Friday, 16 August 2013

Beechcraft Model 400 Beechjet light Corporate Jet



The Beechcraft 400A aircraft was originally designed as the Mitsubishi MU-300 Diamond, an all-new, all-jet development to complement and slot above the Mitsubishi MU-2 and provide Mitsubishi Heavy Industries with their top-of-the-line light private jet corporate aircraft model (hence the name “Diamond”). Beechcraft bought the production rights and began manufacturing it as their own model, initially redesignated as the Beechjet 400. The Beechjet 400 was certified by the FAA in May 1985.



Beechjet’s first showed up on the radar in 1985, when the company purchased the design of the Diamond II executive jet from Mitsubishi.  A year later, Beech announced production of the Beechjet 400, and finally the 400A in 1989.  In production for 17 years (1986-2003), Beech built 421 of the 400 and 400A aircraft before eventually being acquired by Raytheon.  However, the Beechjet series, namely the 400A, remains a strong and successful competitor in the entry-level business jet market.

Although the 400 was a fine aircraft, Beech made leaps and bounds with its light private jet: the 400A.   Upgrades include increased payload and ceiling; greater maximum landing weight; 150 lb. more fuel storage; greater cabin volume; a rear lavatory; and improved cabin soundproofing.  These design refinements and modifications make the 400A a more efficient, spacious and comfortable jet compared to its predecessor.



Beechjet 400A receives its power from two Pratt and Whitney of Canada JT15D-5 turbo-fan engines.   Each engine produces 2,900 lbs of thrust and has an inspection interval of 3,500 hours.

These engines, along with unique design features, allow the 400A to travel 1,500 nautical miles at a speed of mach 0.78.  Its maximum speed is 446 knots, another improvement from its predecessor.  The 400A has a maximum payload of 2,172 lbs and a maximum flight ceiling of 45,000 feet.  53 cubic feet of baggage space is an additional amenity.

The 400A employs the Collins Pro Line 4 avionics system.  The system includes the Collins FCS-850 digital flight control system, Collins FMS-850 flight management system, EFIS (EFD-871), Collins MFD-871 (single multifunction display), Collins WXR-840 color weather radar, and Collins ALT-55B radio altimeter and Rosemount air data system.  The 400A was the first aircraft to be certified with such an advanced cockpit suite.


The 400A has undergone vast design improvements from the original 400.  It is mainly constructed of aerospace light alloys.  Three separate fueling ports (one in each wing and one in the fuselage) combine to hold 4,911 lbs of fuel.  The fuselage’s new fuel tank located under the floor allows more cabin space.  The aircraft is designed to consume fuel in the fuselage compartment first to steady the wings’ bending moment.  Additionally, the brakes incorporate anti-skid logic to allow a greater maximum landing weight.

Private Jet Photo Beechjet 400A interiorThe cabin of the 400A is more spacious thanks to the aforementioned refinements.  Carrying 7 or 8 passengers and a crew of two, the interior dimensions measure: 15.6 ft long, 4.8 ft high and 4.9 ft wide.   Passengers enjoy fully berthable seats that swivel up to 180 degrees.  A cabin baggage area and refreshment cabinet have been added.   Newly located engine mounts and the addition of sound-dampening materials makes for a more enjoyable and quieter cabin environment.

With such strong design features, it is not surprising that the Beechjet 400A serves as the basis for the military T-1 Jayhawk tanker and transport aircrew trainer.  The 400A has been continuously redesigned, and has now evolved into Raytheon’s successful Hawker 400.  Despite its age, the original iteration of the 400A still remains a strong contender in its class, and is ideal for corporate or individual travel.

Specifications :

General characteristics

Crew: 2 pilots
Capacity: 7—9 passengers
Length: 48 ft 5 in (14.76 m)
Wingspan: 43 ft 6 in (13.26 m)
Height: 13 ft 11 in (4.24 m)
Wing area: 241.4 sq ft (22.43 m²)
Empty weight: 10,050 lb (4,558 kg)
Useful load: 5,850 lb (2,653 kg)
Max. takeoff weight: 16,100 lb (7,303 kg)
Powerplant: 2 × Pratt & Whitney Canada JT15D-5 turbofan, 2,900 lbf (12.9 kN) each

Performance

Maximum speed: 468 knots (866 km/h, 539 mph) (Mach 0.78 MMO)
Cruise speed: 443 knots (820 km/h, 510 mph) at 23,000 ft (7,000 m)
Stall speed: 92 knots (171 km/h, 106 mph) (full flaps)
Range: 1,693 nmi (3,135 km, 1,949 mi) at 45,000 ft (13,700 m)
Service ceiling: 45,000 ft (13,700 m)
Rate of climb: 3,770 ft/min (19.2 m/s)


Surbhi Maheshwari [MBA Fin / Mktg ] 
Manager Finance
On Line Assistence :
MSN : SurbhiM.AeroSoft@hotmail.com


https://www.smashwords.com/books/view/336260

Pilot’s Career Guide

Cover for 'Pilot’s  Career  Guide'
By AeroSoft Corp
Rating: Not yet rated. 
Published: July 13, 2013 
Words: 25,040 (approximate)
Language: English
ISBN: 9781301650040


Short description

International Airline Pilot’s Career Guide Learn Step By Step How to Become an International Airlines Pilot By Shekhar Gupta And Niriha Khajanchi 

Extended description

1. Your Aviation Career Starts Here
2. Pilot Training
3. Flight Ratings – SPL, PPL, CPL, ATPL
4. Pilot and Personal Computer
5. Medical Requirements for Pilots


Order here
https://www.smashwords.com/books/view/336260










Thursday, 15 August 2013

The Grumman G-73 Mallard



The Grumman G-73 Mallard is a medium, twin engine amphibious aircraft. Many have been modified by replacing the original Pratt & Whitney Wasp H radial engines with modern turboprop engines. Manufactured from 1946 to 1951, production ended when Grumman's larger SA-16 Albatross was introduced.



Country of origin : United States of America

Type : Ten seat utility amphibious transport

History : Following in the footsteps of the smaller Goose and Widgeon before it, Grumman developed the G-73 Mallard amphibian for commercial use.
Developed in the immediate postwar years, the Mallard is of similar overall configuration to Grumman's earlier amphibious designs in that it features twin radial engines on a high mounted wing with under wing floats, retractable undercarriage and an unswept tail unit. Unlike the earlier aircraft the Mallard features tricycle undercarriage, a stressed skin two step hull and fuel can be carried in the wingtip tanks.
The Mallard prototype first flew on April 30 1946, and the type entered service shortly afterwards in September that year with a Canadian operator. The Mallard was designed for regional airline operations with two pilots and 10 passengers, but most of the 59 delivered were for corporate use. Today only a small number remain in use, but their unique amphibious capability means they remain popular, particularly with tourist operators.
Like the earlier and smaller Goose, the Mallard has been fitted with Pratt & Whitney Canada PT6A turboprops. Frakes Aviation in the USA reengined a small number of Mallards as G-73Ts in the early 1970s, the PT6s substantially boosting performance and operating economy. The first Frakes conversion first flew in 1969 and an FAA supplemental type certificate was awarded in October 1970.
In early 1994 a plan emerged which would see the Mallard reenter production in the Czech Republic. Aero and Levov of the Czech Republic, and Duncan Aviation of the USA hoped to raise the necessary capital to restart the line in the late 1990s. These plans later lapsed.


Design and development : Building on the success of the Goose and Widgeon, Grumman Aircraft developed Design 73, the larger "Mallard" for commercial use. Retaining many of the features of the smaller aircraft, such as twin radials, high wings with underwing floats, retractable gear and a large straight tail, the company built 59 Mallards between 1946 and 1951. Unlike the smaller aircraft, the Mallard featured tricycle gear, a stressed skin, two step hull and wingtip fuel tanks.
Powerplants : G-73 - Two 450kW (600hp) Pratt & Whitney R1340S3H1 Wasp nine cylinder piston radial engines driving three blade constant speed propellers. G-73T - Two 530kW (715shp) Pratt & Whitney Canada PT6A27 or PT6A-34 turboprops.

Performance : G-73 - Max speed 346km/h (187kt), cruising speed 290km/h (157kt). Initial rate of climb 1290ft/min. Service ceiling 23,000ft. Range with max fuel 2220km (1655nm). G-73T - Max cruising speed 354km/h (191kt), economical cruising speed 346km/h (187kt). Initial rate of climb 1350ft/min. Service ceiling 24,500ft. Range with max fuel and no reserves 2595km (1400nm), with max payload and no reserves 1388km (750nm).

Weights : G-73 - Empty 4240kg (9350lb), max takeoff 5783kg (12,750lb). G-73T - Empty equipped 3970kg (8750lb), max takeoff 6350kg (14,000lb).

Dimensions : G-73/G-73T - Wing span 20.32m (66ft 8in), length 14.73m (48ft 4in), height on undercarriage 5.72m (18ft 9in). Wing area 41.3m2 (444sq ft).

Capacity : Crew of two. Main cabin seating for up to 10 passengers. Many aircraft used as executive transports with customised interiors.

Production : 59 Mallards built between 1946 and 1951. Small numbers later converted to turboprop power.




Surbhi Maheshwari [MBA Fin / Mktg ] 
Manager Finance
On Line Assistence :
MSN : SurbhiM.AeroSoft@hotmail.com

PILOT’S CAREER GUIDE


Cover for 'Pilot’s  Career  Guide'
By AeroSoft Corp
Rating: Not yet rated. 
Published: July 13, 2013 
Words: 25,040 (approximate)
Language: English
ISBN: 9781301650040


SHORT DESCRIPTION

International Airline Pilot’s Career Guide Learn Step By Step How to Become an International Airlines Pilot By Shekhar Gupta And Niriha Khajanchi 

EXTENDED DESCRIPTION

1. Your Aviation Career Starts Here
2. Pilot Training
3. Flight Ratings – SPL, PPL, CPL, ATPL
4. Pilot and Personal Computer
5. Medical Requirements for Pilots


Order Here 






Bristol 175 Britannia 312



Bristol 175 Britannia 312

Manufacturer:
Bristol
Type/Model:
Britannia
Registration:
G-AOVT
Colour Scheme:
Monarch Airlines
Location:
Duxford, United Kingdom
Taken By:
Danish Aviation Photo
Date Taken:
8th September 2012
Image ID:
159845



The Civil Aircraft Collection
At present the DAS civil aircraft collection comprises:


Avro York - G-ANTK
This aircraft recently completed a 20 year restoration and can be seen in AirSpace.
Bristol Type 175 Britannia 312 - G-AOVT
On the flight line.
British Aircraft Corporation One-Eleven Series 501 - G-AVMU
On the flight line.
De Havilland DH104 Dove - G-ALFU
Suspended from the roof in AirSpace
De Havilland DH106 Comet 4 - G-APDB
Repainted externally and located in Airspace.
Handley Page HP81 Hermes 4 (Fuselage only) - G-ALDG
Restored externally and internally and located in Airspace.
Handley Page HPR7 Dart Herald - G-APWJ
Undergoing extensive restoration and located on the flight line.
Hawker Siddeley 121 Trident 2E - G-AVFB
On the flight line.
Vickers V701 Viscount - G-ALWF
On the flight line.
Vickers Super VC10 Type 1151 - G-ASGC
On the flight line.



The Society aims to make the collection accessible to the public subject to serviceability. Concorde is normally open when the museum is open, and most other aircraft can be visited on airshow Days. Aircraft can also be made available for filming and other events. To arrange this or to visit a specific aircraft please contact DAS.



Surbhi Maheshwari [MBA Fin / Mktg ] 
Manager Finance
On Line Assistence :
MSN : SurbhiM.AeroSoft@hotmail.com

PILOT’S CAREER GUIDE


Cover for 'Pilot’s  Career  Guide'
By AeroSoft Corp
Rating: Not yet rated. 
Published: July 13, 2013 
Words: 25,040 (approximate)
Language: English
ISBN: 9781301650040


SHORT DESCRIPTION

International Airline Pilot’s Career Guide Learn Step By Step How to Become an International Airlines Pilot By Shekhar Gupta And Niriha Khajanchi 

EXTENDED DESCRIPTION

1. Your Aviation Career Starts Here
2. Pilot Training
3. Flight Ratings – SPL, PPL, CPL, ATPL
4. Pilot and Personal Computer
5. Medical Requirements for Pilots











Tuesday, 13 August 2013

Aircrafts

 An aircraft is a machine that is able to fly by gaining support from the air, or, in general, the atmosphere of a planet. It counters the force of gravity by using either static lift or by using the dynamic lift of an airfoil. or in a few cases the downward thrust from jet engines.


The human activity that surrounds aircraft is called aviation. Crewed aircraft are flown by an onboard pilot, but unmanned aerial vehicles may be remotely controlled or self-controlled by onboard computers. Aircraft may be classified by different criteria, such as lift type, propulsion, usage and others.



Defination- A machine or device, such as an airplane, helicopter, glider, or dirigible, that is capable of atmospheric flight.
any machine supported for flight in the air by buoyancy or by the dynamic action of air on its surfaces, esp. powered airplanes, gliders, and helicopters.

Aircraft - A vehicle that can flyaircraft - a vehicle that can fly.              
fly-by, flypast, flyover - a flight at a low altitude (usually of military aircraft) over spectators on the ground.
crash landing - an emergency landing under circumstances where a normal landing is impossible (usually damaging the aircraft)
crop-dusting, spraying - the dispersion of fungicides or insecticides or fertilizer on growing crops (often from a low-flying aircraft)
stabilisation, stabilization - the act of making something (as a vessel or aircraft) less likely to overturn
aircraft engine - the engine that powers and aircraft
bay - a compartment in an aircraft used for some specific purpose; "he opened the bomb bay"
bogy, bogie, bogey - an unidentified (and possibly enemy) aircraft
cabin - the enclosed compartment of an aircraft or spacecraft where passengers are carried
cockpit - compartment where the pilot sits while flying the aircraft
craft - a vehicle designed for navigation in or on water or air or through outer space
cruise missile - an unmanned aircraft that is a self-contained bomb
fuel system - equipment in a motor vehicle or aircraft that delivers fuel to the engine
heavier-than-air craft - a non-buoyant aircraft that requires a source of power to hold it aloft and to propel it
lighter-than-air craft - aircraft supported by its own buoyancy
nose - a front that resembles a human nose (especially the front of an aircraft); "the nose of the rocket heated up on reentry"
skeletal frame, underframe, skeleton, frame - the internal supporting structure that gives an artifact its shape; "the building has a steel skeleton"
skin - an outer surface (usually thin); "the skin of an airplane"
stealth aircraft - an aircraft designed in accordance with technology that makes detection by radar difficult
destabilization - an event that causes a loss of equilibrium (as of a ship or aircraft)
driftage - the deviation (by a vessel or aircraft) from its intended course due to drifting
fleet - group of aircraft operating together under the same ownership
airplane pilot, pilot - someone who is licensed to operate an aircraft in flight
brownout, dimout, blackout - darkness resulting from the extinction of lights (as in a city invisible to enemy aircraft)
aviate, pilot, fly - operate an airplane; "The pilot flew to Cuba"
touch down - come or bring (a plane) to a landing; "the plane touched down at noon"


What Is Aircraft Grade Aluminum?
Aircraft grade aluminium is a list of several aluminium grades used in the manufacture of different aircraft. Some of these grades are: 2011-T3, 2219, 6061-T6, 7075-T6 and 7075-T6. Aluminium is used in making of aircrafts because of its light weight property.


                                                                                                 Aircraft types for charter
We work with all well renowned aircraft operators providing high quality aircraft and complying with the regulations set forth by the Civil Aviation Authorities. If you need a business jet, we'll get you one. If you need a jumbo jet, we'll get that too. Or any other type of small or large aircraft. Cargo planes or helicopters - you name them.
We supply all kinds of aircraft for all kinds of missions. Anytime you need them. Anywhere you want them.

Helicopters
Helicopters
A helicopter is one of the most convenient and timesaving ways to transfer between the city and airport, alternatively an easy way to reach remote destinations.

Twin piston
Twin Pistons
A economical aircraft range suitable for short distance flights. Aircraft seating capacity ranging from 3 to 8 passengers.

Turboprops
Turboprops
A wide range of aircraft suitable for short and medium distance flights with a duration of up to 2-4 hours. Aircraft seating capacity ranging from 4 to 70 passengers.

Business Jets
Executive Jets
An Executive Jet is the most time efficient way of travel, suitable for medium or long distance flights. Aircraft seating capacity ranging from 4 to 16 passengers.

Airliners
Airliners
Large jet aircraft suitable for all kinds of flights. Aircraft seating capacity ranging from 50 to 400 passengers.

Cargo aircraft
Cargo Aircraft
Any type of cargo. Ranging from short notice flights carrying vital spare parts up to large cargo aircraft that can transport any volumnious goods.




Mirgaya Thakur[MBA HR]
Management Trainee
                                                                                                                                                          

Gtalk : MirgayaT.AeroSoft@gmail.com
Y! Messenger : MirgayaT.AeroSoft@yahoo.com
Rediff Bol : MirgayaT.AeroSoft@rediffmail.com
MSN : MirgayaT.AeroSoft@hotmail.com

Pilot’s Career Guide


Cover for 'Pilot’s  Career  Guide'
By AeroSoft Corp
Rating: Not yet rated. 
Published: July 13, 2013 
Words: 25,040 (approximate)
Language: English
ISBN: 9781301650040


Short description

International Airline Pilot’s Career Guide Learn Step By Step How to Become an International Airlines Pilot By Shekhar Gupta And Niriha Khajanchi 

Extended description

1. Your Aviation Career Starts Here
2. Pilot Training
3. Flight Ratings – SPL, PPL, CPL, ATPL
4. Pilot and Personal Computer
5. Medical Requirements for Pilots