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Analysis

1.P/2015/00014Process for forming nickel molds
KH 04.03.2015
Int.Class Appl.No P/2015/00014 Applicant AGENCY FOR SCIENCE, TECHNOLOGY AND RESERCH Inventor KAMBIZ ANSARI
Process for forming nickel molds
2.P/2015/00047TRAFFIC SIGNAL CONTROL DEVICE
KH 21.01.2017
Int.Class Appl.No P/2015/00047 Applicant KYOSAN ELECTRIC MFG. CO.,LTD. Inventor Kunihiko TANAKA
A main control section determines a traffic light control unit among a plurality of traffic light control units to which an instruction signal is to be output, based on whether or not a pedestrian has issued a proceed request, and the traffic light control unit to which the instruction signal was output previously, and outputs the instruction signal to the determined traffic light control unit. When the instruction signal has been input from the main control section, the traffic light control unit performs a display control process on the control target traffic signal unit according to the color display sequence specified by sequential display control data stored therein. Specifically, when the instruction signal has been input, the traffic light control unit spontaneously performs the display control process on the control target traffic signal unit according to the sequence (color display sequence) stored therein.
3.P/2015/00065METHOD AND SYSTEM FOR REFORMING PLANT-DERIVED BIOFUEL AND METHOD OF PRODUCING PLANT-DERIVED BIOFUEL
KH 29.06.2017
Int.Class Appl.No P/2015/00065 Applicant Hitachi, Ltd. Inventor Mitsugu SUGASAWA
A device and method for reforming biofuel that can remove potassium and chlorine in a simple manner. [Means of Solution] Comprising a pulverizing device 2 for pulverizing plants which are raw material, an elution device 6 for eluting a water-soluble substance under atmospheric pressure environments from the plants pulverized by the pulverizing device 2, a dehydrator 14 which is a dehydrating device for dehydrating the plants discharged from the elution device 6, a silo 17 for storing the plants dehydrated by the dehydrating device 14, and an elution liquid tank 20 for storing the solution discharged from the dehydrating device 14.
4.P/2019/00019 PCTSTEELMAKING SLAG FOR FERTILIZER RAW MATERIAL, METHOD FOR PRODUCING STEELMAKING SLAG FOR FERTILIZER RAW MATERIAL, METHOD FOR PRODUCING FERTILIZER, AND FERTILIZER APPLICATION METHOD
KH 28.12.2019
Int.Class C05D 3/04
CCHEMISTRY; METALLURGY
05FERTILISERS; MANUFACTURE THEREOF
DINORGANIC FERTILISERS NOT COVERED BY SUBCLASSES C05B, C05C86; FERTILISERS PRODUCING CARBON DIOXIDE
3Calcareous fertilisers
04from blast-furnace slag or other slags containing lime or calcium silicates
Appl.No P/2019/00019 PCT Applicant NIPPON STEEL & SUMITOMO METAL CORPORATION Inventor ITO, Kimio
[Problem] To easily and inexpensively supply multiple types of elements as plant fertilizer while avoiding runoff caused by flowing water, even in acidic soils in regions which receive a lot of rainfall and regions where rivers often flood. [Solution] This steelmaking slag for use as a fertilizer starting material contains, in mass%, PO2O in the amount or 2-8%, inclusive, MnO in the amount of 3-10%, inclusive, boron in the amount of at least 0.005% and less than 0.05%, total iron in the amount of 15-30%, inclusive, CaO in the amount of at least 29% and less than 38%, SiO5 in the amount or 2-8%, inclusive, MnO in the amount of 3-10%, inclusive, boron in the amount of at least 0.005% and less than 0.05%, total iron in the amount of 15-30%, inclusive, CaO in the amount of at least 29% and less than 38%, SiO in the amount of at least 16% and less than 22%, sulfur in the amount of 0.1-0.6%, inclusive, MgO in the amount of 4-8%, inclusive, and Al2 in the amount of at least 16% and less than 22%, sulfur in the amount of 0.1-0.6%, inclusive, MgO in the amount of 4-8%, inclusive, and AlO2O in the amount of 0.5-3%, inclusive. The proportion of soluble P3 in the amount of 0.5-3%, inclusive. The proportion of soluble PO2O in the P5 in the PO2O is at least 50%, the proportion of soluble MnO in the MnO is at least 80%, the slag basicity represented as (CaO content/SiO5 is at least 50%, the proportion of soluble MnO in the MnO is at least 80%, the slag basicity represented as (CaO content/SiO content) is greater than 1.5 and no greater than 2.2, and the bulk specific gravity is 2.3-3.2, inclusive.2 content) is greater than 1.5 and no greater than 2.2, and the bulk specific gravity is 2.3-3.2, inclusive.
5.P/2014/00028PC girder bridge structure
KH 11.04.2017
Int.Class Appl.No P/2014/00028 Applicant KUROSAWA CONSTUCTION CO., LTD Inventor Ryohei KUROSAWA
A PC girder bride stucture is constructed by overhanging bridge body blocks formed of cast-in-place concrete or segment blocks frome one section to another between bridge piers on the basis of an overhanging erection method. The struture includes concrete blocks formed by rabbeting from one section to an other continuously in the longitudinal direction, PC steel members arranged continuously in main girders except for the main girder in a central section, which corresponds to a closure portion between spans. The PC steel member are arranged the lower portion of the central section so as to penetrate through adjacent section and continue to the overhanging bridge body blocks of next section in a curved manner through an the PC steel members arranged in the lower portion of the main girder in the central section are fixed in a strained manner to apply a prestress to the concrete of the main girders.
6.P/2015/00063CULTURING WATER FOR CRUSTACEAN SEED SUCH AS SHRIMP, CRAB, MANTIS SHRIMP AND THE LIKE, AND CULTURE METHOD OF CRUSTACEAN SEED USING SAME
KH 27.05.2017
Int.Class Appl.No P/2015/00063 Applicant KAKE EDUCATIONAL INSTITUTION Inventor Toshimasa YAMAMOTO

While suitable environmental water is successful in culturing fishes, preferable results have not been achieved in the production of crustacean seeds such as shrimp. Growth of zoea larva was delayed, and expected yield of the seed could not be achieved, which in turn increases the culture cost and poses difficulty in profitability. Given amounts of strontium, iodine and bromine, or some of them are added to culturing water to promote calcium metabolism of crustacean larva, afford smooth shedding to promote growth and increase the yield.

7.P/2018/00022METHOD OF PRODUCING PACKING BODY
KH 20.08.2018
Int.Class Appl.No P/2018/00022 Applicant CORELEX SHIN-EI CO., LTD. Inventor FUKUDA Shinichi
A method of producing a packing body that prevents stacked packaging bodies from becoming damaged at a low cost. [Solution to Problem] The method includes the steps of; stacking a plurality of packaging bodies 10, placing reinforcing sheet materials 13, 14 so as to wrap outer peripheries of side surfaces of the packaging bodies 10 that have been stacked, and fastening the packaging bodies 10 that have been stacked by placing a fastening band 12 from an outer side of the reinforcing sheet materials 13, 14. The step of placing reinforcing sheet materials 13, 14 includes placing the reinforcing sheet materials 13, 14 on the side surfaces of the packaging bodies 10 to protrude an end portion of the reinforcing sheet material 13 from an upper surface of a packaging body 10 in an uppermost layer and to protrude end portion of the reinforcing sheet material 14 from a lower surface of a packaging body 10 in a lowermost layer. The step of fastening the packaging bodies 10 that have been stacked includes bending the end portion of the reinforcing sheet material 13 that protrudes from the upper surface of the packaging body 10 in the uppermost layer and the end portion of the reinforcing sheet material 14 that protrudes from the lower surface of the packaging body 10 in the lowermost layer towards a side of an upper surface of the uppermost layer and towards a side of a lower surface of the lowermost layer, respectively, covering an edge portion of each packaging body 10, and placing the fastening band 12 on the edge portions with the reinforcing sheet materials 13, 14 interposed therebetween. [Selected drawing] FIG.1
8.P/2018/00022 PCTMETHOD OF PRODUCING PACKING BODY
KH 20.08.2018
Int.Class B65D 71/04
BPERFORMING OPERATIONS; TRANSPORTING
65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
71Bundles of articles held together by packaging elements for convenience of storage or transport, e.g. portable segregating carrier for plural receptacles such as beer cans or pop bottles; Bales of material
02Arrangements of flexible binders
04with protecting or supporting elements arranged between binder and articles or materials, e.g. for preventing chafing of binder
Appl.No P/2018/00022 PCT Applicant CORELEX SHIN-EI CO., LTD. Inventor FUKUDA Shinichi

A method of producing a packing body that prevents stacked packaging bodies from becoming damaged at a low cost. [Solution to Problem] The method includes the steps of; stacking a plurality of packaging bodies 10, placing reinforcing sheet materials 13, 14 so as to wrap outer peripheries of side surfaces of the packaging bodies 10 that have been stacked, and fastening the packaging bodies 10 that have been stacked by placing a fastening band 12 from an outer side of the reinforcing sheet materials 13, 14. The step of placing reinforcing sheet materials 13, 14 includes placing the reinforcing sheet materials 13, 14 on the side surfaces of the packaging bodies 10 to protrude an end portion of the reinforcing sheet material 13 from an upper surface of a packaging body 10 in an uppermost layer and to protrude end portion of the reinforcing sheet material 14 from a lower surface of a packaging body 10 in a lowermost layer. The step of fastening the packaging bodies 10 that have been stacked includes bending the end portion of the reinforcing sheet material 13 that protrudes from the upper surface of the packaging body 10 in the uppermost layer and the end portion of the reinforcing sheet material 14 that protrudes from the lower surface of the packaging body 10 in the lowermost layer towards a side of an upper surface of the uppermost layer and towards a side of a lower surface of the lowermost layer, respectively, covering an edge portion of each packaging body 10, and placing the fastening band 12 on the edge portions with the reinforcing sheet materials 13, 14 interposed therebetween. [Selected drawing] FIG.1

9.P/2013/00001Improvements relating to medicament delivery devices
KH 21.09.2016
Int.Class Appl.No P/2013/00001 Applicant Innovata Biomed Limited Inventor Philip Carl Parkes
A medicament delivery device (1) comprises an actuation mechanism by successive operation of which a predetermined number of unit doses of medicament cab be dispensed. The device includes a locking mechanism for preventing further operation of the actuation mechanism after dispensing of said predetermined number of unit doses. The locking mechanism comprises a resilient member (51), a formation (18) with which the resilient member (51)is engageable to disable operation of the actuation mechanism, and a barrier member (20) that prevents engagement of the resilient member (51) and the formation (18) until said predetermined number of unit doses has been dispensed. The device (1) maybe a dry powder inhaler.
10.P/2016/00053BIOMETRIC INFORMATION MONITORING SYSTEM
KH 28.03.2018
Int.Class Appl.No P/2016/00053 Applicant Minebea Co., Ltd. Inventor Hiroyuki AKATSU
There is provided a biometric information monitoring system (100) for monitoring biometric information of a subject on a bed. The system includes: a plurality of load detectors (11, 12, 13, 14) which are placed in the bed (BD) or under feet of the bed and which detect a load of the subject; a center of gravity position calculating unit (31) which acquires a temporal variation of a center of gravity position of the subject based on the detected load of the subject; a body motion information determining unit (37) which acquires information on a body motion of the subject based on the acquired temporal variation of the center of gravity position of the subject; and a respiratory rate calculating unit (32) which calculates a respiratory rate of the subject based on the acquired temporal variation of the center of gravity position of the subject and the information on the body motion of the subject acquired by the body motion information determining unit (37).