The present invention relates to devices and methods for handling a cast product, in particular for lifting a cast product in a casting equipment after a direct chill casting process, e.g. to lift the cast product out of the casting pit for further processing.
In the production of metal, cast objects in various formats are produced, for example sheet ingots that are used to produce flat metal products by hot rolling and cold rolling and billets that are used to produce extruded products with different cross-sections and designs by an extrusion process.
Both sheet ingots and billets may be produced by semi-continuous casting equipment that may comprise a large number of chills arranged in lines and rows in a frame structure. Liquid metal is led to the chills via a metal manifold through a hot-top from above into a cavity of each chill. The metal is cooled and solidified in two stages. The first stage is called primary cooling, in which the initial solidification of the metal is achieved via cooling through the wall of the cavity in the chill. The second stage is called secondary cooling, in which water immediately below the primary cooling area is sprayed directly against the metal via a water gap or holes along the circumference of the chill. The casting equipment may be placed over a casting pit with a depth corresponding to the length of the products to be cast plus the structural height of a mobile support. A total depth of such a casting pit may be in the order of 10-11 meters. The mobile support or starter block under the chills is moved downwards as the metal solidifies in order to create the longitudinal cast product which may have for example a diameter between 150 and 400 mm, depending on the intended use of the cast product, i.e. whether it is intended for a subsequent rolling process or extrusion process. A casting equipment of the mentioned type is also referred to as a “direct chill (DC) casting equipment” and is e.g. described in European Patent EP1648635B1, the whole content of which is incorporated herein by this reference. However, the methods and devices according to the present invention may be used with any casting equipment.
For subsequent production steps, the cast product needs to be removed from the casting pit. To achieve this, the casting equipment may be lifted, pivoted or removed in some other way from the opening of the casting pit so that the cast products are exposed and can be removed from the casting pit.
This removal is conventionally performed using an overhead crane (bridge crane) with a spreader that is provided with a number of rings, each of which is connected to the spreader with a wire. Each of the rings is threaded manually down onto the end of a billet and, by lifting the spreader and thus pulling on each wire, each ring is pulled obliquely so that, by squeezing, it retains the billet onto which it is threaded and can lift the billet. In each lifting operation, a row of billets is normally lifted right out of the pit at once and then laid horizontally on a transport device, normally a roller conveyor, for transport to a store or further treatment/processing. The lifting operation in which the billets are lifted right out of the casting pit means that the fall height for the billets is high in the event of an accident. This, along with the fact that the billets are handled manually, entails a high risk for the operators who perform the work and a risk of serious injury to them.
Alternatively, the exposed cast product may be removed from the casting pit using a dolly as described e.g. in U.S. Pat. No. 8,800,636B2. However, the technology described in this document requires a large floor space in a cast house due to the need for a ramp leading into the casting pit. Said large floor space is not available in all cast houses so that retrofitting the technology is not possible and also may increase building cost in case of a newly built “green field” cast house.
It is therefore desirable to have more efficient devices and methods to remove a cast product from a casting pit.
The present invention is directed to solving or mitigating the problems mentioned above and provides more efficient devices and methods to remove a cast product from a casting pit.
According to an embodiment, the invention may provide a device for lifting (herein also referred to as “lifting device” or “device”) a longitudinal cast product upwards, e.g. to remove it from a casting pit, wherein the cast product is arranged in the casting pit such that a longitudinal axis of the cast product is arranged in a vertical direction, the device comprising a support structure that is, optionally permanently, fixed to a ground, in particular a floor of a casting facility such as a cast house, surrounding the casting pit, a lifting structure that has an end (e.g. a proximal end) that is rotatably or pivotably connected to the support structure via a support bearing, a head that is, optionally rotatably, connected to the lifting structure (e.g. at a distal end of the lifting structure) and that can selectively attach to the cast product, wherein a lifting distance is defined between the support bearing and the head, wherein the device is configured such that in order to lift the cast product from the casting pit, the lifting structure is rotated in a first direction around the support bearing to come into contact with the cast product in the casting pit, the head is selectively attached to the cast product, and the arm is rotated in a second, opposite direction around the support bearing while the head is attached to the cast product to lift the cast product out of the casting pit.
According to a further embodiment, the lifting structure may comprise a first and a second longitudinal lifting arm, wherein the first lifting arm and the second lifting arm may each be rotatably connected to the support structure via a respective support bearing, and wherein the head may be arranged transversely with respect to the first and second lifting arm and may be connected to the first and the second lifting arm.
According to a further embodiment, the lifting structure may comprise means to adjust the lifting distance.
According to a further embodiment, the means to adjust the lifting distance may be implemented by at least one axially adjustable bearing, in particular an axially adjustable telescopic bearing.
According to a further embodiment, the means to adjust the lifting distance may be implemented by at least one joint that divides/articulates the lifting structure into segments that are movable, e.g. rotatable, relative to each other, wherein the first and the second lifting arm may each comprise at least one joint that divides/articulates the respective lifting arm into segments that are movable relative to each other.
According to a further embodiment, the lifting structure may comprise at least one actuator, optionally a hydraulic actuator.
According to a further embodiment, the head may be configured such that it can selectively attach to more than one cast product simultaneously.
According to a further embodiment, a plurality of cast products may be arranged in the casting pit in rows transverse to a direction of the lifting distance and in columns parallel to the direction of the lifting distance such as to form a matrix arrangement, wherein the head may configured to attach to all cast products of one of the rows simultaneously, and wherein a row from the matrix arrangement may be selected by adjusting the lifting distance such that all cast products can be lifted from the casting pits in a number of lifting operations that corresponds to the number of rows in the matrix arrangement.
According to a further embodiment, the device may comprise means for rotating the cast products from a vertical direction into a horizontal direction, for example to place the cast products on a conventional lay down station in a cast house.
According to a further embodiment, the lifting structure may be configured such that a vertical movement of the head and a horizontal movement of the head can be controlled independently from each other. The control may be simultaneous for the vertical and the horizontal movement.
According to an embodiment, the invention provides a method for lifting longitudinal cast products from a casting pit, wherein the cast products are arranged in rows and columns forming a matrix arrangement in the casting pit, and wherein a longitudinal direction of the cast products in the casting pit is vertical, the method comprising determining a row of cast products that is to be lifted out of the casting pit, determining a distance between a stationary part, in particular a support structure, of a lifting device and the row of cast products to be lifted out of the casting pit, adjusting a lifting distance of the lifting device based on the determining the distance, rotating a lifting structure of the lifting device in a first direction about the stationary part such that a head of the lifting device is moved towards the row of cast products, attaching the head to the cast products of the determined row of cast products, rotating the lifting structure in a second, opposite direction with the cast products attached to the head such as to lift the cast products out of the casting pit, and rotating the cast products from the vertical direction into a horizontal direction. According to embodiments, a row of cast products as described herein may comprise only one cast product or may comprise more than one cast product.
Further embodiments of the invention are shown in the figures and described in the specification.
The device 1 may further comprise a lifting structure 30. The lifting structure 30 may have an end (proximal end) 35 that may be rotatably connected to the support structure 20. The proximal end 35 may be connected to the support structure 20 via a support bearing 40. The support bearing 40 may for example be implemented by a ball bearing or any other bearing that allows a relative rotation between the support structure 20 and the lifting structure 30. The rotational movement between the support structure 20 and the lifting structure 30 that is enabled by the support bearing 40 is indicated in
The head 45 may for example be implemented as a gripper or a tong or may comprise a vacuum system or a clamping mechanism or a combination of those. If the cast product 10 is magnetic (for example if it comprises sufficient levels of iron, nickel or cobalt), the head 45 may also be implemented as an electric magnet.
To lift the cast product 10 up, e.g. to remove it from the casting pit 15, the lifting structure 30 may be rotated in a first direction (in
The head 45 may be designed such that the cast product 10, when it is attached to the head 45, has a lateral/transverse distance from the lifting structure 30 so as to enable a rotation of the lifting structure 30 about the support bearing 40 without an interference between the lifting structure 30 and the cast product 10 that is attached to the head 45.
According to an embodiment and with reference to
The device 1 for lifting may be configured such that the lifting distance L is adjustable. According to an embodiment, the lifting structure 30 may comprise means 50 to adjust the lifting distance L. The means 50 to adjust the lifting distance L may for example be implemented via at least one bearing, for example an axially adjustable bearing, in particular an axially adjustable telescopic bearing, that separates the lifting structure 30 into two segments 30a, 30b that are moveable with respect to each other. In embodiments in which the lifting structure 30 is implemented via the two lifting arms 31, 32, each of the lifting arms 31, 32 may be provided with a means 50 to adjust the lifting distance L.
Further in this respect,
The head 45 may be freely rotatable so that its orientation is determined by weight and gravity, or an actuator may be provided that allows to rotate the head 45 independently of weight and gravity in a controlled manner with respect to the lifting structure 30.
The lifting structure 30 is in addition rotatable with respect to the support structure 20 via the support bearing 40. In the embodiment shown in
Further with respect to
Based on the determined distance, a lifting distance L of the lifting device 1 is adjusted. The method further comprises rotating the lifting structure 30 of the lifting device 1 in a first direction about/around the stationary part 20 (e.g. by rotation around the support bearing 40 and/or the means 50 to adjust the lifting distance L) such that the head 45 of the lifting device 1 is moved towards the selected row of cast products 10.
The lifting distance L is adjusted so that the head 45 of the lifting device 1 can come into contact with the selected row of cast products 10 to be lifted out of the casting pit 15. The adjusting of the lifting distance L can take place during the lifting structure 30 is rotated in the first direction, e.g. around the support bearing 40, before the lifting structure 30 is rotated in the first direction, or after the lifting structure 30 is rotated in the first direction.
The method further comprises attaching the head 45 to the cast products 10 of the determined row of cast products 10. As mentioned above, attaching the head 45 to the cast products 10 of the determined line of cast products 10 may for example comprises closing tongs, closing a gripper, or closing/turning on any other means of fastening the cast products 10 of the selected line of cast products 10 to the head 45.
When the corresponding cast products 10 are selectively attached to the head 45, the method further comprises rotating the lifting structure 30 in a second direction that is opposite to the first direction with the cast products 10 attached to the head 45 such as to lift the cast products 10 out of the casting pit 15 as is shown in
The method further comprises rotating the cast products 10 that are attached to the head 45 such that their longitudinal axes are rotated from a at least substantially vertical direction into an at least substantially horizontal direction as is shown in
According to the invention, the lifting device 1 may comprise a controller, such as an electronic control unit, to control the lifting device, e.g. the actuators comprised by the lifting device 1. The controller may be configured to carry out the method according to the invention described herein.
Number | Date | Country | Kind |
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20180843 | Jun 2018 | NO | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2019/062325 | 5/14/2019 | WO | 00 |