摘要:
Disclosed herein is an aqueous dispersion slurry coating material which has excellent storage stability and which can provide a coating film having excellent surface smoothness. The aqueous dispersion slurry coating material includes: an aqueous medium; and contained therein, resin particles (A) comprising a first resin (a); and resin particles (B) comprising a second resin (b), wherein the value of [volume-average particle diameter DA of resin particles (A)]/[volume-average particle diameter DB of resin particles (B)] is in the range of 0.003 to 0.3. It is preferred that the value of DA is in the range of 0.001 to 3 μm and that the value of DB is in the range of 0.3 to 10 μm. The resin (a) preferably has a Tg of 0 to 100° C., and the resin (b) preferably has a Tg of −50 to 50° C. The aqueous dispersion slurry coating material preferably further includes a surfactant and a curing agent. The resin (a) and the resin (b) are preferably of at least one kind selected from the group consisting of polyurethane resins, epoxy resins, vinyl resins, and polyester resins.
摘要:
An object of the present invention is to provide a multilayer structured particle which can transmit or reflect light having a specific wavelength selectively within a wide range and a simple and easy method for producing the same.The multilayer structured particle of the present invention is characterized in that a central layer (L0) is provided as a core and two or more layers (Ln) are disposed concentrically with respect to the center of the core, wherein every pair of adjacent layers has a refractive index difference of from 0.01 to 1.5 and at least one layer of the central layer (L0) and the layers (Ln) is a metal oxide layer (M).The method of the present invention for producing a multilayer structured particle is characterized in that the method includes at least two steps, a repetition of at least two steps, or a repetition of at least one step selected from the group consisting of production step (10) of using pulse laser irradiation, production step (20) of using a gaseous metal compound, production step (30) of using a sol-gel method or a double micell layer, and utilization of a sol-gel method (40); or production step (50) of using a double micell layer or production step (60) of using opposite charges.
摘要:
Disclosed is a toner binder which has high storage stability and can achieve both of good low-temperature fixability and good hot offset resistance (a broadened fixing temperature range). Specifically disclosed is a toner binder comprising, as constituting units, a carboxylic acid component (x) and a polyol component (y), wherein the component (x) comprises two or more kinds of dicarboxylic acids (X1), selected from among aromatic dicarboxylic acids and ester-forming derivatives of the same, in a total amount of 80 mol % or more and a trivalent or higher polycarboxylic acid (x2); the component (y) comprises a polyester resin (P) which is constituted by a polyester resin (A) comprising 80 mol % or more of an aliphatic diol (y1) having 2 to 10 carbon atoms optionally together with a linear polyester resin (B); and the storage modulus at 150° C. [G′150] of resin (A) is 20000 dyn/cm2 or more and the ratio of [G′150] to the storage modulus as 180° C. [G′180] thereof, i.e., [G′150]/[G′180], is 15 of less.
摘要:
Disclosed is a toner binder which has high storage stability and can achieve both of good low-temperature fixability and good hot offset resistance (a broadened fixing temperature range). Specifically disclosed is a toner binder comprising, as constituting units, a carboxylic acid component (x) and a polyol component (y), wherein the component (x) comprises two or more kinds of dicarboxylic acids (X1), selected from among aromatic dicarboxylic acids and ester-forming derivatives of the same, in a total amount of 80 mol % or more and a trivalent or higher polycarboxylic acid (x2); the component (y) comprises a polyester resin (P) which is constituted by a polyester resin (A) comprising 80 mol % or more of an aliphatic diol (y1) having 2 to 10 carbon atoms optionally together with a linear polyester resin (B); and the storage modulus at 150° C. [G′150] of resin (A) is 20000 dyn/cm2 or more and the ratio of [G′150] to the storage modulus as 180° C. [G′180] thereof, i.e., [G′150]/[G′180], is 15 of less.