IP Library › Granted Patent US 9,969,070
Granted Patent B2
US 9,969,070 · App. 14/597,620 · Granted May 15, 2018

Driving tool with internal air compressor

Inventor: David C. Campbell (Bel Air, MD)
Assignee: BLACK & DECKER INC.
B25C1/047
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Quick Facts
Patent No.
US 9,969,070
App. No.
14/597,620
Granted
May 15, 2018
Kind
B2
Abstract

A driving tool having first and second linear motors, a head assembly, a nosepiece and a driver. The first linear motor forms an air compressor and includes a scotch yoke mechanism for translating a first piston in a first cylinder. The scotch yoke mechanism includes a crank arm, a crank arm roller, which is coupled to the crank arm, and a connecting rod having a roller slot into which the crank arm roller is received. At least a portion of the roller slot is configured to vary an output rate at which the connecting rod translates along a translation axis relative to an input rate at which the crank arm roller moves in a direction that is parallel to the translation axis.

Claims (67)

1. A hand-held driving tool comprising;

a tool body;

a nosepiece;

a magazine assembly coupled to at least one of the nosepiece and the tool body and configured to hold and sequentially feed fasteners to the nosepiece,

a handle including a trigger switch;

a motor and transmission having an output member that is rotatable about a rotational axis, the motor being energized by actuation of the trigger switch;

a first cylinder having a first cylinder first end and a first cylinder second end;

a first piston movable within the first cylinder and drivable by the motor;

a second cylinder having a second cylinder first end and a second cylinder second end;

a second piston movable within the second cylinder;

a driver coupled to the second piston for movement therewith, wherein the driver is configured to drive the fastener fed to the nosepiece when the second piston travels from the first end of the second cylinder to the second end of the second cylinder;

a head assembly connected to the first cylinder first end and the second cylinder first end, the head assembly defining a multiplicity of passages to control fluid communication between the first cylinder and the second cylinder;

wherein air passes from the first cylinder to the second cylinder through the multiplicity of passages simultaneously; and

wherein the multiplicity of passages includes a first passage and a second passage and wherein the second passage is sized to permit a higher flow rate of air between the first and second cylinders than the first passage.

2. A hand-held driving tool comprising:

a tool body;

a nosepiece;

a magazine assembly coupled to at least one of the nosepiece and the tool body and configured to hold and sequentially feed fasteners to the nosepiece,

a handle including a trigger switch;

a motor and transmission having an output member that is rotatable about a rotational axis, the motor being energized by actuation of the trigger switch;

a cylinder housed in the tool body, the cylinder having a sidewall, a first end and a second end;

a first piston and a second piston;

a driver coupled to the second piston for movement therewith; and

a vent formed in said sidewall of the cylinder which allows atmospheric air to enter the interior of the cylinder;

wherein the first piston is drivable by the motor from the first end to the second end, thereby creating low pressure in the cylinder on a side of the piston facing the first end; and

wherein the driver is configured to contact the fastener fed to the nosepiece to drive the fastener into a workpiece.

3. The hand-held driving tool of claim 2 , wherein a first side of the second piston is exposed to atmospheric pressure, a second side of the second piston is exposed to the low pressure and the second piston moves in response to a difference in pressure between the area of low pressure and atmospheric pressure.

4. The hand-held driving tool of claim 2 , wherein the first piston includes a piston body and a seal which provides a seal between the piston body and the cylinder; and

wherein the vent permits atmospheric air to enter the interior of the cylinder when the seal passes the vent.

5. The hand-held driving tool of claim 4 , wherein said seal comprises a compression ring located on the piston body of the first piston.

6. The hand-held driving tool of claim 2 , wherein the vent comprises a plurality of ports.

7. The hand-held driving tool of claim 2 , wherein the vent includes a valve member configured to open and close the vent.

8. A hand-held driving tool comprising:

a tool body;

a nosepiece;

a magazine assembly coupled to at least one of the nosepiece and the tool body and configured to hold and sequentially feed fasteners to the nosepiece,

a handle including a trigger switch mounted thereon;

a motor and transmission having an output member that is rotatable about a rotational axis;

a cylinder housed in the tool body, the cylinder having a first end and a second end;

a first piston drivable by the motor from the first end to the second end;

a second piston coupled to a driver, the second piston being movable toward the nosepiece so that the driver will strike the fastener residing in the nosepiece; and

a vent configured to allow pressurized air between the first piston and the second piston to vent to atmosphere;

wherein the trigger is operable to operate the driving tool to drive the fastener; and

wherein the vent is included in one of the first and second pistons.

9. The hand-held driving tool of claim 8 , wherein the vent includes a valve member configured to open and close the vent.

10. The hand-held driving tool of claim 8 , wherein the first piston includes a compression ring which forms a seal between the piston body and an inside surface of the cylinder; and

wherein the vent includes a valve member configured to open and close the vent.

11. A hand-held driving tool comprising:

a tool body;

a nosepiece;

a magazine assembly coupled to at least one of the nosepiece and the tool body and configured to hold and sequentially feed fasteners to the nosepiece,

a handle including a trigger switch mounted thereon;

a motor and transmission having an output member that is rotatable about a rotational axis;

a cylinder housed in the tool body, the cylinder having a first end and a second end;

a first piston drivable by the motor from the first end to the second end to generate pressurized air; and

a second piston coupled to a driver, the second piston having a first side and a second side and being movable toward the nosepiece by the application of pressurized air to said first side, so that the driver will strike the fastener residing in the nosepiece;

wherein the second piston and the drive move away from the nosepiece to reset the second piston to a starting position;

wherein the trigger is operable to operate the driving tool to drive the fastener; and

wherein the second piston is driven toward the nosepiece by pressurized air flowing through a multiplicity of air passages to said first side of the second piston;

further comprising a vent configured to allow pressurized air between the first piston and said first side of the second piston to vent to atmosphere; and

wherein the vent is included in one of the first and second pistons.

12. The hand-held driving tool of claim 11 , wherein the vent includes a valve member configured to open and close the vent.

13. The hand-held driving tool of claim 11 , wherein the first piston includes a compression ring which forms a seal between the piston body and an inside surface of the cylinder; and

wherein the vent includes a valve member configured to open and close the vent.

14. The hand-held driving tool of claim 11 , wherein the transmission includes a gear reduction assembly.

15. The hand-held driving tool of claim 11 , wherein the motor defines a second rotational axis that is oriented substantially perpendicular to the path of movement of said second piston and the driver.

16. The hand-held driving tool of claim 15 , wherein the handle comprises a longitudinal portion that is spaced from said motor and oriented substantially parallel to said second rotational axis of said motor.

Continuity (3)
Continuation 13354366 · Jan 20, 2012
Provisional Application 61434534 · Jan 20, 2011
Related Publication 20150122868A1 · May 7, 2015