Abstract:
PROBLEM TO BE SOLVED: To provide a make-up counseling system and a make-up counseling method, for encouraging a user to determine that the user looks good with makeup and eliminating anxiety of the user who applies makeup. SOLUTION: The make-up counseling system 100 includes: an image presentation unit 10, a line-of-sight acquisition unit 20, an accumulation unit 30 and a display unit 40. The image presentation unit 10 presents a visual stimulus 50 including a head 60 to a subject S1. The line-of-sight acquisition unit 20 acquires first line-of-sight data D1 on the line-of-sight of the subject S1 who views the visual stimulus 50. The accumulation unit 30 holds second line-of-sight data D2 on the line-of-sight of a makeup specialist SP or a celebrity CE who gives his or her line-of-sight. The display unit 40 displays and outputs both first line-of-sight data D1 and second line-of-sight data D2, whereby the subject S1 objectively acquires his/her own point of interest when determining whether the user looks good with makeup. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To prevent the occurrence of fogging of a photoreceptor even in the case of using a non-magnetic one component developing system while the image density is high and transparency is improved. SOLUTION: The producing method has a pulverizing step for stirring a polymerizable composition containing a polymerizable monomer and an organic or inorganic material insoluble or hardly soluble in the polymerizable monomer with a stirring device and after that, dispersing the polymerizable composition in a water based dispersion medium by stirring, the stirring device has a vessel capable of housing the treating liquid to be stirred and having circuit cross section, a rotary shaft provided at the center of the vessel and one or more stirring fixtures attached to the rotary shaft and is a high speed stirring device provided with a driving source for driving the stirring fixture, which has a radius reaching the vicinity of the inner peripheral surface of the vessel, at a high speed of >=20 m/sec peripheral speed to press and attach the treating liquid to the inside surface of the vessel and to rotate the treating liquid in hollow thin film state by the centrifugal force generated by the rotation of the treating liquid with the rotation of the stirring fixture.
Abstract:
PURPOSE:To enhance the offset resistance even at a low fixing rate, to conduct fixing in a low temp. range and to enhance the blocking resistance by allowing a shell to contain a part of a core material. CONSTITUTION:This capsule toner is formed with a hot-melt core contg. at least a thermoplastic resin and a colorant and a shell covering the surface of the core, and the shell is allowed to contain a part of the core material. A thermoplastic resin with the loss tangent (tan delta) of the dynamic viscoelasticity at 80-120 deg.C measured at the sine stress of 25rad/s angular frequency controlled to 1.0-20.0, is used as the essential component of the shell. The shell consists essentially of an amorphous polyester, and the acid value of the polyester is controlled to 3-50 (KOHmg/g). Further, the glass transition point resulting from the thermoplastic resin as the essential component of the hot-melt core of the capsule toner is estimated at 10-50 deg.C.
Abstract:
PURPOSE:To produce a thermocompression fixing capsule toner excellent in off-set resistance, capable of fixing at low temp. and having excellent blocking resistance by using a copolymer having acid anhydride group as a main component of the shell of the capsule toner. CONSTITUTION:The capsule toner is constituted of a hot-melt core material containing a thermoplastic resin and a colorant and the shell covering the surface of the core. And the main component of the shell consists of the copolymer having above one acid anhydride. As the copolymer, maleic anhydride-styrene copolymer or maleic anhydride-styrene or (meth)acrylic ester is preferably used and the glass transition point of the copolymer is preferably >=60 deg.C. And the glass transition point resulted from the thermoplastic resin consisting essentially of the hot-melt core material is preferably 10-50 deg.C and the softening point of the capsule toner is more preferably 80-150 deg.C.