US3636285A - Vacuum cleaner hose assembly - Google Patents

Vacuum cleaner hose assembly Download PDF

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Publication number
US3636285A
US3636285A US848272A US3636285DA US3636285A US 3636285 A US3636285 A US 3636285A US 848272 A US848272 A US 848272A US 3636285D A US3636285D A US 3636285DA US 3636285 A US3636285 A US 3636285A
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Prior art keywords
hose
electrical
assembly
connectors
control device
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US848272A
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William T Wickham
Frank Brown
Donald L Kleykamp
Otto Kossuth
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Dayco Products LLC
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Dayco Corp
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Assigned to DAYCO CORPORATION reassignment DAYCO CORPORATION CERTIFICATE BY THE SECRETARY OF STATE OF MICHIGAN SHOWING MERGER OF COMPANIES, AND CHANGE OF NAME OF THE SURVIVING CORPORATION. Assignors: DAYCO CORPORATION (MERGED INTO), DAYCO CORPORATION OF MICHIGAN (CHANGED TO)
Assigned to DAYCO PRODUCTS, INC. reassignment DAYCO PRODUCTS, INC. ASSIGNMENT OF ASSIGNORS INTEREST. Assignors: DAYCO CORPORATION
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/005Electrical coupling combined with fluidic coupling
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L9/00Details or accessories of suction cleaners, e.g. mechanical means for controlling the suction or for effecting pulsating action; Storing devices specially adapted to suction cleaners or parts thereof; Carrying-vehicles specially adapted for suction cleaners
    • A47L9/24Hoses or pipes; Hose or pipe couplings
    • A47L9/242Hose or pipe couplings
    • A47L9/246Hose or pipe couplings with electrical connectors
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C45/00Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor
    • B29C45/14Injection moulding, i.e. forcing the required volume of moulding material through a nozzle into a closed mould; Apparatus therefor incorporating preformed parts or layers, e.g. injection moulding around inserts or for coating articles
    • B29C45/14598Coating tubular articles
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01BCABLES; CONDUCTORS; INSULATORS; SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING OR DIELECTRIC PROPERTIES
    • H01B7/00Insulated conductors or cables characterised by their form
    • H01B7/0072Electrical cables comprising fluid supply conductors

Definitions

  • a vacuum hose is provided having a plurality of reinforcing wires in the form of electrical conductors which are made as [52] "200/ 51 5i an integral part of the hose and each conductor has electrical [51] In. 33/30 components fixed to its opposite ends.
  • a pair of hose connectors is provided at opposite ends of the hose end formed sub [58] of Search "200/5 53 7 1 1; 5 stantially as an integral part thereof to define an assembly with each hose connector having associated electrical components 56] Reerenoes Cited embedded therein and providing the sole support therefor.
  • FIG-8 FIXING ELECTRICAL COMPONENTS TO E LECTRICAL CON DUCTORS CARRIED BY A VACUUM HOSE AND ADJACENT OPPOSITE ENDS OF THE HOSE PLACING SAID- ENDS IN ASSOCIATED MOLD MEANS INTRODUCING A THERMO- PLASTIC MATERIAL IN THE MOLD MEANS TO FORM INTEGRAL HOSE CONNECTORS AT OPPOSITE ENDS OF THE HOSE WHICH HAVE THE ELECTRICAL COMPONENTS EMBEDDED THEREIN COOLING THE MOLD MEANS AND INTEGRAL HOSE CONNECTORS INVENTORS WILLIAM T.
  • This invention provides an improved vacuum cleaner hose assembly, and method of making same, for use with a canistertype vacuum cleaner, or the like, which is of simple and economical construction, has vacuum hose connectors at its opposite ends which are, in essence, provided as an integral part of the vacuum hose comprising such assembly, and has electrical means or devices embedded in each hose connector substantially as an integral part thereof with the hose connectors providing the sole support for the electrical devices.
  • This invention also provides a hose assembly which has integral control means for controlling an electric motor provided on a cleaning tool used in association with such hose assembly wherein the control means is also embedded in one of the hose connectors.
  • FIG. 1 is a perspective view with parts in cross section and parts broken away illustrating a vacuum cleaning apparatus together with an exemplary vacuum hose assembly of this invention
  • FIG. 2 is a greatly enlarged cross-sectional view particularly illustrating afemale hose connector provided at one end of the hose assembly;
  • FIG. 3 is a greatly enlarged fragmentary cross-sectional view illustrating a male hose connector at the opposite end of the hose assembly
  • FIG. 4 is a cross-sectional view illustrating a dual-purpose electrical connector which may be optionally used in the hose assembly of FIG. 1 as a female connector;
  • FIG. 5 is a cross-sectional view illustrating the dual-purpose connector of FIG. 4 used as a male connector
  • FIG. 6 is a perspective view with parts shown schematically and other parts broken away particularly illustrating an exemplary apparatus which may be used to make the hose assembly of this invention
  • FIG. 7 is an enlarged plan view of a typical lower mold comprising the apparatus of FIG. 6 and also illustrating the manner of placing a vacuum hose in position therein to form hose connectors as an integral part of its opposite ends;
  • FIG. 8 is a process chart particularly highlighting certain method steps which may be utilized to form the hose assembly of this invention.
  • FIG. 9 is a fragmentary perspective view particularly illustrating another embodiment of a hose assembly having one embodiment of a control switch provided as an integral part of a hose connector at one end of such hose assembly;
  • FIG. 10 is a fragmentary cross-sectional view with certain parts shown in elevation and taken essentially on the line 10 10 of FIG. 9;
  • FIG. 11 is an electrical wiring diagram illustrating the manner of electrically connecting the switch of FIGS. 9 and 10 in its electrical circuit
  • FIG. 12 is a fragmentary cross-sectional view similar to FIG. 10 and illustrating still another embodiment of a hose assembly having another embodiment of an integral control switch;
  • FIG. 13 is an electrical wiring diagram similar to FIG. 11 and illustrating the manner of electrically connecting the switch of FIG. 12 in its electrical circuit.
  • FIG. 1 of the drawings illustrates an exemplary vacuum cleaning apparatus 20 which utilizes one embodiment of the hose assembly 21 of this inven tion.
  • the apparatus 20 has a canister or tank 22 provided with a suitable vacuum tube 23 extending outwardly therefrom.
  • the apparatus 20 is provided with electrical power for operating its vacuum unit in a conventional manner and has a female receptacle 24 mounted on its tank 22 and the receptacle 24 is used to supply power through electrical means provided in the hose assembly 21 of this invention to an electric motor 25 comprising the tenninal end of a cleaning instrument 26 which is operatively connected to the hose assembly 21.
  • the apparatus 20 has an electrical cord 27 provided with a male fitting 28 at one end and a female fitting 30 at its opposite end and the cord 27 is used to provide an electrical connection between the female connector 24 and one end of the hose assembly 21.
  • the apparatus 20 also has an electrical cord 32 which has one end electrically connected to the motor 25 in the cleaning instrument 26 and the cord 32 has a male connector 33 which is electrically connected to an associated female connector in the end of the hose assembly 21 which is remote from the tank 22.
  • the hose assembly 21 is comprised of a flexible vacuum hose 34 which has reinforcing wires 35 and 36 suitably provided substantially as an integral part thereof and in a manner well known in the art and the reinforcing wires also serve as electrical conductors.
  • the wires or conductors 35 and 36 are insulated by tubular jackets or sleeves 40 and 41 respectively of insulating material.
  • Each wire 35 and 36 has a pair of electrical connector means or devices fixed to its opposite ends and in this example of the invention each wire 35 and 36 has a female connector 42 fixed to one end thereof and a male connector 43 fixed to its opposite end.
  • the male connectors 43 are connected to female fittings 30 of cord 27 and the male connectors 33 of cord 32 is plugged in female connectors 42 so that once connector 28 is plugged into receptacle 24 an electrical circuit is completed to the motor 25.
  • the hose assembly 21 has pair of hose connectors 44 and 45 fixed to its opposite ends and each hose connector is provided substantially as an integral part of the vacuum hose 34.
  • each hose connector 44 and 45 is preferably formed in position, as by injection molding, for example, to thereby define a streamlined and compact hose connector in each instance which is fixed to the vacuum hose 34 and has as sociated electrical connector means embedded therein so as to provide the sole support for such connector means and in a manner to be described in detail subsequently.
  • the hose connector 44 is formed in position in a fixed manner around an associated end 46 of the vacuum hose 34 and a pair of female connectors 42 are suitably fixed as by soldering, or the like, to the ends of the conductors 35 and 36 and embedded in position.
  • the female connectors 42 are in a protected position indicated at 47 yet are readily accessible through an access opening 48 provided in the connector 44 during the forming thereof.
  • the hose connector 45 is also suitably formed in position around the opposite end 50 of the vacuum hose 34 and a pair of male connectors or pins 43 are suitably fixed to the ends of wires 35 and 36.
  • the pins 43 are in a protected position as indicated at 51 and are readily accessible through an access opening 52.
  • the vacuum hose 34 is preferably made of a plastic material which is also an electrical insulator and the insulating sleeves 40 and 41 provided on the wires 35 and 36 respectively are made of a plastic material which is compatible with the plastic material used to form hose 34 so that the sleeves 40 and 41 and hence wires 35 and 36 may be easily bonded in position essentially as an integral part of the vacuum hose 34.
  • the hose connectors 44 and 45 are preferably made of a thermoplastic material which is easily formed around associated ends of vacuum hose 34 to define connectors 44 and 45 and the thermoplastic material used to make hose connectors 44 and 45 is also an electrical insulating material.
  • the female members 42 and male pins 43 illustrated in FIGS. 2 and 3 are shown as being soldered in position.
  • the hose assembly 21 may be provided with dual-purpose roughly tubular members designated by the reference numeral 53 and illustrated in FIGS. 4 and 5.
  • Each member 53 may be attached to an associated conductor by soldering, or the like; however, member 53 is particularly adapted to be mechanically compressed against an associated wire to provide both a mechanical and an electrical connection and each member 53 may be used as either a male or female connector.
  • a reduced diameter cylindrical portion 54 of member 53 is crimped around an associated wire as indicated at 55 to fix the member 53 to such wire so that a larger diameter tubular portion 56 of member 53 will have its tubular inside surface 57 unobstructed so that it may be used as a female receptacle.
  • the inside surface 57 corresponds in configuration and size to the inside surface 58 of the female receptacle 42.
  • the crimping action is again achieved in a similar manner as illustrated at at 55 with the exception that the electrical wire extends through the larger diameter tubular portion 56 and terminates short of the terminal outer end of the reduced diameter portion 54, see FIG. 5. It will be appreciated that the outside surface of the pine 43.
  • the member 53 may be suitably fixed in position to serve as either a male or female electrical connector depending upon the manner in which the electrical wire is fixed therein.
  • the added length of each member 53 enables it to be embedded in position in a stronger manner in an associated hose connector.
  • the hose assembly 21 may be made utilizing any suitable technique; however, it is preferably made utilizing the method steps essentially as presented in FIG. 8 of the drawings and certain ones of such method steps may be carried out using an apparatus of the character presented in FIGS. 6 and 7.
  • the apparatus illustrated in FIG. 6 comprises an injectionmolding apparatus 60 which has a base 61 which carries a horizontally supported worktable 62 which may be reciprocated back and forth on the base.
  • the worktable 62 carries mold means shown in this example as a pair of lower molds 63 of substantially identical construction and each mold 63 is adapted to receive opposite ends of a vacuum hose 34 therewithin as seen in FIG. 7.
  • the apparatus 60 has an upper mold 64 which is adapted to be placed in position over each lower mold 63 in an alternating manner and with the upper mold 64 positioned over a mold 63 the molds cooperate to define a mold assembly 65 and a pair of mold cavities around opposite ends of the vacuum hose and such cavities define the configurations of hose connectors 44 and 45.
  • a suitable plastic material such as a thermoplastic material is then injected under heat and pressure into such mold cavities and suitable cooled to define the hose connectors 44 and 45 substantially as an integral part of the vacuum hose 34.
  • the apparatus 60 also has a cooling system indicated at 70 which includes a cooling unit 71 which contains a cooling fluid which is circulated by a pump 72 driven by a motor 73.
  • a selector valve 74 is provided which has a line 75 connected to one end of each of the lower mold 63 and a return line 76 is provided from the opposite end of each lower mold 63 to the unit 71.
  • the upper mold 64 is then moved away and the worktable 62 is moved so as to position the other lower mold 63 with its vacuum hose 34 in position beneath the upper mold 64 so that upon moving the upper mold 64 in position the injection molding procedure may be repeated to form another hose assembly 21.
  • the worktable 62 is easily shuttled on the base 61 so that during the time that hose connectors 44 and 45 are being simultaneously injection molded and chilled at opposite ends of one vacuum hose 34 loaded inone lower mold 63 another vacuum hose 34 is being placed or loaded and suitably supported in position on the other lower mold 63 whereby the apparatus 60 enables efficient forming of hose assemblies 21.
  • the thennoplastic material is injected into each mold assembly 65 in a known manner and excellent results have been obtained by heating vinyl materials, such as polyvinyl chloride for example, to a temperature ranging roughly between 380 and 410 Fahrenheit. In addition, satisfactory results have been obtained by injecting the thermoplastic material into the mold cavity at pressures of roughly 550 p.s.i.g.
  • Each lower mold 63 and the upper mold 64 are constructed to enable both ends of a vacuum hose 34 to be suitably supported in position.
  • the thermoplastic material is introduced into the assembly 65 defined by molds 63 and 64 the hose connectors 44 and 45 are formed simultaneously whereby the vacuum cleaner assembly 21 is essentially a onepiece construction, even through comprised of a number of parts, and such one piece construction cannot be taken apart except by practically destroying it. Obviously, this makes an assembly which has along operating life, is safe to use, and is essentially tamperproof.
  • FIGS. 9, l0, and 11 of the drawings Another exemplary embodiment of a vacuum hose assembly of this invention is illustrated in FIGS. 9, l0, and 11 of the drawings.
  • the hose assembly of FIGS. 9-11 is very similar to the hose assembly 21; therefore, such hose assembly will be designated by the reference numeral 21A and parts of the hose assembly 21A which are very similar to corresponding parts of the hose assembly 21 will be designated by the same reference numeral as in the hose assembly 21, also followed by the letter designation A and not described again. Only those component parts which are substantially different from corresponding parts of the hose assembly 21 will be designated by a new reference numeral also followed by the letter designation A" and described in detail.
  • the hose assembly 21A differs from the hose assembly 21 only in that it has an electrical control device 80A embedded in its hose connector 44A.
  • the electrical control device 80A is in the form of control switch which is electrically connected in series in the line 35A and has an off" position 81A and integral meansshown as a potentiometer 82A capable of providing a substantially infinite number of electrical outputs therefrom for controlling a motor 25A comprising an associated cleaning tool assembly 26A.
  • the potentiometer has a rotatable arm 83A which is electrically connected to one end portion of the conductor 35A and a variable resistor 84A which is connected to the opposite end portion of the conductor 35A whereupon by moving the arm 83A from the "off" position and into contact with the variable resistor 84A the resistance in the system may be varied in a known manner to provide substantially infinite speed control for the motor 25A.
  • the switch 80A has a shaft 85A extending outwardly therefrom and the shaft is operatively connected to the arm 83A at its inner end and has knurled knob 86A attached thereto at its outer end to thereby enable an operator to easily adjust the device 80A.
  • the hose connector 44A is formed as an integral part of the vacuum hose 34A as previously explained and with the switch being integrally embedded in connector 44A it provides the sole support as well as electrical insulation and protection for such switch,
  • FIGS. 12 and 13 of the drawings Another exemplary embodiment of this invention is illustrated in FIGS. 12 and 13 of the drawings.
  • the hose assembly illustrated in FIGS, 12 and 13 is very similar to the hose assembly 21; therefore, such hose assembly will be designated generally by the reference numeral 218 and parts thereof which are very similar to corresponding parts of the hose assembly 2l'will be designated by the same reference numeral as in the hose assembly 21 also followed by the letter designation B and not described again in detail.
  • B the letter designation B and not described again in detail.
  • only substantially different component parts will be given new reference numerals also followed by the letter designation 8" and described in detail.
  • the hose assembly 21B utilizes an electrical switch 908 which is suitably embedded and formed essentially as an integral part of hose connector 448 whereby the hose connector 448 provides the sole support for switch 903 as well as electrical insulation and protection therefor.
  • the switch 908 has an actuating lever 918 which is normally in an off" position and by actuating the lever 918 the switch may be moved in contact with either a spring-loaded pin 928 or a spring-loaded pin 93B suitably supported in an associated housing 948.
  • an electrical connection is provided through an integral resistor 95B and thereby provides a reduced current fiow to operate the associated motor 258 at low speed.
  • an electrical connection is provided which bypasses the resistor 95B whereupon the motor 258 is operated at high speed.
  • the button or lever 91B is in the form of a toggle arrangement of known construction and once actuated to operate the motor 258 at either low or high speed by depressing pin 938 or 92B respectively the particular pin remains depressed until the lever is again actuated to either move it to the of'f" position or into contact with the other pin.
  • switches 80A and 90B are shown as being embedded in associated integral connectors 44A and 44B respectively and such connectors define the end of their hose assembly which is arranged opposite the associated tank or canister.
  • switches 80A and 90B may be provided in the ends of their hose assembly arranged adjacent their canister and hence in ends 45A and 453 respectively.
  • any suitable plastic material may be used to form the hose connectors comprising opposite ends of each hose assembly of this invention; however, it is preferably that a thermoplastic material such as polyvinyl chloride, polyethylene, and the like, be utilized and injection molded in position to simultaneously form and fix the hose connectors in position at the opposite ends of an associated vacuum hose as well as embed the associated electrical devices whether they be male or female connectors or electrical switches whereby each hose assembly of this invention is formed in a simple, efficient, and low-cost manner.
  • a thermoplastic material such as polyvinyl chloride, polyethylene, and the like
  • thermoplastic material which is selected to make the integral hose connectors should also be compatible with the flexible plastic material which is used to define the vacuum hose to assure that the hose connectors are formed at opposite ends of the vacuum hose essentially as an integral part thereof and such thermoplastic material serves as a matrix within which associated electrical components are embedded in a high strength and electrically insulated manner.
  • the apparatus 60 and method of thisinvention have been described primarily in connection with the hose assembly 21. However, it is to be understood that the molds of such ap paratus may be suitably modified in a manner well known in the art to enable forming of hose assemblies 21A and 218 in a similar manner as assembly 21. in addition, the method of I forming hose assemblies 21A and 21B is substantially identical to the method of forming hose assembly 21.
  • a vacuum cleaner hose assembly comprising, a vacuum hose, a plurality of electrical conductors provided as an integral part of said vacuum hose with each conductor having its opposite ends arranged immediately adjacent the opposite ends of said vacuum hose, electrical means fixed to opposite ends of said conductors, and a pair of hose connectors fixed to said opposite ends of said vacuum hose and fomied substantially as an integral part thereof, each of said hose connectors being made of a material which serves as a matrix which has associated electrical means embedded therein, said electrical means comprising an electrical control device operatively connected to at least one of said conductors, said control device being embedded in one of said integral hose connectors with a substantial portion of said control device in intimate contact with the matrix material defining said one hose connector, said matrix material providing the sole support as well as protection for said control device.
  • control device is in the form of a control switch having an off position and a plurality of on" positions.
  • control device is in the form of a control switch having an off position and integral means capable of providing a substantially infinite number of electrical outputs therefrom.
  • a vacuum cleaner hose assembly comprising, a vacuum hose, a plurality of electrical conductors provided as an integral pai't of said vacuum hose with each conductor having its opposite ends arranged immediately adjacent the opposite ends of said vacuum hose, electrical means fixed to opposite ends of said conductors, and a pair of hose connectors fixed to said opposite ends of said vacuum hose and formed substantially as an integral part thereof, each of said hose connectors being made of a material which serves as a matrix which has associated electrical means embedded therein, said electrical means comprising an electrical control device operatively connected to at least one of said conductors, said control device being embedded in one of said integral hose connectors with a substantial portion of said control device in intimate contact with the matrix material defining said one hose connector, said matrix material providing the sole support for said control device, said electrical means including a pair of substantially identical electrical members embedded in an associated hose connector at each end of said assembly, each electrical member having a reduced diameter cylindrical portion adjoined at one end by a larger diameter cylindrical portion, one pair of said members
  • each of said members is fixed to an associated conductor by mechanically compressing a portion thereof against said conductor to provide both a mechanical and an electrical connection.
  • said vacuum hose comprises a flexible hose made of a plastic material and said material used to make said hose connectors is a substantially rigid plastic material, said plastic materials being electrical insulators.
  • each of said electrical conductors is in the form of a reinforcing wire which has its own plastic electrical insulating sleeve which is fixed in position substantially as an integral part of a plastic material defining said vacuum hose.
  • control device is in the form of a control switch having an off position and a plurality of on" positions, said control switch being adapted to be used to control an associated electric motor comprising a cleaning tool used in association with said assembly, and said control switch being capable of controlling said motor so that it operates at a corresponding plurality of speeds.
  • control device is in the form of a control switch having an off" position and integral means capable of providing a substantially infinite number of electrical outputs therefrom said control switch being adapted to be used to control an associated electrical motor comprising a cleaning tool used in association with said assembly, and said control switch being capable of controlling said motor so that it operates at an infinite number of speeds corresponding to said infinite number of electrical outputs.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Electric Vacuum Cleaner (AREA)
  • Injection Moulding Of Plastics Or The Like (AREA)

Abstract

A vacuum hose is provided having a plurality of reinforcing wires in the form of electrical conductors which are made as an integral part of the hose and each conductor has electrical components fixed to its opposite ends. A pair of hose connectors is provided at opposite ends of the hose end formed substantially as an integral part thereof to define an assembly with each hose connector having associated electrical components embedded therein and providing the sole support therefor.

Description

O Umted States Patent [151 3,636,285 Wickham et a]. Jan. 18, 1972 [s41 VACUUM CLEANER HOSE ASSEMBLY 1 a: 3 5; 1 eac 1 Inventors William Wickham, Waynesville, 3,127,227 3/1964 Edwards ..339 15 Frank Brown, y Donald 3,25s,553 6 1966 Breslin ...200 s1 y p, West Carrollwn; Kossuth, 3,404,363 10/1968 Fischer ..339/276 Dayton, all of .Ohio
Primary Examiner-David Smith, Jr. [73] Ass1gnee. Dayco Corporation, Dayton, Oh1o Anamey Reuben wolk [22] Filed: Aug. 7, 1969 21 App]. No.2 848,272 {571 7 ABSTRACT I A vacuum hose is provided having a plurality of reinforcing wires in the form of electrical conductors which are made as [52] "200/ 51 5i an integral part of the hose and each conductor has electrical [51] In. 33/30 components fixed to its opposite ends. A pair of hose connectors is provided at opposite ends of the hose end formed sub [58] of Search "200/5 53 7 1 1; 5 stantially as an integral part thereof to define an assembly with each hose connector having associated electrical components 56] Reerenoes Cited embedded therein and providing the sole support therefor.
UNITED STATES PATENTS 1 c't 'l 13 2,516,864 8/1901 Qilmore et al ..l74/47 PATENIEnJIIIsmz 3.636285 SHEET 2 OF 3 FIG-8 FIXING ELECTRICAL COMPONENTS TO E LECTRICAL CON DUCTORS CARRIED BY A VACUUM HOSE AND ADJACENT OPPOSITE ENDS OF THE HOSE PLACING SAID- ENDS IN ASSOCIATED MOLD MEANS INTRODUCING A THERMO- PLASTIC MATERIAL IN THE MOLD MEANS TO FORM INTEGRAL HOSE CONNECTORS AT OPPOSITE ENDS OF THE HOSE WHICH HAVE THE ELECTRICAL COMPONENTS EMBEDDED THEREIN COOLING THE MOLD MEANS AND INTEGRAL HOSE CONNECTORS INVENTORS WILLIAM T. WICKHAM FRANK BROWN DONALD L. KLEYKAMP TTO KOSSUTH BY Ma M THEIR ATTORNEY VACUUM CLEANER IIOSE ASSEMBLY BACKGROUND OF THE INVENTION Many so-called tank or canister type vacuum cleaners in current use have a vacuum hose assembly connected to a tank at one end and a cleaning tool at the other end which often comprises a cleaning brush powered by an electric motor. There have been numerous vacuum hose assemblies proposed heretofore for providing electrical power to and controlling such motor; however, these previously proposed assemblies utilize a large number of component parts, are difficult and expensive to assemble and maintain, and are thus generally unsatisfactory.
SUMMARY This invention provides an improved vacuum cleaner hose assembly, and method of making same, for use with a canistertype vacuum cleaner, or the like, which is of simple and economical construction, has vacuum hose connectors at its opposite ends which are, in essence, provided as an integral part of the vacuum hose comprising such assembly, and has electrical means or devices embedded in each hose connector substantially as an integral part thereof with the hose connectors providing the sole support for the electrical devices. This invention also provides a hose assembly which has integral control means for controlling an electric motor provided on a cleaning tool used in association with such hose assembly wherein the control means is also embedded in one of the hose connectors.
Other details, uses, and advantages of this invention will become apparent as the following description of the exemplary embodiments thereof presented in the accompanying drawings proceeds.
BRIEF DESCRIPTION OF THE DRAWINGS The accompanying drawings show present exemplary embodiments of this invention, in which:
FIG. 1 is a perspective view with parts in cross section and parts broken away illustrating a vacuum cleaning apparatus together with an exemplary vacuum hose assembly of this invention;
FIG. 2 is a greatly enlarged cross-sectional view particularly illustrating afemale hose connector provided at one end of the hose assembly;
FIG. 3 is a greatly enlarged fragmentary cross-sectional view illustrating a male hose connector at the opposite end of the hose assembly;
FIG. 4 is a cross-sectional view illustrating a dual-purpose electrical connector which may be optionally used in the hose assembly of FIG. 1 as a female connector;
FIG. 5 is a cross-sectional view illustrating the dual-purpose connector of FIG. 4 used as a male connector;
FIG. 6 is a perspective view with parts shown schematically and other parts broken away particularly illustrating an exemplary apparatus which may be used to make the hose assembly of this invention;
FIG. 7 is an enlarged plan view of a typical lower mold comprising the apparatus of FIG. 6 and also illustrating the manner of placing a vacuum hose in position therein to form hose connectors as an integral part of its opposite ends;
FIG. 8 is a process chart particularly highlighting certain method steps which may be utilized to form the hose assembly of this invention;
FIG. 9 is a fragmentary perspective view particularly illustrating another embodiment of a hose assembly having one embodiment of a control switch provided as an integral part of a hose connector at one end of such hose assembly;
FIG. 10 is a fragmentary cross-sectional view with certain parts shown in elevation and taken essentially on the line 10 10 of FIG. 9;
FIG. 11 is an electrical wiring diagram illustrating the manner of electrically connecting the switch of FIGS. 9 and 10 in its electrical circuit;
FIG. 12 is a fragmentary cross-sectional view similar to FIG. 10 and illustrating still another embodiment of a hose assembly having another embodiment of an integral control switch; and
FIG. 13 is an electrical wiring diagram similar to FIG. 11 and illustrating the manner of electrically connecting the switch of FIG. 12 in its electrical circuit.
DESCRIPTION OF ILLUSTRATED EMBODIMENTS Reference is now made to FIG. 1 of the drawings which illustrates an exemplary vacuum cleaning apparatus 20 which utilizes one embodiment of the hose assembly 21 of this inven tion. The apparatus 20 has a canister or tank 22 provided with a suitable vacuum tube 23 extending outwardly therefrom. The apparatus 20 is provided with electrical power for operating its vacuum unit in a conventional manner and has a female receptacle 24 mounted on its tank 22 and the receptacle 24 is used to supply power through electrical means provided in the hose assembly 21 of this invention to an electric motor 25 comprising the tenninal end of a cleaning instrument 26 which is operatively connected to the hose assembly 21.
The apparatus 20 has an electrical cord 27 provided with a male fitting 28 at one end and a female fitting 30 at its opposite end and the cord 27 is used to provide an electrical connection between the female connector 24 and one end of the hose assembly 21. The apparatus 20 also has an electrical cord 32 which has one end electrically connected to the motor 25 in the cleaning instrument 26 and the cord 32 has a male connector 33 which is electrically connected to an associated female connector in the end of the hose assembly 21 which is remote from the tank 22.
The hose assembly 21 is comprised of a flexible vacuum hose 34 which has reinforcing wires 35 and 36 suitably provided substantially as an integral part thereof and in a manner well known in the art and the reinforcing wires also serve as electrical conductors. The wires or conductors 35 and 36 are insulated by tubular jackets or sleeves 40 and 41 respectively of insulating material.
Each wire 35 and 36 has a pair of electrical connector means or devices fixed to its opposite ends and in this example of the invention each wire 35 and 36 has a female connector 42 fixed to one end thereof and a male connector 43 fixed to its opposite end. The male connectors 43 are connected to female fittings 30 of cord 27 and the male connectors 33 of cord 32 is plugged in female connectors 42 so that once connector 28 is plugged into receptacle 24 an electrical circuit is completed to the motor 25.
The hose assembly 21 has pair of hose connectors 44 and 45 fixed to its opposite ends and each hose connector is provided substantially as an integral part of the vacuum hose 34. In particular, each hose connector 44 and 45 is preferably formed in position, as by injection molding, for example, to thereby define a streamlined and compact hose connector in each instance which is fixed to the vacuum hose 34 and has as sociated electrical connector means embedded therein so as to provide the sole support for such connector means and in a manner to be described in detail subsequently.
As seen in FIG. 2 of the drawings the hose connector 44 is formed in position in a fixed manner around an associated end 46 of the vacuum hose 34 and a pair of female connectors 42 are suitably fixed as by soldering, or the like, to the ends of the conductors 35 and 36 and embedded in position. The female connectors 42 are in a protected position indicated at 47 yet are readily accessible through an access opening 48 provided in the connector 44 during the forming thereof.
The hose connector 45 is also suitably formed in position around the opposite end 50 of the vacuum hose 34 and a pair of male connectors or pins 43 are suitably fixed to the ends of wires 35 and 36. The pins 43 are in a protected position as indicated at 51 and are readily accessible through an access opening 52.
The vacuum hose 34 is preferably made of a plastic material which is also an electrical insulator and the insulating sleeves 40 and 41 provided on the wires 35 and 36 respectively are made of a plastic material which is compatible with the plastic material used to form hose 34 so that the sleeves 40 and 41 and hence wires 35 and 36 may be easily bonded in position essentially as an integral part of the vacuum hose 34. The hose connectors 44 and 45 are preferably made of a thermoplastic material which is easily formed around associated ends of vacuum hose 34 to define connectors 44 and 45 and the thermoplastic material used to make hose connectors 44 and 45 is also an electrical insulating material.
The female members 42 and male pins 43 illustrated in FIGS. 2 and 3 are shown as being soldered in position. However, the hose assembly 21 may be provided with dual-purpose roughly tubular members designated by the reference numeral 53 and illustrated in FIGS. 4 and 5. Each member 53 may be attached to an associated conductor by soldering, or the like; however, member 53 is particularly adapted to be mechanically compressed against an associated wire to provide both a mechanical and an electrical connection and each member 53 may be used as either a male or female connector.
In particular, it will be seen from FIG. 4 that a reduced diameter cylindrical portion 54 of member 53 is crimped around an associated wire as indicated at 55 to fix the member 53 to such wire so that a larger diameter tubular portion 56 of member 53 will have its tubular inside surface 57 unobstructed so that it may be used as a female receptacle. It will be appreciated that the inside surface 57 corresponds in configuration and size to the inside surface 58 of the female receptacle 42.
To use the member 53 as a male pin the crimping action is again achieved in a similar manner as illustrated at at 55 with the exception that the electrical wire extends through the larger diameter tubular portion 56 and terminates short of the terminal outer end of the reduced diameter portion 54, see FIG. 5. It will be appreciated that the outside surface of the pine 43.
Thus it is seen that the member 53 may be suitably fixed in position to serve as either a male or female electrical connector depending upon the manner in which the electrical wire is fixed therein. In addition, the added length of each member 53 enables it to be embedded in position in a stronger manner in an associated hose connector.
The hose assembly 21 may be made utilizing any suitable technique; however, it is preferably made utilizing the method steps essentially as presented in FIG. 8 of the drawings and certain ones of such method steps may be carried out using an apparatus of the character presented in FIGS. 6 and 7.
The apparatus illustrated in FIG. 6 comprises an injectionmolding apparatus 60 which has a base 61 which carries a horizontally supported worktable 62 which may be reciprocated back and forth on the base. The worktable 62 carries mold means shown in this example as a pair of lower molds 63 of substantially identical construction and each mold 63 is adapted to receive opposite ends of a vacuum hose 34 therewithin as seen in FIG. 7.
The apparatus 60 has an upper mold 64 which is adapted to be placed in position over each lower mold 63 in an alternating manner and with the upper mold 64 positioned over a mold 63 the molds cooperate to define a mold assembly 65 and a pair of mold cavities around opposite ends of the vacuum hose and such cavities define the configurations of hose connectors 44 and 45. A suitable plastic material such as a thermoplastic material is then injected under heat and pressure into such mold cavities and suitable cooled to define the hose connectors 44 and 45 substantially as an integral part of the vacuum hose 34.
The apparatus 60 also has a cooling system indicated at 70 which includes a cooling unit 71 which contains a cooling fluid which is circulated by a pump 72 driven by a motor 73. A selector valve 74 is provided which has a line 75 connected to one end of each of the lower mold 63 and a return line 76 is provided from the opposite end of each lower mold 63 to the unit 71. During the time that a thermoplastic material is injected into a particular mold assembly 65 to define integral hose connectors 44 and 45 the selector valve is positioned so that coolant will not flow through the lower mold cavity of such assembly. However, once the injection molding has been completed the mold remains closed and cooling fluid is circulated through the particular assembly 65 for approximately one minute to chill the thermoplastic material. The upper mold 64 is then moved away and the worktable 62 is moved so as to position the other lower mold 63 with its vacuum hose 34 in position beneath the upper mold 64 so that upon moving the upper mold 64 in position the injection molding procedure may be repeated to form another hose assembly 21.
The worktable 62 is easily shuttled on the base 61 so that during the time that hose connectors 44 and 45 are being simultaneously injection molded and chilled at opposite ends of one vacuum hose 34 loaded inone lower mold 63 another vacuum hose 34 is being placed or loaded and suitably supported in position on the other lower mold 63 whereby the apparatus 60 enables efficient forming of hose assemblies 21.
The thennoplastic material is injected into each mold assembly 65 in a known manner and excellent results have been obtained by heating vinyl materials, such as polyvinyl chloride for example, to a temperature ranging roughly between 380 and 410 Fahrenheit. In addition, satisfactory results have been obtained by injecting the thermoplastic material into the mold cavity at pressures of roughly 550 p.s.i.g.
Each lower mold 63 and the upper mold 64 are constructed to enable both ends of a vacuum hose 34 to be suitably supported in position. Once the thermoplastic material is introduced into the assembly 65 defined by molds 63 and 64 the hose connectors 44 and 45 are formed simultaneously whereby the vacuum cleaner assembly 21 is essentially a onepiece construction, even through comprised of a number of parts, and such one piece construction cannot be taken apart except by practically destroying it. Obviously, this makes an assembly which has along operating life, is safe to use, and is essentially tamperproof.
Another exemplary embodiment of a vacuum hose assembly of this invention is illustrated in FIGS. 9, l0, and 11 of the drawings. The hose assembly of FIGS. 9-11 is very similar to the hose assembly 21; therefore, such hose assembly will be designated by the reference numeral 21A and parts of the hose assembly 21A which are very similar to corresponding parts of the hose assembly 21 will be designated by the same reference numeral as in the hose assembly 21, also followed by the letter designation A and not described again. Only those component parts which are substantially different from corresponding parts of the hose assembly 21 will be designated by a new reference numeral also followed by the letter designation A" and described in detail.
The hose assembly 21A differs from the hose assembly 21 only in that it has an electrical control device 80A embedded in its hose connector 44A. The electrical control device 80A is in the form of control switch which is electrically connected in series in the line 35A and has an off" position 81A and integral meansshown as a potentiometer 82A capable of providing a substantially infinite number of electrical outputs therefrom for controlling a motor 25A comprising an associated cleaning tool assembly 26A.
The potentiometer has a rotatable arm 83A which is electrically connected to one end portion of the conductor 35A and a variable resistor 84A which is connected to the opposite end portion of the conductor 35A whereupon by moving the arm 83A from the "off" position and into contact with the variable resistor 84A the resistance in the system may be varied in a known manner to provide substantially infinite speed control for the motor 25A. As best seen in FIG. 10, the switch 80A has a shaft 85A extending outwardly therefrom and the shaft is operatively connected to the arm 83A at its inner end and has knurled knob 86A attached thereto at its outer end to thereby enable an operator to easily adjust the device 80A. The hose connector 44A is formed as an integral part of the vacuum hose 34A as previously explained and with the switch being integrally embedded in connector 44A it provides the sole support as well as electrical insulation and protection for such switch,
Another exemplary embodiment of this invention is illustrated in FIGS. 12 and 13 of the drawings. The hose assembly illustrated in FIGS, 12 and 13 is very similar to the hose assembly 21; therefore, such hose assembly will be designated generally by the reference numeral 218 and parts thereof which are very similar to corresponding parts of the hose assembly 2l'will be designated by the same reference numeral as in the hose assembly 21 also followed by the letter designation B and not described again in detail. As previously, only substantially different component parts will be given new reference numerals also followed by the letter designation 8" and described in detail.
The hose assembly 21B utilizes an electrical switch 908 which is suitably embedded and formed essentially as an integral part of hose connector 448 whereby the hose connector 448 provides the sole support for switch 903 as well as electrical insulation and protection therefor. The switch 908 has an actuating lever 918 which is normally in an off" position and by actuating the lever 918 the switch may be moved in contact with either a spring-loaded pin 928 or a spring-loaded pin 93B suitably supported in an associated housing 948.
Upon actuating the lever 91B so that it urges pin 938 inwardly an electrical connection is provided through an integral resistor 95B and thereby provides a reduced current fiow to operate the associated motor 258 at low speed. Upon actuating the lever 913 so that it urges the pin 92B inwardly an electrical connection is provided which bypasses the resistor 95B whereupon the motor 258 is operated at high speed. The button or lever 91B is in the form of a toggle arrangement of known construction and once actuated to operate the motor 258 at either low or high speed by depressing pin 938 or 92B respectively the particular pin remains depressed until the lever is again actuated to either move it to the of'f" position or into contact with the other pin.
in this example of the invention the switches 80A and 90B are shown as being embedded in associated integral connectors 44A and 44B respectively and such connectors define the end of their hose assembly which is arranged opposite the associated tank or canister. However, it will be appreciated that, if desired, switches 80A and 90B may be provided in the ends of their hose assembly arranged adjacent their canister and hence in ends 45A and 453 respectively.
Any suitable plastic material may be used to form the hose connectors comprising opposite ends of each hose assembly of this invention; however, it is preferably that a thermoplastic material such as polyvinyl chloride, polyethylene, and the like, be utilized and injection molded in position to simultaneously form and fix the hose connectors in position at the opposite ends of an associated vacuum hose as well as embed the associated electrical devices whether they be male or female connectors or electrical switches whereby each hose assembly of this invention is formed in a simple, efficient, and low-cost manner.
The thermoplastic material which is selected to make the integral hose connectors should also be compatible with the flexible plastic material which is used to define the vacuum hose to assure that the hose connectors are formed at opposite ends of the vacuum hose essentially as an integral part thereof and such thermoplastic material serves as a matrix within which associated electrical components are embedded in a high strength and electrically insulated manner.
The apparatus 60 and method of thisinvention have been described primarily in connection with the hose assembly 21. However, it is to be understood that the molds of such ap paratus may be suitably modified in a manner well known in the art to enable forming of hose assemblies 21A and 218 in a similar manner as assembly 21. in addition, the method of I forming hose assemblies 21A and 21B is substantially identical to the method of forming hose assembly 21.
While present exemplary embodiments of this invention and methods of practicing the same have been illustrated and described, it will be recognized that this invention may be otherwise variously embodied and practiced by those skilled in the art.
What is claimed is: l
1. A vacuum cleaner hose assembly comprising, a vacuum hose, a plurality of electrical conductors provided as an integral part of said vacuum hose with each conductor having its opposite ends arranged immediately adjacent the opposite ends of said vacuum hose, electrical means fixed to opposite ends of said conductors, and a pair of hose connectors fixed to said opposite ends of said vacuum hose and fomied substantially as an integral part thereof, each of said hose connectors being made of a material which serves as a matrix which has associated electrical means embedded therein, said electrical means comprising an electrical control device operatively connected to at least one of said conductors, said control device being embedded in one of said integral hose connectors with a substantial portion of said control device in intimate contact with the matrix material defining said one hose connector, said matrix material providing the sole support as well as protection for said control device.
2. An assembly as set forth in claim 1 in which said control device is in the form of a control switch having an off position and a plurality of on" positions.
3. An assembly as set forth in claim 1 in which said control device is in the form of a control switch having an off position and integral means capable of providing a substantially infinite number of electrical outputs therefrom.
4. A vacuum cleaner hose assembly comprising, a vacuum hose, a plurality of electrical conductors provided as an integral pai't of said vacuum hose with each conductor having its opposite ends arranged immediately adjacent the opposite ends of said vacuum hose, electrical means fixed to opposite ends of said conductors, and a pair of hose connectors fixed to said opposite ends of said vacuum hose and formed substantially as an integral part thereof, each of said hose connectors being made of a material which serves as a matrix which has associated electrical means embedded therein, said electrical means comprising an electrical control device operatively connected to at least one of said conductors, said control device being embedded in one of said integral hose connectors with a substantial portion of said control device in intimate contact with the matrix material defining said one hose connector, said matrix material providing the sole support for said control device, said electrical means including a pair of substantially identical electrical members embedded in an associated hose connector at each end of said assembly, each electrical member having a reduced diameter cylindrical portion adjoined at one end by a larger diameter cylindrical portion, one pair of said members employing its reduced diameter cylindrical portions as male connectors at one end of said assembly and the other pair of said members employing its larger diameter cylindrical portions as female connectors at the opposite end of said assembly, said members serving the dual purpose of being useable as both male and female connectors.
5. An assembly as set forth in claim 4 in which each of said members is fixed to an associated conductor by mechanically compressing a portion thereof against said conductor to provide both a mechanical and an electrical connection.
6. An assembly as set forth in claim 1 in which said vacuum hose is made of a thermoplastic material and said material used to make said hose connectors is a thermoplastic material which is compatible with the material used to make said vacuum hose.
7. An assembly as set forth in claim 1 in which said vacuum hose comprises a flexible hose made of a plastic material and said material used to make said hose connectors is a substantially rigid plastic material, said plastic materials being electrical insulators.
8. An assembly as set forth in claim 1 in which each of said electrical conductors is in the form of a reinforcing wire which has its own plastic electrical insulating sleeve which is fixed in position substantially as an integral part of a plastic material defining said vacuum hose.
9. An assembly as set forth in claim 1 in which said material used to make each of said pair of integral hose connectors is in the form of a thermoplastic material which provides the sole support for associated electrical means as well as electrical insulation therefor.
10. An assembly as set forth in claim 1 in which said control device is in the form of a control switch having an off position and a plurality of on" positions, said control switch being adapted to be used to control an associated electric motor comprising a cleaning tool used in association with said assembly, and said control switch being capable of controlling said motor so that it operates at a corresponding plurality of speeds.
11. An assembly as set forth in claim 1 in which said control device is in the form of a control switch having an off" position and integral means capable of providing a substantially infinite number of electrical outputs therefrom said control switch being adapted to be used to control an associated electrical motor comprising a cleaning tool used in association with said assembly, and said control switch being capable of controlling said motor so that it operates at an infinite number of speeds corresponding to said infinite number of electrical outputs.
mg UNITED STATES PATENT OFFICE CERTIFICATE OF CORRECTION Patent No. 3,636,285 Dated January 18 1972 Inven fl William T. Wickham, Frank Brown, Donald 1,, lgleykamp,
Otto Kossuth It is certified that error appears in the above-identified patent and that said Letters Patent are hereby corrected as shown below:
Column 3, line 37, "the" (second occurrence) should be deleted line 38, "pine 43" should. read reduced diameter portion I54 corresponds in configuration and size to the outside surface of the pin 43 Column 5, line 50, "preferably" should read preferable .Si gned and sealed this 3rd day of October 1972.
(SEAL) Attest:
EDWARD II.FLETCHER,J. ROBERT GOTTSCHALK Commissionerof Patents Attesting Officer 2 3 3 UNITED STATES PATENT OFFICE CERTIFICATE 0%? CORRECTlON Patent No. 3,636,285 Dated January 18 1972 Inven fl William T. Wickham, Frank Brown, Donald 1,, Kleykamp,
Otto Kpssuth It is certified that: error appears in the above-identified patent and that said Letters Patent are hereby corrected as shown below:
Column 3 line 37, "the" (second occurrence) should be deleted line 38, "pine 43" should. read reduced diameter portion 54 corresponds in configuration and size to the outside surface of the pin 43 Column 5, line 50, "preferably" should read preferable .Signed and sealed this 3rd day of October 1972.
(SEAL) Attest:
EDWARD PLFLETQHER, Jri. ROBERT GOTI'SCHALK Attesting Officer Commissioner of Patents

Claims (11)

1. A vacuum cleaner hose assembly comprising, a vacuum hose, a plurality of electrical conductors provided as an integral part of said vacuum hose with each conductor having its opposite ends arranged immediately adjacent the opposite ends of said vacuum hose, electrical means fixed to opposite ends of said conductors, and a pair of hose connectors fixed to said opposite ends of said vacuum hose and formed substantially as an integral part thereof, each of said hose connectors being made of a material which serves as a matrix which has associated electrical means embedded therein, said electrical means comprising an electrical control device operatively connected to at least one of said conductors, said control device being embedded in one of said integral hose connectors with a substantial portion of said control device in intimate contact with the matrix material defining said one hose connector, said matrix material providing the sole support as well as protection for said control device.
2. An assembly as set forth in claim 1 in which said control device is in the form of a control switch having an ''''off'''' position and a plurality of ''''on'''' positions.
3. An assembly as set forth in claim 1 in which said control device is in the form of a control switch having an ''''off'''' position and integral means capable of providing a substantially infinite number of electrical outputs therefrom.
4. A vacuum cleaner hose assembly comprising, a vacuum hose, a plurality of electrical conductors provided as an integral part of said vacuum hose with each conductor having its opposite ends arranged immediately adjacent the opposite ends of said vacuum hose, electrical means fixed to opposite ends of said conductors, and a pair of hose connectors fixed to said opposite ends of said vacuum hose and formed substantially as an integral part thereof, each of said hose connectors being made of a material which serves as a matrix which has associated electrical means Embedded therein, said electrical means comprising an electrical control device operatively connected to at least one of said conductors, said control device being embedded in one of said integral hose connectors with a substantial portion of said control device in intimate contact with the matrix material defining said one hose connector, said matrix material providing the sole support for said control device, said electrical means including a pair of substantially identical electrical members embedded in an associated hose connector at each end of said assembly, each electrical member having a reduced diameter cylindrical portion adjoined at one end by a larger diameter cylindrical portion, one pair of said members employing its reduced diameter cylindrical portions as male connectors at one end of said assembly and the other pair of said members employing its larger diameter cylindrical portions as female connectors at the opposite end of said assembly, said members serving the dual purpose of being useable as both male and female connectors.
5. An assembly as set forth in claim 4 in which each of said members is fixed to an associated conductor by mechanically compressing a portion thereof against said conductor to provide both a mechanical and an electrical connection.
6. An assembly as set forth in claim 1 in which said vacuum hose is made of a thermoplastic material and said material used to make said hose connectors is a thermoplastic material which is compatible with the material used to make said vacuum hose.
7. An assembly as set forth in claim 1 in which said vacuum hose comprises a flexible hose made of a plastic material and said material used to make said hose connectors is a substantially rigid plastic material, said plastic materials being electrical insulators.
8. An assembly as set forth in claim 1 in which each of said electrical conductors is in the form of a reinforcing wire which has its own plastic electrical insulating sleeve which is fixed in position substantially as an integral part of a plastic material defining said vacuum hose.
9. An assembly as set forth in claim 1 in which said material used to make each of said pair of integral hose connectors is in the form of a thermoplastic material which provides the sole support for associated electrical means as well as electrical insulation therefor.
10. An assembly as set forth in claim 1 in which said control device is in the form of a control switch having an ''''off'''' position and a plurality of ''''on'''' positions, said control switch being adapted to be used to control an associated electric motor comprising a cleaning tool used in association with said assembly, and said control switch being capable of controlling said motor so that it operates at a corresponding plurality of speeds.
11. An assembly as set forth in claim 1 in which said control device is in the form of a control switch having an ''''off'''' position and integral means capable of providing a substantially infinite number of electrical outputs therefrom said control switch being adapted to be used to control an associated electrical motor comprising a cleaning tool used in association with said assembly, and said control switch being capable of controlling said motor so that it operates at an infinite number of speeds corresponding to said infinite number of electrical outputs.
US848272A 1969-08-07 1969-08-07 Vacuum cleaner hose assembly Expired - Lifetime US3636285A (en)

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US3889365A (en) * 1971-08-09 1975-06-17 Gordon L Brock Electronic module and method of fabricating same
US3965526A (en) * 1972-11-16 1976-06-29 Doubleday Eric G Suction hose with conductor means for electrical current
US4018493A (en) * 1975-11-07 1977-04-19 Whirlpool Corporation Vacuum cleaner hose end structure
US4052767A (en) * 1975-11-07 1977-10-11 Whirlpool Corporation Power driven brush drive control
US4168564A (en) * 1978-11-03 1979-09-25 Dayco Corporation Thermally protected vacuum hose assembly
US4277640A (en) * 1979-04-26 1981-07-07 Automation Industries, Inc. Electric current-carrying hose assembly having end fittings enclosing an electrical switch and/or a circuit-breaking device
US4283594A (en) * 1979-12-17 1981-08-11 Dayco Corporation Vacuum apparatus having protective device for operator and method
US4370777A (en) * 1979-11-28 1983-02-01 Duepro Ag Electric motor control for vacuum cleaner
EP0079418A1 (en) * 1981-11-13 1983-05-25 Parise & Sons, Inc. Double disconnect, waterproof electrical connector assembly for electrified vacuum hose for wet/dry vacuum cleaner
US4466677A (en) * 1979-03-30 1984-08-21 Whirlpool Corporation Vacuum cleaner hose manufacture
US4473923A (en) * 1982-05-10 1984-10-02 Dayco Corporation Vacuum cleaning tool adapter with electrical control means
EP0005278B1 (en) * 1978-05-10 1984-12-19 Automation Industries, Inc. Helically fabricated flexible hose and mandrel device for producing the same
EP0142944A2 (en) * 1983-10-20 1985-05-29 Automation Industries, Inc. Self-locking electrical and mechanical connection means and method of making same
US4591369A (en) * 1984-10-24 1986-05-27 Whirlpool Corporation Dust bag mount arrangement for canister vacuum cleaner
US4618195A (en) * 1985-06-03 1986-10-21 Whirlpool Corporation Vacuum cleaner hose coupling
US4639055A (en) * 1985-06-03 1987-01-27 Whirlpool Corporation Hose coupling for vacuum cleaner
US4697300A (en) * 1986-10-08 1987-10-06 Warlop Stephen M Antistatic vacuum cleaner and method
US5018238A (en) * 1989-05-17 1991-05-28 Nelle Joseph A Hand held wand with on/off switch remotely connected to motor/fan
US5060341A (en) * 1989-05-17 1991-10-29 Nelle Joseph A Vacuum-powered work surface clearing device
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US5224237A (en) * 1990-11-16 1993-07-06 Radwulf S.A. Controller for steam generator for household use
US5389004A (en) * 1993-04-23 1995-02-14 Electrolux Corporation Handle and wand system for vacuum cleaner
US5495636A (en) * 1994-04-06 1996-03-05 U.S. Philips Corporation Vacuum cleaner with independently operating on/off switches on the handle and the motor housing
US6251332B1 (en) * 1990-11-26 2001-06-26 Excell Corporation Method for manufacturing a multilayer plastic pipe
US6722904B2 (en) * 2001-09-10 2004-04-20 Ruplast Kunststofftechnik Gmbh Vacuum cleaner hose with a connection sleeve
EP1905887A1 (en) * 2006-09-26 2008-04-02 TI. EMME. TI S.r.l. Multifunctional steam unit
US20080144332A1 (en) * 2006-12-14 2008-06-19 Medinis David M Surgical headlamp
US20080144306A1 (en) * 2006-12-14 2008-06-19 David Medinis Surgical headlamp
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US3889365A (en) * 1971-08-09 1975-06-17 Gordon L Brock Electronic module and method of fabricating same
USRE28920E (en) * 1971-12-28 1976-08-03 Aktiebolaget Electrolux Remote control for vacuum cleaner motor
US3855665A (en) * 1971-12-28 1974-12-24 Electrolux Ab Remote control for vacuum cleaner motor
US3965526A (en) * 1972-11-16 1976-06-29 Doubleday Eric G Suction hose with conductor means for electrical current
US4018493A (en) * 1975-11-07 1977-04-19 Whirlpool Corporation Vacuum cleaner hose end structure
US4052767A (en) * 1975-11-07 1977-10-11 Whirlpool Corporation Power driven brush drive control
EP0005278B1 (en) * 1978-05-10 1984-12-19 Automation Industries, Inc. Helically fabricated flexible hose and mandrel device for producing the same
US4168564A (en) * 1978-11-03 1979-09-25 Dayco Corporation Thermally protected vacuum hose assembly
US4466677A (en) * 1979-03-30 1984-08-21 Whirlpool Corporation Vacuum cleaner hose manufacture
US4277640A (en) * 1979-04-26 1981-07-07 Automation Industries, Inc. Electric current-carrying hose assembly having end fittings enclosing an electrical switch and/or a circuit-breaking device
US4370777A (en) * 1979-11-28 1983-02-01 Duepro Ag Electric motor control for vacuum cleaner
US4283594A (en) * 1979-12-17 1981-08-11 Dayco Corporation Vacuum apparatus having protective device for operator and method
EP0079418A1 (en) * 1981-11-13 1983-05-25 Parise & Sons, Inc. Double disconnect, waterproof electrical connector assembly for electrified vacuum hose for wet/dry vacuum cleaner
US4473923A (en) * 1982-05-10 1984-10-02 Dayco Corporation Vacuum cleaning tool adapter with electrical control means
EP0142944A2 (en) * 1983-10-20 1985-05-29 Automation Industries, Inc. Self-locking electrical and mechanical connection means and method of making same
EP0142944A3 (en) * 1983-10-20 1985-09-18 Automation Industries, Inc. Self-locking electrical and mechanical connection means and method of making same
US4591369A (en) * 1984-10-24 1986-05-27 Whirlpool Corporation Dust bag mount arrangement for canister vacuum cleaner
US4618195A (en) * 1985-06-03 1986-10-21 Whirlpool Corporation Vacuum cleaner hose coupling
US4639055A (en) * 1985-06-03 1987-01-27 Whirlpool Corporation Hose coupling for vacuum cleaner
US4697300A (en) * 1986-10-08 1987-10-06 Warlop Stephen M Antistatic vacuum cleaner and method
US5018238A (en) * 1989-05-17 1991-05-28 Nelle Joseph A Hand held wand with on/off switch remotely connected to motor/fan
US5060341A (en) * 1989-05-17 1991-10-29 Nelle Joseph A Vacuum-powered work surface clearing device
US5216778A (en) * 1989-06-30 1993-06-08 Hitachi, Ltd. Vacuum cleaner
US5224237A (en) * 1990-11-16 1993-07-06 Radwulf S.A. Controller for steam generator for household use
US6537484B2 (en) 1990-11-26 2003-03-25 Excell Corporation Method for manufacturing a multi-layer plastic pipe
US6251332B1 (en) * 1990-11-26 2001-06-26 Excell Corporation Method for manufacturing a multilayer plastic pipe
US5389004A (en) * 1993-04-23 1995-02-14 Electrolux Corporation Handle and wand system for vacuum cleaner
US5472346A (en) * 1993-04-23 1995-12-05 Electrolux Corporation Swivel joint for vacuum cleaner
US5551731A (en) * 1993-04-23 1996-09-03 Electrolux Corporation Handle system for vacuum cleaner
US5495636A (en) * 1994-04-06 1996-03-05 U.S. Philips Corporation Vacuum cleaner with independently operating on/off switches on the handle and the motor housing
US6722904B2 (en) * 2001-09-10 2004-04-20 Ruplast Kunststofftechnik Gmbh Vacuum cleaner hose with a connection sleeve
EP1905887A1 (en) * 2006-09-26 2008-04-02 TI. EMME. TI S.r.l. Multifunctional steam unit
US20080144332A1 (en) * 2006-12-14 2008-06-19 Medinis David M Surgical headlamp
US20080144306A1 (en) * 2006-12-14 2008-06-19 David Medinis Surgical headlamp
US20100046231A1 (en) * 2007-03-01 2010-02-25 Medinis David M Led cooling system
US10584812B2 (en) 2008-05-07 2020-03-10 Globalmed, Inc. Stretch hose and hose production method
US10859188B2 (en) 2009-01-15 2020-12-08 Globalmed, Inc. Stretch hose and hose production method
US10584811B2 (en) 2009-12-30 2020-03-10 Carl J Garrett Tapered helically reinforced hose and its manufacture
US10213571B2 (en) * 2011-05-06 2019-02-26 Fisher & Paykel Healthcare Limited Component for medical circuit
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US11065414B2 (en) 2011-05-06 2021-07-20 Fisher & Paykel Healthcare Limited Component for medical circuit
CN104995445A (en) * 2012-10-12 2015-10-21 福士汽车配套部件责任有限公司 Electrically heatable media line, and method for producing such a media line
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