Abstract:
A pattern-transferring film having a print pattern provided on an upper surface thereof is floated on a liquid surface within a transferring bath and an objective body is immersed into a liquid within the transferring bath together with the pattern transferring film under a liquid pressure so as to transfer the print pattern onto the objective body. An ink set of at least blue, yellow and red inks is used for printing the pattern on the pattern-transferring film. Each of the printing inks comprises at least a resin ingredient and a pigment including color pigments. The color pigment for the blue ink is a phthalocyanine blue, the color pigment for the yellow ink is an isoindolinone yellow and the color pigment for the red ink is a quinacridone red. The ink set may include one or both of a white ink and a black ink. The color pigment for the white ink is a titanium white and the color pigment for the black ink is a carbon black. All the five color printing inks have a weather resistance of more than 3000 hours on a weather resistance test by a JIS based sunshine weather meter and therefore a color tone of the transferred pattern obtained by using these printing inks is balanced and the pattern transferred article having such a transferred pattern has the same weather resistance, which causes the article to have its life span maintained.
Abstract:
In a casing 11, a rear guide 23 is formed above a cylindrical impeller 13 and a stabilizer 24 is formed below the impeller. A minimum gap dimension between the cylindrical impeller 13 and the stabilizer 24 on the outlet port 17 side has a value of 14% to 24% of the outer diameter of the cylindrical impeller 13. An angle between a straight line connecting the center of rotation of the cylindrical impeller 13 and a minimum gap position on the outlet port 17 side of the stabilizer 24 and the horizontal plane has a value of 38° to 43°. A minimum gap dimension between the cylindrical impeller 13 and the stabilizer 24 on the inlet port 16 side has a value of not smaller than 7% of the outer diameter of the cylindrical impeller 13. An angle between a straight line connecting the center of rotation of the cylindrical impeller 13 and a minimum gap position on the inlet port 16 side of the stabilizer 24 and the vertical plane has a value of 11° to 15°. Further, the cylindrical impeller 13 is arranged horizontally perpendicularly to the direction in which the inlet port 16 and the outlet port 17 are connected in the casing 11, the rear guide 23 is formed above the cylindrical impeller 13 and the stabilizer 24 is formed below the impeller. A portion on the outlet port side of at least one of the rear guide and the stabilizer is provided by a diffuser which can change the direction of air blow by pivoting around pivot axes 25a and 26a.
Abstract:
In a casing (11), a rear guide (23) is formed above a cylindrical impeller (13) and a stabilizer (24) is formed below the impeller. A minimum gap dimension between the cylindrical impeller (13) and the stabilizer (24) on the outlet port (17) side has a value of 14% to 24% of the outer diameter of the cylindrical impeller (13). An angle between a straight line connecting the center of rotation of the cylindrical impeller (13) and a minimum gap position on the outlet port (17) side of the stabilizer (24) and the horizontal plane has a value of 38.degree. to 43.degree.. A minimum gap dimension between the cylindrical impeller (13) and the stabilizer (24) on the inlet port (16) side has a value of not smaller than 7% of the outer diameter of the cylindrical impeller (13). An angle between a straight line connecting the center of rotation of the cylindrical impeller (13) and a minimum gap position on the inlet port (16) side of the stabilizer (24) and the vertical plane has a value of 11.degree. to 15.degree..
Abstract:
The object of the present invention is to provide a polyolefin having a good particle property in a high yield without use of an expensive alumoxane. The present invention comprises a catalyst for olefin polymerization comprising the following ingredients (A), (B) and (C), and a process for preparing an olefin polymer with use of the catalyst:Component (A): a transition metal compound having at least one conjugated five-membered ring ligand, the transition metal being in the Groups IV-VI of the Periodic Table,Component (B): an organoaluminum compound, andComponent (C): a finely divided particle composition comprising 0.1-99.9% by weight of boric acid.
Abstract:
The present disclosure concerns a ground vibration properties detection method by generating a specified vibration load equal to the actual load generated by traffic vehicles on a paved road or by generating a specified vibration load corresponding to a seismic intensity of earthquake on a ground and measuring the vibration load as a vibration level induced by the vibration load and equipment thereof.
Abstract:
A method for preparing a composite oxide having oxygen absorbing and desorbing capability involves the steps of: providing a starting composite oxide comprising cerium oxide, zirconium oxide, and hafnium oxide; subjecting the starting composite oxide to heating-deoxidation to give a deoxidized composite oxide; and subjecting the deoxidized composite oxide to heating-oxidation.
Abstract:
A composite oxide having oxygen absorbing and desorbing capability contains 4.99-98.89% by weight of cerium oxide, 1-95% by weight of zirconium oxide, 0.01-20% by weight of hafnium oxide, and 0.1-10% by weight of an additional metal oxide selected from titanium oxide, tungsten oxide, nickel oxide, copper oxide, iron oxide, aluminum oxide, silicon oxide, beryllium oxide, magnesium oxide, calcium oxide, strontium oxide, barium oxide, oxides of rare earth metals other than cerium, and mixtures thereof. The composite oxide includes .PHI. phase as a crystal phase, and has oxygen absorbing and desorbing capability of at least 100 .mu.mol/g at 400.degree.-700.degree. C. The composite oxide is prepared by the wet method or by the dry method.
Abstract:
A compound oxide having oxygen absorbing and desorbing capability contains 4.99-98.99% by weight of cerium oxide, 1-95% by weight of zirconium oxide and 0.01-20% by weight of hafnium oxide. The compound oxide has an oxygen absorbing and desorbing capability of at least 100 .mu.mol/g at 400-700.degree. C. and a specific surface area of at least 10 m.sup.2 /g after heating at 900.degree. C. for 5 hours.
Abstract:
A diaminotrifluoromethylpyridine derivative of the formula (I) or its salt: ##STR1## wherein X is --CW.sup.1 R.sup.1, --COCOR.sup.2, --CW.sup.1 NHCOR.sup.2, --C(.dbd.W.sup.1)W.sup.2 R.sup.3 or --CW.sup.1 N(R.sup.4)R.sup.5, and Y is alkyl, --CW.sup.3 R.sup.6, --COCOR.sup.7, --NHCOR.sup.7, --C(.dbd.W.sup.3)W.sup.4 R.sup.8, --(NH).sub.m SO.sub.2 R.sup.9, --(NH).sub.m SO.sub.2 OR.sup.10 or --(NH).sub.m SO.sub.2 N(R.sup.11)R.sup.12, as defined herein.
Abstract translation:式(I)的二氨基三氟甲基吡啶衍生物或其盐:其中X为-CW1R1,-COCOR2,-CW1NHCOR2,-C(= W1)W2R3或-CW1N(R4)R5,Y为烷基 ,-CW 3 R 6,-COCOR 7,-NHCOR 7,-C(= W 3)W 4 R 8, - (NH)m SO 2 R 9, - (NH)m SO 2 OR 10或 - (NH)m SO 2 N(R 11)R 12。