IP Library › Granted Patent US 7,140,400
Granted Patent B2
US 7,140,400 · App. 10/530,750 · Granted Nov 28, 2006

Reinforcing bar-binding machine

Assignee: Max Co., Ltd.
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Quick Facts
Patent No.
US 7,140,400
App. No.
10/530,750
Granted
Nov 28, 2006
Kind
B2
Abstract

A reverse rotational number of a binding wire feed mechanism is set such that a binding wire is completely pulled back regardless of a boldness or flexibility of the binding wire, a diameter of a reinforcing bar or the like. A driven gear 14 having a V groove of the binding wire feed mechanism is brought into elastic contact with a main drive gear 13 having a V groove by a spring and the binding wire is fed by pinching the binding wire by the main drive gear 13 having the V groove and the driven gear 14 having the V groove. After feeding out the binding wire to form a loop around the reinforcing bar and clamping a front end of the binding wire by a twist mechanism, the binding wire feed mechanism is rotated reversely and the binding wire is pulled back to be wound around the reinforcing bar. After stopping the binding wire, the main drive gear 13 having the V groove and the driven gear 14 having the V groove are slipped relative to the binding wire to rotate idly and continue to rotate reversely until a predetermined rotational number.

Claims (50)

1. A reinforcing bar binding machine comprising:

a binding wire feed mechanism for feeding out a binding wire so as to wind around a reinforcing bar;

a binding wire grasp mechanism for grasping and twisting the winding wire wound around the reinforcing bar;

a binding wire pull back mechanism for pulling back a loop of the binding wire wound around the reinforcing bar to be brought into close contact with the reinforcing bar and thereafter twisting the binding wire;

control means for reversely rotating a drive system of the binding wire feed mechanism by a predetermined rotational number in pulling back the binding wire;

detecting means for detecting the reverse rotational number; and

means for permitting to slip the drive system for restricting a pull back tension exerted to the binding wire to be equal to or smaller than a limit value of cutting the binding wire.

2. The reinforcing bar binding machine according to claim 1 , wherein the binding wire feed mechanism comprises:

a main drive sheave; and

a driven sheave brought into elastic contact with the main drive sheave, and

when a feed back tension exerted to the binding wire pinched between the pair of sheaves exceeds a certain value, the sheaves are idly rotated and the pull back tension exerted to the binding wire is restricted.

3. The reinforcing bar feeding machine according to claim 1 , wherein the binding wire feed mechanism comprises:

a main drive sheave; and

a driven sheave brought into elastic contact with the main drive sheave,

the drive system of the binding wire feed mechanism includes a torque limiter, and

when a pull back tension exerted to the binding wire pinched between the pair of grooves wheels exceeds a certain value, the main drive sheave and the driven sheave are stopped so as to restrict the pull back tension exerted to the binding wire.

4. The reinforcing bar binding machine according to claim 3 , wherein the torque limiter is a friction clutch or a ball clutch.

5. The reinforcing bar binding machine according to claim 1 , wherein the detecting means comprises a pulse detecting circuit that detects the rotational number of a feed motor.

6. The reinforcing bar binding machine according to claim 1 , wherein the binding wire feed mechanism comprises a main drive sheave, and a driven sheave brought into elastic contact with the main drive sheave, and

the detecting means comprises a rotational number sensor that detects the rotational number of the main drive sheave.

7. A reinforcing bar binding machine comprising:

a drive sheave;

a driven sheave brought into elastic contact with the drive sheave;

a motor that normally and reversely drives the drive sheave;

a lever to which the driven sheave is attached;

a spring attached to the lever, wherein the driven sheave is brought into elastic contact with the drive sheave by a spring force of the spring; and

a pulse detecting circuit that detects the rotational number of the motor,

wherein the motor normally drives the drive sheave so as to feed a binding wire, and reversely drives the drive sheave so as to pull back the binding wire until reaching a predetermined rotational number.

8. A reinforcing bar binding machine comprising:

a drive sheave;

a driven sheave brought into elastic contact with the drive sheave;

a lever to which the driven sheave is attached;

a spring attached to the lever, wherein the driven sheave is brought into elastic contact with the drive sheave by a spring force of the spring; and

a rotational number sensor that detects the rotational number of the drive sheave,

wherein the motor normally drives the drive sheave so as to feed a binding wire, and reversely drives the drive sheave so as to pull back the binding wire until reaching a predetermined rotational number.

9. A reinforcing bar binding machine comprising:

a drive sheave;

a driven sheave in mesh with the drive sheave;

a motor that normally and reversely drives the drive sheave;

a torque limiter disposed between the motor and the drive sheave; and

a pulse detecting circuit that detects the rotational number of the motor,

wherein the motor normally drives the drive sheave so as to feed a binding wire, and reversely drives the drive sheave so as to pull back the binding wire until reaching a predetermined rotational number.

10. The reinforcing bar binding machine according to claim 9 , wherein the torque limiter comprises one of a friction clutch and a ball clutch.

11. A reinforcing bar binding machine comprising:

a drive sheave;

a driven sheave in mesh with the drive sheave;

a motor that normally and reversely drives the drive sheave;

a torque limiter disposed between the motor and the drive sheave; and

a rotational member sensor that detects the rotational number of the drive sheave,

wherein the motor normally drives the drive sheave so as to feed a binding wire, and reversely drives the drive sheave so as to pull back the binding wire until reaching a predetermined rotational number.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2005
From: YOKOCHI, YASUSHI; KUSAKARI, ICHIRO; NAGAOKA, TAKAHIRO; ITAGAKI, OSAMU
To: MAX CO., LTD.
Reel/Frame 017024/0303 →
Priority Claims (1)
JP 2002-312185 · Oct 28, 2002 · national
Continuity (1)
Related Publication 20060011254A1 · Jan 19, 2006