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Tampilkan postingan dengan label turning. Tampilkan semua postingan
Tampilkan postingan dengan label turning. Tampilkan semua postingan

Sabtu, 27 Februari 2016

Hull Turning Methods

I have shown a few projects in this blog over the past few months with the hulls being turned using different methods. The bigger the boat the more critical this operation is. The risks of damage to property and injury to people increase exponentially as the boat becomes more bulky and increases in weight. Imagine the difference between turning over a plywood hull that is 6.4m (21ft) long, 2.4m (710") wide, 1.2mm (311") deep and weighing 200kg (440lb) or a 50% scaled up version of the same hull. At 9.6m (316") long, 3.6m (1110") beam and 1.8m (511") deep, it will weigh 675kg (1488lb).

It has only increased 50% in all directions but the weight is more than 3x that of the smaller boat. The bulk becomes more difficult to manage and the weight to lift and lower becomes a major factor. If, at the same time as increasing the size, you also change to steel as the construction material, that same size hull could weigh 2500-2750kg (5500-6000lb). Now you are talking about some serious loads that can get out of control, yet the boat is still only 50% bigger in each direction.

Those smaller projects are easily turned over by hand, with friends and neighbours supplying the motive power and the boat having a soft landing on tyres or some other cushioning material. Years ago a client of mine in South Africa turned his 32ft hull by himself. He jacked it up on one side until it reached the balance point, then let gravity take it the rest of the way. It fell against a young tree, then slid down the tree and came to rest flat on the ground. Luckily his hull was relatively undamaged but the tree didnt survive the experience.

There are many ways to turn a hull but that is not one of them. I have a whole chapter on this subject in my book "Shaped by Wind and Wave", to give guidance on how to safely turn your hull. The two Didi 950 hulls that were turned recently in USA and Australia both used the spit-roast method. For each of my own big boats I have used a chain block to do the work, another of the methods explained in the book.
Turning the 38ft "Black Cat" using a chain block on a scaffold tower.
The book can be ordered either as a paperback or as digital for reading on whatever screen device suits you.

To see our range of designs, go to http://dixdesign.com/.
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Kamis, 25 Februari 2016

Hull Turning of Didi 23

Steve Watson is building a Didi 23 in Hood River, Oregon. Last week he and a few friends pulled the hull out of his garage, rolled it over in the driveway then returned it to the garage for work to start on the interior. These photos show the process that they used.
Pulled out of the garage.
Half-way over. A hull is intimidating in this position and must be controlled. Gravity can quickly become the boss.
Safely over and resting on mattresses. Builder Steve Watson at right.
Lifted off the mattresses onto a wheeled cradle to keep her mobile.
Stern view. Steve has added a scoop stern to the transom.
Going back into the garage for work to continue.
A boat-under-construction takes on a whole new character when it is turned right-way up. This is the first time that the builder gets to see it right-way-up and the final shape of his creation.

Hull-turning is a memorable milestone in a big boatbuilding project. This is always a good time to have a party, to take your rewards and gather your thoughts, resources and energy for the next stage of the project.

The way that Steve and friends turned this hull worked for them. The bigger the boat, the more complex the turning process becomes and the more care that must be taken with preparations and equipment to keep this heavy structure under control. Carelessness with this phase of the project can injure or kill people and also damage the carefully-built boat.

To see more of this and our other designs, please go to http://dixdesign.com/.
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