A sprue is 250 mm long. The velocity of the molten metal at the top of the sprue is 0.15 m/s. The middle diameter of the sprue is 10 mm. The total cavity of the "runner system + mold" is 2.5 × 106 mm³. The viscosity of the molten metal is 0.0022 kg/(m · s) and the density is 2700 kg/m³. According to given information i. For a proper sprue design, calculate the bottom diameter of the sprue ii. Find the velocity at the bottom of the sprue iii. Find the volumetric and mass flow rates at the bottom of the sprue iv. Find the required time to fill the mold completely Is the flow laminar, mixed or turbulent at the bottom of the sprue? P v? h + -+ pg V. = constant 2g Q = A¡V1 = A½V½ h2 h1 A1 pVD Re TST Ст %3D A2

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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A sprue is 250 mm long. The velocity of the molten metal at the top of the sprue is
0.15 m/s. The middle diameter of the sprue is 10 mm. The total cavity of the
"runner system + mold" is 2.5 × 106 mm³. The viscosity of the molten metal is
0.0022 kg/(m · s) and the density is 2700 kg/m³.
According to given information
i. For a proper sprue design, calculate the bottom diameter of the sprue
ii. Find the velocity at the bottom of the sprue
iii. Find the volumetric and mass flow rates at the bottom of the sprue
iv. Find the required time to fill the mold completely
Is the flow laminar, mixed or turbulent at the bottom of the sprue?
P v?
h + -+
pg
V.
= constant
2g
Q = A¡V1 = A½V½
h2
h1
A1
pVD
Re
TST
Ст
A2
Transcribed Image Text:A sprue is 250 mm long. The velocity of the molten metal at the top of the sprue is 0.15 m/s. The middle diameter of the sprue is 10 mm. The total cavity of the "runner system + mold" is 2.5 × 106 mm³. The viscosity of the molten metal is 0.0022 kg/(m · s) and the density is 2700 kg/m³. According to given information i. For a proper sprue design, calculate the bottom diameter of the sprue ii. Find the velocity at the bottom of the sprue iii. Find the volumetric and mass flow rates at the bottom of the sprue iv. Find the required time to fill the mold completely Is the flow laminar, mixed or turbulent at the bottom of the sprue? P v? h + -+ pg V. = constant 2g Q = A¡V1 = A½V½ h2 h1 A1 pVD Re TST Ст A2
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