Hydromatic Propellers |
Basic Operation Principles : |
Piston movement causes rotation of cam which incorporates a bevel gear (Hamilton Standard Propeller) . The oil forces which act upon the piston are controled by the governor |
Single Acting Propeller: The governor directs its pump output against the inboard side of piston only, A single acting propeller uses a single acting governor. This type of propeller makes use of three forces during constant speed operation , the blades centrifugal twisting moment and this force tends at all times to move the blades toward low pitch , oil at engine pressure applied against the outboard side of the propeller piston and this force to supplement the centrifugal twisting moment toward the low pitch during constant speed operation., and oil from governor pressure applied against the inboard side of the piston . The oil pressure from governor was boosted from the engine oil supply by governor pump and the force is controlled by metering the high pressure oil to or draining it from the inboard side of the propeller piston which balances centrifugal twisting moment and oil at the engine pressure. |
Double Acting Propeller: The governor directs its output either side of the piston as the operating condition required. Double acting propeller uses double acting governor. This type of propeller , the governor pump output oil is directed by the governor to either side of the propeller piston. |
Principle Operation of Double Acting : |
The Feathering System |
Feathering : For some basic model consists of a feathering pump, reservoir, a feathering time-delay switch, and a propeller feathering light. The propeller is feathered by moving the control in the cockpit against the low speed stop. This causes the pilot vave lift rod in the governor to hold the pilot valve in the decrease r.p.m. position regardless of the action of the governor flyweights. This causes the propeller blades to rotate through high pitch to the feathering position. |
Some model is initiated by depressing the feathering button. This action, auxiliary pump, feather solinoid, which positions the feathering valve to tranfer oil to feathering the propeller. When the propeller has been fully feathered, oil pressure will buildup and operate a pressure cutout switch which will cause the auxiliary pump stop. Feathering may be also be accomplished by pulling the engine emergency shutdown handle or switch to the shutdown position. |
Unfeathering : Some model is accomblished by holding the feathering buttn switch in the out position for about 2 second . This creates an artificial underspeed condition at the governor and causes high-pressure oil from the feathering pump to be directed to the rear of the propeller piston. As soon as the piston has moved inward a short distance, the blades will have sufficient angle to start rotation of the engine. When this occurs , the un-feathering switch can be released and the governor will resume control of the propeller. |
Showing posts with label Aircraft Propellers. Show all posts
Showing posts with label Aircraft Propellers. Show all posts
Wednesday, June 20, 2018
Aircraft Propellers | Control and Operations (Part 3)
Aircraft Propellers | Control and Operations (Part 2)
Governor Operation Condition |
On-Speed Condition |
The pressure oil from the pump is relieved through the relief valve (6). Because the propeller counterweight (15) force toward high pitch is balanced by the oil force from cylinder (14) is prevented from moving, and the propeller does not chang pitch |
Under-Speed Condition |
Over-Speed Condition |
Flight Operation |
Takeoff : Placing the governor control in the full forward position . This position is setting the propeller blades to low pitch angle Engine r.p.m. will increase until it reaches the takeoff r.p.m. for which the governor has been set. From this setting , the r.p.m. will be held constant by the governor, which means that full power is available during takeoff and climb. |
Aircraft Propellers | Control and Operations (Part 1)
| AIRCRAFT PROPELLER CONTROL AND OPERATION |
Control and Operation |
Propeller Control |
basic requirement: For flight operation, an engine is demanded to deliver power within a relatively narrow band of operating rotation speeds. During flight, the speed-sensitive governor of the propeller automatically controls the blade angle as required to maintain a constant r.p.m. of the engine. |
Fundamental Forces : Three fundamental forces are used to control blade angle . These forces are: |
Constant Speed, Counterweight Propellers |
Governor Operation (Constant speed with counterweight ) the Governor supplies and controls the flow of oil to and from the propeller. The engine driven governor receives oil from the engine lubricating system and boost its pressure to that required to operate the pitch-changing mechanism. It consists essentially of : |
Principles of Operation (Constant Speed with Counterweight Propellers) |
Subscribe to:
Posts (Atom)
-
Because the priorities for military aircraft (engines) are different. While it is true that the high bypass turbofans have better fuel econ...
-
General Information Thrust is the force that move the aircraft through the air.Thrust is generated by the propulsion ...
-
AIRCRAFT PROPELLER CONTROL AND OPERATION Control and Operation Propeller Control basic requirement: For flight o...
