobile or truck, which automotive suspension system is illustrated in the schematic drawing of FIG. 11 .
  • the ball joint system 27 can be used for both the upper and lower support arms configuration.
  • the fully assembled ball joint system 27 is then turned into the socket 16 and is secured 15 to the socket 16 by any conventional securing means, such as set screws, retainer rings, or the like.
  • a threaded nut 31 which can be turned onto the threads 13 of the elongated shaft 2 for attachment to a support means (axle stud) of a wheel of an automobile, and thereafter, the nut 31 is secured thereon by the insertion of a cotter pin, or the like, through the opening 12 .
  • FIG. 11 there is shown a schematic drawing of one type of automotive suspension system 32 , in which there is shown as the main components therein, a fully mounted wheel 33 for the automobile, a support stud (axle) 34 for the wheel 33 , wishbone support arms, upper 35 , and lower 36 , a strut or shock absorber 37 , having an surrounding auxiliary spring 38 , a support mechanism 39 that is attached to the frame of an automobile (not shown), an upper ball joint system 40 , and a lower ball joint system 41 , wherein the support arms 35 and 36 do not show as being attached to the lower and upper ball joint systems, 40 and 41 , respectively, in order to more clearly show the total configuration of the suspension system.
  • the openings in the support arms 35 and 36 are shown in phantom as 42 and 43 , respectively. In actual use, the sockets 16 for both the upper 40 and the lower 41 ball joint systems would normally be inserted in the openings 42 and 43 respectively.
  • FIG. 12 is a full view in perspective of a wishbone support arm 35 or 36 with the ball joint system, either the upper 40 , or the lower 41 , inserted therein.
  • FIG. 13 shows a full top view of the wishbone of FIG. 12 , wherein the ball joint system 40 or 41 is clearly visible.
  • the support arms 35 and 36 are securely attached to the frame of the vehicle by the bar 45 , while the respective ends 44 and 46 are constructed to allow the rotation of the arms 35 and 36 per se to rotate around the bar 45 in an up and down mode for the support arms pursuant to the movement of the wheel 33 and support stud 34 while in use the vehicle is in use. This is also shown in FIG. 13 .

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Pivots And Pivotal Connections (AREA)
  • Vehicle Body Suspensions (AREA)
  • Joints Allowing Movement (AREA)

Abstract

Ball joints, systems in which they are used, and suspension systems in which the ball joint systems are employed. The ball joints, systems and suspension mechanisms are especially useful for racing vehicles in which premium performance is desired. As an additional feature, the products of this invention are especially appreciated because of the ability to quickly and easily replace or change them.

Description

  • This application claims priority from and is a continuation application of U.S. Ser. No. 13/199,642, filed Sep. 6, 2011, currently pending, which is a continuation application of U.S. Ser. No. 12/316,160, filed Dec. 10, 2008, now abandoned, which is a continuation application of U.S. Ser. No. 10/050,834, filed Jan. 15, 2002, now U.S. Pat. No. 7,927,035.
  • The invention disclosed and claimed herein deals with premium performance ball joints, systems in which they are used, and suspension systems in which the ball joint systems are employed. The ball joints, systems and suspension mechanisms are especially useful for racing vehicles in which premium performance is desired. As an additional feature, the products of this invention are especially appreciated because of the ability to quickly and easily replace or change the ball and shaft (ball stud combination) in the ball joints. The ball stud is what is damaged in accidents, and, it wears out first from normal use. Thus, the ability to change the ball stud rather than changing the entire ball joint is a decided advantage of this invention.
  • Unlike the lower ball joints, upper ball joints do not have the load between the sprung mass of the vehicle and the suspension spring to keep them seated. Most prior art ball joints used in the upper ball joint position use an internal spring over the ball and in the void space above the ball to hold the ball in place. In high cornering situations, the lateral force on the ball joint creates sufficient force to compress the spring and unseat the ball. This problem makes it impossible to maintain the optimum camber in the tire to maximize the tire contact patch on the roadway. This movement also causes minor directional changes in the automobile steering that are detrimental to stability of the automobile. Thus, the premium performance aspect of this invention is based on the fact that prior art ball joints used for the same applications, all have a mechanical means for applying pressure to the ball within the ball joint to accommodate wear as the ball joint is in use, while the ball joint of this invention has no such mechanical means. The lubricants that are commonly used in these types of ball joints provide the pressure, required within the inventive ball joint for accommodating the wear of the ball joints of this invention. The result is a ball that has minimal restriction in movement because of the reduction in friction and is therefore essentially “free-wheeling” within the housing in which it is contained, thus, providing ease of steering.
  • Original equipment manufactured ball joints of the prior art create inconsistent amounts of resistance to suspension movement, most frequently around twenty pounds, while the ball joints of this invention have less than one pound of resistance. This is important to race drivers, as shock and spring rates are critical to within five pounds. It is not conceivable that automobile handling advantages could be built into the automobile by making small, spring and shock rate changes while the ball joints are gradually losing resistance, or “freeing up” as they wear. The ball joints of this invention greatly reduce the “moving resistance target” caused by prior art tight ball joints.
  • BACKGROUND OF THE INVENTION
  • It is well known that ball joints and systems employing them are used in front wheel suspension of automotive vehicles. The ball joint lends flexibility for steering the wheels while accommodating changes in angles between the wheel and the suspension members. In conventional ball joints, a pin or shaft on which the wheel is mounted carries a ball, which is rigid with the shaft, the ball being housed in a housing wherein the ball is seated and retained. During both rotation and pivoting of the elongated shaft, the surface of the ball slides over a lining of the housing.
  • Typically, prior art ball joints are all constructed such that they have an open space or void at the top of the ball, wherein there is typically placed a means for asserting pressure on the top of the ball to accommodate any wear on the ball.
  • Such means are, for example, springs under tension, which are placed on the top of the ball and retained by some kind of insert over the top of the ball. Also known by the inventors herein are ball joints in which the pressure is provided by compressible nylon particles that are situated in the open space and impinge on and essentially surround the exposed top surface of the ball.
  • All such ball joints require lubrication, and some means is provided to allow for the lubricant to be injected into the housing and onto and around the ball of the ball joint. Further, the ball per se often contains shallow, usually disconnected, channels in which the lubricant can take up residence. These channels help a situation that can occur in the ball joint in which the lubricant, contained within the housing, can block off all air into the housing and create a vacuum within the housing, which provides a lock. This lock is experienced when one tries to put grease into the housing, as the grease gun connector locks onto the grease zerk fitting and cannot be removed. The grooves not only provide a channel for the grease to reach the ball, but they also create vents that allow the grease to enter the ball joint housing and air to escape.
  • The instant invention eliminates or reduces the above-mentioned problems with ball joints and provides a premium performance ball joint wherein the ball and shaft is easily installed, removable, and easily replaced without having to replace the entire ball joint, and, furthermore, the ball joint system provides premium performance in the operation of automobiles.
  • THE INVENTION
  • This invention deals with novel ball joints, novel systems employing the ball joints, and suspension systems for automotive uses that employ the novel ball joint systems. More specifically, there is provided a ball joint comprising in combination an elongated shaft having an upper end and a lower end and having a longitudinal axis running through said upper end and said lower end, wherein the elongated shaft has threads on its lower end. There is in addition, a ball rigidly fixed and surmounted on the upper end of the elongated shaft. The ball, at the highest point opposite the attachment of the elongated shaft, has a truncated flat face.
  • There is also a retaining member having an upper surface and a lower end. The retaining member is provided with a lubricating port located, in the upper surface of the retaining member. The lubricating port is openly connected to a duct, the duct necessarily providing a passageway for lubricants from the lubricating port to the truncated flat face of the ball. The retaining member is externally threaded on the retaining member lower end.
  • There is a housing having an outside surface, a middle portion, and a lower end. The housing is internally conformed at the lower end to seat the ball and retain it in the housing, and the seat allows a pivotal movement of the ball about the longitudinal axis of the elongated shaft relative to the housing. The middle portion of the housing is internally threaded to receive the retaining member and the middle portion is externally threaded on the outside surface. Finally, there is a fastening means for fastening the retaining member in the housing.
  • In another embodiment, there is a combination of the ball joint described just above, and a socket to provide a ball joint system. The socket comprises a cylindrical housing having a wall with an internal surface wherein the internal surface is threaded to receive the housing in it and the socket has a means of attachment for attachment near a terminal end of a carrier for the ball joint system.
  • Finally, there is an additional embodiment of this invention that is an automotive suspension system incorporating the ball joint systems described just above.
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • FIG. 1 is a full view of a ball joint system of this invention that is fully assembled.
  • FIG. 2 is a full view of the ball and the elongated shaft of this invention.
  • FIG. 3 is a full view of the housing of this Invention.
  • FIG. 4 is a full top view of the housing of this invention without the retaining member in place.
  • FIG. 5 is a full top view of the housing of this invention with the retaining member in place.
  • FIG. 6 is a full cross-sectional view of the housing of FIG. 4 through the line 6-6 of FIG. 3.
  • FIG. 7 is a full view of the retaining member of this invention.
  • FIG. 8 is a full cross-sectional view of the retaining member of FIG. 7 through the lines 8-8 of FIG. 7.
  • FIG. 9A is a full view of a fully assembled ball joint system of this invention and including the socket.
  • FIG. 9B is a full view of a fully assembled ball joint system of this invention and including the socket wherein the elongated shaft is longer than the elongated shaft of FIG. 9A.
  • FIG. 10 is a full top view of the socket of FIG. 9.
  • FIG. 11 is a schematic drawing of one type of automotive suspension system showing the use of the ball joint systems of this invention.
  • FIG. 12 is a full view in perspective of a portion of the suspension system of FIG. 11, wherein there is shown a wishbone support arm containing a ball joint system of this invention.
  • FIG. 13 is a full top view of the wishbone support arm of FIG. 12.
  • DETAILED DESCRIPTION OF THE INVENTION
  • Turning now to the Figures, and with reference to FIGS. 1, 9A and 9B, which are full views of ball joint systems 27 and 27A of this invention that are fully assembled components thereof, comprising elongated shafts 2 and 2 a and in FIG. 1, the ball 3 (only a portion of the bottom of the ball is shown therein), the housing 4, with external threads 5, a retaining member 6, and a fastening means 7, which is a set screw 8 set into a threaded (not shown) opening 9, in an upper flange 10 of the housing 4.
  • It should be noted that the elongated shaft 2 is threaded at its lower end 11, and there is an opening 12 through the threaded portion 13 of the elongated shaft 2 to accommodate a cotter pin (not shown), or the like, to retain a nut 31 (see FIG. 9), which in turn retains the elongated shaft 2 in a portion of a suspension system that is discussed below. It is contemplated within the scope of this invention to provide ball joints wherein the shafts 2 are provided in various lengths (See, for example, FIGS. 9A and 9B wherein elongated shaft 2 a is longer than elongated shaft 2 of FIG. 9A). The reason for the various lengths is that in racing, it is desirable to alter the suspension angles and positions to affect handling, i.e., roll centers, camber gain and other related geometry. Having ball joints with variable length shafts gives the users an option for altering the suspension geometry of the automobile using the ball joints. Currently, racers will change or alter the spindles to make the same geometry changes, and this provides an increased cost, as the spindles are about 6 to 7 times more expensive than the ball joints of this invention.
  • FIG. 2 is a full view of the combination 1 of the ball 3 and the elongated shaft 2 without the remainder of the components being shown, for clarification. Thus there is shown the ball 3, the elongated shaft 3, a truncated flat surface 14 at the topmost point of the ball 3, and the treaded portion 13 at the lower end 11, along with the opening 12.
  • What is meant by “longitudinal axis running through said upper end and said lower end” is shown by the line 300-300 in FIG. 2, which indicates the principal axis that the ball 3 would revolve around, it being understood that the ball will tilt from this axis within the housing 4 to provide flexibility in the ability of the ball 3 to coordinate with the suspension systems noted infra, and the degree of movement within the housing 4 is limited only by the contact of the elongated shaft 3 with the lower edge 15 of the housing 4, and/or the connection that the elongated shaft 3 has with the suspension system and the wheel 33 shown in FIG. 11.
  • It should be noted that the preferred combination of ball 3 and elongated shaft 2 is that in which the two are joined as a unitary component. This combination is manufactured from hardened steel or the like to endure the wear that usually accompanies such devices. The truncated flat surface 14 is provided so that there is a space or void 25 (see FIG. 8) formed above the ball 3 when in the housing 4. The space 25 is intended to contain lubricant, namely, a thickened oil or grease which is not shown in this Figure, but which can be any common lubricant known in the art. Filling the void 25 above the truncated surface 14 allows for pressure to be applied to the ball 3, while in the housing 4, and is employed to help seat the ball in the seat 18 (see FIG. 4) provided at the lower end of the housing 4. The pressure created by lubricants inserted into the void 25 is also a means to help adjust the ball 3 in the housing 4 to accommodate for any wear an the ball 3. As far as is known by the inventors herein, this means of accommodating for wear on the ball 3 is not known independently of mechanical means, or as a sole means for providing such pressure.
  • The housing 4, which houses and seats the ball 3 is shown in FIG. 3. With reference to this Figure, there is shown the threaded exterior surface 5, which inserts into the socket 16, that is described infra, the lower edge 15, which in this Figure is beveled to fit into the bottom of the socket 16, the flange 10 which is configured such that it can be used to turn the housing 4 into the socket 16, and in this Figure, the flange 10 is shown as a hexagon configuration. Any convenient configuration that allows the turning of the housing 4 is contemplated within the scope of this invention. The threaded exterior surface 5 used to attach the housing to the support arm of a suspension system. This means for attaching the housing to the support arm of the suspension system is external threads 5 on the external surface of the middle portion of the housing. In the side surface of the flange 10, there is shown a fastening means for the housing 4, to retain the retaining member 6 in the housing 4, which fastening means 7 is comprised of a simple set screw combination wherein there is shown the threaded opening 9, into which a set screw 8 is inserted and turned down to complete the fastening.
  • The type of fastening means 7 is not critical in this invention, and any fastening means which will secure the retaining member 6 in the housing 4 and which is fairly simple to use, is acceptable.
  • With reference to FIG. 4, which is a top view of the housing 4, there is shown the flange 10, the fastening means opening 9, in phantom, the internal threads 17 for accommodating the external threads 18 of the retaining member 6, and the seat 18 for the ball 3, which is located near the bottom edge 15 of the housing 4.
  • Further, with reference to FIG. 5, which is a top view of the housing 4, wherein there is shown the flange 10, therein is situated in the housing 4, a retaining member 6, wherein there is shown the top 19 of the retaining member 6, a concavity 20 in the top 19, and detachedly fixed in the concavity 20, a grease zerk fitting 21. Generally, such grease zerk fittings 21 are threaded and screwed into a threaded opening and that is contemplated within the scope of this invention as well as any convenient means of inserting and fastening the grease zerk fitting 21. Also shown in this Figure are indentions 22, which are indented in the wall of the concavity 20, which indentions 22 are useful for applying a wrench or some other viable means to turn the retaining member 6 in and out of the housing 4. The indentions 22 are not critical to this invention and can be optionally included in the retaining member 6, and can be configured other than as an indention as shown.
  • Reference should also be made to FIG. 6, which is a cross-sectional view of the housing 4, taken through line 6-6 of FIG. 4, wherein there is shown the flange 10, the opening 9, the set screw 8 tail end, the external threads 5, and the internal threads 17, which accommodate the external threads 24 of the retaining member 6 (see also FIGS. 7 and 8).
  • With further reference to the retaining member 6, reference should be made to FIG. 7, which is a full view of the retaining member 6, showing the top 19 and the external threads 24. FIG. 8 is a full cross-sectional view of the retaining member 6 through line 8-8 of FIG. 7, wherein, there is shown the top 19, the external threads 24, the concavity 20, and the grease fitting 21. Also shown is the duct 23, which carries lubricant applied to the grease fitting 21 to be carried to the void 25 (see FIG. 8), wherein the ball 3 is shown and wherein the majority of the lubricant resides. Also shown in FIG. 6 are the shallow channels 26 which in the prior art ball joints are typically placed into the ball 2, but which in this invention are placed in the interior of the socket 16. The reason for this placement of the shallow channels 26 is primarily cost, as placing the shallow channels 26 in the socket 16, means that expensive machining does not have to be done in the ball 2, which is the part that is replaced more often.
  • Turning now to FIG. 9A, there is shown a full view of the fully assembled ball joint system 27 wherein components shown therein have like numbers for like components as shown in FIG. 1, except, there is shown in addition, the socket 16, into which the ball joint system 27 is screwed pursuant to the internal threads 28 of the socket 16, and the external threads 5 on the housing 4. The socket 16 is comprised of a hollow cylinder housing, which has a sidewall 29 and an upper rim 30. The socket 16 is fastened securely into the support arms of a suspension system of an automobile or truck, which automotive suspension system is illustrated in the schematic drawing of FIG. 11. The ball joint system 27 can be used for both the upper and lower support arms configuration. The fully assembled ball joint system 27 is then turned into the socket 16 and is secured 15 to the socket 16 by any conventional securing means, such as set screws, retainer rings, or the like. Also shown in association with the ball joint system 27 of FIG. 9 is a threaded nut 31, which can be turned onto the threads 13 of the elongated shaft 2 for attachment to a support means (axle stud) of a wheel of an automobile, and thereafter, the nut 31 is secured thereon by the insertion of a cotter pin, or the like, through the opening 12.
  • Finally, turning to FIG. 11, there is shown a schematic drawing of one type of automotive suspension system 32, in which there is shown as the main components therein, a fully mounted wheel 33 for the automobile, a support stud (axle) 34 for the wheel 33, wishbone support arms, upper 35, and lower 36, a strut or shock absorber 37, having an surrounding auxiliary spring 38, a support mechanism 39 that is attached to the frame of an automobile (not shown), an upper ball joint system 40, and a lower ball joint system 41, wherein the support arms 35 and 36 do not show as being attached to the lower and upper ball joint systems, 40 and 41, respectively, in order to more clearly show the total configuration of the suspension system. The openings in the support arms 35 and 36 are shown in phantom as 42 and 43, respectively. In actual use, the sockets 16 for both the upper 40 and the lower 41 ball joint systems would normally be inserted in the openings 42 and 43 respectively.
  • FIG. 12 is a full view in perspective of a wishbone support arm 35 or 36 with the ball joint system, either the upper 40, or the lower 41, inserted therein. In addition, FIG. 13 shows a full top view of the wishbone of FIG. 12, wherein the ball joint system 40 or 41 is clearly visible. The support arms 35 and 36 are securely attached to the frame of the vehicle by the bar 45, while the respective ends 44 and 46 are constructed to allow the rotation of the arms 35 and 36 per se to rotate around the bar 45 in an up and down mode for the support arms pursuant to the movement of the wheel 33 and support stud 34 while in use the vehicle is in use. This is also shown in FIG. 13.

Claims (43)

What is claimed is:
1. A suspension system for a vehicle comprising:
a wishbone arm having a threaded socket portion; and
a ball joint assembly threaded to the threaded socket portion of the wishbone arm, said ball joint assembly is operable to be serviced by having one or more components replaced, the ball joint assembly including:
a housing having a socket at one end, internal threads positioned apart, from the socket, and external threads that mate with the threaded socket portion of said wishbone arm,
a ball stud having a threaded portion for engaging a drive member, a ball portion for mating with said socket of said housing, and a flat surface,
a retainer having a threaded portion for mating with the internal threads of said housing, said retainer further having a grease port for delivering grease to a void within said ball joint assembly.
2. The suspension system as clamed in claim 1, further comprising a locking member for securing the retainer to the housing.
3. The suspension system as claimed in claim 1, further comprising a member to aid in turning the retainer in and out of the housing.
4. The suspension system as clamed in claim 1, further comprising a second wishbone arm and a second ball joint assembly threaded to the wishbone arm.
5. The suspension system as clamed in claim 1, further comprising a shock.
6. The suspension system as clamed in claim 1, wherein said ball stud can be easily removed from said housing, and a replacement ball stud can be inserted into said housing.
7. The suspension system as clamed in claim 1, wherein said housing can be secured to said wishbone arm while a new replacement ball stud can be inserted into the housing once the ball stud has been removed.
8. A suspension system for a vehicle comprising:
a wishbone arm having a portion for releasably securing a ball joint assembly to the wishbone arm;
and a ball joint assembly releasably secured to the wishbone arm, the ball joint assembly including:
a housing having an internal cavity with a socket, internal threads positioned apart from the socket, and a portion for being releasably secured to the wishbone arm;
a ball stud having a ball portion for mating with said socket of said housing;
a retainer having a threaded portion for mating with the internal threads of said housing, said retainer further having a grease port for delivering grease to a void within said ball joint assembly.
9. The suspension system as claimed in claim 8, wherein said ball joint assembly can be quickly removed from said suspension system and another ball joint system can be installed.
10. The suspension system as claimed in claim 8, wherein while the housing stays secured to said wishbone arm, the ball stud can be removed from said housing and a replacement ball stud can be installed in the housing.
11. The suspension system as claimed in claim 8, further comprising a member for securing said retainer to said housing.
12. A ball joint system for a vehicle comprising:
a receiving ring having a threaded portion; and
a ball joint secured to the receiving ring, the ball joint including:
a housing having an internal cavity with a chamber, internal threads for receiving a retainer, and a threaded portion for being releasably secured to the threaded portion of the receiving ring;
a stud having a ball portion for mating with said cavity of said housing;
a retainer having a threaded portion for mating with the internal threads of said housing, said retainer further having a grease port for delivering grease to a void within said ball joint assembly.
13. The ball joint system as claimed in claim 12, wherein said receiving ring is a part of a vehicle suspension member.
14. The ball joint system as claimed in claim 12, wherein said retainer cars foe unthreaded from said housing allowing said stud to be removed from said housing, and a replacement stud can be inserted inside said housing and the retainer secured to said housing.
15. The ball joint system as claimed in claim 12, wherein said stud has an elongated shaft that extends through said housing and a threaded portion for being secured to a vehicle component.
16. A ball joint assembly for use in a suspension system for a vehicle, the assembly comprising:
a housing having an internal cavity with a socket, and internal threads positioned apart from the socket;
a first ball stud having a first length and ball portion for mating with said socket of said housing;
a retainer having a threaded portion for mating with the internal threads of said housing, said retainer further having a grease port for delivering grease to a void located between said ball stud and a wall of said retainer;
a locking member for securing said retainer to said housing; and
a second ball stud having a second length, said second ball stud can be installed to replace said first ball stud.
17. The ball joint assembly for use in a suspension system for a vehicle as claimed in claim 16, wherein the housing can be threaded to a suspension arm of a vehicle.
18. The ball joint assembly for use in a suspension system for a vehicle as claimed in claim 16, further comprising a lubricant.
19. The ball joint assembly for use in a suspension system for a vehicle as claimed in claim 16, wherein said first length and said second length of said ball studs are different.
20. A universal ball joint system for a vehicle comprising:
a ball joint stud having a ball portion, an elongated shaft, and a threaded portion;
a first housing having a cavity and internal threads for receiving a retainer; and
a retainer having a threaded portion for mating with the internal threads of said housing,
wherein said universal ball joint system can be modified so as to replace the first housing with a second housing, second housing has different external configurations than said first housing, said ball joint stud and said retainer can be used with said second housing.
21. metal ball joint comprising in combination:
an elongated shaft having an upper end and a lower end, said elongated shaft being threaded on the lower end;
a ball located on the upper end of the elongated shaft, said ball having a continuous curved surface and further having a truncated flat surface;
a housing having an outside surface, a middle portion, an internal thread, and a lower end, said housing further having a curved seat disposed at an end of the housing to seat and engage a first portion of the curved surface of the ball adjacent the elongated shaft and an opening formed in the seat for passage therethrough of the elongated shaft but not permitting passage therethrough of the ball such as to permit pivotal movement of the elongated shaft relative to the housing;
a retainer having an upper surface, a lower end and a first thread, said retainer having a curved seat disposed at the lower end thereof to engage a second portion of the curved surface of the ball adjacent the truncated flat, the retainer being capable of maintaining a seal between the ball and the housing via pressure of lubricant on the truncated flat of the ball;
a locking member removably maintaining the retainer in engagement with the housing such that the retainer can be selectively removed from the housing by removal of the locking member; and a lubricant zerk.
22. The ball joint as claimed in claim 21, wherein said housing further comprises an attachment feature adapted for selective attachment of said housing to a support arm of a suspension system.
23. The ball joint as claimed in claim 22, where said attachment feature further comprises an external thread on the outside surface of the housing, said external thread being capable of attaching the housing to an thread on an support arm of the suspension system.
24. The ball joint as claimed in claim 22, wherein said attachment feature further comprises a flange extending from a portion of the housing that can be secured to the support arm by at least one detachable fastener.
25. The ball joint as claimed in claim 22, wherein said attachment feature further comprises a compression fit of the housing into at least one opening in a support arm.
26. An automotive suspension system wherein there is provided a first ball joint system comprising a first metal ball joint and a second ball joint system comprising a second metal ball joint as claimed in claim 21.
27. The ball joint as claimed in claim 21, wherein the locking member engages an upper surface of the retainer.
28. The ball, joint as claimed in claim 21, further comprising a lubrication void located between the ball and the retainer, the retainer and the housing being capable of maintaining a seal between the ball and the housing via pressure of lubricant in the lubrication void on the ball.
29. The ball joint as claimed in claim 21, wherein the zerk is capable of permitting the admission of a pressurized, lubricant such that the pressurized lubricant exerts a pressure against the retainer and the ball to maintain pressure on the ball to maintain the ball against the seat of the housing.
30. The ball joint as claimed in claim 21, wherein said locking member and retainer are adapted to be selectively separated from said housing allowing said elongated shaft to be removed from said housing, and a replacement shaft to be inserted inside said housing and the retainer to be again secured to said housing.
31. The ball joint as claimed in claim 30, wherein the length of said elongated shaft and said replacement shaft are different.
32. A metal ball joint for use with a pressurized lubricant, the ball, joint comprising in combination:
an elongated shaft having an upper end and a lower end, said elongated shaft being threaded on the lower end;
a ball surmounted on the upper end of the elongated shaft, said ball having a curved surface and further having a flat surface on the upper end of the elongated shaft;
a housing having an outside surface, a flange, a middle portion, a lower end, and a first thread, said housing further having a curved seat disposed at the lower end of the housing to seat and engage the curved surface of the ball adjacent the elongated shaft and an opening formed in the seat for passage therethrough of the elongated shaft but not permitting passage therethrough of the ball such as to permit pivotal movement of the elongated shaft relative to the housing;
a retainer having an upper surface and a lower end, said retainer having a seat disposed at the lower end thereof to seat and engage another portion of the curved surface of the ball adjacent the flat surface thereof and a lubricating port passing through the retainer, the lubricating port having a passageway, said port permitting the admission of a pressurized lubricant such that the pressurized lubricant exerts a pressure against the flat surface of the ball to maintain pressure on the ball to maintain the ball against the seat of the housing, said retainer having a second thread engageable with the first thread of the housing to trap the ball within the housing and the retainer; the retainer being capable of maintaining a seal between the ball and the housing via the pressure of the lubricant on the flat surface of the ball; and
a fastener releasably engageable to the housing to selectively secure the retainer to the housing such that the retainer can be selectively removed from the housing by removal of the fastener.
33. The ball joint as claimed in claim 32, wherein said housing further comprises an attachment feature adapted for selective attachment of said housing to a support arm of a suspension system.
34. The ball joint as claimed in claim 32, wherein the second thread of the retainer and the first thread of the housing are disposed partially around the ball when the second thread of the retainer is fully engaged with the first thread of the housing.
35. The ball joint as claimed in claim 32, wherein said fastener and retainer are adapted to be selectively separated from said housing allowing said elongated shaft to be removed from said housing, and a replacement shaft to be inserted inside said housing and the retainer to be again secured to said housing.
36. The ball joint claimed in claim 32, wherein the elongated shaft can be removed and replaced with another elongated shaft.
37. A metal ball joint for use as a component of a suspension system, said ball joint comprising:
a ball stud having an elongated shaft portion with an upper end with a ball, and a threaded portion at a lower end, said ball having a curved surface and a flat;
a housing having an outside surface, an outwardly extending portion extending from the outside surface, a lower end and an internal thread;
a first curved seat disposed at the lower end of the housing to seat and engage the curved surface of the ball;
an opening formed in the first curved seat for passage therethrough of the elongated shaft but not permitting passage therethrough of the ball such as to permit pivotal movement of the elongated shaft relative to the housing;
an attachment feature that is operable for selective attachment of said housing to a suspension system;
a retainer having an upper surface and a lower end, said retainer having an external thread, the external thread being engageable with the internal thread of the housing to trap the ball within the housing and the retainer, the retainer maintaining a seal between the ball and the housing via pressure of a lubricant on the ball;
a second curved seat disposed at the lower end of the retainer to seat and engage a second portion of the curved surface of the ball;
a securing member threaded to the housing, the retainer can be selectively removed from the housing by removal of the securing member,
wherein said securing member and retainer are adapted to be selectively separated from said housing allowing said elongated shaft to be removed from said housing, a replacement shaft to be inserted inside said housing and the retainer to be secured to said housing.
38. The ball joint as claimed in claim 37, where said attachment feature comprises an external thread on the outside surface of the housing, said external thread being capable of attaching the housing to a thread on a support arm of a suspension system.
39. The ball joint as claimed in claim 37, wherein said attachment feature comprises a flange extending from a portion of the housing that can be secured to a support arm by at least one detachable fastener.
40. The ball joint as claimed in claim 37, wherein said attachment feature comprises a compression fit of the housing into an opening in a suspension member.
41. The ball joint as claimed in claim 37, further comprising a lubricating port located in the upper surface of the retainer, the lubricating port providing a passageway for delivering pressurized lubricant, said pressurized lubricant exerts a pressure against the flat to maintain pressure on the ball.
42. The ball joint as claimed in claim 37, wherein the length of said shaft and said replacement shaft are different.
43. A metal ball joint for use with a pressurized lubricant, the ball joint comprising in combination:
an elongated shaft having an upper end and a lower end, said elongated shaft being threaded on the lower end;
a ball surmounted on the upper end of the elongated shaft, said ball having a curved surface and further having a flat surface on the upper end of the elongated shaft;
a housing having an outside surface, a flange, a middle portion, a lower end, and a first thread, said housing further having a curved seat disposed at the lower end of the housing to seat and engage the curved surface of the ball adjacent the elongated shaft and an opening formed in the seat for passage therethrough of the elongated shaft but not permitting passage therethrough of the ball such as to permit pivotal movement of the elongated shaft relative to the housing;
a retainer having an upper surface and a lower end, said retainer having a seat disposed at the lower end thereof to seat and engage another portion of the curved surface of the ball adjacent the flat surface thereof and a lubricating port passing through the retainer, the lubricating port having a passageway, said port permitting the admission of a pressurized lubricant such that the pressurized lubricant exerts a pressure against the flat surface of the ball to maintain pressure on the ball to maintain the ball against the seat of the housing, said retainer having a second thread engageable with the first thread of the housing to trap the ball within the housing and the retainer; the retainer being capable of maintaining a seal between the ball and the housing via the pressure of the lubricant on the flat surface of the ball; and
a fastener releasably engageable to the housing to selectively secure the retainer to the housing such that the retainer can be selectively removed from the housing by removal of the fastener.
US14/148,995 2002-01-15 2014-01-07 Premium performance ball joint and system Abandoned US20140205365A1 (en)

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US13/199,642 US8662783B2 (en) 2002-01-15 2011-09-06 Premium preformance ball joint and system
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US13/199,642 Expired - Lifetime US8662783B2 (en) 2002-01-15 2011-09-06 Premium preformance ball joint and system
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TWI376296B (en) * 2010-03-19 2012-11-11 Cheng Wei Su Tool joint structure
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US8662783B2 (en) 2014-03-04
US20090185852A1 (en) 2009-07-23
AU2003207473A8 (en) 2003-07-30
AU2003207473A1 (en) 2003-07-30
US7927035B2 (en) 2011-04-19
US20120093573A1 (en) 2012-04-19
WO2003060338A2 (en) 2003-07-24
US20030133745A1 (en) 2003-07-17
CA2473258A1 (en) 2003-07-24
CA2473258C (en) 2012-11-27
WO2003060338A3 (en) 2004-07-15

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