Friday, 4 December 2020

Port Toe Rail | Installation

While the second port rub rail laminate was curing, and while the epoxy was flowing, I installed the port toe rail.

It was a simple task. Here is the view from the front.


And here from the rear.


I haven't yet decided how much to trim off at the forward end of the toe rails, on the top of the Dorade boxes.

The manual says they should be 48" long, but mine are several inches longer than that.

I will see what they look like when I test fit the Dorade vents in the coming weeks.

Rub Rails | Test Fit & Installation of Port Second Laminate

While the first laminate on the port side was curing I prepared the second layer for installation. This required the second and final scarf joint to be cleaned up, after curing inside the house.

This was quickly achieved with a Shinto rasp and the block plane, as here.


The finished scarf looked quite nice. Maybe not quite as tight as I would have liked, but certainly good enough. Like this.


We must remember. It's a boat. Not a piano.

The next task was to mark up the laminate for its temporary screws.

I did this by offering up the laminate to the boat and putting a piece of tape where the screws are required, being careful to avoid the holes which would be left by the temporary screws in the first laminate.

I then copied the mark up to its starboard counterpart, so I didn't have to do it twice for the other side of the boat.

Like this.


Time to remove the temporary screws from the port laminate.

I now always use the heat gun to release screws from any epoxy that may have welded them in place, having snapped the head off several earlier in the build. As here.


Broken screws are a real pain to extract, which is why I now also use a screwdriver rather than a drill driver to do this. The torque from a drill driver will snap a screw without warning, whereas with a screwdriver you can feel how stiff it is. Thirty seconds at 250 degrees C is enough to free the screws.

Next came the test fit for the second laminate. This is it, seen at the bow.


 And here is the rear half, in place.


The fit was excellent, with no gaps.

The overhangs at the bow and stern are great for clamping the ends tightly in place.

So I got ready to glue it up.

Part of the drama when installing the first laminate was caused by 'losing' the pilot holes for the temporary screws in the epoxy, so I used bits of wire to avoid that happening again. Like this.


I used a loop of string at each end to hold the piece loosely in place while I applied the glue and tightened the screws, as in this pic.


As with the first laminate I worked from the centre outwards to the stern and bow, in that order.

It went well. Here is the second port laminate glued in place.


Looking good!

Rub Rails | Installation of Port First Laminate

I spent ages installing the first layer of the port rub rail - more correctly termed a laminate - but took very few photos.

I think I was so preoccupied with not breaking the rail and making sure that it was a fair and secure fit that I forgot about the camera!

I also failed to prepare properly for the installation, and made a dreadful mess with the epoxy.

I was fearful of having a dry joint between the rail and the hull side, and I made up too much glue.

When I fixed the laminate in place with the temporary screws the surplus epoxy oozed out and dripped everywhere. The hull side, the floor and mats, and my shoes all got a large dose of thickened epoxy. Yuk.

But all turned out well, despite the mess and the drama.

Here is the laminate glued in place, seen looking towards the stern.

What a mess.

And it transpired that I needed three big F clamps to hold the rail in place alongside the seatback lockers - not just two.

And here is the view at the bow.

I was very pleased to achieve a tight fit against the hull along the whole length of the rail.

Now that we are installing secondary rather than primary structural components, it is starting to feel like we are moving into the final phases of the build.

I will no doubt regret saying that in the coming days and weeks. Pride before a fall ...

Saturday, 21 November 2020

Rub Rails | First Laminate Test Fit

When cured I moved the first laminates into the workshop for cleaning up and test fitting.

Here you can see they were so long that they only just fitted inside. I am using the saw horses for support while cleaning up the second glued scarf joint on the starboard laminate.


Fitting this first laminate requires temporary screws driven into the hull to pull it into place. I didn't like the sound of this, but I couldn't see any alternative.

So, I went along the side of the boat and used bits of tape to mark where screws would need to be driven.

I didn't mind doing this in the sealed buoyancy compartments in the seatbacks, but refused to make holes inside the beautifully finished seatback locker interiors. Some sort of clamping would be required on this part of the rails.

I hoped that just three screws would suffice in the cabin - the holes would be easily filled when painting the interior.

And at the stem we have the substantial lower breasthook, made of 18mm ply and ideal for using some long screws to pull the end of the rail into place. I decided to use three screws here.

That didn't seem too bad, so I then offered up the starboard laminate and similarly marked up where holes would be required for the screws.

Holes for 4 x 50mm screws were drilled accordingly, and the bevel required on the bottom of the rail was planed.

The laminate was then carefully fitted, starting in the middle where the bend is slight and working outwards to the stern and the bow.

It worked out really well.

Here is how I pulled the laminate into place over the seatback lockers at the stern, using a pair of large F clamps.


These clamps were a gift from my son a couple of years ago, and they are really useful. Thanks Nick!

This is how the laminate curved from the cabin all the way to the bow. It's a lovely fair curve but what you can't see here is the small gap between the rail and the hull. This would need to be fixed, somehow.


The laminate bent well and didn't fight back too much - even at the bow. I was fairly pleased with this outcome so retired for the day.

The following morning I inspected the gap and thought about drilling more holes in the hull, and remembered that I had fitted a substantial sheerclamp to support the forward deck.

I did this because the manual calls for an epoxy fillet here, which seemed ridiculous to me.

So ... no problem here and more temporary screws could be deployed to close the gap.

I marked where the screws would be required, removed the laminate and drilled more holes, and then refitted it.

This is what it looked like.


Looks good and gap closed!

Here is the view along the rail from the stern of the boat.


There is a lovely fair curve all the way to the bow. I was delighted!

Next I cleaned up the port laminate scarf joint on the sawhorses, as here.


I marked up and drilled the port laminate exactly the same as its starboard counterpart, and fitted it in the same way.

Here is a view of the  laminate at the bow and topside.


And here is the view looking astern.


That was very successful, and a lot of fun!

Upper Hull | Sanding & Patches

While waiting for the rub rail laminates to cure I sanded the fibreglass which now covered the upper hull.

As expected, this was a fairly tedious experience but made bearable by having decent sanders to work with.

There is not a great deal to say about sanding, but here are some pics anyway.

This is the starboard cockpit deck and seatback, freshly sanded.


 And this is the starboard topside and cabin top, seen from the bow.


Same side but seen from the stern.


I snipped the support piece out of the rear cabin wall before sanding here, to add some excitement to the process.


This is the cockpit and rear cabin wall, sanded and seen from behind the boat.


Inevitably, I managed to sand through the layer of fibreglass in a few places.

I marked them with a bit of blue tape as it happened, so that I could easily find them to patch them later.

As here on the front cabin wall and Dorade boxes.


Finally, when all the sanding was complete I made fibreglass patches and wetted them all out.

I will sand and feather-edge them at some point when the sanders are in action again. This is the cockpit, with its patches in place.


Not too pretty, but cleaning up will have to wait while I make the rub rails!

Rub Rails | Gluing Scarf Joints

As mentioned in the previous post, each rub rail is built up from three laminates, and each laminate consists of three lengths of Sapele - two long and one short.

Now, the build manual suggests that the laminates are made by gluing the three separate pieces directly to the hull, rather than making a single full length laminate which is then fitted to the boat in one piece.

I didn't like the sound of that. It is vital that the rub rails have a perfectly fair curve, and that would be most easily achieved by fitting a single full length which would naturally form its own pure curve.

I also thought that a single long piece would be easier to bend than three shorter ones.

So I decided to make the laminates first.

I began by gluing one short and one long piece together for all six laminates.

First I made a test fit in the workshop. Here is what it looked like.


Each scarf was clamped with three spring clamps, which did the job nicely.

You can also just see that I clamped each length of Sapele in place with G clamps i.e. the short as well as the long pieces. As I did this I realised that some of the pieces were not perfectly true, and had a very slight twist to them. Clamping these pieces down was pulling the scarf joints out of true, so that was not a good idea.

Always best to do a test fit, even when it doesn't seem totally necessary ...

I also said in the previous post that I labelled each piece, to avoid any confusion when gluing up the laminates. This proved very useful. Here is such a label.


When satisfied that the scarfs were tight and true I glued them together, as here.


Just one length is clamped down for each joint, allowing the spring clamps to pull the scarf together.

That went well. The joints looked good when glued up. Like this.


While doing all this it became very obvious that there was not enough room in the workshop to glue up the third piece, to make the full length laminate. So that would have to take place inside the house.

Once again a test fit was carried out. It turned out that there was only one place where the laminates could be made and then successfully removed from the house, and that required the use of two rooms. This is how the test fit looked.


This time I found that it helped to clamp the straightest pieces on both sides of the scarf, to steady the now very long lengths of wood and stop them wobbling.

Again, when happy that everything fitted properly I glued the joints - taking great care not to drip epoxy on carpets and furnishings in the process. Here is what it looked like.


Here is a closer view of the joints themselves.


I left the laminates to cure for several days, to be sure that they would be strong enough to move back into the workshop for fitting.

We're getting there!

Sunday, 8 November 2020

Rub Rails | Cutting Scarf Joints

The day finally came when my next activity was making and fitting the rub rails which run along the sides of the boat.

Like the toe rails, I started this while covering the upper hull with fibreglass, and waiting for resin to cure.

I broke out the lengths of Sapele hardwood supplied for the rails.

Each rail is made from three laminates, fastened one at a time to the full length of the hull. And each laminate consists of three pieces of Sapele, scarfed together to make a single length.

That's a lot of wood, and a lot of work!

Scarf joints are made on a 10 to 1 basis for the length of the scarf and the thickness of the wood respectively. I hope that makes sense.

Our Sapele is 20mm thick, so each scarf will be 20cm long. Simple.

It is essential that that the scarfs are accurately made, so it takes a lot of time to mark them up and cut them out.

Here I am marking out the length of the scarf, using a metric steel rule and an engineer's square to make sure that the joint is exactly 20cm long and square.

Next the joints are marked out using a steel rule and a marking knife, like this.


The steel rule is held firmly in place with a couple of spring clamps, which allow it to be positioned very accurately. You can't hold it in place by hand - it doesn't work.

Then the joint is firmly but carefully marked up with the knife. I have got a fancy Japanese marking knife but I found in practice that a craft knife with a new blade was easier to use and very effective.

The rule needs to be as heavy and stiff as possible, which is why I like the rule in the above pic. I stole it from the metalwork shop when I was at school - it's so old it predates the metrification of the UK, and is only marked in inches. I love it!

It's important to use a knife rather than a pencil, for the reasons given in the previous post. A pencil line is not visible on the dark wood. The knife cuts a deep line which is easy to see and shows as a bright stripe when the plane blade reaches it. 

I devised a method for labelling each piece so I would know which laminate it belongs to, and which of the three constituent pieces it is. 


All the scarfs must slope in the same direction, fore and aft, for looks. And the pieces must be numbered and labelled Port and Starboard, pointing forwards.

This will avoid much confusion later, with 18 pieces of wood to handle.

The pieces were bundled together to await the cutting of joints, with one bundle for each laminate.


I planed the first four joints before deciding that there must be a faster way of doing this.

So I fitted a rip cut blade to the Japanese saw and used it to remove nearly all the waste, like this.


 This is very quick and achieves a clean and accurate cut. As seen in this pic.


The scarf is then clamped in the vice and planed down to the line with a jack plane, as here.


Finally, the scarf is moved to the other end of the bench and clamped in place to be finished with the block plane. Like this.


This results in accurate, close fitting scarf joints.

Here are the scarfs all cut and ready for gluing, stored in bundles for each laminate.


That was a lot of fun!