Abstract:
Iron-carbon-manganese austenitic steel sheet, the chemical composition of which comprises, the contents being expressed by weight: 0.45%≦C≦0.75%; 15%≦Mn≦26%; Si≦3%; Al≦0.050%; S≦0.030%; P≦0.080%; N≦0.1%; at least one metal element chosen from vanadium, titanium, niobium, chromium and molybdenum, where 0.050%≦V≦0.50%; 0.040%≦Ti≦0.50; 0.070%≦Nb≦0.50%; 0.070%≦Cr≦2%; 0.14%≦Mo≦2%; and, optionally, one or more elements chosen from 0.0005%≦B≦0.003%; Ni≦1%; Cu≦5%, the balance of the composition consisting of iron and inevitable impurities resulting from the smelting, the amounts of said at least one metal element in the form of precipitated carbides, nitrides or carbonitrides being: 0.030%≦Vp≦0.150%; 0.030%≦Tip≦0.130%; 0.040%≦Nbp≦0.220%; 0.070%≦Crp≦0.6%; 0.14%≦Mop≦0.44%.
Abstract:
Provided are a system, method, and computer readable storage medium wherein at least two primary storage pools are configured, wherein a first primary storage pool is configured to indicate a second primary storage pool as a next storage pool in a storage hierarchy that comprises the first primary storage pool and the second primary storage pool. The first primary storage pool of the storage hierarchy is copied to a copy storage pool, wherein the first primary storage pool and the copy storage pool are included as parameters of a single command. The second primary storage pool is copied to the copy storage pool, in response to determining that the second primary storage pool is the next storage pool for the first primary storage pool in the storage hierarchy.
Abstract:
Techniques are provided for allocating storage space to a storage pool. A request for storage space for the storage pool is received. A list of locations associated with the storage pool is obtained, wherein the locations are capable of spanning multiple file systems or multiple directories within a single file system. One or more allocation techniques are applied to select one or more locations at which storage space is to be allocated. The storage space is allocated at the selected one or more locations.
Abstract:
A hot-rolled austenitic iron/carbon/manganese steel sheet, the strength of which is greater than 1200 MPa, the product P (strength (in MPa)×elongation at break (in %)) of which is greater than 65 000 MPa % and the nominal chemical composition of which comprises, the contents being expressed by weight: 0.85%≦C≦1.05%; 16%≦Mn≦19%; Si≦2%; Al≦0.050%; S≦0.030%; P≦0.050%; N≦0.1%, and, optionally, one or more elements chosen from: Cr≦1%; Mo≦0.40%; Ni≦1%; Cu≦5%; Ti≦0.50%; Nb≦0.50%; V≦0.50%, the rest of the composition consisting of iron and inevitable impurities resulting from the smelting, the recrystallized surface fraction of said steel being equal to 100%, the surface fraction of precipitated carbides of said steel being equal to 0% and the mean grain size of said steel being less than or equal to 10 microns.
Abstract translation:其强度大于1200MPa的热轧奥氏体铁/碳/锰钢板,产品P(强度(MPa)断裂次数(%))大于65000MPa%, 其标称化学成分包含,其含量以重量表示:0.85%<= C <= 1.05%; 16%<= Mn <= 19%; Si <= 2%; Al <= 0.050%; S <= 0.030%; P <= 0.050%; N <= 0.1%,以及任选的一种或多种选自:Cr <= 1%的元素; Mo <= 0.40%; Ni <= 1%; Cu <= 5%; Ti <= 0.50%; Nb <= 0.50%; V <= 0.50%,剩余的组成由铁和不可避免的冶炼杂质组成,所述钢的再结晶表面部分等于100%,所述钢的沉淀碳化物的表面分数等于0%, 所述钢的平均晶粒尺寸小于或等于10微米。
Abstract:
A method for generating file copies with minimal mounting and positioning of storage volumes involves receiving a request to generate file copies specifying file selection criteria, identifying matching files meeting the selection criteria, locating the matching files on their storage volumes, and copying the files to a copy set. Determination of file copying order is optimized by placing greater emphasis on relative storage locations of matching files than on the order in which their copies are requested. Once a storage volume is mounted, all files stored on that volume are matched against the pending requests including future requests and if found to be the subject of a request, are copied from the mounted volume in optimal position-sensitive order. Copying from secondary storage is deferred until all copying from primary storage is complete.
Abstract:
Provided are a system, method, and program for grouping backup objects stored in backup storage. A backup group is created and a plurality of backup objects are added as members of the backup group in separate backup transactions. The backup objects added to the backup group are stored to backup storage.
Abstract:
Disclosed is a server having a plurality of clients coupled to the server at client nodes, and coupled to a plurality of receivers. Events, which may range from a successful completion message to a major error alert, may be generated relating to the server or to the client nodes. A method is disclosed for dynamically selectively distributing the events to particular ones of the receivers, in response to a selective enabling/disabling of the events to each receiver. The method with respect to client nodes comprises: upon opening a session of a client node, the selectively enabled events/receivers relating to the client node are determined. Upon the selective enabling/disabling occurring during the session of the client node, the determined selectively enabled events/receivers relating to the client node are dynamically updated. Then, upon occurrence of an event relating to a client node, the event is distributed to ones of the receivers having been selectively enabled for the event in the determining and the dynamically updating steps. Additionally, classes of events or wild card groups of client nodes may be enabled.
Abstract:
A system and method for storing data in a network computing environment. The network includes a source server that will receive data to be stored from a client and target servers that have locally attached physical storage media. A server-to-server protocol is used to establish a communication connection between the source server and target server while programming allows the storage of the data from the source server on the physical storage at the target server, while also creating a virtual volume at the source server on which the data is also stored. From the perspective of the client, the data appears to be stored at the source server on locally attached storage media. The present invention eliminates the requirement for actual physical media locally attached to the source server.
Abstract:
The present invention relates to enzymes capable of hydrolysing organophosphate (OP) molecules. In particular, the invention relates to variants of the OpdA enzyme from Agrobacterium that display improved activity when compared to the naturally occurring OpdA. The invention is also towards polypeptides that have organophosphate hydrolysing activity for the organophosphates chlorpyrifos methyl, diazinon and parathion ethyl.