IP Library Granted Patent US 8,657,173
Granted Patent B2
US 8,657,173 · App. 10/599,246 · Granted Feb 25, 2014

Portable type fastener driving tool

Inventors: Yasutsugu Uejima (Osaka-fu, JP); Keiji Yamakawa (Osaka-fu, JP)
Assignee: Japan Power Fastening Co,. Ltd.
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Quick Facts
Patent No.
US 8,657,173
App. No.
10/599,246
Granted
Feb 25, 2014
Kind
B2
Abstract

In a gas combustion type nail driving device, a head part ( 3 ) which is disposed on the front surface of the main body is provided with (a) a guide tube ( 35 ) through which a rod ( 17 ) and a nail n pass; (b) a main guide body ( 36 ) on which the guide tube ( 35 ) is disposed; (c) a subguide ( 37 ) which makes a pair with the main guide body ( 36 ) and forms a nail feed space; (d) a feed motor ( 48 ); and (e) a gear unit ( 46 ) which is driven by the feed motor ( 47 ). The nail connecting body N is fed to the guide tube ( 35 ) by the feed gear ( 73 ).

Claims (68)

1. A portable fastener driving tool, comprising:

a main body including a combustion chamber;

a rod moveable within the main body to be driven forward by gas combustion or explosion in said combustion chamber;

a head part disposed at a front end of the main body and having a fastener guiding part;

a magazine removably attachable to the head part and for storing a plurality of fasteners connected with each other by a fastener connecting body; and

a power operated fastener feeding mechanism comprising:

a rotary feed member for feeding the fasteners one by one into the fastener guiding part to be driven from the head part by forward movement of the rod; and

an electric motor for driving the rotary feed member,

wherein the rotary feed member comprises

at least a rotary feed gear coupled to be driven by the motor and engageable with the fastener connecting body or the fasteners, for feeding the fasteners one by one into the fastener guiding part; and

a rotation detection gear rotatable together with the rotary feed gear and arranged coaxially with the rotary feed gear, for indicating a feeding of each of the fasteners into the fastener guiding part.

2. The tool of claim 1 , wherein

the magazine has a shape of a drum for housing the fastener connecting body wound either in a coil shape or a roll shape.

3. The tool of claim 1 , wherein the fastener feeding mechanism further comprises:

a first sensor for detecting a retracted position of the rod;

a second sensor for detecting the feeding of one of the fasteners into the fastener guiding part;

a brake for controllably stopping the motor from rotating the rotary feed gear; and

a control circuit for

causing the motor to rotate the rotary feed gear for feeding one of the fasteners into the fastener guiding part upon a first detection of the first sensor that the rod is in the retracted position, and

energizing the brake to stop the motor from rotating upon a second detection of the second sensor that one of the fasteners has been fed into the fastener guiding part.

4. The tool of claim 3 , wherein the second sensor is arranged for detecting a rotation of the rotary feed gear, said rotation being sufficient for feeding one of the fasteners into the fastener guiding part.

5. The tool of claim 3 , wherein

the rotation detection gear has a plurality of troughs,

the second sensor comprises a contact member positionable in any one of said troughs; and

a movement of the contact member from one trough to an adjacent trough, due to a rotation of the rotation detection gear together with the rotary feed gear, corresponds to the feeding of one of the fasteners into the fastener guiding part.

6. The tool of claim 5 , wherein

the rotary feed gear and the rotation detection gear have the same number of teeth.

7. The tool of claim 3 , wherein the first sensor comprises a contact member contactable with said rod except at said retracted position, thereby detecting the rod being in the retracted position when the contact member does not contact the rod.

8. The tool of claim 3 , wherein the control circuit is arranged for, in response to the second detection of the second sensor that one of the fasteners has been fed into the fastener guiding part, turning off the motor before energizing the brake.

9. The tool of claim 1 , wherein the rotary feed gear is disposed at the head part.

10. The tool of claim 1 , wherein the rotary feed member comprises multiple said rotary feed gears for respectively engaging different parts of the fastener connecting body or different parts of the fasteners to be fed.

11. The tool of claim 1 , wherein

said rotation detection gear and the rotary feed gear are integrally fixed to a single shaft, and

the electric motor is free of direct attachment to the rotation detection gear and the rotary feed gear.

12. An explosively actuated fastener driving tool, comprising:

an explosively actuated fastener driving mechanism for driving a rod forward by gas combustion or explosion in a combustion chamber associated with said rod; and

an electrically powered fastener feeding mechanism for feeding fasteners from a magazine associated with said tool to the fastener driving mechanism,

wherein the electrically powered fastener feeding mechanism comprises

a rotary feed gear for feeding the fasteners one by one to the fastener driving mechanism; and

a rotation detection gear rotatable together with the rotary feed gear and arranged coaxially with the rotary feed gear, for indicating a feeding of each of the fasteners into the fastener driving mechanism.

13. The tool of claim 12 , wherein the fastener feeding mechanism further comprises

an electric motor for driving the rotary feed gear.

14. The tool of claim 13 , wherein the fastener feeding mechanism further comprises:

a brake for controllably stopping the motor from rotating the rotary feed gear; and

a control circuit for

causing the motor to rotate the rotary feed gear for feeding one of the fasteners to the fastener driving mechanism upon a first detection that a fastener driving element of the fastener driving mechanism is in a retracted position, and

energizing the brake to stop the motor from rotating upon a second detection that one of the fasteners has been fed to the fastener driving mechanism.

15. The tool of claim 14 , wherein the control circuit is arranged for, in response to the second detection that one of the fasteners has been fed to the fastener driving mechanism, turning off the motor before energizing the brake.

16. The tool of claim 12 , wherein

said rotation detection gear and the rotary feed gear are disposed on a common rotational shaft, and

the electric motor is coupled to rotate said rotational shaft via a slave gear on said shaft.

17. A combustion-powered fastener driving tool, comprising:

a combustion-powered fastener driving mechanism for driving a rod forward by gas combustion or explosion in a combustion chamber associated with said rod; and

an electrically powered fastener feeding mechanism for feeding fasteners from a magazine associated with said tool to the fastener driving mechanism,

wherein the electrically powered fastener feeding mechanism comprises

a rotary feed gear for feeding the fasteners one by one to the fastener driving mechanism; and

a rotation detection gear rotatable together with the rotary feed gear and arranged coaxially with the rotary feed gear, for indicating a feeding of each of the fasteners into the fastener driving mechanism.

18. The tool of claim 17 , wherein the fastener feeding mechanism further comprises

an electric motor for driving the rotary feed gear.

19. The tool of claim 18 , wherein the fastener feeding mechanism further comprises:

a brake for controllably stopping the motor from rotating the rotary feed gear; and

a control circuit for

causing the motor to rotate the rotary feed gear for feeding one of the fasteners to the fastener driving mechanism upon a first detection that a fastener driving element of the fastener driving mechanism is in a retracted position, and

energizing the brake to stop the motor from rotating upon a second detection that one of the fasteners has been fed to the fastener driving mechanism.

20. The tool of claim 19 , wherein the control circuit is arranged for, in response to the second detection that one of the fasteners has been fed to the fastener driving mechanism, turning off the motor before energizing the brake.

21. The tool of claim 17 , wherein

said rotation detection gear and the rotary feed gear are disposed on a common rotational shaft, and

the electric motor has a main shaft inclined with respect to said rotational shaft, and coupled with said rotational shaft via a twisting gear.

Assignments (2)
CHANGE OF NAME Recorded Apr 8, 2008
From: JPF WORKS CO., LTD.
To: JAPAN POWER FASTENING CO., LTD.
Reel/Frame 020769/0992 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2006
From: UEJIMA, YASUTSUGU; YAMAKAWA, KEIJI
To: JPF WORKS CO., LTD.
Reel/Frame 018292/0840 →
Priority Claims (1)
JP 2004-105992 · Mar 31, 2004 · national
Continuity (1)
Related Publication 20080210734A1 · Sep 4, 2008