摘要:
There is provided a honeycomb catalyst body comprising a honeycomb base body having porous partition walls forming a plurality of divided cells which extend from one end face of honeycomb base body to its other end face and which function as a fluid passage, and an outer wall present at the outermost peripheral portion of honeycomb base body, plugged portions provided so as to plug part of the plurality of divided cells, and a catalyst loaded on the partition walls of honeycomb base body. The plurality of divided cells include outermost peripheral cells formed by the partition walls and the outer wall, and of the outermost peripheral cells, those cells whose hydraulic diameter ratio to the hydraulic diameters of the cells other than the outermost peripheral cells is 5 to 75%, are through-cells having no plugged portion.
摘要:
This invention provides a honeycomb catalyst having an excellent purification efficiency and a small pressure loss and can be mounted even in a limited space, the honeycomb catalyst comprising: porous partition walls 4 having plural pores 25, which are arranged to form plural cells 3 allowing communication between two end faces; plugging portions being arranged to plug the cells 3 in one of the end faces; and catalytically active components 5, 15 loaded on surfaces of partition walls 4 and inner surfaces of pores 25, wherein many catalytically active component-loading pores 35 through which a gas can pass are formed in partition walls 4, and a ratio of a mass (MW) of the catalytically active component loaded on the surfaces of partition walls 4 to a mass (MP) of the catalytically active component 5 loaded on the inner surfaces of the pores 25 is (MW):(MP)=1:3 to 3:1.
摘要:
A honeycomb filter is provided comprising a honeycomb structure having a large number of through channels formed in an axial direction and partitioned by porous partition walls, each of the through channels having a first end at one end of the filter and a second end at an opposite end of the filter, wherein a first group of the through channels are plugged only at the first end, and a second group of the through channels are not plugged. A honeycomb structure is further provided having through channels with a relatively large frontal area and through channels with a relatively small frontal area, and wherein all the through channels with a relatively large frontal area are the first group, and all the through channels with a relatively small frontal area are in the second group. A honeycomb filter is also provided with a catalyst component carried on a surface of the partition walls and/or a surface of pores present in an inside of the partition walls.
摘要:
A honeycomb filter is provided comprising a honeycomb structure having a large number of through channels formed in an axial direction and partitioned by porous partition walls, each of the through channels having a first end at one end of the filter and a second end at an opposite end of the filter, wherein a first group of the through channels are plugged only at the first end, and a second group of the through channels are not plugged. A honeycomb structure is further provided having through channels with a relatively large frontal area and through channels with a relatively small frontal area, and wherein all the through channels with a relatively large frontal area are the first group, and all the through channels with a relatively small frontal area are in the second group. A honeycomb filter is also provided with a catalyst component carried on a surface of the partition walls and/or a surface of pores present in an inside of the partition walls.
摘要:
[Object] To provide a tape cutter device that allows a cutting blade to be disposed at a non-adhesion-surface side of an adhesive tape and that can easily form a fold, including a non-adhesion portion, at a cut end portion of the adhesive tape after a cutting operation.[Solving Means] A structure in which a cutting blade 11 is disposed at a non-adhesion-surface side 2b of an adhesive tape 2, and is provided so as to be rotatable in a drawing-out direction of the adhesive tape 2 as the adhesive tape 2 is drawn out; in which a torsion spring 17 that biases the cutting blade 11 in a direction opposite to the drawing-out direction of the adhesive tape 2 is provided; and in which a rotating roller 18 is disposed at a holding-portion-3 side near the cutting blade 11 so that the non-adhesion surface 2b of the adhesive tape 2 is wound thereupon, and rotates as the adhesive tape 2 is drawn out, to form a fold 2b, including a non-adhesion portion, at a cut end portion of the adhesive tape 2 so as to be situated between the rotating roller 18 and the cutting blade 11 when the adhesive tape 2 is cut.
摘要:
A means suitable for producing and supplying exhaust gas for evaluation to be supplied to an exhaust gas purifying apparatus in a safe and stable manner and a means for correctly and accurately evaluating performance and durability of the exhaust gas purifying apparatus are provided. The PM generating apparatus 10 which can generate PM in a gas by combusting a liquid and/or gaseous fuel in the combustion chamber 2. The PM generating apparatus 10 is provided with a combustion chamber 1, a combustion air supply means 4 supplying combustion air to the combustion chamber 1, and an intermittent fuel injection means 3 which can intermittently inject the fuel to the combustion air supplied to the combustion chamber 1.
摘要:
An imaging method includes a step of setting, when a digital zoom operation mode for enlarging an image imaged by a imaging part of an X-Y address type is selected, a zoom magnification and enlarging the image at the zoom magnification set. The imaging method includes the steps of: setting an imaging range in a vertical direction of the imaging part according to the zoom magnification set in the digital zoom step; outputting a driving signal for scanning the shutter signal and the readout signal to perform exposure in the imaging range set in the imaging range setting step and driving the imaging part; and discarding, when the zoom magnification is changed in the digital zoom step, images imaged by the imaging part before and after the change of the zoom magnification to prevent the images from being used.
摘要:
A canning structure comprises a ceramic honeycomb structure before carrying a catalyst, fixed beforehand within a metal case by a holding material. An impermeable layer is provided on at least one edge plane in the longitudinal direction of the holding material.Thus, the holding material does not carry expensive catalyst at the time of carrying catalyst, and accordingly chipping and cracking of the ceramic honeycomb structure can be prevented at the time of transporting, the catalyst carrying process, the canning process, and handling in each of the processes.
摘要:
There is provided a honeycomb structure which is excellent in such a resistance to thermal shock as to prevent generation of cracks or dissolved losses in partition wall intersections as critical damages for a filter and which is capable of securing a sufficient bonding strength to partition walls even in a case where plugging portions have a high porosity. A honeycomb structure includes: porous partition walls arranged to define cells connecting two end faces to each other; and plugging portions arranged to plug the cells in either end face. A porosity of each plugging portion is 50 to 90%, and an area of pores each having a sectional area of 0.15 mm2 or more is 30% or more of a total pore area, the sectional area occupying an arbitrary section including a central axis of the plugging portion.
摘要:
Wirings connected to a gate electrode of a slave switch circuit cell for substrate bias circuits are respectively electrically connected to a wiring for a power supply potential and a wiring for a reference potential. Thus, the switch operation of the slave switch circuit cell is made invalid. Wirings connected to n wells of respective circuit cells are electrically connected to a wiring for the power supply potential, and wirings connected to p wells of the respective circuit cells are electrically connected to the wiring. Thus, the n wells are fixed to the power supply potential, and the p wells are fixed to the reference potential.