US534901A - Henry w - Google Patents
Henry w Download PDFInfo
- Publication number
- US534901A US534901A US534901DA US534901A US 534901 A US534901 A US 534901A US 534901D A US534901D A US 534901DA US 534901 A US534901 A US 534901A
- Authority
- US
- United States
- Prior art keywords
- piston
- valve
- cylinder
- channel
- exhaust
- 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
- 238000005192 partition Methods 0.000 description 5
- 238000005553 drilling Methods 0.000 description 1
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Classifications
-
- 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
- B25D9/06—Means for driving the impulse member
- B25D9/08—Means for driving the impulse member comprising a built-in air compressor, i.e. the tool being driven by air pressure
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F01—MACHINES OR ENGINES IN GENERAL; ENGINE PLANTS IN GENERAL; STEAM ENGINES
- F01L—CYCLICALLY OPERATING VALVES FOR MACHINES OR ENGINES
- F01L25/00—Drive, or adjustment during the operation, or distribution or expansion valves by non-mechanical means
- F01L25/02—Drive, or adjustment during the operation, or distribution or expansion valves by non-mechanical means by fluid means
- F01L25/04—Drive, or adjustment during the operation, or distribution or expansion valves by non-mechanical means by fluid means by working-fluid of machine or engine, e.g. free-piston machine
- F01L25/06—Arrangements with main and auxiliary valves, at least one of them being fluid-driven
- F01L25/066—Arrangements with main and auxiliary valves, at least one of them being fluid-driven piston or piston-rod being used as auxiliary valve
Definitions
- the object of this invention is to provide a pneumatic tool serviceable for such work as drilling, chipping, cutting 'or the like, which the piston at the other end of its throw from4 that shown in Fig 1.
- Fig. 4 is a detail view of the cylinder.
- Fig. 5 is a detail view of the beater or piston.
- Fig. 6 is a section along :rx Fig. 2.
- Fig. 7 is a section along y y Fig. 3.
- the cylinderl is provided with a reciprocating piston or beater 2 which when arriving at the end of athrowin one direction will strike a stem 3 so as to move the latter against the force of its restoring spring 4.
- This stem 3 may be a tool or may be arranged to hold a tool as well known so that the impact of the piston on stem 3 can be communicated to the tool.
- the tool holder or stem 3 is located in a plug or tail piece 5 screwed or secured to cylinder 1.
- the cylinder has an inlet passage or tube 6 for the entrance of air or pressure conducted to the head 7 of the cylinder by any suitable conduit or hose.
- the piston 2 has alongitudinal central channel or passage 8 into which said tube 6 enters and which tube thus serves as a sort of guide for the piston.
- This channel 8 communicates with a valve chamber bored transversely through the piston at or near its center and within which chamber is immovably placed or fixed a valve seat 9.
- the valve in this chamber comprises'three wings or partitions A A A2 secured to a base B and this valve A A A2 B can play or move back and forth in the seat between the position shown in Figs. 2 and 6 and the position shown in Figs. 3 and 7.
- the piston 2 has the lateral channels or passages l0 and 11 made to extend longitudinally.
- This opening 15 leads to the exhaust channel or passage 16 readily formed by removing part of cylinder 1 and surrounding this cylinder with a close fitting sleeve 17.
- this piston strikes the stem 3 and the valve is then shifted as seen in said Figs. 3 and 7.
- the pressure from tube 6 entering channel 8 now passes between valve partitions A A through channel 11 into the foot portion of cylinder 1 so as to drive the piston back to the position shown in Figs. 1 and 2.
- the air or pressure above the piston exhausts through channel 10 passing out between the valve partitions A A2 through exhaust port 13 in the valve seat registering with exhaust port 19 in the piston, which port 19 communicates with the space 14 described in connection. with exhaust port 13.
- valve is shifted as follows: In the valve seat at each end is a hole or entrance orifice marked respectively 20 and 21.
- the orifice 20 registers with a pressure channel 22 and the orifice 2l registers with an exhaust channel 23 so that the valve is shifted toward orifice 21.
- Vhen arriving at the position shown in Fig. 3 the orifice 21 registers with the pressure channel 24 and the orifice 20 registers with the exhaust channel 25, so
- the channels 22 and 24 communicate with the pressure channel 26 forming a branch of inlet 6, and the channels 22 to 26 both inclusive are readily formed by cuts or grooves in cylinder l and afterward covered by shell 17.
- the pressure channel 22 has its outlet mouth opposite to the inlet mouth of exhaust channel 23 and the pressure channel 24 has its outlet mouth located opposite to the inlet mouth of exhaust channel 25 so that the valve will be exposed to alternating and oppositely acting pressures and exhausts for shifting the valve back and forth.
- the piston as is readily understood in this class of tools, should be feathered or arranged to travel in the cylinder without turning, as by means of a pin or lug 27 (Figs. 6 and 7) on the cylinder engaging a groove in the piston.
- valve seat 9 can be slipped into the transverse bore of the piston and held against rotation by any suitable means, and when the piston :is inserted intothe cylinder the valve seat is held in the piston.
- valve when shifted hack and forth will strike against the ends of the valve seat 9 so that said valve seat protects the cylinder against the impact of the valve.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Physics & Mathematics (AREA)
- Fluid Mechanics (AREA)
- General Engineering & Computer Science (AREA)
- Portable Nailing Machines And Staplers (AREA)
Description
(No Model.)
WITNESSES:
H. W.METZING. PNEUMATIG TooL.
Patented Feb. 26, 1895.
.' a' (zA y ATTORNEYS.
THE Nonms PE1-Ens co. PHOTO-urna., wAsHiNG'roN, o. cA
UNTTT STATES PATENT Trios.
HENRY WV. METZING, OF NEW YORK, N. Y.
lPN EU MATIC TOOL.
SPECIFICATION forming part of Letters Patent No. 534,901, dated February 26, 1 895.
Application led June 7, 1894. Serial No. 513,820- (No model.)
To aZZ whom Ait may concern'.-
Be it known that I, HENRY W. METZTNG, a citizen of the United States, residing at New York, in the county and State of New York, have invented new and useful Improvements in Pneumatic Tools, of which the followingis a specication.
The object of this invention is to provide a pneumatic tool serviceable for such work as drilling, chipping, cutting 'or the like, which the piston at the other end of its throw from4 that shown in Fig 1.
Fig. 4 is a detail view of the cylinder.
Fig. 5 is a detail view of the beater or piston. Fig. 6 is a section along :rx Fig. 2. Fig. 7 is a section along y y Fig. 3.
The cylinderl is provided with a reciprocating piston or beater 2 which when arriving at the end of athrowin one direction will strike a stem 3 so as to move the latter against the force of its restoring spring 4. This stem 3 may be a tool or may be arranged to hold a tool as well known so that the impact of the piston on stem 3 can be communicated to the tool. The tool holder or stem 3 is located in a plug or tail piece 5 screwed or secured to cylinder 1. The cylinder has an inlet passage or tube 6 for the entrance of air or pressure conducted to the head 7 of the cylinder by any suitable conduit or hose.
The piston 2 has alongitudinal central channel or passage 8 into which said tube 6 enters and which tube thus serves as a sort of guide for the piston. This channel 8 communicates with a valve chamber bored transversely through the piston at or near its center and within which chamber is immovably placed or fixed a valve seat 9. The valve in this chamber comprises'three wings or partitions A A A2 secured to a base B and this valve A A A2 B can play or move back and forth in the seat between the position shown in Figs. 2 and 6 and the position shown in Figs. 3 and 7. The piston 2 has the lateral channels or passages l0 and 11 made to extend longitudinally.
In the position of parts shown in Figs. 2 and 6 the pressure entering through channel 8 passes between the valve partitions A A2 and thence through channel 10 into the head portion of cylinder 1 so as to drive the piston toward the foot of the cylinder (Fig. 3) or toward the stem 3. The air or pressure beneath the piston during this movement exhausts through channel 11, passing thence between valve partitions A A into the exhaust port 12 (Fig. 6) of the valve seat registering with exhaust port 13 in the piston, and which exhaust port 13 leads into the exhaust space 14 (Fig. 5) hollowed or formed in the piston and which exhaust space is of such size that no matter whatthe position of the piston this space 14 constantly communicates with the exhaust opening 15 in the cylinder. This opening 15 leads to the exhaust channel or passage 16 readily formed by removing part of cylinder 1 and surrounding this cylinder with a close fitting sleeve 17. When arriving at the lower end of its throw (Fig. 3) this piston strikes the stem 3 and the valve is then shifted as seen in said Figs. 3 and 7. The pressure from tube 6 entering channel 8 now passes between valve partitions A A through channel 11 into the foot portion of cylinder 1 so as to drive the piston back to the position shown in Figs. 1 and 2. During this movement the air or pressure above the piston exhausts through channel 10 passing out between the valve partitions A A2 through exhaust port 13 in the valve seat registering with exhaust port 19 in the piston, which port 19 communicates with the space 14 described in connection. with exhaust port 13.
The valve is shifted as follows: In the valve seat at each end is a hole or entrance orifice marked respectively 20 and 21. When the parts are in the position shown in Figs. 1 and 2, the orifice 20 registers with a pressure channel 22 and the orifice 2l registers with an exhaust channel 23 so that the valve is shifted toward orifice 21. Vhen arriving at the position shown in Fig. 3 the orifice 21 registers with the pressure channel 24 and the orifice 20 registers with the exhaust channel 25, so
IOC)
that the valve is shifted to the position shown in Fig. 3.
The channels 22 and 24 communicate with the pressure channel 26 forming a branch of inlet 6, and the channels 22 to 26 both inclusive are readily formed by cuts or grooves in cylinder l and afterward covered by shell 17. The pressure channel 22 has its outlet mouth opposite to the inlet mouth of exhaust channel 23 and the pressure channel 24 has its outlet mouth located opposite to the inlet mouth of exhaust channel 25 so that the valve will be exposed to alternating and oppositely acting pressures and exhausts for shifting the valve back and forth.
The piston as is readily understood in this class of tools, should be feathered or arranged to travel in the cylinder without turning, as by means of a pin or lug 27 (Figs. 6 and 7) on the cylinder engaging a groove in the piston.
The valve seat 9 can be slipped into the transverse bore of the piston and held against rotation by any suitable means, and when the piston :is inserted intothe cylinder the valve seat is held in the piston.
As seen in Figs. 6 and 7 the valve when shifted hack and forth will strike against the ends of the valve seat 9 so that said valve seat protects the cylinder against the impact of the valve.
What I claim as new, and desire to secure by Letters Patent., is-
A cylinder having supply and exhaust passages, combined with a piston, or beater, having three passages, one of which is made to communicate with the supply passage, and a non-rotating valve made to reciprocate transversely in the piston and adapted to alternately bring the other passages of the piston into communication with the supply and exhaust passages, said valve being composed of a base B having one side or face smooth or unbroken, and the opposite face provided with three wings A A A2 forming channels .or passages in the valve for registering alternately with the supply and exhaust passages, substantially as described and shown.
In testimony whereof I have hereunto set my hand in the presence cf two subscribing Witnesses.
HENRY W. METZING. lVitnesses:
WM. C. I-IAUFF, E. F. KASTENHUBER.
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US534901A true US534901A (en) | 1895-02-26 |
Family
ID=2603663
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US534901D Expired - Lifetime US534901A (en) | Henry w |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US534901A (en) |
-
0
- US US534901D patent/US534901A/en not_active Expired - Lifetime
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