Sunday, November 23, 2014

Canoe seat replacement using woven polypro webbing

Our old wicker canoe seats were in terrible shape by the end of this summer. I was inspired by some nice woven seats I saw at the Minnesota State Fair, I decided to try replacing the original wicker / cane seats with something similar using a synthetic webbing.

reference canoe seat at the Fair

bottom of the reference canoe seat at the Fair
A quick search on Amazon.com brought up a bunch of choices for webbing- different materials, colors, and sizes. I did some research online, and it seemed as though Polypropylene webbing is a better choice than nylon webbing. The polypro webbing is supposed to be more weather / UV resistant, as well as less stretching when they get wet. I decided to go with 1" wide webbing since it would also be useful for belts, backpack straps, etc. I purchased a roll of the Country Brook Design 1" polypro black webbing via Amazon.com.

To fasten the webbing to the seat frame, I chose to use a staple gun and 1/2" x 1/4" crown 18 ga staples. These were the shortest staples I could find that would fit my Porter Cable pneumatic staple gun. Lowe's and Home Depot didn't have small boxes of this size staple- they only carried 3000+ staple cases.  Menards turned out to carry a reasonable size box of staples.



 After stripping the old woven cane seat off the canoe seat frames, I started cutting the webbing to length. I wanted a tight weave, so I laid out the webbing on the seat frame with no gaps between pieces. I cut the webbing with a heavy duty kitchen scissors and sealed the cut ends with a lighter to prevent fraying.

Starting webbing layout

 I started attaching the webbing by stapling the end strand to the frame.

End webbing attached
 Next, I lined up and stapled the webbing to the "side" and "bottom" of the frame.

After one end of each of the webbing segments was attached, I flipped the seat over and started weaving the strands, working my way out from the corner where the segments were attached.

Starting to weave the strands
 During the weaving process, I'd stop occasionally and pull everything tight.

Nearly complete
After all segments were woven, and after I pulled out as much slack as possible, I started to staple down the loose ends. Before stapling each segment I'd grab the segment and pull it as tight as I could, and I also would slide it over to get it as close as possible to the adjacent segment.

Bottom stapled

Everything stapled!

Bottom of seat after stapling

Both seats, ready to go

Installed- ready for paddling!
This project was a lot easier and faster than I thought- and made the canoe seats much more comfortable.

Friday, June 27, 2014

Light-bicycle.com Carbon Wheels Initial Review

The Light-Bicycle carbon hoops showed up about a month after ordering. They were packed really well in a surprisingly small box. They seemed to be very true and round, and spoke tension seemed even. 

The box was a little beat up....

But the wheels seemed well protected.


I chose the new 29" "hookless" style rim, standard black bladed spokes, blue alloy nipples, and Hope Evo2 hubs. Customer service was great, they responded very quickly to e-mails. Make sure to send them a message and clarify exactly which rim you want- they seem to have once set of choices for rim only, and one set for pre-built wheels.


Check the hookless profile


Weights: (bare wheels, w/o tape)
686g front
813g rear

I applied Stan's tape, Stan's valve stem & sealant, and they seated just fine with a set of Maxis Ikon tires- using a floor pump. So far so good, although they've only been off road once because of all the wet weather. 

Qualitatively they seem zippier and easier to accelerate.... I have yet to ride anything technical on them and I'm curious how they feel in rock gardens and hard corners. 


Wide? 
New bling!


Mounted and ready to ride!

Sunday, June 22, 2014

MakerBot Replicator 2x: More Air Prints, custom heat sink

I am increasingly frustrated with the MakerBot Replicator 2x we have at the office. It seems you need to spend twice the amount of time working on it as you get viable prints. After a streak of good luck and reliability, as of late it refuses to complete any kind of medium or large size print job. It'll get part of the way complete, and then stop feeding filament- a classic air print.

I am guessing the problem is because the aluminum block that holds the stainless steel feed throat for the hot ends in place isn't cooled sufficiently. If it gets too warm, the stainless steel feed throat will get too warm, and the filament will soften before it gets to the hot end nozzle and jam. I thought I would attack this problem by creating an improved heat sink and attempt to move more heat away from the aluminum block, and thus attempt to keep the stainless steel feed throat cooler. I also attempted to improve the insulation between the hot ends and the aluminum block.

First, I constructed a heat sink using 1/8" thick copper sheet purchased from Mcmastercarr. I thought the copper would create a improved heat flow path from the aluminum block to both of the fan-cooled heat sinks, as well as increase the total mass of the heat sink. It should also allow improved heat flow from the aluminum block near extruder #1 to extruder #2's heat sink.


Heat sink cut, drilled, and ready to go

Trial fit of stock heat sinks checking for hole alignment

Test fit on drive block

Test fit on drive block
 Next, I wanted to reduce the convective & radiant heat transfer from the hot ends to the drive block by adding some 1/32" thick silicone rubber, also sourced from www.mcmastercarr.com.

Covering all air gaps on the top of the extruder platform

Sheet of self-adhesive rubber cut to fit the bottom of the aluminum hot end block

Adhered to the bottom of the aluminum block

Extruder #2 Re-attached
During this assembly and dissemble, the thermistor / thermocouple for hot end #1 failed. The stock cables are very thin and fragile, so it wasn't much of a surprise. Makerbot actually sent a replacement thermocouple free of charge. The new thermocouple wire is much thicker and appears more durable than the stock cable.

New Makerbot Replicator 2x thermocouple on the left, original on the right. The stock cable used much smaller gage cable. 
Since this is not the first time I've completely disassembled extruder #1's hot end, the stock ceramic / polyimide / insulation hot end insulation was cracked and looking pretty sad. Rather than tape it back together with some kapton tape I ordered a replacement insulation set off of amazon.com from VIRA design.

Mini-Review of the Vira Design Makerbot Replicator 2x upgrade kit, AKA: Upgrade Kit for the Hot End Insulation on Makerbot Replicator 2x-extruder-reprap


  • Shipping: Slow-  took about two weeks- it appears as though they paid for shipping, then make the parts, then shipped them out. 
  • Packaging: Poor- all the parts were tossed in a much-too large box- although since nothing it breakable it didn't matter
  • Instructions: Poor- zero instructions included with the kit, although if you are capable of installing it you'll be able to figure it out
  • Part quality: Good- cast silicone parts are serviceable, but required x-acto knife cleanup of all thru-holes
  • Value: Good - you'll have a hard time producing these parts yourself for much less, let alone the time required to design, create molds, and make the parts. If you need replacement insulation for your hot ends these are a good option. Plus they are completely non-fragile, unlike the stock ceramic insulation. 
Vira Design upgrade kit for Hot End Insulation on Makerbot Replicator 2x Mini-instructions:

1) Use an X-acto knife to clean out all of the thru-holes in the silicone insulation parts.
New rubber insulation on the right., prior to trim
 2) Cut the white insulation to size for the flat end of the aluminum hot end block.

Using aluminum hot end block as pattern to cut white insulation
 3) Cut kapton / polyimide tape to hold the white insulation to the aluminum block
Cut tape using X-acto
 4) Stick white insulation patch to kapton tape
Ready to go
 5) Attach insulation patch to aluminum hot-end block
Attach tape / insulation patch to aluminum hot end block

Insulation in place
 6) Insert hot-end assembly into silicone insulation
Ready to go!
 Next up, loading new thermocouple into hot end block. I put a dab of thermal heat sink compound onto the threads to improve heat conduction and also to prevent the thermocouple threads from seizing in the aluminum block. When I threaded it in I rotated the aluminum block rather than the thermocouple to minimize any stress on the thermocouple wire. I also only tightened it finger tight- no tools used.

Thermal heat sink compound on thermocouple threads

Hot End #1 installed. 
Next up, finish installation and fire it up.


Thermal compound on the interface between the new copper heat sink and the aluminum hot end block

Thermal compound on the back of the aluminum fan cooled heat sinks

Up and running!

So, after all this, you'd expect it runs perfectly..... And the answer is... NO! Very frustrating. It might work slightly better but I'm still getting air prints. So far I've only been trying authentic MakerBot brand natural ABS filament. I'll try using some generic colored ABS filament- I believe it has a higher melt temp, which might help.

Monday, May 12, 2014

MakerBot Replicator 2x upgrades from BC Technological Solutions

Initial thoughts, review on Makerbot Replicator 2x upgrades from BC Technological Solutions:

After using a Replicator 2x for the past several months at my office, it was apparent that it desperately needed a glass build platform. The stock aluminum build platform wasn't flat, and it was time consuming and difficult to remove finished parts from the heated build platform. Plus, it required re-application of expensive Kapton / Polyimide film every dozen prints or so. I looked around for options, and the one I selected was from BC Technological Solutions. The impressions on the forums were decent, and the pictures looked pretty good. They seem to be perpetually backordered, so it took a few weeks for the parts to arrive. I ordered both the glass build platform / heated bed upgrade as well as the aluminum arm upgrade.

The parts arrived in two separate shipments, one for the heated bed and one for the upgraded arms. The aluminum arm upgrade required almost total dis-assembly of the Makerbot 2x. The glass bed upgrade was much less invasive, and would be pretty simple if done by itself.

Upgraded aluminum arm components. Bag 'o' hardware, nicely CNC'd arms, and a few printed parts

The replacement arms were nicely CNC'd from billet aluminum. The quality looked pretty good- not really top shelf, but all cuts were clean, burrs were removed, finish was good, and necessary holes were cleanly tapped. It did not appear that they were anodized though.

Bag 'o' hardware opened. Misc fasteners, recirculating ball bearings, printed spacers and printed bearing mounts
The printed parts of the kit looked like they were well done, and printed at about 0.1mm layer height. Fits on the printed parts were very good, they slid over the bearings and screws without any issues, and no sanding required. The creators of the kit obviously spent time optimizing their part design for printing.

The kits came with nice printed instructions. So, I won't provide instructions here, just some general photos showing the process. Overall it was an easy upgrade to install- but it did take time, and assembling the Z axis slide required some careful aligning of parts and patient work.

The patient, ready for surgery 
Bottom of 2x, ready for electronics cover removal

Makerbot Mightyboard (Z-axis stepper on the bottom right)

Heated bed thermistor unplugged. Red and Black wires are the power leads for the heater. How do those come off?

Oh, you just press the buttons and the wires nicely pull out!

Stock heated bed removed

Back of the Makerbot 2x, back cover removed

Stock platform with plastic arms removed. Tape prevents nuts from falling out 
Aluminum arms installed



Nuts in nut traps, screwed in place


Platform loaded onto Z axis rods

Z axis top plate in place

New heated bed in place (no glass)

Glass in place, powered up & ready

I only have a couple of prints on the new system. So far the glass bed seems like a great upgrade. Parts easily pop off the glass after it cools, and for rapid printing two glass beds can be exchanged between prints. It's more difficult to tell if the aluminum arms are worthwhile- only time will tell.