Continuous intensive quenching apparatus
An intensive quenching (IQ) apparatus and method of quenching heated parts is provided. The IQ apparatus includes a chute for placing parts into a tank including liquid quenchant. The parts fall through the quenchant in the chute and are received by a conveyor belt. The parts are then transported on the conveyor through an inner channel of a conduit. An agitation rate of the quenchant in the inner channel is increased by an agitator.
1. A method for intensively quenching heated parts, the method comprising: delivering the parts into a quenchant contained in a tank via a chute; receiving the parts from the chute on a conveyor, wherein a portion of the · conveyor is located within an internal passage, with a constant cross-sectional area, of a conduit and encircled by the conduit; providing a constant quenchant flow velocity in the internal passage using an agitator, wherein the agitator causes the quenchant flow velocity in the internal passage of the conduit to be greater than a quenchant flow velocity outside the conduit; and transporting the received parts towards an exit from the quenchant using the conveyor.
2. The method of claim 1 , wherein the quenchant flow velocity is provided in a portion of the internal passage such that a film boiling process is eliminated from taking place on a surface of the parts.
3. The method of claim 2 , wherein the quenchant flow velocity in the portion of the internal passage is greater than 4 ft/sec.
4. The method of claim 1 , further comprising increasing the quenchant flow velocity in the chute using nozzles to supply quenchant to the chute and openings in the chute to allow quenchant to exit the chute.
5. The method of claim 1 , further comprising adjusting a speed of the conveyor based on properties of the parts.
6. The method of claim 5 , wherein the speed of the conveyor is adjusted such that a temperature of the parts leaving the quenchant is less than a temperature threshold.