US1314288A - Daniel s - Google Patents
Daniel s Download PDFInfo
- Publication number
- US1314288A US1314288A US1314288DA US1314288A US 1314288 A US1314288 A US 1314288A US 1314288D A US1314288D A US 1314288DA US 1314288 A US1314288 A US 1314288A
- Authority
- US
- United States
- Prior art keywords
- piston
- chamber
- bore
- constant pressure
- fluid
- 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
Links
- 239000012530 fluid Substances 0.000 description 36
- 238000010276 construction Methods 0.000 description 2
- ZOXJGFHDIHLPTG-UHFFFAOYSA-N Boron Chemical group [B] ZOXJGFHDIHLPTG-UHFFFAOYSA-N 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F15—FLUID-PRESSURE ACTUATORS; HYDRAULICS OR PNEUMATICS IN GENERAL
- F15B—SYSTEMS ACTING BY MEANS OF FLUIDS IN GENERAL; FLUID-PRESSURE ACTUATORS, e.g. SERVOMOTORS; DETAILS OF FLUID-PRESSURE SYSTEMS, NOT OTHERWISE PROVIDED FOR
- F15B11/00—Servomotor systems without provision for follow-up action; Circuits therefor
- F15B11/02—Systems essentially incorporating special features for controlling the speed or actuating force of an output member
- F15B11/028—Systems essentially incorporating special features for controlling the speed or actuating force of an output member for controlling the actuating force
- F15B11/036—Systems essentially incorporating special features for controlling the speed or actuating force of an output member for controlling the actuating force by means of servomotors having a plurality of working chambers
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B25—HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
- B25D—PERCUSSIVE TOOLS
- B25D9/00—Portable percussive tools with fluid-pressure drive, i.e. driven directly by fluids, e.g. having several percussive tool bits operated simultaneously
- B25D9/14—Control devices for the reciprocating piston
Definitions
- the present invention relates to motors of the valveless type, particularly intended for use in hammer drills, though not necessarily limited thereto.
- f k Y The object is to provide a structure that will deliver a powerful working blow, and will be economical in the amount of motive fluid used.
- Figure 1 is a longitudinal sectional view' through the motor.
- Fig. 2 is a perspective view of the piston and a portion of the tube that supplies fluid under pressure thereto.
- Fig. 3 is a rear elevation of the structure shown in Fig. 2.
- Fig. 4 is a front elevation of the piston.
- a cylinder member including a bo'dy 5 having an internal piston chamber.
- This piston chamber comprises portions of different diameters, namely, an intermediate bore 6 in which a hammer piston 7 is slidably mounted, a front enlargedbore 8, and two enlarged' bore portions 9 and 10 separated by a bore 11 of smaller diame ashamedthe bore 11 being4 of the same diameter as the bore G.
- the piston 7 is of thel reciprocatory type, and has an internal constant pressure chamber 12 having a yreduced portion 13 that opens through the rear end of said piston.
- the front end ⁇ of the piston is movable into and out of the enlarged bore 8 and the rear end is movableacross the enlarged bore 9, through the bore 11 and into the bore 10,
- the front end of the tube 14 has a sliding fit in the reduced portion 13 of the constant pressure chamber and said tube enters the main portion of said chamber 12 when the piston is Vin its rearmost position.
- Fluid under pressure brought from any suitable source is delivered to the tube 14 by suitable means, as for example, a hose or pipe, a portion of which is shown at 17?.
- the fluid under pressure is delivered to opposite ends of the piston chamber and againstithe opposite faces of the piston by the following means :'-F orwaidly inclined ports 18y open from the front portion of the constant pressure chamber 12 through the side walls of the piston a slight distance in rear of its front face, and longitudinal ehannels 19 are formed in the exterior of the tube 14, these channels opening into the rear chamber 10, and terminating short of the front end of the tube.
- the bore 9 constitutes an exhaust chamber, and ports 20 lead therefrom to the exterior of the cylinder.
- ⁇ Longitudinal grooves 21 are cut in the eX- terior face of the piston, said grooves terminating substantially midway of the same and opening through the front ends of said piston.
- a reciprocatory piston operating therein and having' an internal constant pressure chamber the front wall of which is vformed by a face of the piston, means for maintain-ing fluid underpressure in said chamber during the operation ⁇ of, the piston, land means for delivering motive fluid from the chamber to opposite external faces of the piston,- to reciprocate the said piston, said meanspen mitting the piston to have a rectilinear nonrotary movement throughout such reciprocation.
- a reciprocatory piston operating therein and having an internal constant pressure chamber thefront wall of which is-formed bya face of the piston, means for supplying fluid under pressure to the chamber and maintaining the same therein during the operation of the piston, said piston having a port for delivering the fluid fromL the chamber to the front of the piston for moving said piston rearwardly, and means other than said port for delivering fluid from the chamber to the rear of the piston to move said piston forwardly.
- a reciprocatory piston slidable in the smaller boro and having its rear end movable in the larger bore, said piston having an internal constant pressure chamber, means for sup plying-fluid under pressureto the constant pressure chamber, and'means for intermittently distributing fluid from the constant pressure chamber to the larger bore in rear ofthe piston and exhausting it therefrom.
- the combination with a cylinder member, of a reciprocatory piston operating therein and capable of a rectilinear movement throughout its stroke said piston having an internal constant pressure chamber, the front constant pressure wall of which is formed by a face of the piston, means for constantly supplying fluid under pressure to the chamber and against said face, and separate means respectively opening into the chamber at different points for respectively and alternately distributing the fluid from the constant pressure chamber to opposite portions of the piston to effect its reciprocation.
- a cylinder having an internal cavity, an inlet plug projecting into said ca V- ity and having a passage for conveying fluid to the cavity and exerting a constant pressure on the inner end of said cavity, and passages independently communicating with said cavity and arranged to respectively and alternately admit fluid from said cavity to the said cylinder on opposite sides of said piston.
- a cylinder In a fluid operated percussive tool, a cylinder, a piston having an internal bore in its rearward portion, said bore being smaller in cross sectional area at its rearward end, an inlet plug fittin into said bore and having a passage theret rough for conveying fluid constantly thereto, said plug also having a head fitting said smaller portion of the piston bore, and a rearward portion of smaller cross sectional area than said head, a port leading from the larger part of the bore to the surface of said piston, a passage leading from the forward end of the cylinder to a point positioned to register with said piston port near the forward end of the piston stroke, and exhaust ports uncovered by the piston near the rpiston and another port opening through the piston from the pressure chamber for delivering fluid to the rear of said piston.
- a cylinder member having a piston chamber provided with enlargements in its front and rear portions, of a piston operating therein and having an internal constant pressure chamber, means for supplying motive fluid to the chamber, and ports opening from the constant pressure chamber through the piston wall, one port communicating with the rear enlargement and the other port communieating with the front enlargement, communication with the enlargement being effected alternately to supply fluid to opposite faces of the piston.
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- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Fluid Mechanics (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Pistons, Piston Rings, And Cylinders (AREA)
Description
D. S. WAUGH.
MOTOR.
APPLICATION FILED NOV. 24, |914.
IluwllllllllllllllllllllM V "Il,
'rma Couumsm ILANOGRAPHv Cu., WASHINGTON. D. C.
UNITED STATES. PATENT OFFICE. f
DANIEL S. WAUGH, OF DENVER, COLORADO, ASSIGNOR T0 THE DENVER ROCK DRILL MANUFACTURING COMPANY, OF DENVER, COLORADO, A CORPORATION OF DELA- WARE.
MOTOR.
To all whom it may concern.'
Be it known that I, lDANIEL S..WAUGH, a citizen of the United States, residing at Denver, in the county of Denver and State of Colorado, have invented new and useful.
Improvements in Motors, of which the following is a specification.
The present invention relates to motors of the valveless type, particularly intended for use in hammer drills, though not necessarily limited thereto. f k Y The object is to provide a structure that will deliver a powerful working blow, and will be economical in the amount of motive fluid used.
An embodiment of the invention is illustrated in the accompanying drawings, whereiii:-
Figure 1 is a longitudinal sectional view' through the motor.
Fig. 2 is a perspective view of the piston and a portion of the tube that supplies fluid under pressure thereto.
Fig. 3 is a rear elevation of the structure shown in Fig. 2.
Fig. 4 is a front elevation of the piston.
Similar reference numerals designate corresponding parts in all the figures of the drawings.
In the embodiment disclosed, a cylinder member is provided, including a bo'dy 5 having an internal piston chamber. This piston chamber comprises portions of different diameters, namely, an intermediate bore 6 in which a hammer piston 7 is slidably mounted, a front enlargedbore 8, and two enlarged' bore portions 9 and 10 separated by a bore 11 of smaller diameteigthe bore 11 being4 of the same diameter as the bore G.
The piston 7 is of thel reciprocatory type, and has an internal constant pressure chamber 12 having a yreduced portion 13 that opens through the rear end of said piston. The front end `of the piston is movable into and out of the enlarged bore 8 and the rear end is movableacross the enlarged bore 9, through the bore 11 and into the bore 10,
having a sliding fit in the bore 11, as will be obvious.
Motive fluid is supplied constantly to the pressure chamber 12, through the medium of a tube 14, which, as shown, has an integral flange 15 at its rear end, constituting in effect the rear cylinder head, said head being Specification of Letters Patent. Patented Allg'. 26, 1919. Application led November 24, 1914. Serial No. 873,799.
held in placeby side bolts 16 that also are engaged with a front head 17. The front end of the tube 14 has a sliding fit in the reduced portion 13 of the constant pressure chamber and said tube enters the main portion of said chamber 12 when the piston is Vin its rearmost position. Fluid under pressure brought from any suitable source is delivered to the tube 14 by suitable means, as for example, a hose or pipe, a portion of which is shown at 17?.
The fluid under pressure is delivered to opposite ends of the piston chamber and againstithe opposite faces of the piston by the following means :'-F orwaidly inclined ports 18y open from the front portion of the constant pressure chamber 12 through the side walls of the piston a slight distance in rear of its front face, and longitudinal ehannels 19 are formed in the exterior of the tube 14, these channels opening into the rear chamber 10, and terminating short of the front end of the tube. The bore 9 constitutes an exhaust chamber, and ports 20 lead therefrom to the exterior of the cylinder.
`Longitudinal grooves 21 are cut in the eX- terior face of the piston, said grooves terminating substantially midway of the same and opening through the front ends of said piston. f
The operation of the motor is as follows Assuming that fluid under pressure is being constantly delivered into the internal constant pressure chambers 12 and 13, and with the parts, as illustrated in Fig. 1, this fluid will pass through the ports V18 and operate against the front face ofthe piston, driving the same rearwardly, the exhaust taking place freely from in rear of the piston, through the chamber 9 and ports 21. `When, however, the rear end of the piston enters the smaller bore 11,the exhaust in rear of the piston will be cut off, andwhen the piston has reachedits rearmost position, the channels 19 will be in communication at their frontends with the constant pressure chamber 12. Thus fluid under pressure will flow from said chamber into the rear chamber 10y of the cylinder and against the rear face of the piston to drive it forwardly. In the rearward movement of the piston the ports 18, entering the bore 6 of the cylinder, will be cut off from communication with the front chamber 8, and
directly thereafter the rear ends of the channels 2l will come into communication with the chamber 9, so that thegfiuid in advance of the piston can escapeV or exhaust through said channels, into the chamber 9,
and thence to the outer air, through the` .fiuid utilized, and an additional advantage resides in the fact that the piston has a rectilinear movement throughout its working stroke.
From the foregoing, it is thought: that the construction, operation, and many advantages of the herein described invention will be apparent to those skilled in the art, without further description, and it will be understood that` various changes in the size, shape,`
proportion and minor details of construction may be resorted to Without departing fromthe spirit or sacrificing any of the advantages of the invention.
Having thus fully described my invention, what I claim as new and desire to secure by Letters Patent, is
l. In apparatus of the character set forth the combination with a cylinder member, of
a reciprocatory piston operating therein and having' an internal constant pressure chamber the front wall of which is vformed by a face of the piston, means for maintain-ing fluid underpressure in said chamber during the operation `of, the piston, land means for delivering motive fluid from the chamber to opposite external faces of the piston,- to reciprocate the said piston, said meanspen mitting the piston to have a rectilinear nonrotary movement throughout such reciprocation.
2. In apparatus of the character set forth, the combination with a cylinder member, of a reciprocatory piston operating therein and having an internal constant pressure chamber, a fluid supply tube projectinginto the chamber and` delivering fluid under pressure into the chamber in advanceI of=said tube, and means for distributing fluid from the chamber to reciprocate the piston without rotation.
3. In apparatus of the character set forth, the combination witha cylinder member, of
a reciprocatory piston operating therein and having an internal constant pressure chamber thefront wall of which is-formed bya face of the piston, means for supplying fluid under pressure to the chamber and maintaining the same therein during the operation of the piston, said piston having a port for delivering the fluid fromL the chamber to the front of the piston for moving said piston rearwardly, and means other than said port for delivering fluid from the chamber to the rear of the piston to move said piston forwardly.
4. In apparatus ofthe character set forth, the combination with a cylinder member having bores of different diameters, of a piston slidably mounted in the bore of smaller diameter and having a portion movable into and out of the bore of larger diameter, said piston having an internal constant pressure chamber, means for maintaining a supply of fluid under pressure in the constant pressure chamber, anda port leading from the constant pressure chamber through a portion ofl the pistonthat is movable into and out of the bore of larger diameter, said port having its communication,cut off bythe wall of the bore of smaller diameter.
5. In apparatusl of the charactervset forth, the combination with a cylinder member having a bore of one-diameter and abore in rear. thereof of larger diameter, of a reciprocatory piston slidable in the smaller boro and having its rear end movable in the larger bore, said piston having an internal constant pressure chamber, means for sup plying-fluid under pressureto the constant pressure chamber, and'means for intermittently distributing fluid from the constant pressure chamber to the larger bore in rear ofthe piston and exhausting it therefrom.
6. In'ap'paratus of the character set forth, the combination with a cylinder member having a bore of onediameter and a bore in rear thereof of larger diameter, of a reciprocatory pistonslidable in the smaller bore and having its rear end movable in the larger bore and of less diameter than the same, said piston having an internal constant pressure chamber, means for supplying fluid under pressure to the constant4 pressure chamber, and means for intermittently distributing the fluid from the constant pressure chamber to the larger bore in rear/ofthe piston and exhausting it therefrom.
7. In apparatus o f the character set forth, the combination with a cylinder member, of a piston operating therein and having an internal constant pressure chamber the front wall of which isA formed by a face ofthe piston, a tube projectinginto the lchamber for supplying fluid under pressure thereto, and Ymeans for distributing said fluid from the chamber, to operate the piston, including a passageway formed- Ain the tube.`
8.- Iny apparatus of the character set forth, the combination with a cylinder member, of a piston operating therein ,and-having' an internal constant pressure chamber, a tube carried by the cylinder member and projecting forwardly into the constant pressure chamber for supplying fluid under pressure thereto, and means for distributing motive fluid from the constant pressure chamber to opposite faces of the piston, to actuate it, said means including a passageway formed longitudinally in the exterior of the tube and opening into the cylinder member in rear of the piston.
9. In apparatus of the character set forth, the combination with a cylinder member, of a reciprocatory piston operating therein and capable of a rectilinear movement throughout its stroke, said piston having an internal constant pressure chamber, the front constant pressure wall of which is formed by a face of the piston, means for constantly supplying fluid under pressure to the chamber and against said face, and separate means respectively opening into the chamber at different points for respectively and alternately distributing the fluid from the constant pressure chamber to opposite portions of the piston to effect its reciprocation.
10. In a fluid operated percussive tool, a cylinder, a piston having an internal cavity, an inlet plug projecting into said ca V- ity and having a passage for conveying fluid to the cavity and exerting a constant pressure on the inner end of said cavity, and passages independently communicating with said cavity and arranged to respectively and alternately admit fluid from said cavity to the said cylinder on opposite sides of said piston.
1l. In a fluid operated percussive tool, a cylinder, a piston having an internal bore in its rearward portion, said bore being smaller in cross sectional area at its rearward end, an inlet plug fittin into said bore and having a passage theret rough for conveying fluid constantly thereto, said plug also having a head fitting said smaller portion of the piston bore, and a rearward portion of smaller cross sectional area than said head, a port leading from the larger part of the bore to the surface of said piston, a passage leading from the forward end of the cylinder to a point positioned to register with said piston port near the forward end of the piston stroke, and exhaust ports uncovered by the piston near the rpiston and another port opening through the piston from the pressure chamber for delivering fluid to the rear of said piston.
13. In apparatus of the character described, the combination with a cylinder member, of a piston therein having a constant internal pressure chamber provided with a front constant pressure face formed upon the piston, means for supplying fluid under pressure to the chamber, forwardly extending ports opening from the chamber through the piston to the front of the same, and rearwardly extending ports opening from the chamber through the piston to the rear of the said piston.
14. In apparatus of the character set forth, the combination with a cylinder member having a piston chamber provided with enlargements in its front and rear portions, of a piston operating therein and having an internal constant pressure chamber, means for supplying motive fluid to the chamber, and ports opening from the constant pressure chamber through the piston wall, one port communicating with the rear enlargement and the other port communieating with the front enlargement, communication with the enlargement being effected alternately to supply fluid to opposite faces of the piston.
In testimony whereof I have hereunto set my hand in presence of two subscribing witnesses.
DANIEL S. WAUGH.
Witnesses:
WILLIAM H. LEONARD, JAMES R. ELMnNDonr.
Copies of this patent may be obtained for ve cents each, by addressing the Commissioner of Patents, Washington, D. C.
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US1314288A true US1314288A (en) | 1919-08-26 |
Family
ID=3381780
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US1314288D Expired - Lifetime US1314288A (en) | Daniel s |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US1314288A (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3123007A (en) * | 1964-03-03 | Well pump |
-
0
- US US1314288D patent/US1314288A/en not_active Expired - Lifetime
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3123007A (en) * | 1964-03-03 | Well pump |
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