CONVEYANCE ROLLER FOR HEATING FURNACE
20210061575 ยท 2021-03-04
Assignee
Inventors
- Hirotoshi UEDA (Nagoya-shi, JP)
- Kiyotaka SUZUKI (Nagoya-shi, JP)
- Takeyuki KANDA (Nagoya-shi, JP)
- Shigehito YAMAMOTO (Nagoya-shi, JP)
Cpc classification
B65H5/06
PERFORMING OPERATIONS; TRANSPORTING
F27B9/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65H5/066
PERFORMING OPERATIONS; TRANSPORTING
B65G39/02
PERFORMING OPERATIONS; TRANSPORTING
F27D3/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
C21D1/00
CHEMISTRY; METALLURGY
F27B9/2407
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B65H5/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A conveyance roller for a heating furnace includes: a roller body constituted by a metal tube made of a heat-resistant alloy; at least one holding protrusion provided on an outer circumferential surface of the roller body for holding an object to be heated in the heating furnace, and protruding from the outer circumferential surface of the roller body in a plurality of positions at a given interval in a longitudinal direction of the roller body; and at least one shielding member provided to be adjacent to the at least one the holding protrusion in the longitudinal direction, and covering the outer circumferential surface of the roller body. The at least one shielding member has a thickness not larger than a height of the holding protrusion from the outer circumferential surface of the roller body.
Claims
1. A conveyance roller for a heating furnace, the conveyance roller having an elongated shape, and configured to hold and convey an object to be heated in the heating furnace, with a longitudinally intermediate portion of the conveyance roller being positioned inside the heating furnace and with opposite end portions of the conveyance roller being supported outside the heating furnace, the conveyance roller comprising: a roller body constituted by a metal tube made of a heat-resistant alloy; at least one holding protrusion made of a heat-resistant alloy and provided on an outer circumferential surface of the roller body for holding the object, the at least one holding protrusion protruding from the outer circumferential surface of the roller body in a plurality of positions at a given interval in a longitudinal direction of the roller body; and at least one shielding member provided to be adjacent to the at least one holding protrusion in the longitudinal direction, and covering the outer circumferential surface of the roller body, the at least one shielding member having a thickness not larger than a height of the at least one holding protrusion from the outer circumferential surface of the roller body.
2. The conveyance roller according to claim 1, wherein the at least one holding protrusion consists of a plurality of holding protrusions that are constituted by a plurality of annular-shaped members welded on the outer circumferential surface of the roller body in the plurality of positions at the given interval in the longitudinal direction of the roller body, wherein each of the annular members is constituted by one of an annular-shaped wire and an annular-shaped built-up welded member that are made of a heat-resistant alloy, and wherein the at least one shielding member consists of a plurality of shielding member each of which is provided between corresponding adjacent two of the holding protrusions that are adjacent to each other in the longitudinal direction.
3. The conveyance roller according to claim 1, wherein the at least one holding protrusion consists of a single holding protrusion that is constituted by a single helical-shaped member helically welded on the outer circumferential surface of the roller body, wherein the single helical-shaped member is constituted by one of a helical-shaped wire and a helical-shaped overlay-welding material that are made of a heat-resistant alloy, and wherein the at least one shielding member consists of a single shielding member which is helically provided on the outer circumferential surface of the roller body and which is adjacent to the single holding protrusion in the longitudinal direction.
4. The conveyance roller according to claim 1, wherein the at least one holding protrusion consists of a plurality of holding protrusions, wherein the at least one shielding member consists of a plurality of shielding members each of which is constituted by a short tube made of a heat-resistant alloy and having the thickness not larger than the height of the holding protrusion from the outer circumferential surface of the roller body, such that each one or each two of the plurality of shielding member are provided between corresponding adjacent two of the holding protrusions that are adjacent to each other in the longitudinal direction, and are fitted on the outer circumferential surface of the roller body with a given amount of play.
5. The conveyance roller according to claim 1, wherein the at least one holding protrusion consists of a plurality of holding protrusions, wherein the at least one shielding member consists of a plurality of shielding members each of which is constituted by a heat-insulating material member having the thickness not larger than the height of the holding protrusion from the outer circumferential surface of the roller body, such that the heat-insulating material member is wound between corresponding adjacent two of the holding protrusions that are adjacent to each other in the longitudinal direction, and covers the outer circumferential surface of the roller body.
6. The conveyance roller according to claim 3, wherein the single shielding member is constituted by a heat-insulating material member having the thickness not larger than the height of the single holding protrusion from the outer circumferential surface of the roller body, such that the heat-insulating material member is wound adjacent to the helical-shaped wire or the helical-shaped built-up welded member and covers the outer circumferential surface of the roller body.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
MODES FOR CARRYING OUT THE INVENTION
[0033] In an embodied form of the present invention, the outer circumferential surface of the roller body made of the heat-resistant alloy is coated with a film of a ceramics such as oxide, nitride and carbide, wherein the coating material is caused to adhere onto the outer circumferential surface of the roller body by using a method such as thermal spraying, sputtering and vapor deposition. It is therefore possible to increase a durability of an outer tubular member and to prevent dirt and adhesion of a metal oxide to an object to be heated.
[0034] Further, in an embodied form of the present invention, the roller body made of the heat-resistant alloy, the plurality of annular-shaped wires made of the heat-resistant alloy, the single helical-shaped wire and a cylindrical-shaped member made of a heat-resistant alloy and constituting the short tube may be constituted by, for example, a heat-resistant alloy such as a metallic material having a heat resistance and a corrosion resistance, wherein the metallic material may be a stainless steel such as SUS310S, a molybdenum steel, a chromium molybdenum steel, a ferritic heat-resistant steel, a nickel-based alloy or a cobalt alloy.
[0035] Hereinafter, there will be described embodiments of heat-furnace conveyance rollers used for a heating furnace for heating an object to be heated, in detail with reference to the drawings.
Embodiment 1
[0036]
[0037] The furnace body 18 of the intermittent-conveyance type steel-sheet heating furnace 12 has a plurality of pairs of through-holes 38 provided in vertically central portions of respective opposite side walls of the furnace body 18 so as to be formed through the opposite side walls of the furnace body 18 for thereby communicating the furnace chamber 26 and an outside of the furnace body 18, such that each of the conveyance rollers 10 passes through a corresponding one of the pairs of through-holes 38. The pairs of through-holes 38 are parallel to each other, and are spaced apart from each other at a given interval in the longitudinal direction of the furnace body 18. Each of the pairs of through-holes 38 are coaxial with each other, and each of the through-holes 38 has a substantially circular-shaped cross section. The furnace body 18 further has a plurality of pairs of through-holes 40 located on an upper side of at least the pairs of through-holes 38 so as to be formed through the opposite side walls of the furnace body 18 for thereby communicating the furnace chamber 26 and the outside of the furnace body 18, in the same conditions as the pairs of through-holes 38, such that each of the heaters 24 passes through a corresponding one of the pairs of through-holes 40. Each of the through-holes 40 has a substantially circular-shaped cross section.
[0038] As shown in detail in
[0039] The steel sheet 20, which has been conveyed from, for example, the punching step in which the high-tensile steel sheet was punched by the pressing machine, to the entrance 28 of the furnace chamber 26 of the intermittent-conveyance type steel-sheet heating furnace 12 by one of the conveyors 36, is conveyed into the furnace chamber 26 through the entrance 28 in which the shutter is opened, and then is subjected to the heat treatment in which the steel sheet 20 is heated to about 900 C.-1000 C. while being held and conveyed in an intermittent manner with a given cycle toward the exit by the conveyance rollers 10 inside the furnace chamber 26 in which the temperature is raised to a high degree by the heaters 24. When the heat treatment applied to the steel sheet 20 is completed with the steel sheet 20 having been conveyed to a vicinity of the exit 30 of the furnace chamber 26, the steel sheet 20 is intermittently conveyed out of the furnace body 18 through the exit 30 in which the shutter is opened. The steel sheet 20, which has been conveyed out of the furnace body 18, is conveyed by the conveyors 36 to a next step, e.g., a pressing step.
[0040] As shown in
[0041] The conveyance-roller supporting device 22 includes: support columns 42 provided to stand in positions adjacent to the opposite side walls of the furnace body 18; elongated members 44 each of which is supported by the support columns 42 and horizontally extends in parallel to a corresponding one of the opposite side walls of the furnace body 18; elongated-shaped support plates 46 each of which is fixedly fitted in a recessed portion that is downwardly recessed in an upper end surface of a longitudinally intermediate portion (that is other than longitudinally opposite end portions) of a corresponding one of the elongated members 44; a plurality of pairs of ball bearings 48 that are fitted in respective positions that are located in a vicinity of a central portion of each of the support plates 46 in a width direction of the support plate 46, such that each of the positions corresponds to an extension of a line connecting the corresponding one of the plurality of pairs of through-holes 38; and a pair of elongated-shaped support shafts 50 each of which is rotatably supported by the ball bearings 48 in a cantilever manner.
[0042] Each of the conveyance rollers 10 is rotatably supported by the pair of elongated-shaped support shafts 50, with cylindrical-shaped distal end portions 52 of the respective support shafts 50 being axially introduced and fitted in the respective opposite end portions of the cylindrical-shaped conveyance roller 10. In one of the opposite end portions of each conveyance roller 10, a pin 56 is inserted in a pin receiving hole 54 (see
[0043] Thus, each of the conveyance rollers 10, which is supported by the conveyance-roller supporting device 22 through the support shafts 50 and is rotatable about the axes of the support shafts 50, is to be driven and rotated by the roller driving motor through the chain 66 and one of the support shafts 50 on the side of the above-described one of the opposite end portions of the conveyance roller 10, whereby the steel sheet 20 placed on the conveyance roller 10 is conveyed.
[0044]
[0045] In
[0046] The holding protrusions 70 are constituted by a plurality of annular-shaped wires each of which is made of a heat-resistant alloy and has a circular or rectangular cross sectional shape with a diameter or thickness of about 1.6 mm , for example. The holding protrusions 70 are welded on the outer circumferential surface of the roller body 68 in the plurality of positions at the given interval in the longitudinal direction of the roller body 68. That is, the height h of the holding protrusions 70 from the outer circumferential surface of the roller body 68 is about 1.6 mm, for example. However, the height h is not limited to this particular value.
[0047] Each of the shielding members 72 is constituted by a short tube made of a heat-resistant alloy and having the thickness t of 1.6 mm, for example, which is not larger or smaller than the height h of the holding protrusion 70 from the outer circumferential surface of the roller body 68, such that the short tube is provided between the holding protrusions 70 and is fitted on the outer circumferential surface of the roller body 68 with a given amount of play. The shielding members 72 may be provided on the outer circumferential surface of the roller body 68, such that the single short tube is disposed between each adjacent two of the holding protrusions 70, as shown in
[0048] [Conveyance Test]
[0049] The inventors of the present invention and their collaborators conducted an accelerated conveyance test, by experimentally preparing conveyance rollers of embodiments of the invention, each of which is equivalent to the conveyance roller 10 of
[0050] In the above-described conveyance tests, in the conveyance rollers of the comparative examples 1 and 2, there were occurred local deformations in which protrusions are circumferentially formed on surfaces of the conveyance rollers when the conveyance time has reached 36 hours, as shown in
[0051] As described above, according to the conveyance roller 10 of the present embodiment, the steel sheet 20 to be heated is conveyed while being held exclusively by the holding protrusions 70 made of the heat-resistant alloy and provided on the outer circumferential surface of the roller body 68, wherein the holding protrusions 70 protrude from the outer circumferential surface of the roller body 68 in the plurality of positions at the given interval in the longitudinal direction of the roller body 68, and have the height larger than the shielding members 72. In this instance, the holding protrusions 70 made of the heat-resistant alloy are in contact at small contact areas with the cold steel sheet 20 so that heat transmission from the roller body 68 having a high temperature to the steel sheet 20 is small, and heat radiation from the roller body 68 having the high temperature is shielded by the shielding members 72 provided between the holding protrusions 70 whereby rapid cooling of the roller body 68 is suppressed, so that local deformations of the outer circumferential surface of the roller body 68 are suppressed. Thus, since the local deformations of the outer circumferential surface of the roller body 68 are suppressed, the holding protrusions 70 is are deformed and obstacle to the conveyance of the steel sheet 20 is cleared. Particularly, where the conveyance roller 10 is used in an intermittent conveyance in which the conveyance roller 10 having the high temperature holds the cold steel sheet 20 with its rotation being stopped for a rotation stop time, as in the present embodiment, the cold steel sheet 20 is avoided from being brought into direct contact with the outer circumferential surface of the roller body 68, and the radiative cooling from the roller body 68 having the high temperature is suppressed by the shielding members 72 that are interposed between the cold steel sheet 20 and the roller body 68, so that it is possible to advantageously suppress the local deformations of the outer circumferential surface of the roller body 68 which are successions of bulges in its circumferential direction.
[0052] Further, according to the conveyance roller 10 of the present embodiment, the holding protrusions 70 are constituted by the plurality of annular-shaped wires which are made of the heat-resistant alloy and which are welded on the outer circumferential surface of the roller body 68 in the plurality of positions at the given interval in the longitudinal direction of the roller body 68. Owing to this arrangement, the steel sheet 20 to be heated is held by the roller body 68 exclusively through the plurality of annular-shaped wires, whereby the glowing steel sheet 20 is avoided from being brought into direct contact with the outer circumferential surface of the roller body 68, so that it is possible to suppress the deformations of the outer circumferential surface of the roller body 68.
[0053] Further, according to the conveyance roller 10 of the present embodiment, the shielding members 72 are constituted by short tubes made of the heat-resistant alloy and having the thickness not larger than the height h of the holding protrusions 70 from the outer circumferential surface of the roller body 68, such that each one or each two of the short tubes are provided between corresponding adjacent two of the annular-shaped wires and are fitted on the outer circumferential surface of the roller body 68 with a given amount of play. In this arrangement, each of the short tubes can be easily formed by cutting a tube having certain dimensions, i.e., a thickness that is not larger than the height h of the holding protrusions 70 from the outer circumferential surface of the roller body 68 and an inside diameter that is larger than the outside diameter of the roller body 68.
[0054] There will be next described other embodiments of this invention. The same reference signs as used in the above-described embodiment will be used in the following embodiments, to identify the substantially corresponding elements, and detailed descriptions thereof are not provided.
Embodiment 2
[0055]
[0056] According to the conveyance roller 110 of the present embodiment, each of the shielding members 172 is constituted by the heat-insulating material member having the thickness not larger than the height h of the holding protrusions 70 from the outer circumferential surface of the roller body 68, such that the heat-insulating material member is wound between the annular-shaped wires and covers the outer circumferential surface of the roller body 68. In this arrangement, each of the shielding members 172 can be easily formed by winding a strip-shaped heat-insulating material member woven from a fiber of heat-insulating material such as a ceramic fiber like fused silica and alumina, by at least one round, and sewing ends of the strip-shaped heat-insulating material member together.
Embodiment 3
[0057]
[0058] According to the conveyance roller 210 of the present embodiment, the holding protrusion 270 is constituted by the single helical-shaped wire made of the heat-resistant alloy and which is helically welded on the outer circumferential surface of the roller body 68. Owing to this arrangement, the steel sheet 20 is held by the roller body 68 exclusively through the single helical-shaped wire, whereby the glowing steel sheet 20 is avoided from being brought into direct contact with the outer circumferential surface of the roller body 68, so that it is possible to suppress the deformations of the outer circumferential surface of the roller body 68. Further, since the helical-shaped wire is constituted by a single heat-resistant metallic wire that is continuously welded on the outer circumferential surface of the roller body 68, the conveyance roller 210 can be manufactured easier as compared with an arrangement in which the plurality of annular-shaped wires are constituted.
Embodiment 4
[0059]
[0060] While the invention has been described in detail with reference to the tables and drawings, it is to be understood that the invention may be embodied also in other forms and that various modifications may be added within a range without departing from the spirit of the invention.
[0061] For example, the conveyance rollers 10, 110, 210, 310 according to the above-described embodiments are used for the intermittent-conveyance type steel-sheet heating furnace 12. However, these conveyance rollers 10, 110, 210, 310 may be applied to any one of the other types of heating furnaces such as batch-type steel-sheet heating furnace and continuous-type steel-sheet heating furnace.
[0062] Further, in the above-described embodiments, each of the holding protrusions 70, 270, 370 is constituted by the wire made of the heat-resistant alloy that is continuously welded in an annular manner or a helical manner. However, the wire may be discontinuously welded. Further, in place of the wire, protrusions such as rivets and pins may be successively arranged in a circumferential direction or a helical direction.
[0063] Further, in the above-described embodiments, each of the shielding members 72, 172, 272 is constituted by the short tube made of the heat-resistant alloy, the strip-shaped heat-insulating material member or the strip-shaped heat-insulating material member woven from the fiber of heat-insulating material such as the ceramic fiber like fused silica and alumina. However, each of the shielding members 72, 172, 272 may be constituted by a short tube made of a ceramic.
[0064] Further, in the above-described embodiments, the steel sheet 20 is used as the object to be heated. However, for example, a cuboid-shaped steel billet or a sintered alloy part may be used as the object to be heated.
[0065] Further, in the above-described embodiment of
[0066] It is to be understood that what have been described above are merely the embodiments of the present invention, and that the present invention may be embodied with various modifications in a range without departing from the spirit of the invention.
DESCRIPTION OF REFERENCE SIGNS
[0067] 10, 110, 210, 310: conveyance roller (conveyance roller for heating furnace) 12: intermittent-conveyance type steel-sheet heating furnace (heating furnace) 20: steel sheet 68: roller body 70, 270, 370: holding protrusion 72, 172, 272: shielding member