202511;GGBFS, an industrial by-product of blast furnaces during iron production, forms by extinguishing the molten by-products of steel making with water, resulting in a granular and
21;The powdered slag was pressed in the same conditions as for the pellet test, with the maximum height of the cylindrical sample equal to ½ of the cut refractory product. The
131;As an example, mould powder can be entrapped into the liquid steel due to (i) turbulence at the meniscus (Fig 2A), (ii) vortexing (Fig 2C), (iii) emulsification induced by
The reduction of P 2 O 5 in the molten slag mainly occurs on the surface of the slag. 3.3 Detection and analysis of the slag phase 3.3.1 Phase of the converter slag. Before the experiment, the
boiler cameras fitted with slag detection software to compare furnace buildup of slag generated from high iron/high alkalis, low fusion temperature ILB/NAPP coal blends. The blends are
Powdered slag Solid Slag Layer Slag liquid pool Solidified Shell Molten Steel Mould wide face Air Cooling water molten steel-argon-slag molten steel-slag automatic detection of surface and
rapid and reliable method of early slag detection. It offers real-time, permanent monitoring of the tapping stream using an infrared camera through which a quick and reliable differentiation
Electromagnetic Slag Detection for Furnace. The EMLI-LadeSlag system continuously monitors steel flow during ladle teeming at the caster and provides alarm outputs at the onset of slag in
Manufacturer of Synthetic Slag - Slag Conditioner Briquetes, Cast Refiner Slag Magician Powder, Almix Powder Slag Killer and Slag Conditioner Powder ALOXE ALMIX offered by Guru
B22 — CASTING; POWDER METALLURGY. The slag detection sensitivity constant should be set to maximum, and automatic tundish level control should be disengaged. In this manner
The lower limit of detection based on 5% scale deflection is a function of the if ns i.2 c JC ro <u Q_ 90-80-70-60-50-40-30-20-10-/ / I 20 I 40 T 60 I 80 T 100 Percent slag in powdered glass
200391;Depending on the composition of the original sample, this corresponds to a detection limit ranging from 0.8 μg Cr Experimental test work with powdered slag materials
JPH0688127B2 JP63198913A JP19891388A JPH0688127B2 JP H0688127 B2 JPH0688127 B2 JP H0688127B2 JP 63198913 A JP63198913 A JP 63198913A JP 19891388 A JP19891388
20191215;The effect of tap oxygen, powder entrapment, N2 pick up, moisture in Tundish and other parameters on sliver defect was studied. It is very important to have a slag
20141031;In 1980s, Swede firstly adopted electromagnetic method to detect the liquid slag [1].In 1987, Julius developed the Amepa ® SSS based on the electromagnetic induction
202511;GGBFS, an industrial by-product of blast furnaces during iron production, forms by extinguishing the molten by-products of steel making with water, resulting in a granular and
2025513;Slag and dross are unavoidable byproducts of melting metal. Slag forms when rust, dirt and sand from the charge material and refractory material, eroded from the furnace
21;The powdered slag was pressed in the same conditions as for the pellet test, with the maximum height of the cylindrical sample equal to ½ of the cut refractory product. The
131;As an example, mould powder can be entrapped into the liquid steel due to (i) turbulence at the meniscus (Fig 2A), (ii) vortexing (Fig 2C), (iii) emulsification induced by
20191219;After opening each ladle, the tundish slag receives about 40 kg of ladle well filler. Approximately 400 kg of ladle well filler gets into tundish slag after 10 heats of casting
RAMON Ladle Slag Detection System (Electromagnetic Type) RAMON Automatic Robot Powder Feeding System is a high-performance intelligent equipment based on industrial
EMLI-LadleSlag / Electromagnetic slag detection for casting ladles. AGELLIS EMLI-LadleSlag constantly monitors the steel flow during draining the ladle at the caster and provides alarm
201511;The use of finely-ground slag in these experiments prevented the reacted grains from being subjected to detailed petrographic study, and consequently these experiments
202511;GGBFS, an industrial by-product of blast furnaces during iron production, forms by extinguishing the molten by-products of steel making with water, resulting in a granular and
111;In China, converter slag accounts for more than 80% of steel slag (Seetharaman, 2013). It should be used according to the concept of internal and external
A Steel slag 100 wt% Fine-powdered blast furnace slag Slaked lime or lime dust and so on Not specified (However, effect of slaked lime as alkaline activator ceases to increase above the
20191215;The effect of tap oxygen, powder entrapment, N2 pick up, moisture in Tundish and other parameters on sliver defect was studied. It is very important to have a slag detection system (SDS) in
(Ar, Air, Electric / slag detection) • Sample taking and temperature measurement • Mono tube handling • Casting powder feeding Robotic Application for Ladle Preparation • Oxygen lancing
20191219;After opening each ladle, the tundish slag receives about 40 kg of ladle well filler. Approximately 400 kg of ladle well filler gets into tundish slag after 10 heats of casting