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How do they weigh an Aircraft .. !! ?

How do they do it ? 

Weighing general aviation (GA) aircraft, helicopters, turboprops, corporate jets, or transport category airliners can be accomplished in two ways: top of jack load cells and platform scales. Equipment selection is dependent on the operator’s needs and or equipment currently on hand, as well as the airframe manufacturer’s recommendations. Using load cells, whereby the aircraft is lifted up, or using a weighing platform. For this weighing, the aircraft is pulled by a tow truck onto yellow platforms. Each wheel has itsown set of scales. “They can calculate the total weight by combining the weights measured at all the platforms. It’s really important that the aircraft is standing exactly horizontally at this point. To ensure this, they use a plumb line, which is a thread with a piece of lead on the end.”

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weighing process .!

  1. Every four years each aircraft’s diary says it’s time for a weighing session.
  2. An appointment is made with Weight & Balance in the hangar.
  3. The aircraft is completely emptied. The kerosene is drained out of the aircraft, right down to the last drop. Then the drinking water and toilet water are removed.
  4. The Ground Engineers prepare the aircraft for weighing and make sure it really is empty and dry (rainwater can distort the measurement by adding extra weight).
  5. The Weight & Balance engineer uses a checklist to ensure the contents of the plane have been removed entirely.
  6. The aircraft is weighed.
  7. File the weight.

Weighing Basics 

Scales are like torque wrenches and you would not use a 100 foot-pound torque wrench to torque a 20 inch-pound nut. Why then would you use a 150,000-pound scale system to weigh a light GA aircraft, turboprop, or helicopter? We see this practice a lot where many shops and or technicians use large scale systems to weigh light aircraft, or they have the wrong size cell top to fit a large jet jack point.

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There are many military surplus scale units out there, be careful, many of these units still in use are analog meter movements and may or may not be calibrated correctly. When calibrating scale equipment we always recommend using an aviation-based calibration lab with an Airframe and Powerplant certified technician on staff or returning the unit directly to the manufacturer for calibration. Some units require specific calibration procedures, software access, and or adapters; to complete the calibration properly always audit your provider to ensure that the proper procedures and equipment are being used. Primary National Institute of Science and Technology (NIST) traceable certifications and test equipment are a must.

Universal Scale Weighs

AC30-60 ™ Aviation Weighing System

Top of jack systems:

The standard aircraft scale is a top of jack, cell-based scale, where each jack point receives a cell-based transducer on the top of the jack. This system’s advantage is, it is very easy to use and level the aircraft during the weighing operation. The system is easy to transport, light weight, and easy to set up.

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M2000-3-10CS Helicopter top of jack scale kit

Platform systems:

Platforms are available in many weight ranges and sizes, these systems either use ramps or the aircraft can be jacked and lowered onto the platforms during regular maintenance. Platforms are easy to use and are a choice for many shops that do not have jacks for the many types of aircraft to be serviced.

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Resolution and accuracy

As a general rule scales less than 10,000-pound capacity will measure in a 1-pound count and scales over that and up to 25,000 pounds will count in a 2-pound count. Large jet 50,000-pound scales will measure in a 5-pound count and so on. Always use a scale with the proper size and count resolution. The idea is to pick the right scale size and resolution for the aircraft type and accuracy needed.

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Courtesy : Aviationpro, klmblog,

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He is an aviation journalist and the founder of Jetline Marvel. Dawal gained a comprehensive understanding of the commercial aviation industry.  He has worked in a range of roles for more than 9 years in the aviation and aerospace industry. He has written more than 1700 articles in the aerospace industry. When he was 19 years old, he received a national award for his general innovations and holds the patent. He completed two postgraduate degrees simultaneously, one in Aerospace and the other in Management. Additionally, he authored nearly six textbooks on aviation and aerospace tailored for students in various educational institutions. jetlinem4(at)gmail.com

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Aerospace

Indigo will soon launch Air Taxi Service in India

Indigo will soon launch Air Taxi Service in India
Image:Archer Aviation

InterGlobe Enterprises, the parent brand of IndiGo, is set to revolutionize travel in India with its upcoming air taxi service.

Scheduled for a potential launch in 2026, this innovative venture promises a seamless journey for passengers between two bustling hubs. Delhi and Gurgaon in Haryana. The forthcoming service is projected to revolutionize the daily commute, offering passengers a swift aerial journey covering the distance in a mere 7 minutes.

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This remarkable efficiency contrasts starkly with the conventional 90-minute drive, underscoring the immense time-saving potential for commuters. The anticipated fare, ranging from Rs 2,000-3,000, makes this innovative mode of transport not only swift but also remarkably competitive in pricing.

At the heart of this ambitious endeavor lies a strategic partnership with Archer Aviation, a pioneer in electric vertical takeoff and landing (eVTOL) aircraft technology. Under this collaboration, Archer will supply 200 state-of-the-art eVTOL aircraft, representing an investment of US$ 1 billion. These cutting-edge aircraft, capable of accommodating up to four passengers alongside the pilot, epitomize the future of sustainable air travel.

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Powered by six battery packs, Archer’s eVTOL aircraft boast rapid charging capabilities, enabling a swift turnaround between flights. With a charging time of just 30-40 minutes, these eco-friendly aircraft ensure minimal downtime, maximizing operational efficiency.

Similar services are anticipated to be introduced by the joint venture in Bengaluru and Mumbai as well. Nevertheless, the service rollout period has not yet been made public by the company. Next year, it is anticipated to get its certification. Following this, the company will start the certification procedure with the Directorate General of Civil Aviation (DGCA).

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Aerospace

Which is bigger 777x or 787 aircraft ?

Which is bigger 777x or 787 aircraft ?

The 777X is a new series of the Boeing 777 family and is designed to be larger and more efficient than its predecessor. It features two variants: the 777-8 and the 777-9, being the larger of the two.

The Boeing 777X emerges as the larger sibling within the Boeing family, representing a significant leap forward in both size and efficiency. Comprising two variants, the 777-8 and the 777-9, the latter takes the crown as the larger of the two. With its expansive fuselage and impressive wingspan, the 777X is tailored for long-range journeys and boasts a substantial passenger capacity.

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On the other hand, the Boeing 787, affectionately known as the Dreamliner, occupies a niche in the market as a smaller yet formidable aircraft designed for medium to long-range flights. Its distinguishing feature lies in its composite fuselage, a technological marvel that renders it lighter and more fuel-efficient compared to conventional aluminum counterparts. The Boeing 777X is larger than the Boeing 787 aircraft.

When it comes to passenger capacity, the 777-9 reigns supreme, typically accommodating a sizeable contingent of 400-425 passengers in its standard configuration. In contrast, the 787, with its more modest dimensions, typically carries between 240-290 passengers, depending on the variant and layout.

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One of the remarkable innovations introduced with the 777X is its folding wingtips, a feature designed to address the logistical challenges of accommodating such a large aircraft in conventional airport gates. These folding wingtips enable the 777X to retract its wings, allowing it to fit into gates designed for smaller aircraft while still reaping the benefits of an extended wingspan during flight, thereby enhancing fuel efficiency and operational flexibility

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Aerospace

China Secures Production Certificate for Mass Production of Pilotless eVTOL Aircraft

China Secures Production Certificate for Mass Production of Pilotless eVTOL Aircraft
EHang

The first passenger-carrying pilotless electric vertical takeoff and landing (eVTOL) aircraft in the world, the EH216-S, has received the Production Certificate for its eVTOL aircraft from the Civil Aviation Administration of China (CAAC).

This is a significant milestone for EHang Holdings Limited, the leading UAM technology platform company in the world. This outstanding accomplishment is another big step towards mass manufacturing for the eVTOL aircraft and the ensuing commercial operations, building on the ground-breaking acquisition of the Type Certificate and the Standard Airworthiness Certificate for the EH216-S.

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The PC is a crucial certificate that the aircraft maker receives from the CAAC, the country’s aviation authority. By obtaining this certificate, EHang has demonstrated that it has set up a quality management system for mass production that satisfies the airworthiness regulation standards set forth by the CAAC, and the company has been given permission to continue producing mass quantities.

It is also a strong guarantee of the calibre of the goods made by EHang. Raw materials, supplier management, manufacturing organisation, production quality control, aircraft pre-delivery test, after-sales repair and maintenance, etc. are all included in the mass production quality management system for the EH216-S.

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To ensure that every aircraft and its components that roll off the production line strictly adhere to the approved type design and safety requirements, the system sets clear guidelines and documentation for every step in the production procedure. This ensures comprehensive traceability and safety control.

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