Screw fastening device
US-9216483-B2 · Dec 22, 2015 · US
US10449642B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10449642-B2 |
| Application number | US-201615573496-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 27, 2016 |
| Priority date | May 11, 2015 |
| Publication date | Oct 22, 2019 |
| Grant date | Oct 22, 2019 |
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Official abstract text for this publication.
Nut runner system which includes holder table having tightening point at one end and coupling part at other end, and configured to hold plurality of bits, and nut runner main body including carrier coupled to wrist part of robotic arm, spindle supported by carrier, and bit changer coupled to spindle and which one of plurality of bits is attached. Coupling part of each of plurality of bits has an engaging hole coaxial with tightening point, and annular protrusion that continues in circumferential directions is formed in inner circumferential surface of engaging hole. Bit changer includes actuator, actuator made of engaging shaft to be inserted into engaging hole and operating pieces formed in engaging shaft, operating pieces moving between engaging position wherein operating pieces protrude radially outward from inner circumferential edge of annular protrusion and retracted position wherein operating pieces are retracted radially inward from inner circumferential edge of annular protrusion.
Opening claim text (preview).
What is claimed is: 1. A nut runner system, comprising: a holder table having a tightening point at one end and a coupling part at the other end, and configured to hold a plurality of bits; and a nut runner main body including a carrier coupled to a wrist part of a robotic arm, a spindle supported by the carrier, and a bit changer coupled to the spindle and to which one of the plurality of bits is to be attached, wherein the coupling part of each of the plurality of bits has an engaging hole coaxial with the tightening point, and an annular protrusion that continues in circumferential directions is formed in an inner circumferential surface of the engaging hole, wherein the bit changer includes an actuator, the actuator being comprised of an engaging shaft to be inserted into the engaging hole and operating pieces formed in the engaging shaft, the operating pieces moving between an engaging position at which the operating pieces protrude radially outward from an inner circumferential edge of the annular protrusion and a retracted position at which the operating pieces are retracted radially inward from the inner circumferential edge of the annular protrusion, wherein a stop member is fixed to an end of the spindle opposite from the bit changer, and wherein the nut runner main body includes a guide that unrotatably fits to the spindle and supports the spindle so as to be axially slidable, a driven gear fixed to the guide, a drive gear that meshes with the driven gear, and a spring that biases the spindle toward the bit changer, a sleeve fixed to the carrier and fitted onto the spindle, and a collar that is rotatably supported by the sleeve through a bearing and contacts the stop member. 2. The nut runner system of claim 1 , wherein the actuator is driven by hydraulic pressure, and wherein the spindle is of a tubular shape, and a tube through which the hydraulic pressure is supplied to the actuator is routed inside the spindle. 3. The nut runner system of claim 2 , wherein the actuator maintains the operating pieces at the engaging position when the hydraulic pressure is not supplied to the actuator through the tube, while the actuator moves the operating pieces to the retracted position when the hydraulic pressure is supplied to the actuator through the tube. 4. The nut runner system of claim 1 , wherein the coupling part of each of the plurality of bits has a rotation-stop hole parallel to the engaging hole, and wherein the bit changer has a rotation-stop pin to be inserted into the rotation-stop hole. 5. The nut runner system of claim 1 , wherein the holder table has holder holes into which the plurality of bits are inserted, and the holder table is constructed so that the coupling parts of the plurality of bits are placed on the holder table, wherein the coupling parts of the plurality of bits are of a disk shape, and at least two positioning slots are formed in perimeter surfaces of the coupling parts at mutually different locations, respectively, and wherein the holder table is provided, for each of the plurality of bits, with at least two positioning pins to be fitted into the at least two positioning slots.
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