US1441017A - Pneumatic hammer - Google Patents

Pneumatic hammer Download PDF

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Publication number
US1441017A
US1441017A US325339A US32533919A US1441017A US 1441017 A US1441017 A US 1441017A US 325339 A US325339 A US 325339A US 32533919 A US32533919 A US 32533919A US 1441017 A US1441017 A US 1441017A
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United States
Prior art keywords
valve
piston
barrel
air
stem
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US325339A
Inventor
Emil M Mattson
Harry W Popp
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JOHN L CRUMP
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JOHN L CRUMP
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Publication date
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Priority to US325339A priority Critical patent/US1441017A/en
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Publication of US1441017A publication Critical patent/US1441017A/en
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Expired - Lifetime legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03CPOSITIVE-DISPLACEMENT ENGINES DRIVEN BY LIQUIDS
    • F03C1/00Reciprocating-piston liquid engines
    • F03C1/02Reciprocating-piston liquid engines with multiple-cylinders, characterised by the number or arrangement of cylinders
    • F03C1/03Reciprocating-piston liquid engines with multiple-cylinders, characterised by the number or arrangement of cylinders with movement in two directions being obtained by two single-acting piston liquid engines, each acting in one direction
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25DPERCUSSIVE TOOLS
    • B25D9/00Portable percussive tools with fluid-pressure drive, i.e. driven directly by fluids, e.g. having several percussive tool bits operated simultaneously
    • B25D9/06Means for driving the impulse member
    • B25D9/08Means for driving the impulse member comprising a built-in air compressor, i.e. the tool being driven by air pressure
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F01MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
    • F01LCYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
    • F01L23/00Valves controlled by impact by piston, e.g. in free-piston machines

Definitions

  • Our invention relates to improvements in pneumatic hammers.
  • Its object is to provide a tool of this kind having improvements, particularly in the reversing mechanism and in the construction of the va-lved air inlet.
  • Fig. 1 is a central sectional view of our improved pneumatic hammer, showing the compound piston in its downward course;
  • Fig. 2 is a fragmentary central sectional view thereof showing said piston at the end Of its downward course and
  • Figs. 3 and 4 are detail sectional views o-f the reversing-valve,
  • a handle 11 therefor comprises a grip 12, a neck 13 and a head 14, the latter having a bore into which the upper end of the barrel 10 is threaded.
  • An air conduit 15 opening at the end of the grip is inclined upward to a point midway of said grip, then downward to intersect a bore 16 passing through the neck 13.
  • a pipe 17 including a union 18 leads from the lower end of the bore 16 to the middle of the barrel 10 and completes the air-passageway from the end of the grip 12 to said barrel; said end of the grip is threaded externally to receive the usual air hose connection 19.
  • a valve-head 21 is yieldingly held against the seat 21L by means of a compression spring 23 interposed between said Valve head 21 and stop y22.
  • a stem 24 on said valve head through the upwardly inclined portion of the conduit 15 and is slidably mounted in the grip,v the end of said stem projecting into an enlargement 25 of the bore 16.
  • a thumbvalve 26 slidable within the bore 16, consists of a hollow stem 27 and a thumbpiece 28.
  • the stem 27 fits closely in the bore 16 and is formed with a ort 29 adapted to register with the con uit 15, when the thumb-valve 26 is depressed.
  • the thumb-piece 28 tits closely in the enlargement 25 and is formed with a cam surface 30, which engages the end of the valve stem 24.
  • the lower end of the stem 27 abuts aga-inst a compression spring 31 enclosed within the union 18 and is normally held by said spring in such position that the port 29 is removed from registration with the conduit 15 and the cam surface 30 so positioned that the valve 21 is seated by the action of the spring 23.
  • a stop pin 32 threaded in the handle 11 and projecting into the recess 33 in the .thumb-piece 28 limits the movement of the thumb-valve 26.
  • a compound piston 34 Slidable within said barrel is a compound piston 34, comprising spaced piston heads 35 and 36 mounted upon a common piston whereby the piston 34 is ra idlyrecipro-l ⁇ cated, thus causing repeate impacts betweenthe tappet 38 and the tool or other object fitted within the end of the hammer.
  • the reversing-valve 41 includes 'a valve cage having two spaced -discs 42 joined b a diametrical web 43. This valve cage is xed within the barrel 10 by means of screws 44 passing through the wall of theI barrel and into the web 43 and said valve cage is so located that the pipe 17 opens into the inlet chamber 45 formed between the discs 42, web 43 and the adjacent inner wallof the barrel.
  • An exhaust .chamber-46 on the opposite side of the web 43 opens into the outer air through a port 47 inthe side of the barrel.
  • the web' 43 has a bore 43u therein to receive the piston rod 37.
  • the piston head 35 works in the cylinder 48 above the upper disc 42, while the other piston head 36 works in the cylinder 49 beneath the lower disk 42.
  • Inlet openings 50 in the discs are formed in alignment and communicate withl the inlet chamber 45.
  • Valve stems 52 and 53 passing through these aligned openings are joined at their ends by cross links 54, which areV erforated to slidably receive the piston ro -37 and also guide pins 55 secured at their ends in thel discs .42.
  • 4Valve heads 56 threaded on the valve stem 52, within the inlet chamber 45 are desi ed to alternately open and close the openings 50 and valve heads 57 threaded on the valve stem 53, outside of the valve cage, a'redesigned to alternately open and close the openings 51.
  • inlet valves 56 and exhaust valves 57 are fixed upon the valve stems 52 and 53 in such relative positions that an intake opening in one disc is closed simultaneously with the exhaust opening in the other disc, or, in 'other words, the inlet opening to one cylinder is unobstruoted simultaneously with the uncovering of the exhaust opening for the.
  • coiled springs 58 encircling the piston rod 37 and located between the valve cage and piston heads alternately strike the cross links 54, thus shifting the valve stems and changing the course 4of air from one cylinderto the other.
  • piston head 35 is threaded and supplied with an' adjusting nut 59 and a lock nut 60.
  • ese nuts are interposed between the pis ton head 35 and the adjacent spring 58 and the adjustment thereofcauses the impact of the spring 5.8 with the upper cross link 54 earlier or later in the stroke of the piston, as may be desired.
  • the working stroke of the piston may be readily regulated to suit various conditions.
  • Ports 61'at the extremity of the cylinders 48 and 49 are formed toI permit the entry. and escape of air into and from cylinders, behir 1d the pistons 35 and 36.
  • Fig. 1 the thumb-piece. 28 is depressed (Fig. 1), air being admitted through the conduit 15, valve stem 27 and pipe 17 to the inlet chamber 45 of the reversing-valve 41. Said air then passes through an inlet opening 50, then unob.
  • FIG. 1 the tappet 38 propels the tool 39 which isfiaed Within the end 'of the ham mer and yieldngly held therein by presf sure against the work.
  • the spent air between the valve cage and the piston 4head approaching said valve cage escapes through. the port 47 into the outer air. Pressure of the air against the seated inlet valves 56 holds the valve stems against movement by gravity. 4

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Portable Nailing Machines And Staplers (AREA)
  • Percussive Tools And Related Accessories (AREA)

Description

Jan. 2, 1923.
E. M. MATTSON ET AL.
PNEUMATIC HAMMER.
FILED sEPT,22,1919.
Patented dan.. 2, 1.9233.
NETE@ STATES LMMUDTT ETUI; Til. MATTSON AND HARRY 1V. POPP, 0F MINNEAPOLIS, AND ALBERT C. HO'UG- LAND, OF ST. PAUL, MINNESOTA, ASSGNORS, BY MESNE ASSIGNMENTS, T0 JOHN L. CRUMP, OF ST. PAUL, MINNESGTA.
PNEUMATIC HAMMER.
Application led September 22, 1919. Serial No. 325,339.
To all whom it may con-cem.'
Be it known that we, EMIL and HARRY W. Por?, citizens of the United States, residing at Minneapolis, in the county of Hennepin and State of Minnesota, and ALBERT C. HOUGLAND, citizen of the United States, residing at St. Paul, in the county of Ramsey and- State of Minnesota, have invented a new and useful mrovement in Pneumatic Hammers, o which the following is a specification.`
Our invention relates to improvements in pneumatic hammers. y
Its object is to provide a tool of this kind having improvements, particularly in the reversing mechanism and in the construction of the va-lved air inlet.
lVith these and other objects in view, `which will appear in the following description, the invention resides in the novel combination and arrangement of parts and in the details of construction hereinafter described and claimed.
n the drawings, Fig. 1 is a central sectional view of our improved pneumatic hammer, showing the compound piston in its downward course; Fig. 2 is a fragmentary central sectional view thereof showing said piston at the end Of its downward course and Figs. 3 and 4 are detail sectional views o-f the reversing-valve,
. is actuated by said pist-0n.
Referring to the drawings, we'have used the reference numeral 10 to indicate the barrel of the hammer. A handle 11 therefor comprises a grip 12, a neck 13 and a head 14, the latter having a bore into which the upper end of the barrel 10 is threaded. An air conduit 15 opening at the end of the grip is inclined upward to a point midway of said grip, then downward to intersect a bore 16 passing through the neck 13. A pipe 17 including a union 18 leads from the lower end of the bore 16 to the middle of the barrel 10 and completes the air-passageway from the end of the grip 12 to said barrel; said end of the grip is threaded externally to receive the usual air hose connection 19. Within this end of the grip 12,
M. MA'rrsoN.
which the air-passageway is enlarged. A beveled seat 21a 1s formed at the inner end of this enlarge-ment and the outer end thereof is threaded to receive an externally threadedv ring or stop 22. A valve-head 21 is yieldingly held against the seat 21L by means of a compression spring 23 interposed between said Valve head 21 and stop y22. A stem 24 on said valve head through the upwardly inclined portion of the conduit 15 and is slidably mounted in the grip,v the end of said stem projecting into an enlargement 25 of the bore 16. A thumbvalve 26 slidable within the bore 16, consists of a hollow stem 27 and a thumbpiece 28. The stem 27 fits closely in the bore 16 and is formed with a ort 29 adapted to register with the con uit 15, when the thumb-valve 26 is depressed. The thumb-piece 28 tits closely in the enlargement 25 and is formed with a cam surface 30, which engages the end of the valve stem 24. The lower end of the stem 27 abuts aga-inst a compression spring 31 enclosed within the union 18 and is normally held by said spring in such position that the port 29 is removed from registration with the conduit 15 and the cam surface 30 so positioned that the valve 21 is seated by the action of the spring 23. A stop pin 32 threaded in the handle 11 and projecting into the recess 33 in the .thumb-piece 28 limits the movement of the thumb-valve 26. lt will be seen that when said thumb-valve is in normal position, the conduit 15 is obstructed by valve head 21 and also by the stem 27 of the thumb-valve. When it is desired to admit air to the barrel 10, the thumb-piece 28 is depressed. ln this movement, the cam surface 30 engages the valve stem 24 and unseats the valve head 21 against the action of" the spring 23. The port 29 in the stem 27 is also brought into registration with the conduit 15, thus opening the passageway from the endof the grip 12 to the interior of the barrel 10. Slidable within said barrel is a compound piston 34, comprising spaced piston heads 35 and 36 mounted upon a common piston whereby the piston 34 is ra idlyrecipro-l` cated, thus causing repeate impacts betweenthe tappet 38 and the tool or other object fitted within the end of the hammer. The reversing-valve 41 includes 'a valve cage having two spaced -discs 42 joined b a diametrical web 43. This valve cage is xed within the barrel 10 by means of screws 44 passing through the wall of theI barrel and into the web 43 and said valve cage is so located that the pipe 17 opens into the inlet chamber 45 formed between the discs 42, web 43 and the adjacent inner wallof the barrel. An exhaust .chamber-46 on the opposite side of the web 43 opens into the outer air through a port 47 inthe side of the barrel. The web' 43 has a bore 43u therein to receive the piston rod 37. The piston head 35 works in the cylinder 48 above the upper disc 42, while the other piston head 36 works in the cylinder 49 beneath the lower disk 42. Inlet openings 50 in the discs are formed in alignment and communicate withl the inlet chamber 45. Aligned exhaust openings 51 in said discs communicate with .the exhaust chamber 46 in the valve cage.4 Valve stems 52 and 53 passing through these aligned openings are joined at their ends by cross links 54, which areV erforated to slidably receive the piston ro -37 and also guide pins 55 secured at their ends in thel discs .42. 4Valve heads 56 threaded on the valve stem 52, within the inlet chamber 45 are desi ed to alternately open and close the openings 50 and valve heads 57 threaded on the valve stem 53, outside of the valve cage, a'redesigned to alternately open and close the openings 51. y Said inlet valves 56 and exhaust valves 57 are fixed upon the valve stems 52 and 53 in such relative positions that an intake opening in one disc is closed simultaneously with the exhaust opening in the other disc, or, in 'other words, the inlet opening to one cylinder is unobstruoted simultaneously with the uncovering of the exhaust opening for the. other cylinder, coiled springs 58 encircling the piston rod 37 and located between the valve cage and piston heads alternately strike the cross links 54, thus shifting the valve stems and changing the course 4of air from one cylinderto the other. l
We provide simple and effective means, whereby the stroke of the piston 34 may be increased or diminished. That portion of the valve stem 37 adjacent to the upper 'thus reversing the movement Upon the working stroke of said piston,
piston head 35 is threaded and supplied with an' adjusting nut 59 and a lock nut 60. ese nuts are interposed between the pis ton head 35 and the adjacent spring 58 and the adjustment thereofcauses the impact of the spring 5.8 with the upper cross link 54 earlier or later in the stroke of the piston, as may be desired. Thus it will be seen that the working stroke of the piston may be readily regulated to suit various conditions. k
Ports 61'at the extremity of the cylinders 48 and 49 are formed toI permit the entry. and escape of air into and from cylinders, behir 1d the pistons 35 and 36.
In operation, the thumb-piece. 28 is depressed (Fig. 1), air being admitted through the conduit 15, valve stem 27 and pipe 17 to the inlet chamber 45 of the reversing-valve 41. Said air then passes through an inlet opening 50, then unob.
structed, into the communicating cylinder and forces the pistonfhead therein to such position wherein 58 adjacent the opposite piston head strikes a cross link 54 and shifts' the valves within the valve cage. This movement of the valves causes the incoming air to be directed into the opposite cylinder, against the piston head therein, of the piston.
(Fig. 1) :the tappet 38 propels the tool 39 which isfiaed Within the end 'of the ham mer and yieldngly held therein by presf sure against the work. The spent air between the valve cage and the piston 4head approaching said valve cage escapes through. the port 47 into the outer air. Pressure of the air against the seated inlet valves 56 holds the valve stems against movement by gravity. 4
Changes in the specific form of our invention, as herein disclosed, and various adaptations thereof may be made within the scope of what is claimed,` without departing. from the spirit of our invention.
Having described our invention, what We claimvas new and desire to protect by Letters Patent is:
In a device of the class described, the combination of a barrel having an air-passageway leading thereto, a handle on the barrel, a compound piston in the barrel, comprising two spaced piston heads mounted on a common piston rod, a reversing-valve in the barrel, between said piston heads, said reversing-valve including a cage having an inlet chamber communicating with said airpassageway and an outlet chamber communicating with the outer air, openings leading from said inlet and exhaust chambers into the cylinders on opposite sides thereof, valve lstems slidable in said cage, cross links rigidly connecting said valve stems, valves on said stems for closing said openings, said valves being arranged so that the inlet openinglr to oney cylinder is unobstruvted simultaneously with the uncovering of the exhaust opening in the other cylinder, springs interposed between the piston heads und suid cross-links for alternately actuatingV said vulve Stems and an adjusting nut threaded 0n the piston rod between one of the piston heads and the adjacent. actuating spring, us and for the pui- 10 poses described.
In testimony \\'he1eof, we have signed our naines to this specification.
I@ M I I1 M. M TTS ON. MARR Y \V. P0111. A. C. HOUGLAND.
US325339A 1919-09-22 1919-09-22 Pneumatic hammer Expired - Lifetime US1441017A (en)

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Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2471604A (en) * 1947-03-07 1949-05-31 Charles F Boyer Safety device for pneumatic tools
US2555018A (en) * 1945-03-07 1951-05-29 Seggern Roy D Von Pneumatic saw and the like
US2612143A (en) * 1950-02-27 1952-09-30 Leah Helpert Air motor and pump
US2669840A (en) * 1948-03-24 1954-02-23 Joy Mfg Co Pulsator operated percussive device
US2699153A (en) * 1952-08-29 1955-01-11 Russell Carl Dexter Reversing valve mechanism
US2699152A (en) * 1951-03-16 1955-01-11 Russell Carl Dexter Valve mechanism
US2890682A (en) * 1952-06-17 1959-06-16 Bernard A Swanson Fluid-under-pressure-operated reciprocating mechanism
US3017868A (en) * 1960-03-01 1962-01-23 Raymond M Ginder Oil motor
US3236441A (en) * 1964-01-23 1966-02-22 Carl D Russell Reversing valve mechanism
US3735708A (en) * 1970-04-17 1973-05-29 Plasser Bahnbaumasch Franz Drive for vibrating a track maintenance machine tool
US4087206A (en) * 1976-06-03 1978-05-02 Robert G. Brooks Subsurface pumping unit incorporating heavy duty reversing valve and method of operating
US20220080574A1 (en) * 2020-02-07 2022-03-17 Storm Pneumatic Tool Co., Ltd. Vibration reducing structure of pneumatic hammer

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2555018A (en) * 1945-03-07 1951-05-29 Seggern Roy D Von Pneumatic saw and the like
US2471604A (en) * 1947-03-07 1949-05-31 Charles F Boyer Safety device for pneumatic tools
US2669840A (en) * 1948-03-24 1954-02-23 Joy Mfg Co Pulsator operated percussive device
US2612143A (en) * 1950-02-27 1952-09-30 Leah Helpert Air motor and pump
US2699152A (en) * 1951-03-16 1955-01-11 Russell Carl Dexter Valve mechanism
US2890682A (en) * 1952-06-17 1959-06-16 Bernard A Swanson Fluid-under-pressure-operated reciprocating mechanism
US2699153A (en) * 1952-08-29 1955-01-11 Russell Carl Dexter Reversing valve mechanism
US3017868A (en) * 1960-03-01 1962-01-23 Raymond M Ginder Oil motor
US3236441A (en) * 1964-01-23 1966-02-22 Carl D Russell Reversing valve mechanism
US3735708A (en) * 1970-04-17 1973-05-29 Plasser Bahnbaumasch Franz Drive for vibrating a track maintenance machine tool
US4087206A (en) * 1976-06-03 1978-05-02 Robert G. Brooks Subsurface pumping unit incorporating heavy duty reversing valve and method of operating
US20220080574A1 (en) * 2020-02-07 2022-03-17 Storm Pneumatic Tool Co., Ltd. Vibration reducing structure of pneumatic hammer
US11628550B2 (en) * 2020-02-07 2023-04-18 Storm Pneumatic Tool Co., Ltd. Vibration reducing structure of pneumatic hammer

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