MLchartDataset catalogue

Patent · US10087028B2 · B2 · US

Arrangement in a perforated roll of a fiber web machine and prefabricated sensor sheet for a perforated roll of a fiber web machine

(11) Publication number
US10087028B2
(21) Application number
15/171,767
(22) Filing date
2016-06-02
(30) Priority date
2015-06-03
(43) Publication date
2018-10-02
(45) Date of grant
2018-10-02
(51) IPC
B65H 20/12; B65H 27/00; D21F 3/10
(52) CPC
  • B65H Handling thin or filamentary material, e.g. sheets, webs, cables: 27/00
  • D21F Paper-making machines; methods of producing paper thereon: 1/36, 1/76, 3/00, 3/10, 3/105, 5/042
  • D21G Calenders; accessories for paper-making machines: 9/00
  • G01D Measuring not specially adapted for a specific variable; arrangements for measuring two or more variables not covered in a single other subclass; tariff metering apparatus; measuring or testing not otherwise provided for: 11/00
  • G01K Measuring temperature; measuring quantity of heat; thermally-sensitive elements not otherwise provided for: 13/04
  • G01L Measuring force, stress, torque, work, mechanical power, mechanical efficiency, or fluid pressure: 1/00, 5/00
  • G01R Measuring electric variables; measuring magnetic variables: 1/06
  • G08C Transmission systems for measured values, control or similar signals: 19/00
  • G12B Constructional details of instruments, or comparable details of other apparatus, not otherwise provided for: 9/00
  • H05K Printed circuits; casings or constructional details of electric apparatus; manufacture of assemblages of electrical components: 7/02
(73) Assignee
Valmet Technologies Oy
(72) Inventors
Kari Röyskö; Heikki Kettunen; Tatu Pitkänen
(54) Title
Arrangement in a perforated roll of a fiber web machine and prefabricated sensor sheet for a perforated roll of a fiber web machine
(57) Abstract

A perforated roll (10) of a fiber web machine includes a roll shell (19), holes (13) extending through the roll shell, and a sensing system (14) arranged in the roll shell. The sensing system (14) includes at least one pair of leads (16), to which one or more sensors (15) have been connected. At least one pair of leads is composed of flat leads (17.2, 17.2), which are arranged in the roll shell side by side. A prefabricated sensor sheet (26) may be prepared for a perforated roll of a fiber web machine, such that holes may be drilled therethrough to communicate with the roll shell holes (13).

Full text
View on Google Patents

Claims (15)

  1. An arrangement in a perforated roll of a fiber web machine, the arrangement comprising: a roll shell; a plurality of first holes extending through the roll shell; a sensing system arranged in the roll shell, which sensing system includes at least one pair of leads, to which one or more sensors are connected, wherein the at least one pair of leads comprise a pair of elongated flat leads which have been arranged on the roll shell side by side, each flat lead has a width extending along the surface of the roll shell which is greater than its thickness extending radially outward from the roll shell; and wherein the first holes have a first diameter, and wherein the width of each of the flat leads is greater than the first diameter of the first holes.
  2. The arrangement of claim 1, wherein at least one of the flat leads has cuts at the location of the first holes.
  3. The arrangement of claim 1 wherein the sensor extends between the flat leads.
  4. The arrangement of claim 1 wherein the sensor extends between holes.
  5. The arrangement of claim 1 wherein the sensing system includes three flat leads which form two pairs of leads, and wherein at least two sensors are connected to at least one flat lead of the flat leads, which sensors are on the opposite side of the flat lead.
  6. The arrangement of claim 1 wherein a cut at the location of a first hole includes an insulation between the flat lead and the first hole.
  7. The arrangement of claim 1 wherein the roll shell further comprises: an inner hollow cylindrical part; a coating; and a sensing system arranged over the coating and positioned in connection with the coating.
  8. The arrangement of claim 1 wherein the roll shell further comprises an inner cylindrical part with an outer surface, and further comprising: a pre-coating layer arranged on the surface of the inner cylindrical part; and an outer coating layer extending over the pre-coating layer, and wherein the sensing system is between the pre-coating layer and the outer coating layer.
  9. The arrangement of claim 8, wherein the pre-coating includes a recess at the location of a hole for the arrangement of an insulation between the flat lead and a hole.
  10. A prefabricated sensor sheet for mounting to a perforated roll of a fiber web machine, wherein the perforated roll has a roll shell and a plurality of first holes of a first diameter extending through the roll shell, the prefabricated sensor sheet comprising: an elongated strip equipped with an adhesive surface on one side for engagement with the perforated roll; at least two parallel flat leads on a surface of the elongated strip opposite the adhesive surface, the leads having a thickness extending away from the surface and a width on the surface and forming at least one pair of leads; at least one sensor connected to the pair of leads and supported on the surface of the elongated strip opposite the adhesive surface; and wherein the width of each of the flat leads is greater than the first diameter of the first holes.
  11. The perforated sensor sheet of claim 10 wherein the at least one sensor is selected from the group consisting of an EMFi electric sensor, a PVDF electric sensor, a piezoelectric sensor, a capacitive sensor, a resistive sensor, an inductive sensor, and an eddy current sensor.
  12. The perforated sensor sheet of claim 10 wherein the at least one sensor has a thickness substantially the thickness of the at least two flat leads.
  13. A perforated roll for a fiber web machine, comprising: a cylindrical roll shell having an outer surface, wherein portions of the roll shell define a plurality of first holes of a first diameter which extend through the outer surface and the roll shell; a first flat lead having a first width extending along the outer surface of the roll shell which is greater than its thickness extending radially outward from the roll shell, wherein the first width is greater than the first diameter of the first holes, the first flat lead extending over the outer surface of the roll shell such that at least one of the plurality of first holes extends through the first flat lead; a second flat lead having a second width extending along the outer surface of the roll shell which is greater than its thickness extending radially outward from the roll shell, wherein the second width is greater than the first diameter of the first holes, the second flat lead alongside and spaced from the first flat lead and extending over the outer surface of the roll shell such that at least one of the plurality of first holes extends through the second flat lead; and one or more sensors which are connected to the roll shell and connected between the first flat lead and the second flat lead.
  14. The perforated roll of claim 13 further comprising: a pre-coating layer arranged on the outer surface of the roll shell, wherein the first flat lead, the second flat lead, and the sensor are fastened to the pre-coating layer; an insulation element disposed on the pre-coating layer and extending radially outwardly through a second hole in the first lead which communicates with one of the first holes; and an outer coating layer which overlies the pre-coating layer, the first flat lead, the second flat lead, the insulation element, and the one or more sensors.
  15. The perforated roll of claim 13 wherein the one or more sensors is selected from the group consisting of an EMFi electric sensor, a PVDF electric sensor, a piezoelectric sensor, a capacitive sensor, a resistive sensor, an inductive sensor, and an eddy current sensor.

Description

Not applicable.

The invention relates to an arrangement in a perforated roll of a fiber web machine, which arrangement includes:

The invention also relates to a prefabricated sensor sheet for a perforated roll of a fiber web machine.

It is known that various nip measurements are performed for example in connection with service shutdowns on fiber web machines. In these, a temporary sensing system arranged because of the measurements is arranged on the surface of a roll, the measurement is performed, and the sensing system is removed. For example the so-called E-nip measurement technology represents prior art. It can be used for measuring the cross-sectional profile of the length of the nip in static conditions, but the measurement does not directly measure the cross-sectional distribution of the nip pressure or the MD distribution of the pressure. Moreover, one known measurement is Valmet Technologies, Inc.'s iRoll portable measurement, which can be used for measuring the cross-sectional profile of the nip pressure/force by means of a sensor installed temporarily on the surface of the roll.

The arrangement of a sensing system for example in the suction roll of a fiber web machine is known from European patent publication 1 719 836 B1. The sensing system includes a pair of leads embedded in the shell of the roll, to which pair of leads one or more sensors have been connected to determine various issues in the roll. The leads of the pair of leads are taken from between through holes arranged in the roll shell to the end of the roll and from there further to a processor.

Citations (6)

  • US4055077A
  • US4051719A
  • US6341522B1
  • US20040053758A1
  • EP1719836A1
  • US20060248723A1
Record as JSON
{
  "publication_number": "US10087028B2",
  "country": "US",
  "kind": "B2",
  "title": "Arrangement in a perforated roll of a fiber web machine and prefabricated sensor sheet for a perforated roll of a fiber web machine",
  "abstract": "A perforated roll (10) of a fiber web machine includes a roll shell (19), holes (13) extending through the roll shell, and a sensing system (14) arranged in the roll shell. The sensing system (14) includes at least one pair of leads (16), to which one or more sensors (15) have been connected. At least one pair of leads is composed of flat leads (17.2, 17.2), which are arranged in the roll shell side by side. A prefabricated sensor sheet (26) may be prepared for a perforated roll of a fiber web machine, such that holes may be drilled therethrough to communicate with the roll shell holes (13).",
  "claims": [
    "1. An arrangement in a perforated roll of a fiber web machine, the arrangement comprising: a roll shell; a plurality of first holes extending through the roll shell; a sensing system arranged in the roll shell, which sensing system includes at least one pair of leads, to which one or more sensors are connected, wherein the at least one pair of leads comprise a pair of elongated flat leads which have been arranged on the roll shell side by side, each flat lead has a width extending along the surface of the roll shell which is greater than its thickness extending radially outward from the roll shell; and wherein the first holes have a first diameter, and wherein the width of each of the flat leads is greater than the first diameter of the first holes.",
    "2. The arrangement of claim 1, wherein at least one of the flat leads has cuts at the location of the first holes.",
    "3. The arrangement of claim 1 wherein the sensor extends between the flat leads.",
    "4. The arrangement of claim 1 wherein the sensor extends between holes.",
    "5. The arrangement of claim 1 wherein the sensing system includes three flat leads which form two pairs of leads, and wherein at least two sensors are connected to at least one flat lead of the flat leads, which sensors are on the opposite side of the flat lead.",
    "6. The arrangement of claim 1 wherein a cut at the location of a first hole includes an insulation between the flat lead and the first hole.",
    "7. The arrangement of claim 1 wherein the roll shell further comprises: an inner hollow cylindrical part; a coating; and a sensing system arranged over the coating and positioned in connection with the coating.",
    "8. The arrangement of claim 1 wherein the roll shell further comprises an inner cylindrical part with an outer surface, and further comprising: a pre-coating layer arranged on the surface of the inner cylindrical part; and an outer coating layer extending over the pre-coating layer, and wherein the sensing system is between the pre-coating layer and the outer coating layer.",
    "9. The arrangement of claim 8, wherein the pre-coating includes a recess at the location of a hole for the arrangement of an insulation between the flat lead and a hole.",
    "10. A prefabricated sensor sheet for mounting to a perforated roll of a fiber web machine, wherein the perforated roll has a roll shell and a plurality of first holes of a first diameter extending through the roll shell, the prefabricated sensor sheet comprising: an elongated strip equipped with an adhesive surface on one side for engagement with the perforated roll; at least two parallel flat leads on a surface of the elongated strip opposite the adhesive surface, the leads having a thickness extending away from the surface and a width on the surface and forming at least one pair of leads; at least one sensor connected to the pair of leads and supported on the surface of the elongated strip opposite the adhesive surface; and wherein the width of each of the flat leads is greater than the first diameter of the first holes.",
    "11. The perforated sensor sheet of claim 10 wherein the at least one sensor is selected from the group consisting of an EMFi electric sensor, a PVDF electric sensor, a piezoelectric sensor, a capacitive sensor, a resistive sensor, an inductive sensor, and an eddy current sensor.",
    "12. The perforated sensor sheet of claim 10 wherein the at least one sensor has a thickness substantially the thickness of the at least two flat leads.",
    "13. A perforated roll for a fiber web machine, comprising: a cylindrical roll shell having an outer surface, wherein portions of the roll shell define a plurality of first holes of a first diameter which extend through the outer surface and the roll shell; a first flat lead having a first width extending along the outer surface of the roll shell which is greater than its thickness extending radially outward from the roll shell, wherein the first width is greater than the first diameter of the first holes, the first flat lead extending over the outer surface of the roll shell such that at least one of the plurality of first holes extends through the first flat lead; a second flat lead having a second width extending along the outer surface of the roll shell which is greater than its thickness extending radially outward from the roll shell, wherein the second width is greater than the first diameter of the first holes, the second flat lead alongside and spaced from the first flat lead and extending over the outer surface of the roll shell such that at least one of the plurality of first holes extends through the second flat lead; and one or more sensors which are connected to the roll shell and connected between the first flat lead and the second flat lead.",
    "14. The perforated roll of claim 13 further comprising: a pre-coating layer arranged on the outer surface of the roll shell, wherein the first flat lead, the second flat lead, and the sensor are fastened to the pre-coating layer; an insulation element disposed on the pre-coating layer and extending radially outwardly through a second hole in the first lead which communicates with one of the first holes; and an outer coating layer which overlies the pre-coating layer, the first flat lead, the second flat lead, the insulation element, and the one or more sensors.",
    "15. The perforated roll of claim 13 wherein the one or more sensors is selected from the group consisting of an EMFi electric sensor, a PVDF electric sensor, a piezoelectric sensor, a capacitive sensor, a resistive sensor, an inductive sensor, and an eddy current sensor."
  ],
  "description_excerpt": "Not applicable.\n\nThe invention relates to an arrangement in a perforated roll of a fiber web machine, which arrangement includes:\n\nThe invention also relates to a prefabricated sensor sheet for a perforated roll of a fiber web machine.\n\nIt is known that various nip measurements are performed for example in connection with service shutdowns on fiber web machines. In these, a temporary sensing system arranged because of the measurements is arranged on the surface of a roll, the measurement is performed, and the sensing system is removed. For example the so-called E-nip measurement technology represents prior art. It can be used for measuring the cross-sectional profile of the length of the nip in static conditions, but the measurement does not directly measure the cross-sectional distribution of the nip pressure or the MD distribution of the pressure. Moreover, one known measurement is Valmet Technologies, Inc.'s iRoll portable measurement, which can be used for measuring the cross-sectional profile of the nip pressure/force by means of a sensor installed temporarily on the surface of the roll.\n\nThe arrangement of a sensing system for example in the suction roll of a fiber web machine is known from European patent publication 1 719 836 B1. The sensing system includes a pair of leads embedded in the shell of the roll, to which pair of leads one or more sensors have been connected to determine various issues in the roll. The leads of the pair of leads are taken from between through holes arranged in the roll shell to the end of the roll and from there further to a processor.",
  "cpc": [
    "B65H 27/00",
    "D21F 1/36",
    "D21F 1/76",
    "D21F 3/00",
    "D21F 3/10",
    "D21F 3/105",
    "D21F 5/042",
    "D21G 9/00",
    "G01D 11/00",
    "G01K 13/04",
    "G01L 1/00",
    "G01L 5/00",
    "G01R 1/06",
    "G08C 19/00",
    "G12B 9/00",
    "H05K 7/02"
  ],
  "ipc": [
    "B65H 20/12",
    "B65H 27/00",
    "D21F 3/10"
  ],
  "assignees": [
    "Valmet Technologies Oy"
  ],
  "inventors": [
    "Kari Röyskö",
    "Heikki Kettunen",
    "Tatu Pitkänen"
  ],
  "filing_date": "2016-06-02",
  "publication_date": "2018-10-02",
  "grant_date": "2018-10-02",
  "priority_date": "2015-06-03",
  "application_number": "US-201615171767-A",
  "family_id": "57352448",
  "cited_by_count": 3,
  "citations": [
    "US4055077A",
    "US4051719A",
    "US6341522B1",
    "US20040053758A1",
    "EP1719836A1",
    "US20060248723A1"
  ]
}

Record 3,268 of 8,000 in Patents full text (MLC-0201). Request the full dataset.