[ Problem Point ] We were looking for a heater that can heat high-pressure gas. [ ⇒Kaizen Point ] A halogen line heater is placed facing the metal pipe to heat it. Safe heating because it is in-line.
Read More »No.66 In-line heater for hydrogen gas heating
[ Problem Point ] We were looking for a heater that could safely heat hydrogen gas. [ ⇒Kaizen Point ] A halogen line heater is placed facing the metal pipe to heat it. Safe heating because it is in-line.
Read More »No.65 In-line heater for heating liquid ammonia
[ Problem Point ] We were looking for a heater that could safely heat liquid ammonia. [ ⇒Kaizen Point ] A halogen line heater is placed facing the metal pipe to heat it. Safe heating because it is in-line.
Read More »No.64 Inline heater for ammonia gas heating
[ Problem Point ] We were looking for a heater that could safely heat ammonia gas. [ ⇒Kaizen Point ] A halogen line heater is placed facing the metal pipe to heat it. Safe heating because it is in-line.
Read More »No.18 Light source for thin-layer chromatography
[ Problem Point ] A low-cost, easy-to-use analytical method was needed. [ ⇒Kaizen Point ] It was used for pharmaceutical purity tests and follow-up confirmation tests for synthetic experiments. Fluoresces green under UV irradiation at 254 nm For detection by ...
Read More »No.17 Ultraviolet fluorescence method for quantification of uranium ore
[ Problem Point ] A small amount of uranium needed to be quantified. [ ⇒Kaizen Point ] A molten material made by adding a small amount of uranium to sodium fluoride emits a yellow-green fluorescent color when exposed to ultraviolet ...
Read More »No.16 Absorptiometry light source for total protein quantification method
[ Problem Point ] In order to collect samples after measurement, an analytical method that does not use additives was required. [ ⇒Kaizen Point ] Absorbance was measured at a UV wavelength of 280 nm to quantify protein. For a ...
Read More »No.15 Ultraviolet fluorescence method of sulfur dioxide
[ Problem Point ] It was necessary to measure the concentration of sulfur dioxide emitted into the atmosphere. [ ⇒Kaizen Point ] Fluorescence is emitted when the SO2 molecules excited by irradiating the sample with UVC return to the ground ...
Read More »No.14 Synthesis of vitamin D by UV irradiation
[ Problem Point ] Poor health due to lack of vitamin D. [ ⇒Kaizen Point ] Exposure to ultraviolet rays (UV-B) with a wavelength of around 300 nm for about 10 minutes a day, Vitamin D was synthesized in the ...
Read More »No.5 Drying the epoxy resin
[ Problem Point ] There was no heater controller that could heat intermittently Even when there was no work, the heater was operating and power was wasted. Also, when the line stopped, cracks occurred in the dry part. And when ...
Read More »No.4 Heating of rubber molded products
[ Problem Point ] There was no heater controller that could heat intermittently Even when there was no work, the heater was operating and power was wasted. Also, when the line stopped, the heated part became defective. And when it ...
Read More »No.3 Preheating rubber molded products
[ Problem Point ] When the line stopped, the heated part became defective. And when it was restarted, there were cases where unprocessed products were generated due to forgetting to turn on the switch. Also, even when there was no ...
Read More »No.2 Drying of resin pellets
[ Problem Point ] When the line stopped, the heated part was fused. And when I restarted, there were cases where water droplets remained due to forgetting to turn on the switch. [ ⇒Kaizen Point ] Using a speed proportional ...
Read More »No.1 Heating of resin sheet
[ Problem Point ] When the line stopped, the heated part became defective. And when it was restarted, there were cases where unprocessed products were generated due to forgetting to turn on the switch. [ ⇒Kaizen Point ] Using the ...
Read More »No.61 Measures against freezing and frost formation in frozen warehouses
[ Problem Point ] Frequent malfunctions of heat shield doors due to freezing and sensors due to frost. [ ⇒Kaizen Point ] Because it vibrates and sublimates water molecules of frost and ice, It was possible to prevent frost and ...
Read More »No.60 Chemical liquid heater
[ Problem Point ] There was no good heater that could heat the chemical liquid at high speed. [ ⇒Kaizen Point ] Three halogen line heaters were combined to create a triangular space, and a quartz tube was passed through. ...
Read More »No.23 Thread trimming prevention by cooling the sewing needle
《Problem Point 》 The sewing thread of the chemical fiber was broken due to the frictional heat and I was in trouble. 《⇒Kaizen Point 》 An Air Blow Cooler was used. MTBF is improved because high-temperature yarn breakage does not ...
Read More »No.19 Cooling film cutting blade
《Problem Point 》 The resin was fused to the cutting blade due to frictional heat, which was a problem. 《⇒Kaizen Point 》 An Air Blow Cooler was used. The MTBF was improved because the resin did not adhere.
Read More »No.18 Cooling during film fusion sealing
《Problem Point 》 When the film was fused, it was sometimes peeled off due to residual heat. 《⇒Kaizen Point 》 An Air Blow Cooler was used. After thermocompression bonding, it was cooled by removing heat with a Air Blow Cooler. ...
Read More »No.12 Reproduction of thermal distortion
《Problem Point 》 There was no good equipment to pinpoint the sample to a low temperature. 《⇒Kaizen Point 》 An Air Blow Cooler was used. Pinpoint cooling is possible with the needle nozzle. Since the set temperature can be maintained ...
Read More »No.10 Electron microscope sample cooling
《Problem Point 》 There was no good equipment to pinpoint the sample to a low temperature. 《⇒Kaizen Point 》 An Air Blow Cooler was used. Pinpoint cooling is possible with the needle nozzle. Since the set temperature can be maintained ...
Read More »No.9 Refrigerant of Liebig condenser
《Problem Point 》 It was an environment where cooling water could not be used. 《⇒Kaizen Point 》 An Air Blow Cooler was used. With the combination of electricity and air, the water supply and drainage system could be omitted. Since ...
Read More »No.8 Refrigerant of Dewar condenser
《Problem Point 》 It was an environment where cooling water could not be used. 《⇒Kaizen Point 》 An Air Blow Cooler was used. With the combination of electricity and air, the water supply and drainage system could be omitted. Since ...
Read More »No.7 Refrigerant of Dimroth condenser
《Problem Point 》 It was an environment where cooling water could not be used. 《⇒Kaizen Point 》 An Air Blow Cooler was used. With the combination of electricity and air, the water supply and drainage system could be omitted. Since ...
Read More »No.6 Refrigerant of Allihn condenser
《Problem Point 》 It was an environment where cooling water could not be used. 《⇒Kaizen Point 》 An Air Blow Cooler was used. With the combination of electricity and air, the water supply and drainage system could be omitted. Since ...
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