Here is a closeup of the flange fittings. Heater hoses will later attach here. The aluminum wrap around the muffler functions as a heat exchanger and warms the supplied air and returns it to the cabin.
Sunday, July 25, 2010
Install Exhaust System
The exhaust system is installed and complete. Below pic shows all of the components. One half of the heater wrap, shown below, has flange fittings riveted and siliconed to two hole openings.

Here is a closeup of the flange fittings. Heater hoses will later attach here. The aluminum wrap around the muffler functions as a heat exchanger and warms the supplied air and returns it to the cabin.
Here is the heater wrap being installed around the muffler. Spacers are used to optimize fit.
The exhaust pipes were loosely attached to the engine and the muffler was attached to the pipes through a series of springs. My dad assisted while I stretched the springs with a device (handle with small hook) I had saved from stretching springs on my kids' trampoline. Worked slick. Once everything aligned and in position, I torqued down the nuts on the studs connected to the engine.
Here is a closeup of the flange fittings. Heater hoses will later attach here. The aluminum wrap around the muffler functions as a heat exchanger and warms the supplied air and returns it to the cabin.
Tuesday, July 06, 2010
Instrument Panel: Final Fit-Up
The instrument panel is complete, save for the four push-pull knob and cables (carb heat, choke, cabin heat, parking brake). Here is the panel I cut from blank stock and had powder-coated locally for $15.
I installed all of the instruments into the panel.

Here is the back-side of the panel and the variety of depths encountered with each instrument.

The structural tubes were a big hindrance in the panel design. Turns out my Hobbs gauge and several of my switch-breakers contacted the tubes and required some improvising.
Here is the back-side of the panel and the variety of depths encountered with each instrument.
Here is the completed panel ready to be screwed to the boot cowl, once it is painted and ready for installation.
Sunday, July 04, 2010
Engine Mod. (cont.) & Installation
After quite a few weeks, I've finally got the engine installed. Here is the forward engine mount bolt connection to the block. Both bolts on both sides received loctite and safety wire.

Here is the right side bolts and safety wire, plus the mounted ignition module bracket.
The ignition module was previously mounted to the right intake manifold. Since the latter was moved to the left side, the corner had to be resupported. Here is the z-channel bracket installed on the forward engine mount and the above item supported. Ground wires were run to this fastener and an additional ground wire will run to the engine block, for an optimum ground connection.
After switching out carbs and manifolds, a longer compensating tube was required. Here is the new one installed, with rubber hose leading to a freshly "loctited" elbow in the intake manifold.
Here is the aft engine mount secured to the forward engine mount. Rubber donuts are installed at each fastened location to dampen vibration. 
Here is the final installed engine. Still need to hookup fuel lines to the carbs.
Here is the right side bolts and safety wire, plus the mounted ignition module bracket.
Here is me wrestling the aft engine mount to be bolted to the airframe. The engine hoist is a must-have.
Wednesday, June 30, 2010
Airstrip Emerging Turf
I applied 125 lbs of the following "pasture seed mix" to the runway surface:
*Climax Timothy-25.0%
*Orchard grass-9.6%
*Tetraploid Perennial Ryegrass-34.1%
*Norcen Trefoil-4.4%
*Alsike Clover-14.7%
*Medium Red Clover-11.0%
The runway was then fertilized and disked. Here is recent pic of runway 2.5 weeks later, following a considerable amount of rain.

Monday, June 28, 2010
Engine Modification
The Rotax engine needed to be modified, mostly, so that the forward engine mount would adapt to the engine. This entailed swapping out left and right hand intake manifolds and carbs and turning coolant system elbows to gain clearance (among a host of other things). Below is an engine hoist I borrowed to assist in working on the engine and will ease installing it on the airframe. Rans manuals are weak in Rotax mod procedure, fortunately Rotax schematics are strong with good information (variety of loctite required for each fastener, required torque, etc.). Good advice from a fellow builder forewarned cost in damaging Rotax fasteners, hose, etc. as it is sold by the angstrom. So far so good. Specialized loctite alone priced at liquid gold.





Here is the housing (inlet removed and not shown). I had to heat up the upper elbows with a heat gun to soften loctite and faciliate removal.

Here is the forward engine mount trial fit before rerouting elbows and coolant hoses. Close tolerance fit would be an understatement.
Here is final assembled water pump housing, rotated and loctited inlet/outlet elbows and hosing rerouted through engine mount and clamped to elbows. What a PITA. Rotate pic 90 deg. CCW. Wife keeps asking "what's all the yelling from the garage"?
Here is electrical assembly I installed (pressure switch?). It is used to operate engine hour meter, so when engine quits, the hour meter quits.
Next several pics show removed carbs and fuel lines.
Here is relocated intake manifold (right to left).
Here is a drip tray supplied by Rans and installed on each manifold.
Following two pics show relocated carbs on drip trays. A new throttle bracket was installed and throttle spring was redirected.
Here is the forward engine mount trial fit before rerouting elbows and coolant hoses. Close tolerance fit would be an understatement.
Here is electrical assembly I installed (pressure switch?). It is used to operate engine hour meter, so when engine quits, the hour meter quits.
Monday, June 21, 2010
Airstrip Construction Completion
The airstrip is finally constructed. First pic shows my Dad dragging a "disc" to drive the seed and fertilizer further into the soil, which was simply broadcast over the dirt. The four-wheeler helped immensely in seeding/fertilizing. I sat off the front performing while my dad drove. All we need is rain now. The seed was a pasture mix. I also threw in oats for quick cover to protect the loose soil until the grass seed comes up.

Here is the as-built runway looking south. Only one set of culverts were needed, as drainage ditching will convey majority of runoff around both ends of the runway.
and from mid-field...
Have a lot of rocks to contend with plus some ruts. I will let the soil "setup" for one year and then return with my dad's loader and mini-excavator to extract good fill and fill-in ruts. Probably stuck with having to pick rocks by hand. This Fall I will burn existing pulled stumps and remove remaining ones next year.

Here is the as-built runway looking south. Only one set of culverts were needed, as drainage ditching will convey majority of runoff around both ends of the runway.
and from mid-field...
Have a lot of rocks to contend with plus some ruts. I will let the soil "setup" for one year and then return with my dad's loader and mini-excavator to extract good fill and fill-in ruts. Probably stuck with having to pick rocks by hand. This Fall I will burn existing pulled stumps and remove remaining ones next year. Friday, June 11, 2010
Airstrip Construction
Beginning this past March, I had a 200' x 1,380' area cleared for an airstrip. Here is the before picture.

Here are pics following the clearcut. I had the logger stockpile all of the tops on the left side for fuel for the stumps to be pulled later. I will burn them later this Fall. Proceeds from the timber sale will pay for all of the dirtwork.

This past week my excavating contractor began grubbing the stumps and placing them on the tops. The grubbed width is 75' and conforms to the runway surface.
Here's a typical grade stake I placed for the contractor, so he can construct the grade I designed.
Final grading began on the far south end.
Runway surface is final trimmed with a dozer. Note the crowned surface and side ditch on west side. I was very pleased that the material turned out to be a sandy loam with significant clay content. This will help in moisture retention and likewise in growing grass. A few rocks were encountered but no bedrock yet.
Here are pics following the clearcut. I had the logger stockpile all of the tops on the left side for fuel for the stumps to be pulled later. I will burn them later this Fall. Proceeds from the timber sale will pay for all of the dirtwork.

This past week my excavating contractor began grubbing the stumps and placing them on the tops. The grubbed width is 75' and conforms to the runway surface.
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