US1015555A - Screw-driver. - Google Patents

Screw-driver. Download PDF

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Publication number
US1015555A
US1015555A US51937609A US1909519376A US1015555A US 1015555 A US1015555 A US 1015555A US 51937609 A US51937609 A US 51937609A US 1909519376 A US1909519376 A US 1909519376A US 1015555 A US1015555 A US 1015555A
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Prior art keywords
screw
section
holders
sleeve
driver
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US51937609A
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Munson D Gee
James A Fields
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B23/00Details of, or accessories for, spanners, wrenches, screwdrivers
    • B25B23/02Arrangements for handling screws or nuts
    • B25B23/08Arrangements for handling screws or nuts for holding or positioning screw or nut prior to or during its rotation
    • B25B23/10Arrangements for handling screws or nuts for holding or positioning screw or nut prior to or during its rotation using mechanical gripping means
    • B25B23/101Arrangements for handling screws or nuts for holding or positioning screw or nut prior to or during its rotation using mechanical gripping means for hand-driven screw-drivers

Definitions

  • This invention relates to improvements in tools and has particular reference to that type of tools known as screw drivers.
  • the principal object of the device is the provision of a screw driver such as employed by watch-makers and others doing similar kind of work wherein comparatively small screws are employed tocombine various parts. 7
  • the present invention therefore aims to remedy the inconvenience of using both hands by providing a construction adapted to grip the shank of a screw and hold the same positioned while the screw is being turned by a pressure of the same hand which holds the screw.
  • This apparatus will permit a watch-maker for instance, to use both hands, whereby one hand may be employed in holding the watch to receive the screw while the other hand may be manipulated to position the screw and turn it as before stated.
  • FIG. 1 is an showing the lower ends of the holder in engagement with the screw.
  • Fig. 5 is a longitudinal sectional view of the device.
  • Fig. 6 is a detail perspective view of the collar and itsconnections.
  • a supporting disk is designated in general by the numeral 5.
  • This member is preferably circular in contour and is provided with a peripheral flange 6 and is centrally provided with an opening 7.
  • the upper section 8 of the turning shaft Slidingly fitted in the opening 7 is the upper section 8 of the turning shaft, the lower section of which is designated by the numeral 9.
  • the lower section is considerably less in length than the upper section 8 and adjacent its lower end is reduced as shown at 10.
  • a cap corresponding to the diameter of the lower section, is removably secured to the reduced portion 10, whereby an annular groove 12 is provided.
  • the upper face of the lower section 9 is provided with radial ratchet teeth forming a clutch surface 11 and the lower end of the upper section 8 is somewhat enlarged and its extremity is provided with similar ratchet teeth forming a clutch surface 12 cooperating with the clutch surface 11 to turn the lower section in one direction.
  • the sections are united by means of a coupling sleeve designated in general by the numeral 13; the lower end of this coupling sleeve is provided with an inwardly extending annular flange 14 which seats in the annular groove 10 formed by the reduced lower end of the lower section.
  • An annular cap 14 is threadable onto the upper end of the coupling sleeve and this cap is provided with a central opening which receives that portion of the upper shaft section 8 inwardly from the enlarged head.
  • the length of the coupling sleeve is somewhat greater than the length of the head 13 so that the said head may have a sliding movement in the sleeve.
  • section 8 extending through the supporting disk 5 is provided with a spiral 16 and surrounding the spiral 16 is an operating Formed on the inner wall of the sleeve is a radially extending pin 18 of a size to enter the spiral 16 and formed on the upper or closed end of the sleeve 17 is an eye 19 for the reception of the thumb or finger of the operator.
  • a pair of annular finger holds 20 and 21 Disposed at diametrically oppo-site points on the flange 6 of the supporting disk '5 are a pair of annular finger holds 20 and 21 by means of which the device may be grasped by the operator and securely held during the operation of turning the shafts 8 and 9.
  • the lower end of the lower section 9 constitutes a socket for the bits to be employed and as usual is provided with a longitudinal bore and a radial opening communicating with said bore, the said radial opening receiving a set screw such as is shown at 24 to bind on the shank of the bit 25.
  • a set screw such as is shown at 24 to bind on the shank of the bit 25.
  • the upper end portions of a pair of resilient holders designated by the. numerals 26 and 27.
  • These holders extend parallel with the sec tions 8 and 9 and when the supporting disk 5 is in its normal position, that is at the lower end of the spiral 16, these holders will extend beyond the end of the bit 25 held by the lower section.
  • the free ends of the holders 26 and 27 curve in opposite directions as shown in 28 and 29' and the edges of these curved ends are parallel and spaced from each other and are in alinement with the longitudinal central lines of the shaft sections 8 and 9, or substantially so.
  • the edges are provided with inwardly extending notches 31, which receive the shank of the screw to beheld.
  • the herein described tool comprising a to said shaft for longitudinal movement therewith and to turn with respect thereto and links pivotally connected to said collar and to said holders for the purpose set forth.
  • the herein described tool comprising a supporting plate, a shaft comprising upper and lower sections, the former mounted in said supporting plate for longitudinal and revoluble movement, said upper section being provided with a spiral groove, an operating sleeve having a pin for engagement with said groove, the lower end of said upper section formed with a ratchet face, a similar ratchet face formed upon the upper face of the lower section, a coupling sleeve for said sections, both of said sections being adapted to rotate in the same direction upon downward pressure upon the operating sleeve, theupper section being capable of independent rotation upon the release of pressure upon said sleeve, a collar-connected to the last mentioned shaft, holders connected to the supporting plate, means connecting said collar and holders to contract the same upon longitudinal movement of the upper shaft section.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Details Of Spanners, Wrenches, And Screw Drivers And Accessories (AREA)

Description

M. D. GEE & J A. FIELDS.
SCREW DRIVER.
APPLICATION IILED SEPT. 24, 1909.
Patented Jan. 23 1912.
2 SHEETS-SHEET 1.
Fug .&
Elma/Moms Munson D. Gee Games A .Fields M. 1). GEE & J. A. FIELDS.
SCREW DRIVER. I APPLICATION FILED SEPT. 24, 1909.
M g m W s m Gd m a Du 4 M. 5 mA o 1 w 1 mm\ 2 5 Z e Vfi fl M? m w O 0 W L 2 i TTED STATES PATENT OFFICE.
MUNSON D. GEE AND JAMES A. FIELDS, 0F MOUNT OLIVE, INDIANA.
SCREW-DRIVER.
Specification of Letters Patent.
Application filed. September 24, 1909. Serial No. 519,376.
To all whom it may concern:
Be it known that we, MUNSON D. GEE and JAMES A. FIELDs, citizens of the United States, residing at Mount Olive, in the county of Martin, State of Indiana, have invented certain new and useful Improvements in Screw-Drivers; and we do hereby declare the following to be a full, clear, and exact description of the invention, such as will enable others skilled in the art to which it appertains to make and use the same. I
This invention relates to improvements in tools and has particular reference to that type of tools known as screw drivers.
The principal object of the device is the provision of a screw driver such as employed by watch-makers and others doing similar kind of work wherein comparatively small screws are employed tocombine various parts. 7
It is well known that the usual practice among watch-makers is to first hold a screw positioned with a tweezer over the opening into which the said screw is to be inserted and when so held with the other hand to manipulate a screw driver to turn the screw. It is evident that this procedure necessitates the use of both hands.
The present invention therefore aims to remedy the inconvenience of using both hands by providing a construction adapted to grip the shank of a screw and hold the same positioned while the screw is being turned by a pressure of the same hand which holds the screw. This apparatus will permit a watch-maker for instance, to use both hands, whereby one hand may be employed in holding the watch to receive the screw while the other hand may be manipulated to position the screw and turn it as before stated.
With the above and other objects in view as will more fully hereinafter appear, the present invention consists in certain novel details of construction and arrangement of parts, hereinafter fully described,.illustrated in the accompanying drawings and more particularly pointed out in the appended claims, 1t being understood that various changes in the form, proportion, size and minor detailsof the device may be'made without departing from the spirit or sacrificing any of the advantages of the invention.
In the accompanying drawings forming part of the specification:-Figure 1 is an showing the lower ends of the holder in engagement with the screw. Fig. 5 is a longitudinal sectional view of the device. Fig. 6 is a detail perspective view of the collar and itsconnections.
Similar numerals of reference are employed to designate corresponding parts throughout.
What will subsequently be termed a supporting disk is designated in general by the numeral 5. This member is preferably circular in contour and is provided with a peripheral flange 6 and is centrally provided with an opening 7. Slidingly fitted in the opening 7 is the upper section 8 of the turning shaft, the lower section of which is designated by the numeral 9. The lower section is considerably less in length than the upper section 8 and adjacent its lower end is reduced as shown at 10. A cap, corresponding to the diameter of the lower section, is removably secured to the reduced portion 10, whereby an annular groove 12 is provided. The upper face of the lower section 9 is provided with radial ratchet teeth forming a clutch surface 11 and the lower end of the upper section 8 is somewhat enlarged and its extremity is provided with similar ratchet teeth forming a clutch surface 12 cooperating with the clutch surface 11 to turn the lower section in one direction. The sections are united by means of a coupling sleeve designated in general by the numeral 13; the lower end of this coupling sleeve is provided with an inwardly extending annular flange 14 which seats in the annular groove 10 formed by the reduced lower end of the lower section. An annular cap 14: is threadable onto the upper end of the coupling sleeve and this cap is provided with a central opening which receives that portion of the upper shaft section 8 inwardly from the enlarged head. The length of the coupling sleeve is somewhat greater than the length of the head 13 so that the said head may have a sliding movement in the sleeve. The outer end of the upper sleeve 17.
section 8 extending through the supporting disk 5 is provided with a spiral 16 and surrounding the spiral 16 is an operating Formed on the inner wall of the sleeve is a radially extending pin 18 of a size to enter the spiral 16 and formed on the upper or closed end of the sleeve 17 is an eye 19 for the reception of the thumb or finger of the operator. Disposed at diametrically oppo-site points on the flange 6 of the supporting disk '5 are a pair of annular finger holds 20 and 21 by means of which the device may be grasped by the operator and securely held during the operation of turning the shafts 8 and 9.
It is obvious that when pressure is applied to the sleeve 17 either in an upward or downward direction the shaft 8 will be r0- tated by means ofthe inwardly projecting pin 18 which engages the spiral groove 16, this sleeve 17 being held against rotation by the thumb of the operator. A coil'spring 23 surrounds the upper shaft section and has its lower terminal resting upon the shoulder 22 and its upper terminal against the under side of the plate 5, said spring acting to move the shaft section downwardly as will later appear.
It might here be stated that the lower end of the lower section 9 constitutes a socket for the bits to be employed and as usual is provided with a longitudinal bore and a radial opening communicating with said bore, the said radial opening receiving a set screw such as is shown at 24 to bind on the shank of the bit 25. Fixedly secured in 'a pair ofdiametrically opposite openings formed in the supporting disk 5 and extending parallel with the opening 7 thereof are,
what will subsequently be termed, the upper end portions of a pair of resilient holders designated by the. numerals 26 and 27. These holders extend parallel with the sec tions 8 and 9 and when the supporting disk 5 is in its normal position, that is at the lower end of the spiral 16, these holders will extend beyond the end of the bit 25 held by the lower section. The free ends of the holders 26 and 27 curve in opposite directions as shown in 28 and 29' and the edges of these curved ends are parallel and spaced from each other and are in alinement with the longitudinal central lines of the shaft sections 8 and 9, or substantially so. The edges are provided with inwardly extending notches 31, which receive the shank of the screw to beheld.
v In order that the holders may be parted simultaneously to "receive the shank of the screw and then released to bind upon the same, the following construction is employed :By referring now to Figs. 1, 2 and 5 it will be seen that formed in the upper section 8 of the shaft and adjacent the intermediate portion thereof is an annular groove 82 and loosely fitted in this groove is a collar 33. Formed at opposite points on the outer face of the collar are lugs 34: which receive the inner ends of a pair of links 35 and 36, the latter being secured by the usual pivot pins. When the parts are in their normal positions as before described, the outer or opposite ends of the links 85 and 36 will extend oblique to the long axis of the section 8 and toward the supporting disk 5, and engage with loops carried by the holders 26 and 27 to which they are pivoted. With this construction it is obvious when the parts are in position as shown in Figs. 1 and 5 and the upper section 8 pulled outwardly by means of the ring 19 at the outer end of the operating sleeve 17, that this outward movement of the section 8 will carry with it the collar 33, whereby the links 35 and 36 will be moved to a position substan tially at right-angles to the section 8, thus, owing to their resiliency, the free or lower ends will be spread apart as clearly shown in Fig. 2. When the holders are soposi- When the ring 19 is' released the spring 23 carries the upper section 8 to its original position, whereby the holders will move toward each other and bind on'the shank of the screw but owing to the opening 31 in the edges of the holders this binding will not be suflicient to prevent the screw from being rotated. It will be observed when the parts are released as just described, that the bit 25 of the driver will bear on the head of the screw and enter the slot of the latter. By positioning the screw in the opening to receive it, it is evident that by pressing downwardly on the operating sleeve 17 that the sections 8 and 9 will be rotated and likewise the bit 25, whereby the screw will be turned home.
7 Thus it will be seen that we have provided a devicewhich is comparatively simple in structure and inexpensive to manufacture, embodying few parts and these so arranged that the danger of derangement will be reduced to a minimum. It may 'be' further observed-with a device of this kind that a watch-maker may hold the work to'be operated upon in one hand while with the other he may position and turn home the screw.
What is claimed is 1. The herein described tool comprising a to said shaft for longitudinal movement therewith and to turn with respect thereto and links pivotally connected to said collar and to said holders for the purpose set forth.
2. The herein described tool comprising a supporting plate, a shaft comprising upper and lower sections, the former mounted in said supporting plate for longitudinal and revoluble movement, said upper section being provided with a spiral groove, an operating sleeve having a pin for engagement with said groove, the lower end of said upper section formed with a ratchet face, a similar ratchet face formed upon the upper face of the lower section, a coupling sleeve for said sections, both of said sections being adapted to rotate in the same direction upon downward pressure upon the operating sleeve, theupper section being capable of independent rotation upon the release of pressure upon said sleeve, a collar-connected to the last mentioned shaft, holders connected to the supporting plate, means connecting said collar and holders to contract the same upon longitudinal movement of the upper shaft section.
In testimony whereof, we afiix our signatures, in presence of two witnesses.
MUNSON' D. GEE. JAMES A. FIELDS.
Witnesses:
JAMES S. DoANE, IRA L. Francs.
Copies of this patent may be obtained for five cents each, by addressing the Commissioner of Patents, Washington, D. 0.
US51937609A 1909-09-24 1909-09-24 Screw-driver. Expired - Lifetime US1015555A (en)

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