Enhanced device for piercing plugs in a steam generator
US-2016356487-A1 · Dec 8, 2016 · US
US9772103B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9772103-B2 |
| Application number | US-201414563617-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 8, 2014 |
| Priority date | Dec 9, 2013 |
| Publication date | Sep 26, 2017 |
| Grant date | Sep 26, 2017 |
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Official abstract text for this publication.
An enhancing device for piercing plugs in a steam generator is provided. The enhancing device includes a main body, and a bit, borne by the main body and extending along a longitudinal axis. The bit may be driven into rotation around its longitudinal axis, in order to perform an action for piercing a plug. The device includes a hollow tubular element, extending along the longitudinal axis, while surrounding the bit and coaxially with this bit, the tubular element including an outer surface having a screwing thread, intended to be screwed onto the plug prior to the piercing. The tubular element may be driven into rotation around the longitudinal axis, independently of the rotation of the bit.
Opening claim text (preview).
What is claimed is: 1. A piercing device for piercing plugs in a steam generator comprising: a main body, a bit borne by the main body, the bit extending along a longitudinal axis, the bit being drivable into rotation around its longitudinal axis in order to perform an action for piercing a plug; a hollow tubular element extending along the longitudinal axis by surrounding the bit and being arranged coaxially with the bit, the hollow tubular element including an outer surface having a screwing thread for screwing onto the plug prior to piercing, the hollow tubular element being drivable into rotation around the longitudinal axis independently of the rotation of the bit; a first motor provided with a first output shaft; and a first driver for driving into rotation the bit around the longitudinal axis through the first output shaft, wherein the first output shaft is radially offset relative to the longitudinal axis, the first driver including at least one piercing drive pinion bound in rotation to the first output shaft and a piercing axis pinion bound in rotation to the bit, the piercing axis pinion being driven into rotation by the piercing drive pinion. 2. The piercing device as recited in claim 1 wherein the piercing axis pinion is driven into rotation by the piercing drive pinion via an intermediate piercing pinion engaging with the piercing drive pinion and with the piercing axis pinion. 3. The piercing device as recited in claim 1 wherein the first motor is a pneumatic motor. 4. The piercing device as recited in claim 1 further comprising: a second motor provided with a second output shaft; and a second driver for driving into rotation the hollow tubular element around the longitudinal axis through the second output shaft. 5. The piercing device as recited in claim 4 wherein the second output shaft is radially offset relative to the longitudinal axis and angularly shifted relative to the first output shaft, the second driver including at least one screwing drive pinion bound in the rotation to the second output shaft and a screwing axis pinion bound in rotation to the hollow tubular element, the screwing axis pinion being driven into rotation by the screwing drive pinion. 6. The piercing device as recited in claim 5 wherein the screwing axis pinion is driven into rotation by the screwing drive pinion via an intermediate screwing pinion engaging with the screwing drive pinion and with the screwing axis pinion. 7. The piercing device as recited in claim 4 wherein the second motor is an electric motor. 8. A device for handling a piercing device as recited claim 1 comprising an elongated element extending between a proximal handling end, and a distal end to which is attached the piercing device. 9. A method for piercing a plug in a steam generator, by means of a piercing device comprising: a main body; a bit, borne by the main body, and extending along a longitudinal axis, said bit being able to be driven into rotation around its longitudinal axis, in order to perform an action for piercing a plug, a hollow tubular element, extending along the longitudinal axis, by surrounding the bit and coaxially with this bit, the hollow tubular element comprising an outer surface having a screwing thread, intended to be screwed onto the plug prior to piercing, the hollow tubular element being able to be driven into rotation around the longitudinal axis, independently of the rotation of the bit; a first motor provided with a first output shaft; and a first driver for driving into rotation the bit around the longitudinal axis through the first output shaft, wherein the first output shaft is radially offset relative to the longitudinal axis, the first driver including at least one piercing drive pinion bound in rotation to the first output shaft and a piercing axis pinion bound in rotation to the bit, the piercing axis pinion being driven into rotation by the piercing drive pinion, the method comprising: a preliminary step for screwing the tubular element onto the plug, followed by a step for piercing the plug with the bit.
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