摘要:
The invention, which may be a kind of annotations processor, detects zero or more tagsets turned on or selected at runtime. The annotations adapter reads an abstract unit from a java file, and if an annotation of the abstract unit has a tag that is among the tags of a turned on tagset, then the annotations adapter may generate an artifact showing the influence of the annotation. Such a process may continue until there are no more abstract units to process. Comments or annotations that fail to be tagged with a tag of a selected tagset may, nevertheless, be mentioned with a kind of ‘place-holder’ indicating that such comments exist.
摘要:
A method for embedding behavior tags in a source code so that a computer can choose the appropriate implementation technology to execute the source code comprising a Configuration Program (CP) and a Deployment Program (DP). The CP allows a user to define and modify a plurality of behavior tags in the behavior tag definitions. The CP also allows the user to define and modify the preferences as to the implementation technologies in an implementation technology preference list. The user then creates the source code with embedded behavior tags. The DP reads the source code and automatically selects the appropriate implementation technology based on the behavior tags. The DP gives preference to implementation technologies according to the implementation technology preference list. The result is that the user does not have to specify the implementation technology for the source code or configure the behavior tags to a specific implementation technology.
摘要:
The present invention provides methods, apparatus and computer instructions for a container managed persistent support architecture that meets the Enterprise Java Bean (EJB) Specification. The support architecture provides application programmers a model for balancing generated components with runtime code to better optimize flexibility and efficiency of applications. Six generated components: concrete bean, bean adaptor binding, injector, extractor, data cache entry and function set, are used in combination with runtime code to perform typical operations of CMP entity beans.
摘要:
The present invention provides methods, apparatus and computer instructions for a container managed persistent support architecture that meets the Enterprise Java Bean (EJB) Specification. The support architecture provides application programmers a model for balancing generated components with runtime code to better optimize flexibility and efficiency of applications. Six generated components: concrete bean, bean adaptor binding, injector, extractor, data cache entry and function set, are used in combination with runtime code to perform typical operations of CMP entity beans.
摘要:
The invention relates to a method for the production of shaped foam bodies, comprising: provision of a composition having foam particles and binder; introduction of the composition into a space which is bounded on at least one side by a pressing surface; and exertion of pressure onto the composition by means of the pressing surface. The method further comprises irradiation of microwaves through the pressing surface into the composition, while pressure is being exerted onto the composition. The invention furthermore relates to a device for carrying out the method according to the invention, having: at least one pressing surface and a counterbearing surface lying opposite, between which a space extends which is adapted to receive a composition of foam particles and binder. The pressing surface and counterbearing surface adjoin the space directly. The device further comprises at least one stiff layer which locally or entirely is essentially transparent for microwaves and has a surface facing toward the space, which is connected to the pressing surface in such a way as to transmit force. The device also comprises a microwave radiator unit which is arranged on a side of the stiff layer remote from the space and is aligned relative to the space in order to irradiate microwaves into the space through the stiff layer. Lastly, the invention relates to a microwave radiator unit for the heat treatment of foam compositions. The microwave radiator unit comprises a multiplicity of microwave antennas which are arranged in a plane array and at least two of which are connected through a distributor device to a common microwave signal source, which feeds the at least two antennas.
摘要:
Process for the production of nanoporous polymer foams, comprising the stages a) loading of a single-phase, thermoplastic polymer melt with a gas under a pressure and at a temperature at which the gas is in the supercritical state, b) heating of the laden polymer melt to a temperature which lies in the range from 40° C. under to 40° C. over the glass transition temperature of the unladen polymer melt determinable by means of DSC according to DIN-ISO 11357-2 at a heating rate of 20 K/min, c) depressurization of the polymer melt loaded in stage a) and heated in stage b) with a depressurization rate in the range from 15,000 to 200,000 MPa/sec, and the nanoporous polymer foams with a cell count in the range from 1,000 to 100,000 cells/mm and a density in the range from 10 to 500 kg/m3 obtainable according to the process.
摘要翻译:制备纳米多孔聚合物泡沫的方法,包括以下步骤:a)在压力和气体处于超临界状态的温度下,用气体装载单相热塑性聚合物熔体,b)加载载荷 聚合物熔融到在40℃至40℃范围内的温度,超过可通过根据DIN-ISO 11357-2的DSC的加热速率为20°的可测定的未饱和聚合物熔体的玻璃化转变温度 K / min,c)在步骤a)中加载的聚合物熔体减压,并在阶段b)中以15,000至200,000MPa / sec的减压速率加热,并且具有细胞计数的纳米多孔聚合物泡沫 1,000至100,000个细胞/ mm 2,密度在10-500kg / m 3的范围内。
摘要:
Process for the production of nanoporous polymer foams, comprising the stages a) loading of a single-phase, thermoplastic polymer melt with a gas under a pressure and at a temperature at which the gas is in the supercritical state, b) heating of the laden polymer melt to a temperature which lies in the range from 40° C. under to 40° C. over the glass transition temperature of the unladen polymer melt determinable by means of DSC according to DIN-ISO 11357-2 at a heating rate of 20 K/min, c) depressurization of the polymer melt loaded in stage a) and heated in stage b) with a depressurization rate in the range from 15,000 to 200,000 MPa/sec, and the nanoporous polymer foams with a cell count in the range from 1,000 to 100,000 cells/mm and a density in the range from 10 to 500 kg/m3 obtainable according to the process.
摘要翻译:制备纳米多孔聚合物泡沫的方法,包括以下步骤:a)在压力和气体处于超临界状态的温度下,用气体装载单相热塑性聚合物熔体,b)加载载荷 聚合物熔融到在40℃至40℃范围内的温度,超过可通过根据DIN-ISO 11357-2的DSC的加热速率为20°的可测定的未饱和聚合物熔体的玻璃化转变温度 K / min,c)在步骤a)中加载的聚合物熔体减压,并在阶段b)中以15,000至200,000MPa / sec的减压速率加热,并且具有细胞计数的纳米多孔聚合物泡沫 1,000至100,000个细胞/ mm 2,密度在10-500kg / m 3的范围内。
摘要:
The present invention relates to binders based on polymer dispersions and terephthalic bisamides with high water vapor transmission, and also to their use in formulations, especially for wood coatings.
摘要:
The present invention relates to binders based on polymer dispersions and terephthalic bisamides with high water vapor transmission, and also to their use in formulations, especially for wood coatings.
摘要:
Process for the production of moldings from nanoporous polymer materials, comprising the stages of a) preparation of a multiphase polymer mixture with domains in the range from 5 to 200 nm, b) impregnation of the polymer mixture with a blowing agent, where the solubility of the blowing agent in the phase forming the domains is at least twice as high as in the adjacent phases, c) expansion of the multiphase polymer mixture comprising blowing agent, by introducing the polymer mixture into a cavity and expanding it therein, thus obtaining the molding.