US326312A - James s - Google Patents

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Publication number
US326312A
US326312A US326312DA US326312A US 326312 A US326312 A US 326312A US 326312D A US326312D A US 326312DA US 326312 A US326312 A US 326312A
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Prior art keywords
striker
air
passage
port
casing
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    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D7/00Methods or apparatus for placing sheet pile bulkheads, piles, mouldpipes, or other moulds
    • E02D7/02Placing by driving
    • E02D7/06Power-driven drivers
    • E02D7/10Power-driven drivers with pressure-actuated hammer, i.e. the pressure fluid acting directly on the hammer structure

Definitions

  • WITNESSES I UNITED STATES PATENT Orricn.
  • Theinvention also consists of means for preventing thestrikerfromturninginits chamber; also of the construction, arrangement, and combination of parts, as hereinafter described and claimed.
  • Figure 1 is a sectional elevation of my improved pneumatic tool.
  • Figs. 2 and 3 are reverse side views of the piston-chamber, the outer shell being removed.
  • Fig. 4 shows the piston-valve.
  • Fig. 5 is a plan view of the lower end of the piston or striker, and
  • Fig. 6 is a side elevation of the striker.
  • A represents the piston or striker of the pneumatic tool.
  • This striker fits closely in the chamber B,formed by the casin g of the machine, which is composed of the upper and lower parts, 0 D, screwed together, as shown in Fig. 1.
  • the lower part, D, of the casing carries the spindle E, that holds the tool F at its outer end, and this part D of the casing is countersunk at G, and again at H, the former being for the purpose of receiving the enlarged head I of the spindle E, the latter for forming a shoulder to support the coiled spring J, that acts to return the spindleE after each stroke of the striker A upon it in the operation of the device.
  • the upper part, 0, of the casing of the machine is surrounded by the shell or packet K,
  • the port 6 In the flat surface a is formed the port 6, and the air-inlet passage a opens into the flat surface c.
  • the exhaust-port 1) opens out from the flat surface (I, and in the flat surfaces d d are formed through the casing the air-ports f f.
  • the casing O From the flat surface 0 the casing O is grooved, as shown at g, and again on the opposite side at g.
  • the groove 9 leads to the port h, (see full lines Fig. l and dotted lines Fig. 3,) while the groove 9 leads to the port h.
  • From the flatsurfaces d d the casing O From the flatsurfaces d d the casing O is The groovei leads to the port 9', while the groove t" leads to the port j. lines in Fig. 1 and in dotted lines in Fig. 3.)
  • the striker A is provided with the transversely-arranged valve L, and it has the passages la 7a, which reach through to the cham- (Both ports are shown in full her that contains the valve L, and these openings coincide with or stand in the same plane withthe ports f f.
  • the striker A also has the passage Z formed in it. (Shown in dotted lines in Fig. l and in full lines in Fig. 6. This passage also reaches through to the valvechamber, and it coincides with or stands in the same plane with the port 6 made in the casing G.
  • the striker A also has the vertical passages m 12. formed in it, which reach, respectively, from the chamber containing the Valve L to the top and bottom of the striker, as shown in dotted lines in Fig.
  • the lower end of the striker A is grooved, as shown at o, and is recessed, as shown at 10, about the passage 02, and the grooves 0 all communicate with the recess 10 to facilitate the exhaust of the air from between the lower end of the striker A and the head I when the striker descends to deliver its blow; and I form a groove, p,in the striker A being in the upper position, air admitted .to the induction-passage a enters the passage-formed by the flat surface 0 and passes through the passage 6 and port h, moving valve L to close passage k and to connect passages e, Z, and m, thus admitting air above the striker A, and at the same time the passages k, f, and n are connected to allow ex-.
  • the air-cushion also assists the spring J in its reaction after each stroke to elevate the striker in the piston-chamber for another blow.
  • the casing provided with an inlet and an exhaust port and carrying a spindle, in combination with the valve striker placed in the casing and having recesses or slots formed in. its lower end and a vertical passage connecting with .saidpassages or slots, substantially as and for the purpose set forth.
  • the casing having an inlet and an exhaust port and carrying a spindlehaving a plate secured. to its inner end in combination with the valved .striker having recesses or slots in its lower witnesseses:

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Mining & Mineral Resources (AREA)
  • Paleontology (AREA)
  • Civil Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Portable Nailing Machines And Staplers (AREA)

Description

(No Model.)
J. S. MoOOY.
PNEUMATIC TOOL.
v No. 326,312. Patented Sept. 15, 1885 Fi i.
WITNESSES I UNITED STATES PATENT Orricn.
JAMES S. MCCOY, OF BROOKLYN, NEW YORK.
PNEUMATIC TOOL.
.JPEOIFICA'JEION forming part of Letters Patent No. 326,312, dated September 15, 1885.
I :Applioation filed October 29. 1884. (No model.)
ments in the pneumatic device shown and described in my application for Letters Patent filed August 30, 1884, Serial No. 141,966; and it consists, principally, in forming the lower end of the striker with air-passages or recesses to facilitate the exhaust of the air from below the striker, so that the striker in its downward movement will not be unevenly resisted by the air in the piston-chamber.
Theinvention also consists of means for preventing thestrikerfromturninginits chamber; also of the construction, arrangement, and combination of parts, as hereinafter described and claimed.
Reference is to be had to the accompanying drawings, forming part of this specification, in which similar letters of reference indicate corresponding parts in all the figures.
Figure 1 is a sectional elevation of my improved pneumatic tool. Figs. 2 and 3 are reverse side views of the piston-chamber, the outer shell being removed. Fig. 4 shows the piston-valve. Fig. 5 is a plan view of the lower end of the piston or striker, and Fig. 6 is a side elevation of the striker.
A represents the piston or striker of the pneumatic tool. This striker fits closely in the chamber B,formed by the casin g of the machine, which is composed of the upper and lower parts, 0 D, screwed together, as shown in Fig. 1. The lower part, D, of the casing carries the spindle E, that holds the tool F at its outer end, and this part D of the casing is countersunk at G, and again at H, the former being for the purpose of receiving the enlarged head I of the spindle E, the latter for forming a shoulder to support the coiled spring J, that acts to return the spindleE after each stroke of the striker A upon it in the operation of the device.
The upper part, 0, of the casing of the machine is surrounded by the shell or packet K,
and is formed with the air-inlet passage a, Fig.
2, and exhaust-passage b, Figs. 1 and 3. It is faced off at c, as shown in Fig. 2, and on the opposite side again at d d d. (Shown in Fig.3.)
grooved, as shown at t and i.
In the flat surface a is formed the port 6, and the air-inlet passage a opens into the flat surface c. The exhaust-port 1) opens out from the flat surface (I, and in the flat surfaces d d are formed through the casing the air-ports f f. From the flat surface 0 the casing O is grooved, as shown at g, and again on the opposite side at g. The groove 9 leads to the port h, (see full lines Fig. l and dotted lines Fig. 3,) while the groove 9 leads to the port h. From the flatsurfaces d d the casing O is The groovei leads to the port 9', while the groove t" leads to the port j. lines in Fig. 1 and in dotted lines in Fig. 3.)
The striker A is provided with the transversely-arranged valve L, and it has the passages la 7a, which reach through to the cham- (Both ports are shown in full her that contains the valve L, and these openings coincide with or stand in the same plane withthe ports f f. The striker A also has the passage Z formed in it. (Shown in dotted lines in Fig. l and in full lines in Fig. 6. This passage also reaches through to the valvechamber, and it coincides with or stands in the same plane with the port 6 made in the casing G. The striker A also has the vertical passages m 12. formed in it, which reach, respectively, from the chamber containing the Valve L to the top and bottom of the striker, as shown in dotted lines in Fig. 1, and in full lines in Fig. 5. The lower end of the striker A is grooved, as shown at o, and is recessed, as shown at 10, about the passage 02, and the grooves 0 all communicate with the recess 10 to facilitate the exhaust of the air from between the lower end of the striker A and the head I when the striker descends to deliver its blow; and I form a groove, p,in the striker A being in the upper position, air admitted .to the induction-passage a enters the passage-formed by the flat surface 0 and passes through the passage 6 and port h, moving valve L to close passage k and to connect passages e, Z, and m, thus admitting air above the striker A, and at the same time the passages k, f, and n are connected to allow ex-.
haust from below the striker A through the space formed by the flat surface d and the passage b. Then the air through the passage 9 and port h moves valve L to close passage K, and to connect passages e l n to admit air below the striker, and to connect passages m, k, and f to open the exhaust from above the striker, and so on alternately, causing the striker A to have a rapid reciprocating or vibratory movement, causing it to deliver rapid blows upon the head I of the spindle E, causing the tool F to perform its work. The downstroke ,of the piston A will be against a pressure of air confinedin the chamber B, and owing to the recesses or grooves 0, and enlarged exhaust, the exhaust of air from the chamber will be practically uniform from all parts of the chamberbelow the striker, so that the remaining air below the striker will be equally distributed in the chamber, thus forming auniform air-cushion on which the striker acts, causing:
.a direct and uniform downward action of the battering of the striker and plate I, as the blov of the striker is not a dead blow of metal on metal, but of metal on metal and air, and
the air-cushion also assists the spring J in its reaction after each stroke to elevate the striker in the piston-chamber for another blow.
Having thus described my invention,what I claim as new, and desire to secure by Letters Patent, is-- 1. In a pneumatic drilling-tool, the casing provided with an inlet and an exhaust port, in combination with the striker having avertical passage extending upward from the slots in the bottom of said striker and the transverse valve, substantially as and for the purpose set forth.
2. In a pneumatic drilling-tool, the casing provided with an inlet and an exhaust port and carrying a spindle, in combination with the valve striker placed in the casing and having recesses or slots formed in. its lower end and a vertical passage connecting with .saidpassages or slots, substantially as and for the purpose set forth.
3. In a pneumatic drilling-tool, the casing having an inlet and an exhaust port and carrying a spindlehaving a plate secured. to its inner end in combination with the valved .striker having recesses or slots in its lower Witnesses:
H. A. WEST, O. SEDGWIcK.
US326312D James s Expired - Lifetime US326312A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9803388B2 (en) 2013-03-15 2017-10-31 Striker Tools Pneumatic post driver

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9803388B2 (en) 2013-03-15 2017-10-31 Striker Tools Pneumatic post driver

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