Abstract:
Provided is a wire rod for an I-type oil ring, which includes right and left rail portions and a web portion connecting the rail portions, which has an oil hole or a molten through hole formed in the web portion, and which has a circumscribing circle diameter of 10 mm or less in its transverse contour. The molten through hole has such a remolten portion formed on its exit side as encloses the exit of the molten through hole. The remolten portion exceeds such a molten portion in the transverse section along the center of the molten through hole as is formed in the molten through hole, and is formed to have 200 μm or less from the outer circumference of the molten through hole and 100 μm or less in the depth direction of the molten through hole.
Abstract:
Provided is a wire rod for an I-type oil ring, which includes right and left rail portions and a web portion connecting the rail portions, which has an oil hole or a molten through hole formed in the web portion, and which has a circumscribing circle diameter of 10 mm or less in its transverse contour. The molten through hole has such a remolten portion formed on its exit side as encloses the exit of the molten through hole. The remolten portion exceeds such a molten portion in the transverse section along the center of the molten through hole as is formed in the molten through hole, and is formed to have 200 μm or less from the outer circumference of the molten through hole and 100 μm or less in the depth direction of the molten through hole.
Abstract:
An apparatus for manufacturing toner is provided which includes a pulverizer for pulverizing a material into particles, a classifier for classifying the particles by size, a discharging path for discharging the particles from the pulverizer to the classifier, a returning path for returning relatively coarse particles among the classified particles from the classifier to the pulverizer, and a handling unit for handling particles. A method for manufacturing toner is also provided which includes pulverizing a material into particles in a pulverizer, discharging the particles from the pulverizer to a classifier via a discharging path, classifying the particles by size in the classifier, and returning relatively coarse particles among the classified particles from the classifier to the pulverizer. The handling unit is provided on at least one of the discharging path and the returning path, and includes a mechanism for preventing accumulation of the particles using airflow.
Abstract:
An image forming apparatus including: image bearing member; latent image forming unit; developing unit; transfer unit; fixing unit, wherein toner in the developing unit contains amorphous polymer, crystalline resin and releasing agent, when the toner is measured for G′ at 40° C. to 210° C. with rheometer at 1 Hz and 1 deg, G′(100) is ≦20,000 and G′(150) is ≧500 Pa, and straight line drawn by connecting points of the G′(100) and G′(110) on curve of the G′ has gradient of ≦0.035, the gradient being “a” expressed by: a=|log10G′(100)−log10G′(110)|/10, and the fixing unit includes: heating member containing flexible endless belt; heat source fixed within the flexible endless belt; and press member in contact with the belt to form nip portion, and the fixing unit is configured to heat/press the medium passing through the nip portion to fix the image on the medium.
Abstract:
To provide a toner, which contains: toner base particles each containing a binder resin and a colorant; and an external additive containing inorganic particles and fatty acid metal salt particles, wherein the inorganic particles contain at least hydrophobic silica particles, wherein a liberation ratio Ya of the hydrophobic silica particles from the toner is 1% by mass to 20% by mass, and wherein a libration ratio Yb of the fatty acid metal salt particles from the toner is 30% by mass to 90% by mass.
Abstract:
A toner is provided including toner particles A having a circularity of greater than 0.93 and not greater than 1.00 and toner particles B having a circularity of from 0.85 to 0.93, wherein the following relationships are satisfied: 70≦RA≦95, 5≦RB≦30, 0.014≦SD≦0.025, and 0.940≦ED≦0.950, wherein RA (% by number) represents a ratio of a number of the toner particles A to a total number of toner particles included in the toner, RB (% by number) represents a ratio of a number of the toner particles B to the total number of toner particles included in the toner, SD represents a standard deviation of circularity of the toner particles A, and ED represents an average envelope degree of the toner particles B.
Abstract translation:提供了具有圆度大于0.93且不大于1.00的调色剂颗粒A和调色剂颗粒B的调色剂颗粒B,调色剂颗粒B的圆度为0.85至0.93,其中满足以下关系:70≦̸ RA≦̸ 95,5和nlE; RB≦̸ 30,0.014≦̸ SD≦̸ 0.025和0.940& EDI; 0.950,其中RA(数量%)表示调色剂颗粒A的数量与调色剂中包含的调色剂颗粒总数的比率,RB(% 数量)表示调色剂颗粒B的数量与调色剂中包含的调色剂颗粒总数的比率,SD表示调色剂颗粒A的圆度的标准偏差,ED表示调色剂颗粒的平均包络度 B.
Abstract:
To provide a toner, containing: a crystalline polyester resin; and a non-crystalline polyester resin, wherein the crystalline polyester resin has a melting point of 60° C. to 80° C., and wherein the toner satisfies the relationship represented by the following formula: (W1−W1′)/W1
Abstract:
A cable connector having a receptacle connector, the receptacle connector includes a receptacle body which is made of an insulating material and into which a cable is inserted; a plurality of contacts which are provided in the receptacle body; a spacing member which separates the cable inserted into the receptacle body from the contacts by an elastic force of the spacing member to thereby provide an electrically disconnected state; and a biasing member which biases the cable toward the contacts against an elastic force of the spacing member. A movement restricting portion which restricts the movement of the cable toward the contacts so that the cable is brought into conductive contact with the contacts by the biasing force of the biasing member only when the cable is inserted to the predetermined position in the receptacle body.
Abstract:
A cable connector having a receptacle connector, the receptacle connector includes a receptacle body which is made of an insulating material and into which a cable is inserted; a plurality of contacts which are provided in the receptacle body; a spacing member which separates the cable inserted into the receptacle body from the contacts by an elastic force of the spacing member to thereby provide an electrically disconnected state; and a biasing member which biases the cable toward the contacts against an elastic force of the spacing member. A movement restricting portion which restricts the movement of the cable toward the contacts so that the cable is brought into conductive contact with the contacts by the biasing force of the biasing member only when the cable is inserted to the predetermined position in the receptacle body.
Abstract:
A connector includes an insulator, into which a thin plate-like object is removably insertable, including contact insertion grooves and partition walls positioned therebetween and contacts inserted into the contact insertion grooves, each of the contacts including first and second contact portions spaced from each other to allow the thin plate-like object to be inserted therebetween, and including a connecting portion connecting the first and second contact portions. At least one of the first and second contact portions contacts the thin plate-like object when inserted into the insulator. A hollow portion having a greater width than the contact insertion grooves is formed in each partition wall to superimpose part of each contact as viewed in a contact arranging direction, and the partition walls prevent each hollow portion from being communicatively connected with the contact insertion grooves.