JP2008105071A - Method and device for cutting thick steel plate - Google Patents

Method and device for cutting thick steel plate Download PDF

Info

Publication number
JP2008105071A
JP2008105071A JP2006291944A JP2006291944A JP2008105071A JP 2008105071 A JP2008105071 A JP 2008105071A JP 2006291944 A JP2006291944 A JP 2006291944A JP 2006291944 A JP2006291944 A JP 2006291944A JP 2008105071 A JP2008105071 A JP 2008105071A
Authority
JP
Japan
Prior art keywords
line
cutting
steel plate
thick steel
conveying
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP2006291944A
Other languages
Japanese (ja)
Inventor
Keitoku Yuge
佳徳 弓削
Yoshitaka Komiyama
義高 小見山
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
JFE Steel Corp
Original Assignee
JFE Steel Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by JFE Steel Corp filed Critical JFE Steel Corp
Priority to JP2006291944A priority Critical patent/JP2008105071A/en
Publication of JP2008105071A publication Critical patent/JP2008105071A/en
Pending legal-status Critical Current

Links

Images

Landscapes

  • Arc Welding In General (AREA)
  • Laser Beam Processing (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a method and a device for cutting a thick steel plate for performing the cutting work on a conveying line for connecting a rolling line to a shearing line or on a separate line. <P>SOLUTION: In a thick steel plate manufacturing line having a rolling line and a shearing line, and having a cutting device on a conveying line for conveying a thick steel plate after the rolling from the rolling line to the shearing line or on a separate line, the thick steel plate having the thickness which cannot be sheared by a shearing machine of the shearing line is cut to a predetermined dimension by the cutting device. The cutting device comprises a width distance meter using a non-contact type distance meter for cutting the thick steel plate in a conveying mode taking into consideration the dimension and the arrangement on the line of the thick steel plate, and a gas plasma or laser cutting machine which is movable in the XY direction of the line. Two sets of gas plasma or laser cutting machines are provided so as to cut the thick steel plate simultaneously in the longitudinal direction with the desired width. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本発明は、厚鋼板の切断方法及び切断装置に関し、特に、剪断装置で切断できない厚鋼板を切断するものに関する。   The present invention relates to a method and apparatus for cutting a thick steel plate, and more particularly to a material for cutting a thick steel plate that cannot be cut by a shearing device.

特許文献1は、厚鋼板の製造方法に関し、オンラインの剪断機で剪断出来ない厚鋼板(剪断荷重が剪断機能力を上回る鋼板)を所定の寸法に切断する場合、一旦、搬送ライン上からオフラインへ卸し、専用の架台上へ鋼板を配置しガス切断機やレーザ切断機により切断を行うことが記載されている。   Patent Document 1 relates to a method of manufacturing a thick steel plate. When a thick steel plate that cannot be sheared by an on-line shearing machine (a steel plate whose shear load exceeds the shearing functional force) is cut to a predetermined size, the conveyance line is once taken offline. It is described that a steel plate is placed on a dedicated pedestal and cut by a gas cutting machine or a laser cutting machine.

上記、記載の方法の場合、(1)搬送ライン上からオフラインへの卸しや、専用の架台上への鋼板配置のためクレーンによるハンドリングが多くて作業能率が低く、また、ハンドリング時に鋼板にキズが発生しやすい。   In the case of the above-mentioned method, (1) The work efficiency is low due to the large number of crane handling due to the off-line wholesale from the transfer line and the steel plate placement on the dedicated gantry, and the steel plate is scratched during handling. Likely to happen.

(2)所定の製品を切断し採取するため、人が直接罫書きを行ったり、ガスまたはレーザ切断に切断経路を記憶させる作業等が必要なため作業能率が低い。(3)切断完了後、再び架台上からクレーンで払出す作業が必要等の問題点が指摘されていた。   (2) Since a predetermined product is cut and collected, work efficiency is low because it is necessary for a person to make a rule or store a cutting path in gas or laser cutting. (3) After the completion of cutting, problems such as the need to pay out with a crane again from the gantry were pointed out.

ガス切断作業の作業能率を向上させるため、幾つかの提案がなされている。特許文献2は、鋼板のガス切断方法に関し、載置台上に載置された鋼板を切断予定線に沿ってガス切断する際、平面形状認識装置により、鋼板形状や載置台上の位置を検出し、切断予定線を決定し、ガス切断することが記載されている。   Several proposals have been made to improve the working efficiency of the gas cutting operation. Patent Document 2 relates to a gas cutting method for a steel plate, and when a steel plate placed on a mounting table is gas cut along a planned cutting line, the shape of the steel plate and the position on the mounting table are detected by a planar shape recognition device. It is described that a cutting line is determined and gas cutting is performed.

特許文献3は、複数本のトーチを備えた自動ガス切断機を用いて、厚鋼板から所定寸法の成品を能率的に採取する方法に関し、複数本を3本以上として、同時に複数の切断を行うことで、作業能率を向上させ、熱変形による品質低下を防止することが記載されている。
特開昭64−5619号公報 特開平1−95872号公報 特開平4−231175号公報
Patent Document 3 relates to a method for efficiently collecting a product of a predetermined size from a thick steel plate using an automatic gas cutting machine equipped with a plurality of torches, and performing a plurality of cuttings at the same time by setting the plurality to three or more. Thus, it is described that work efficiency is improved and quality deterioration due to thermal deformation is prevented.
JP-A 64-56619 JP-A-1-95887 JP-A-4-231175

しかしながら、上述したように、厚鋼板を搬送ライン上からオフラインし、ガス切断を行うことは種々の問題を生じ、また、特許文献2,3記載のガス切断方法によっても、これらは、厚鋼板は停止状態とし、ガス切断トーチを移動させて切断作業を行うため、オフラインによる次工程への搬入遅れを挽回するものではない。   However, as described above, taking a thick steel plate off-line from the conveying line and performing gas cutting causes various problems. Also, by the gas cutting methods described in Patent Documents 2 and 3, Since the cutting operation is performed by moving the gas cutting torch in the stopped state, the delay in carrying in to the next process due to offline is not recovered.

そこで、本発明は、剪断荷重がオンラインに配置した剪断機能力を上回り、オンラインで切断できなかった鋼板を搬送ライン上で切断することにより、厚鋼板の切断作業能率を向上させる厚鋼板の切断方法および装置を提供することを目的とする。   Therefore, the present invention provides a method for cutting a thick steel plate that improves the cutting work efficiency of the thick steel plate by cutting on the transport line the steel plate that has been sheared in excess of the shearing functional force arranged online and could not be cut online. And an object to provide an apparatus.

本発明の課題は以下の手段で達成可能である。
1.圧延ラインと剪断ラインを有し、圧延後の厚鋼板を圧延ラインから剪断ラインに搬送する搬送ライン上に切断装置を有する厚鋼板製造ラインにおいて、所定の寸法に厚鋼板を切断する切断方法であって、前記剪断ラインの剪断機で剪断できない板厚の厚鋼板は、前記切断装置で所定の寸法に切断することを特徴とする厚鋼板の切断方法。
2.前記切断装置は、切断機と当該切断機の上流側で、搬送ラインの左右で対向する位置に、搬送ラインを搬送中の厚鋼板までの距離を測定する非接触式距離計、搬送ラインの上方から前記厚鋼板の長さを測定する長さ計を有する計測装置を備え、
前記非接触式距離計は、搬送ラインを挟んで、対向する位置に一対として配置し、厚鋼板の全長を、少なくとも3個所で測定できるように、搬送方向に少なくとも三対が配置され、
前記少なくとも三対配置される距離計と前記長さ計は、切断機で厚鋼板を切断する前に、厚鋼板の形状と搬送ライン上での載置状態が計測可能なように配置され、
圧延ラインから搬送ラインに搬送され、搬送中の厚鋼板を切断する際は、前記少なくとも三対の非接触式距離計で得られる距離情報から幅形状と搬送ライン上における載置状態(回転、斜行)を求め、搬送を停止して、最初に、厚鋼板先端部から製品採取可能な位置においてC方向に、切断し、次に、搬送を開始して、搬送しつつ、製品寸法幅でL方向に切断し、最後に、搬送を停止して、厚鋼板後端部で製品採取可能な位置においてC方向に、切断することを特徴とする1記載の厚鋼板の切断方法。
3.圧延ラインと剪断ラインを結ぶ搬送ラインに設置される切断装置であって、以下の装置を備えていることを特徴とする厚鋼板の切断装置。
The object of the present invention can be achieved by the following means.
1. This is a cutting method that has a rolling line and a shear line, and cuts the thick steel sheet to a predetermined dimension in a thick steel sheet production line having a cutting device on a conveying line that conveys the rolled thick steel sheet from the rolling line to the shearing line. A thick steel plate having a thickness that cannot be sheared by a shearing machine in the shear line is cut into a predetermined size by the cutting device.
2. The cutting device is a non-contact type distance meter that measures the distance to the thick steel plate that is transporting the transport line at a position opposite to the left and right of the transport line on the upstream side of the cutting machine and the cutting machine, above the transport line Comprising a measuring device having a length meter for measuring the length of the thick steel plate from
The non-contact distance meter is disposed as a pair at opposing positions across the conveyance line, and at least three pairs are disposed in the conveyance direction so that the total length of the thick steel plate can be measured at at least three locations,
The distance meter and the length meter arranged in at least three pairs are arranged so that the shape of the thick steel plate and the mounting state on the conveying line can be measured before cutting the thick steel plate with a cutting machine,
When cutting a thick steel plate that is being transported from the rolling line to the transport line and is being transported, the width information and the mounting state on the transport line (rotation, oblique) are obtained from the distance information obtained by the at least three pairs of non-contact distance meters. Line), stop the conveyance, first cut in the C direction at the position where the product can be sampled from the tip of the thick steel plate, then start the conveyance, while conveying, the product dimension width L The method for cutting a thick steel plate according to 1, wherein the cutting is performed in the direction, and finally, the conveyance is stopped, and the product is cut in the C direction at a position where the product can be collected at the rear end of the thick steel plate.
3. A cutting apparatus for a thick steel plate, which is installed in a conveying line connecting a rolling line and a shearing line, and includes the following apparatuses.

(1)搬送ライン上を搬送中の鋼板の平面形状(幅、曲がり)、斜行量、回転を測定する計測装置
(2)(1)記載の計測装置の下流側に配置される、幅方向(搬送ラインセンターに対して直角方向)および長手方向(搬送ラインセンター方向)に位置制御可能なガスプラズマまたはレーザ切断機
(3)鋼板の長さ測定装置
(4)切屑処理装置
(5)ノロ除去装置
4.1または2で、切断装置が搬送ラインとは別に設けられたラインに設置されることを特徴とする厚鋼板の切断方法。
5.3で、切断装置が搬送ラインとは別に設けられたラインに設置されることを特徴とする厚鋼板の切断装置。
(1) A measuring device that measures the planar shape (width, bend), skew amount, and rotation of a steel plate being conveyed on the conveying line. (2) Width direction arranged on the downstream side of the measuring device described in (1) Gas plasma or laser cutting machine (3) Steel plate length measuring device (4) Chip treatment device (5) Noro removal (position perpendicular to the conveyance line center) and longitudinal direction (conveyance line center direction) A cutting method for a thick steel plate, characterized in that, in the apparatus 4.1 or 2, the cutting apparatus is installed on a line provided separately from the conveying line.
The thick steel plate cutting device according to 5.3, wherein the cutting device is installed in a line provided separately from the conveying line.

本発明によれば、鋼板搬送ライン上に平面形状測定装置、幅方向に位置制御が可能なガスプラズマまたはレーザ切断機、切断屑を処理する装置を配置し、オンラインで切断できなかった鋼板(剪断荷重が剪断機能力を上回る鋼板)を搬送ライン上で切断できるようにしたので切断作業能率が向上する。また、以下の作用効果が得られる。   According to the present invention, a planar shape measuring device, a gas plasma or laser cutting machine capable of position control in the width direction, and a device for processing cutting waste are arranged on a steel sheet conveying line, and a steel plate that cannot be cut online (shearing) The cutting work efficiency is improved because it is possible to cut a steel sheet whose load exceeds the shearing function force on the conveying line. Moreover, the following effects can be obtained.

(1)クレーンによるハンドリングが削減でき、ハンドリングキズの発生が防止される。   (1) Handling with a crane can be reduced and handling scratches can be prevented.

(2)切断中の鋼板の斜行、回転を複数の幅計測定結果よりリアルタイムに把握し、切断トーチの位置をコントロールするようにしているので精度よく切断することが出来る。   (2) Since the skew and rotation of the steel sheet being cut are grasped in real time from a plurality of width gauge measurement results, and the position of the cutting torch is controlled, cutting can be performed with high accuracy.

(3)切断トーチは、長手方向にも位置制御可能に構成されているので、搬送ライン上に進行方向から斜目に載置された鋼板の長手切断も精度良く行うことが可能で、製品の直角度も確保出来る。   (3) Since the cutting torch is configured to be position-controllable in the longitudinal direction, the longitudinal cutting of the steel plate placed obliquely from the advancing direction on the transport line can be performed with high accuracy. A perpendicularity can be secured.

(4)計測装置を鋼板の両サイドから板厚方向にスキャンして測定する方式とした場合、断面プロフィールも把握可能である。   (4) When the measuring device is configured to scan and measure from both sides of the steel plate in the plate thickness direction, the cross-sectional profile can also be grasped.

(5)そのため、鋼板の上下面または、厚さ中央部で圧延による伸び差によるずれが発生し、断面が斜め、凹型または凸型になっている場合でも、良品部より製品を採取することが出来る。   (5) Therefore, it is possible to collect a product from a non-defective part even when the difference in elongation due to rolling occurs in the upper and lower surfaces of the steel sheet or in the central part of the thickness and the cross section is oblique, concave or convex. I can do it.

本発明は、搬送ライン上または搬送ラインとは別に設けたライン上を搬送中の厚鋼板の形状とこれらいずれかのライン上における回転、斜行などの載置状況を求め、これらいずれかのライン上に配置した切断装置により所定の寸法に切断することを特徴とする。以下、切断装置を配置するラインを搬送ラインとして説明する。   The present invention obtains the shape of a thick steel plate being transported on a transport line or a line provided separately from the transport line, and the mounting status of rotation, skew, etc. on any of these lines. It cut | disconnects to a predetermined dimension with the cutting device arrange | positioned above. Hereinafter, the line in which the cutting device is arranged will be described as a conveyance line.

図1は、本発明に係る切断方法において搬送ラインに設置する切断装置の構成の一例を説明する図で、図において1は切断装置、2は架台、3は計測装置、4は搬送ローラ、5は厚鋼板(点線で図示)、7はノロ除去装置、8は切屑処理装置、9は切屑用ボックス、10は切屑、21は切断トーチ、31、32、33は距離計、34は長さ計を示す。   FIG. 1 is a diagram for explaining an example of the configuration of a cutting device installed on a conveying line in the cutting method according to the present invention. In the figure, 1 is a cutting device, 2 is a pedestal, 3 is a measuring device, 4 is a conveying roller, 5 Is a thick steel plate (shown by dotted lines), 7 is a slot removing device, 8 is a chip disposal device, 9 is a chip box, 10 is a chip, 21 is a cutting torch, 31, 32 and 33 are distance meters, and 34 is a length meter. Indicates.

切断装置1の切断手段は、切断トーチ21と切断トーチ21が取り付けられる架台2から構成され、切断トーチ21は厚鋼板を製品幅の左右の切断線で同時に切断可能なように2本とする。   The cutting means of the cutting device 1 is composed of a cutting torch 21 and a gantry 2 to which the cutting torch 21 is attached. The cutting torch 21 has two pieces so that a thick steel plate can be cut simultaneously with the cutting lines on the left and right of the product width.

夫々の切断トーチ21は、搬送ラインのラインセンターの方向(L方向)と当該ラインセンターに直交する方向(C方向)に移動可能に架台2に取り付ける。切断方法はガスプラズマ切断またはレーザ切断が望ましい。   Each cutting torch 21 is attached to the gantry 2 so as to be movable in a line center direction (L direction) of the transfer line and a direction (C direction) perpendicular to the line center. The cutting method is preferably gas plasma cutting or laser cutting.

切断トーチ21の上流側は、搬送ラインの左右で対向する位置に、距離計31,32,33と長さ計34を有する計測装置3を配置する。   On the upstream side of the cutting torch 21, a measuring device 3 having distance meters 31, 32, 33 and a length meter 34 is arranged at a position facing the left and right of the transport line.

距離計31,32,33は各設置位置から厚鋼板5までの距離を測定するもので、搬送ラインを挟んで、対向する位置に一対として配置し、厚鋼板5の全長を、少なくとも3個所で測定できるように、搬送方向に少なくとも三対を配置する。   The distance meters 31, 32, and 33 measure distances from the respective installation positions to the thick steel plate 5, and are arranged as a pair at opposing positions across the conveyance line, and the total length of the thick steel plate 5 is at least at three locations. At least three pairs are arranged in the transport direction so that measurement can be performed.

このような配置とすることにより、距離計31,32,33の距離情報から、厚鋼板5の、形状と搬送ローラ4上における載置状態(回転、斜行)を求めることが可能となる。   With this arrangement, it is possible to obtain the shape of the thick steel plate 5 and the mounting state (rotation, skew) of the thick steel plate 5 from the distance information of the distance meters 31, 32, 33.

距離計31,32,33を厚鋼板5の両サイドから板厚方向にスキャンして測定する方式とした場合、断面プロフィールも把握可能で、厚鋼板の上下面または、厚さ中央部で圧延による伸び差によるずれが発生し、断面が斜め、凹型または凸型になっている場合でも、良品部より製品を採取することが出来る。   When the distance meter 31, 32, 33 is configured to scan and measure from both sides of the thick steel plate 5 in the plate thickness direction, the cross-sectional profile can also be grasped, by rolling on the upper and lower surfaces of the thick steel plate or the central portion of the thickness. Even when the difference in elongation occurs and the cross section is oblique, concave or convex, the product can be collected from the non-defective part.

本発明では、距離計31,32,33は、搬送ローラ4上を、厚鋼板5が搬送中にその形状が測定可能なように非接触式距離計とする。   In the present invention, the distance meters 31, 32, 33 are non-contact distance meters so that the shape of the thick steel plate 5 can be measured while the thick steel plate 5 is being conveyed on the conveying roller 4.

搬送ローラ4の上方には、厚鋼板5の長さを測定する長さ計34を設置する。長さ計34は接触式、非接触式のいずれでも良い。   A length meter 34 for measuring the length of the thick steel plate 5 is installed above the transport roller 4. The length gauge 34 may be either a contact type or a non-contact type.

距離計31、32、33と長さ計34は、切断トーチ21で厚鋼板5を切断する前に、厚鋼板5の形状と搬送ローラ4上での載置状態が計測可能に切断トーチ21の上流側に配置されれば良く、本発明では具体的に規定しない。図2に上述した切断装置1の模式的な斜視外観図を示す。   The distance meters 31, 32, 33 and the length meter 34 can measure the shape of the thick steel plate 5 and the mounting state on the conveying roller 4 before cutting the thick steel plate 5 with the cutting torch 21. It suffices if it is arranged upstream, and is not specifically defined in the present invention. FIG. 2 shows a schematic perspective external view of the cutting apparatus 1 described above.

搬送ラインで、切断装置1の上流側には、ノロ除去装置7が配置され、切断前にノロを除去する。切断トーチ21による切屑10は切屑処理装置8で切屑用ボックス9に投入される。   In the transport line, a noro removal device 7 is arranged on the upstream side of the cutting device 1, and removes the noro before cutting. The chips 10 from the cutting torch 21 are put into the chip box 9 by the chip processing device 8.

尚、切断トーチ21で厚鋼板を切断する場合は、厚鋼板を移動させると斜行等が生じ、計測結果を反映することができない場合があるので、切断トーチ21を移動させる。そのため、前述したように切断トーチ21は架台2に移動可能に取り付けられる。   In addition, when cutting a thick steel plate with the cutting torch 21, if the thick steel plate is moved, skewing or the like may occur, and the measurement result may not be reflected. Therefore, the cutting torch 21 is moved. Therefore, the cutting torch 21 is movably attached to the gantry 2 as described above.

また、切断は、最後に配置された一対の距離計で、鋼板尾端が検知されたら開始するようにすると、切断精度が向上して望ましい。切断装置を搬送ラインに設けた場合、生産性が低下すると判断される場合は、搬送ラインとは別に設けたライン上に切断装置を設置する。   In addition, it is preferable that the cutting is started when the tail end of the steel plate is detected by the pair of distance meters arranged last, because the cutting accuracy is improved. When it is determined that productivity is reduced when the cutting device is provided on the transport line, the cutting device is installed on a line provided separately from the transport line.

次に、本発明に係る切断方法の切断手順を、厚鋼板5から製品6を切り出す場合について図4(a),(b),(c),(d)を用いて説明する。尚、図4において矢印は厚鋼板の搬送方向(L方向)を示す。
(1)厚鋼板5を搬送しながら長手方向の3箇所で距離計31,32,33により幅を測定する。厚鋼板5の先端部から製品採取可能な位置である、先端の切断線aを決定する(図4(a))。
(2)先端の切断線aを切断トーチ21の位置に合せて厚鋼板5の搬送を停止し、切断トーチ21をC方向に移動させて切断線aを切断する(図4(b))。
(3)次に、製品6の幅となる切断線bを決定する。切断トーチ21を切断線bの位置に移動させ、切断トーチ21を移動させながら幅切断を実施する。この際、厚鋼板5の長手方向3箇所で距離計31,32,33により測定された幅測定位置情報により厚鋼板5の搬送ライン上の載置状況である、回転、斜行を把握し、切断位置を適時補正する(図4(c))。
(4)最後に、厚鋼板5の後端部における製品6が採取可能な切断線cを切断トーチ21の位置に合せて厚鋼板5を停止させ、切断線cで切断することで製品6を得る(図4(d))。
図3に、上述した切断手順をフローチャート図を示す。
Next, the cutting procedure of the cutting method according to the present invention will be described with reference to FIGS. 4A, 4B, 4C, and 4D in the case where the product 6 is cut out from the thick steel plate 5. FIG. In addition, in FIG. 4, the arrow shows the conveyance direction (L direction) of a thick steel plate.
(1) While transporting the thick steel plate 5, the width is measured by the distance meters 31, 32, 33 at three locations in the longitudinal direction. A cutting line a at the tip, which is a position where the product can be collected from the tip of the thick steel plate 5, is determined (FIG. 4 (a)).
(2) The cutting line a at the tip is aligned with the position of the cutting torch 21, the conveyance of the thick steel plate 5 is stopped, and the cutting torch 21 is moved in the C direction to cut the cutting line a (FIG. 4B).
(3) Next, the cutting line b which becomes the width of the product 6 is determined. The cutting torch 21 is moved to the position of the cutting line b, and the width cutting is performed while moving the cutting torch 21. At this time, grasping the rotation and skew, which is the mounting state on the conveying line of the thick steel plate 5 from the width measurement position information measured by the distance meters 31, 32, 33 at three positions in the longitudinal direction of the thick steel plate 5, The cutting position is corrected timely (FIG. 4C).
(4) Finally, the cutting line c from which the product 6 can be collected at the rear end of the thick steel plate 5 is aligned with the position of the cutting torch 21, the thick steel plate 5 is stopped, and the product 6 is cut by the cutting line c. Is obtained (FIG. 4D).
FIG. 3 is a flowchart showing the cutting procedure described above.

本発明により、製品厚70mm、製品幅3000mm、製品長さ7000mmの製品6を、図5に示す圧延後の厚鋼板5から切断採取した例を示す。
1)鋼板5を切断装置まで搬送する途中で、搬送ラインに設置した複数の距離計31,32,33により幅形状を測定し、鋼板5の先端からl:154mmで製品6が採取可能と判定。
2)1)で決定した製品6の採取位置が切断機下になるように搬送し鋼板5を停止する。
3)鋼板5が停止した時点で、採取予定の製品6のセンタCと搬送ラインセンタCの角度差θを、複数の幅計31,32,33の測定結果より計算し、傾き2°と判定した。
4)2本の切断トーチ(図5では省略)でそれぞれ鋼板5の両サイドから幅方向に切断を開始。傾き補正のため長手位置34.9mm/幅1mの位置補正をしながら切断実施。幅切断時間7min。
5)先端切断屑処理。所要時間1min
6)2本の切断トーチを間隔W:3010mm(=切断幅)で切断開始位置に設定。
7)鋼板5の搬送開始。搬送速度240mm/min。
8)傾き補正のため幅方向位置34.9mm/長さ搬送1mの位置補正をしながら切断実施。今回鋼板の回転は無し。切断時間30min。
9)長さ搬送距離l:7015mm到達で搬送停止。
10)切断屑処理。所要時間1min。
11)幅方向に切断開始。傾き補正のため長手位置34.9mm/幅1mの位置補正をしながら切断実施。幅切断時間7min。
12)製品払出し。払出し後切断クズ処理。
以上の手順で、切断したところ、先端切断開始〜製品払出しまでの所要時間46minであった。
An example in which a product 6 having a product thickness of 70 mm, a product width of 3000 mm, and a product length of 7000 mm is cut and extracted from the rolled steel plate 5 shown in FIG.
1) During the conveyance of the steel plate 5 to the cutting device, the width shape is measured by a plurality of distance meters 31, 32, 33 installed in the conveyance line, and the product 6 can be collected at l 2 : 154 mm from the tip of the steel plate 5 Judgment.
2) The product 6 determined in 1) is transported so that the sampling position is below the cutting machine, and the steel plate 5 is stopped.
3) When the steel plate 5 stops, the angle difference θ between the center C 2 of the product 6 to be collected and the conveyance line center C 1 is calculated from the measurement results of the plurality of width gauges 31, 32, 33, and the inclination is 2 °. It was determined.
4) Start cutting in the width direction from both sides of the steel plate 5 with two cutting torches (not shown in FIG. 5). Cutting was performed while correcting the position of the longitudinal position 34.9 mm / width 1 m for tilt correction. Width cutting time 7 min.
5) Tip cutting waste treatment. Time required 1 min
6) Set two cutting torches at a cutting start position with a spacing W of 3010 mm (= cutting width).
7) The conveyance of the steel plate 5 is started. Conveying speed is 240 mm / min.
8) Cutting is performed while correcting the position of the width direction position 34.9 mm / length conveyance 1 m for inclination correction. There is no rotation of the steel plate this time. Cutting time 30 min.
9) Length conveyance distance l 1 : The conveyance stops when it reaches 7015 mm.
10) Cutting waste disposal. Required time 1 min.
11) Start cutting in the width direction. Cutting was performed while correcting the position of the longitudinal position 34.9 mm / width 1 m for tilt correction. Width cutting time 7 min.
12) Product delivery. Cutting scraps after paying out.
When cut by the above procedure, the time required from the start of cutting the tip to the delivery of the product was 46 min.

本発明に係る切断方法において搬送ラインに設置する切断装置の構成の一例を説明する図。The figure explaining an example of a structure of the cutting device installed in a conveyance line in the cutting method which concerns on this invention. 図1に示した切断装置の模式的な斜視外観図。The typical perspective appearance figure of the cutting device shown in FIG. 本発明に係る切断方法の切断手順を示す図。The figure which shows the cutting procedure of the cutting method which concerns on this invention. 本発明に係る切断方法の切断手順を説明する図で、(a)は幅長さの計測状況(b)は先端部幅方向の切断状況(c)は長手方向の切断状況(d)は後端部幅方向の切断状況を説明する図。It is a figure explaining the cutting | disconnection procedure of the cutting method which concerns on this invention, (a) is the measurement condition of a width length (b) is the cutting condition of the front-end | tip part width direction (c) is the cutting condition of a longitudinal direction (d) is back The figure explaining the cutting condition of an edge part width direction. 実施例Example

符号の説明Explanation of symbols

1 切断装置
2 架台
3 計測装置
4 搬送ローラ
5 厚鋼板(点線で図示)
6 製品
7 ノロ除去装置
8 切屑処理装置
9 切屑用ボックス
10 切屑
21 切断トーチ
31、32、33 距離計
34 長さ計
DESCRIPTION OF SYMBOLS 1 Cutting device 2 Base 3 Measuring device 4 Conveying roller 5 Thick steel plate (illustrated with dotted line)
6 Product 7 Noro removal device 8 Chip disposal device 9 Chip box 10 Chip 21 Cutting torch 31, 32, 33 Distance meter 34 Length meter

Claims (5)

圧延ラインと剪断ラインを有し、圧延後の厚鋼板を圧延ラインから剪断ラインに搬送する搬送ライン上に切断装置を有する厚鋼板製造ラインにおいて、所定の寸法に厚鋼板を切断する切断方法であって、前記剪断ラインの剪断機で剪断できない板厚の厚鋼板は、前記切断装置で所定の寸法に切断することを特徴とする厚鋼板の切断方法。   This is a cutting method that has a rolling line and a shear line, and cuts the thick steel sheet to a predetermined dimension in a thick steel sheet production line having a cutting device on a conveying line that conveys the rolled thick steel sheet from the rolling line to the shearing line. A thick steel plate having a thickness that cannot be sheared by a shearing machine in the shear line is cut into a predetermined size by the cutting device. 前記切断装置は、切断機と当該切断機の上流側で、搬送ラインの左右で対向する位置に、搬送ラインを搬送中の厚鋼板までの距離を測定する非接触式距離計、搬送ラインの上方から前記厚鋼板の長さを測定する長さ計を有する計測装置を備え、
前記非接触式距離計は、搬送ラインを挟んで、対向する位置に一対として配置し、厚鋼板の全長を、少なくとも3個所で測定できるように、搬送方向に少なくとも三対が配置され、
前記少なくとも三対配置される距離計と前記長さ計は、切断機で厚鋼板を切断する前に、厚鋼板の形状と搬送ライン上での載置状態が計測可能なように配置され、
圧延ラインから搬送ラインに搬送され、搬送中の厚鋼板を切断する際は、前記少なくとも三対の非接触式距離計で得られる距離情報から幅形状と搬送ライン上における載置状態(回転、斜行)を求め、搬送を停止して、最初に、厚鋼板先端部から製品採取可能な位置においてC方向に、切断し、次に、搬送を開始して、搬送しつつ、製品寸法幅でL方向に切断し、最後に、搬送を停止して、厚鋼板後端部で製品採取可能な位置においてC方向に、切断することを特徴とする請求項1記載の厚鋼板の切断方法。
The cutting device is a non-contact type distance meter that measures the distance to the thick steel plate that is transporting the transport line at a position opposite to the left and right of the transport line on the upstream side of the cutting machine and the cutting machine, above the transport line Comprising a measuring device having a length meter for measuring the length of the thick steel plate from
The non-contact distance meter is disposed as a pair at opposing positions across the conveyance line, and at least three pairs are disposed in the conveyance direction so that the total length of the thick steel plate can be measured at at least three locations,
The distance meter and the length meter arranged in at least three pairs are arranged so that the shape of the thick steel plate and the mounting state on the conveying line can be measured before cutting the thick steel plate with a cutting machine,
When cutting a thick steel plate that is being transported from the rolling line to the transport line and is being transported, the width information and the mounting state on the transport line (rotation, oblique) are obtained from the distance information obtained by the at least three pairs of non-contact distance meters. Line), stop the conveyance, first cut in the C direction at the position where the product can be sampled from the tip of the thick steel plate, then start the conveyance, while conveying, the product dimension width L The method for cutting a thick steel plate according to claim 1, characterized in that the cutting is performed in the direction, and finally, the conveyance is stopped and the product is cut in the C direction at a position where the product can be collected at the rear end of the thick steel plate.
圧延ラインと剪断ラインを結ぶ搬送ラインに設置される切断装置であって、以下の装置を備えていることを特徴とする厚鋼板の切断装置。
(1)搬送ライン上を搬送中の鋼板の平面形状(幅、曲がり)、斜行量、回転を測定する計測装置
(2)(1)記載の計測装置の下流側に配置される、幅方向(搬送ラインセンターに対して直角方向)および長手方向(搬送ラインセンター方向)に位置制御可能なガスプラズマまたはレーザ切断機
(3)鋼板の長さ測定装置
(4)切屑処理装置
(5)ノロ取り装置
A cutting apparatus for a thick steel plate, which is installed in a conveying line connecting a rolling line and a shearing line, and includes the following apparatuses.
(1) A measuring device that measures the planar shape (width, bend), skew amount, and rotation of a steel plate being conveyed on the conveying line. (2) Width direction arranged on the downstream side of the measuring device described in (1) Gas plasma or laser cutting machine (3) Steel plate length measuring device (4) Chip treatment device (5) Slot removal (position perpendicular to the transfer line center) and longitudinal direction (transfer line center direction) apparatus
請求項1または2で、切断装置が搬送ラインとは別に設けられたラインに設置されることを特徴とする厚鋼板の切断方法。   The method for cutting a thick steel plate according to claim 1 or 2, wherein the cutting device is installed on a line provided separately from the conveying line. 請求項3で、切断装置が搬送ラインとは別に設けられたラインに設置されることを特徴とする厚鋼板の切断装置。   The thick steel plate cutting device according to claim 3, wherein the cutting device is installed in a line provided separately from the conveying line.
JP2006291944A 2006-10-27 2006-10-27 Method and device for cutting thick steel plate Pending JP2008105071A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2006291944A JP2008105071A (en) 2006-10-27 2006-10-27 Method and device for cutting thick steel plate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2006291944A JP2008105071A (en) 2006-10-27 2006-10-27 Method and device for cutting thick steel plate

Publications (1)

Publication Number Publication Date
JP2008105071A true JP2008105071A (en) 2008-05-08

Family

ID=39438869

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2006291944A Pending JP2008105071A (en) 2006-10-27 2006-10-27 Method and device for cutting thick steel plate

Country Status (1)

Country Link
JP (1) JP2008105071A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011085410A (en) * 2009-10-13 2011-04-28 Nippon Steel Corp Device and method for detecting edge, and program
JP2015525685A (en) * 2013-04-28 2015-09-07 宝山鋼鉄股▲分▼有限公司 Method and system for combined shearing of steel plates
CN114029544A (en) * 2021-11-09 2022-02-11 广东韶钢松山股份有限公司 Anti-locking device and method for fixed-length shear conveying chain

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011085410A (en) * 2009-10-13 2011-04-28 Nippon Steel Corp Device and method for detecting edge, and program
JP2015525685A (en) * 2013-04-28 2015-09-07 宝山鋼鉄股▲分▼有限公司 Method and system for combined shearing of steel plates
CN114029544A (en) * 2021-11-09 2022-02-11 广东韶钢松山股份有限公司 Anti-locking device and method for fixed-length shear conveying chain
CN114029544B (en) * 2021-11-09 2023-05-16 广东韶钢松山股份有限公司 Anti-jamming device and method for conveying chain of fixed-length scissors

Similar Documents

Publication Publication Date Title
EP3015193B1 (en) Method for cutting and removing deposit on edge of continuously cast slab metal material and removal device
CN104551417A (en) Laser cutter and flexible material roll cutting method
JP2008105071A (en) Method and device for cutting thick steel plate
CN114406352A (en) Online sizing and segmenting device and method for hot-rolled bar
JP2004314176A (en) Continuously cast rod of aluminum alloy, and method and equipment for producing the rod
JP4907467B2 (en) Grinding method of slab, slab for hot rolling, and manufacturing method of steel plate using them
JP2011083824A (en) Aligning device, rolling mill and rolling method for material to be worked having rectangular contour
TW201233647A (en) Device for detecting conveyance amount of plate-shaped object, device for cutting plate-shaped object, method for detecting conveyance amount of plate-shaped object, device for forming cutting lines on plate-shaped object, and method for forming cutt
JP2006281357A (en) Aligning method of steel plate
CN107249815A (en) The conveying device of machining long workpieces
JP4816090B2 (en) Metal plate manufacturing method and manufacturing apparatus thereof
JP4619699B2 (en) Paper processing equipment
JP4809885B2 (en) Aluminum alloy continuous cast bar manufacturing method and aluminum alloy continuous cast bar manufacturing equipment
JP2007125581A (en) Defect marking and defect removing method for steel sheet and device therefor
JP6090227B2 (en) Waste removal apparatus and waste removal method
JP2008264986A (en) Grinding method and grinder of slab
JPH0234264B2 (en)
JP2008100260A (en) Method of continuously straightening steel sheet
JP5194507B2 (en) Thick steel plate end shear and thick steel plate shearing method
CN216882056U (en) Online sizing and segmenting device for hot-rolled bar
TWI663009B (en) Band-shaped metal material, longitudinal cutting method and meandering measurement method of band-shaped material
JP2018103207A (en) Shear facility for thick steel plate, manufacturing method for thick steel plate and shear method for thick steel plate
JP3739301B2 (en) Laminar wood cutting method and system for laminated timber
JP4236518B2 (en) Plate material refining method and refining device
JP2006123095A (en) Shearing method for thick steel plate