• Welcome to TechPowerUp Forums, Guest! Please check out our forum guidelines for info related to our community.

[Project] Large Wooden Tower

Joined
Sep 2, 2009
Messages
125 (0.02/day)
Location
New Hampshire, USA
I was very fortunate to have been commissioned to build a large wooden tower case, to be used to hold a very large water cooled rig. Here's the design drawings:

WoodTowerXSMem15.jpg


WoodTowerXSMem8a.jpg


WoodTowerXSMem10.jpg



The case is designed to contain an EATX motherboard, seven 5.25-inch drives and eight 3.5-inch hard drives. Two 120.4 radiators will eventually be mounted in the top chamber:

WoodTowerXSMem16.jpg



For wire routing/hiding, there's a "false back" between the mother board tray and the side panel:

WoodTowerXSMem13.jpg



The front fascia/panel is removable (although not on a hinge). Each horizontal "chamber" in the case is fed and exhausted by a 120mm fan.

WoodTowerXSMem14.jpg



Fresh air is supplied to the front fans via a bottom-fed, built-in air duct.

WoodTowerXSMem17.jpg



The first order of business was to fabricate the hard drive cages from 1/8-inch aluminum flat bar:

HDCage2.jpg



The drives are suspended in soft rubber grommets:

HDCage1.jpg


The cage/rails for the 5.25-inch optical drives were made from 1/8-inch aluminum sheet and 1/2-inch aluminum angle. The aluminum sheet was easily cut on the table saw (fitted with a carbide tipped saw blade). The strips were then stacked and a full-size template of a rail (drawn in Sketchup) was taped on.

OpticalBlank1.jpg



The strips were then clamped to a home made jig in order to cut the slots in the rails safely and accurately.

OpticalJig.jpg



In the center edge of each rail, a 6-32 thread was tapped (using my awesome hand tapper):

Threader.jpg



The holes in the angle were quickly drilled with the help of a self-centering vice (note the addition of a 1/8-inch plate in order to center the "leg" of the angle in the vice):

CenteringVice.jpg



All of the aluminum pieces were scratched with 80-grit sandpaper. One-half of an assembled drive cage:

Optical2.jpg



Having the ability to remove individual drive rails provides added flexibility when it comes to laying out the rig and for easy customizations.

A couple of templates were fabricated from some MDF. These were used to route out the motherboard tray and power supply openings out of the back panel.

Power supply template:
PSTemplate.jpg



Motherboard tray template:
MBTemplate.jpg


MBTemplate2.jpg



The frame for the back panel:
BackPanelFrame.jpg


A jig was built to safely rabbet the inside edges of the glued-up front panel frame.

RouterSupport.jpg



The front and back panel frames were rabbeted to accept the 5.2mm oak veneer plywood.

RabitMidPanel.jpg


Rabit.jpg



The plywood was cut on the table saw. The corners were rounded "free hand" on the table saw then finished with sandpaper and a sanding block:
PlywoodBack.jpg



A cleat was glued to the backside of the MB tray template for easy alignment.
MBTemplateCleat.jpg


MBTemplateApplied.jpg



A router with a 1/2-inch pattern/flush-trim bit was used to route out the hole. For the top and bottom power supply holes, that template was fastened to the underside of the panel in order to center it properly and a 3/8-inch pattern/flush-trim bit was used.

PSTemplateApplied.jpg


BackPanelRouted.jpg



The "shelves" that separate the case into three chambers was fab'd from 3/4-inch square oak, rabbeted to hide the plywood edge.

ShelfEdgeDetail.jpg



The shelves nestle onto brackets made from 1/2-inch aluminum angle.

ShelBracket.jpg



The angle bracket for the top shelf along the back panel just so happened to land in the same location as the bolts used to fasten the motherboard tray. Originally I was thinking the tray would be bolted onto the back panel (with a nut), but with the angle bracket right there, doing so would be very awkward. So instead, I just tapped some 6-32 threads.

ShelfAngleCloseup.jpg


Shelves.jpg
:up:

I didn't like the quality of the front panel's plywood "B" side (the good "A" side faces the inside of the case), so I had to cut another piece and sandwich them together, "B" side to "B" side. By utilizing the existing panel as a template for my router, this extra task went fast. After rough cutting another piece of plywood, the two pieces were temporarily held together with double-sided tape. Then a pattern/flush trim router bit was used to "cut" the panel to size.

FrontRouterGuide.jpg



The hole for the optical drives was routed out and the corners squared with a hand file.

FilingOptical.jpg


FrontWall.jpg



The next task was to route three 120mm holes in the front panel, but I discovered that the fan frame I was going to use as a router template wasn't stiff enough, which would have resulted in misshaped holes.

FlexFan.jpg



The simple fix will be to glue on some 1/8-inch aluminum flat bar to stiffen it.

GludedAlFanFrame.jpg



There wasn't an easy way to fasten the fan "template" to the front panel safely, so I decided to fabricate yet another template. I cut some 1/4-inch thick plywood the same size as the front panel and I aligned the fan housing and used it as a guide to drill some holes (through all three layers of plywood).

FanTemplateHoles.jpg



The plywood template was removed and the fan housing was "bolted" to it with some #8 socket cap screws i.e. the bolts were used to cut their own threads into the plywood.

FanBoltedToTemplate.jpg



The plywood with the bolted-on fan were placed onto the workbench and a 1/2-inch pattern/flush router bit was used to cut out the fan holes:

FanHoleRouted.jpg



After all three holes were cut out of the template, the template was attached to the front panel and three more holes were routed out of it.

FanHolesRouted.jpg



The template was removed and the holes were cleaned-up with some 120 grit sandpaper.

FrontDone.jpg


The top of the case is made from 1/4-inch plywood edged with 3/4 x 1-1/4-inch oak. The plywood was roughly cut to size on the table saw and then a couple of extra layers of plywood were glued to the edges in order to thicken it in preparation for gluing the 3/4-inch edging.

TopEdgesThickened.jpg



The top was then trimmed to the desired width with the router.

EdgesTrimmedSquare.jpg



The edging was glued, scraped flush with a cabinet scraper and lightly sanded.

WhatGlueLine.jpg


GlueLineCloseup.jpg




The ends of the top were cut with... Anyone? Anyone? ...a router fitted with a flush/trim bit. The "jig" used to make sure the cut was nice and square was a framing square taped to the workbench.

EndCutJig.jpg



Completed top:

TapleTopComplete.jpg



ProgressAsOf1108.jpg



The side panels are made from 1/4-inch oak veneer plywood, edged with 3/4-inch oak, mitered at the corners. The plywood sits in a 5.2x10mm deep groove.

PlywoodGroove.jpg


LeftSidePanel.jpg


Between the motherboard tray and the side panel is a removable "false" back that will strengthen the case, steady the motherboard tray and conceal all of the wiring. There is about 1-1/4 inches between the "false" back and the side panel.


FalseBackBack.jpg


FalseBackFront.jpg


FalseBackBackBoth.jpg


FalseBackFrontBoth.jpg


During the construction of the external drive cage, a couple of drill bits were used to align everything, just to make sure both pieces were identical.

OpticalDriveCageRails.jpg



Yet another feature of this case is that each of the drive rails can be removed for easy modding and/or for a custom configuration.

OpticalDriveCageCloseup.jpg


OpticalDriveCage.jpg


I decided to fasten the top to the case with some 'T'-nuts, but I didn't have any lying around the shop so I fabricated a simple "plate"-nut. A plate-nut is just a 1/8-inch thick piece of aluminum flat bar, taped for 6-32 bolts. The nut was bolted to a dual layer of 1/4-inch plywood which was then glued to the top. Hard to describe, but very simple to make.

PlateNut.jpg


PlateNutSandwich.jpg


PlateNutClampUp.jpg


In order to accurately determine where to drill the corresponding holes in the front frame, I made some pointy marking thingies from a couple of bolts.

PlateNutHoleFinders.jpg



The top with the pointy thingies were then pressed down onto the case, indicating where to drill.

TopFasteners.jpg


Perfect alignment!

The side panels are held onto the case via four magnetic catches.

MagLatch.jpg


I'm quite pleased with the holding power of these babies. They were eventually painted black.

DoorsFastened.jpg


The base molding is just a piece of 3/4x3-inch red oak that extends out from underneath the entire case by 3/8-inch. Adding the bottom molding really helped to balance the case visually.

BaseMolding.jpg


Holes large enough to ventilate quad radiators were routed out of both side panels. Perforated aluminum sheet (0.063" thick, 0.1875" dia. holes, 0.25" stagger) was then temporarily applied.

SidePanelwMesh.jpg


SidePanelwMeshCloser.jpg


SidePanelwMeshCloseUp.jpg



To fasten the front panel to the case I wanted to use a more elegant/unobtrusive mechanism. I decided on attaching it with some powerful rare earth magnets (1/2" dia. x 1/8" thick; grade N52; black nickel plated).

FrontPanelFasteners.jpg


Two magnets (for double the holding power) were super-glued flush into the case, around all four corners.

FrontBottomMagnets.jpg


Steel washers were glued flush around the front panel.

FrontPanelwFasteners.jpg


Alignment/guide blocks were also glued to the inside of the panel.

FrontBottomGuideBlocks.jpg


And two grooves were routed out of the top of the panel so headset wires, etc. have a place to pass through.

FrontTopWashers.jpg


I thought it was too difficult to unscrew/screw the screws that fasten the false backs to the shelves without stripping them, so I went ahead and installed some brass threaded inserts for #6-32 bolts.

FalseBackTIAndSpacer.jpg


In the picture above, you can also see a 1/2-inch spacer that is used to fasten the removable motherboard tray to the false back.

The back was modified with a slot along its bottom and another at the top (for an 8-pin power lead).

FalseBackwSlots.jpg


FalseBackBottomSlot.jpg


PowerSlot.jpg


From the inside of the case, you can see how the bottom slot straddles the bottom edge of the motherboard tray perfectly.

BottomMBSlotPeek.jpg



I bolted casters (twin-wheel with hood, 2-3/8" nylon wheels) to the bottom of the separate molding piece, which elevated the case 5/8-inch up off the floor.

CaseOnWheels.jpg


CaseOnWheelsFront.jpg


I fabricated the aluminum power supply mounting plate using a plate from another case as a pattern. The pattern was used to guide my router fitted with a 1/4-inch carbide pattern bit:

PSMountingPlate.jpg


A plate for the power switch and an intake fan was also routed out of aluminum, via a custom made template:

PwrSwitchPlate.jpg



The final results:

PSPlateMounted.jpg


PwrSwPlateMounted.jpg


To help support the power supply I fabricated some posts made from a rubber bumper, 1/2-inch spacer and some nuts on a 6-32 socket cap screw:

PSSupportPosts.jpg



The hard drive cages are too tall to remove them from the case without having to first remove the entire lower shelf. To help ease that burden I devised a three-point mounting system whereby the cage is held tight to the bottom of the case via a center post and two socket cap screws.

The hard drive cage's center support was drilled to have just a half a circle via a sacrificial piece of angle material:

HalfHoleSlotSacrifice.jpg


HalfHoleSLot.jpg


HDCageswSocketCapBolts.jpg


HDCagePostCloseUp.jpg


PostHoldingCage.jpg


HDCagesMounted.jpg


Last pics before stain and finish were applied:

Back.jpg


LeftSideAngleUnfinished.jpg


LeftSideUnfinished.jpg


Final pics!

LeftFront-640.jpg


RightSide-640.jpg


LeftRear-640.jpg


Back-640.jpg


LeftSideNoDoor-640.jpg


MBTrayCU-640.jpg


RightRear-640.jpg


LeftFrontNoDoors-640.jpg


MeshCU-640.jpg


RightBottomBackCU-640.jpg
 
that is friggin beautiful man
 
Awesome. Love it. :toast: :respect:

Can't wait to see it with some gear inside.
 
Just curious - how will the quad rads mount when put in place?
 
Nice, love it, although preferred it before paint.
 
Very, very nice!!
 
Heck of a job man, it looks awesome. That stain or paint you put on it makes it look that much better. :toast:
 
ask the person you sold the case too to take pics of it with the system in it :eek:
 
wow this looks sooo good.
 
ask the person you sold the case too to take pics of it with the system in it :eek:

Seriously, this. Some outstanding work here. Moar pr0n with hardwarez! :laugh:
 
OMG great work! that PSU is great i owned one for about 4-6 months and it was a iron horse of a PSU!
 
800D killer anyone?

How much did you charge for the build in total?
 
Blackwash finish looks awesome. Even-smooth perfection
 
Thank you all for the kind words.


@Kantastic - The base price for one of these large wooden towers is $550. This particular case is a fair bit more because of its extras, such as the EATX MB tray, "table" top, bottom molding, etc.

@steelkane and Soylent Joe - An entire quart of India Ink was applied to the red oak, giving it its awesome ebony-like appearance.

IndiaInkBottle.jpg
 
black wash is more or less a stain & not a paint,, I used to refinish furniture & staining wood with black or white was a wash finish,, you did a great job
 
Wow! Very nice work!
 
very impressive
 
This next phase of the project involves adding the wc-ing goodness. :D But before I can do that the case requires some further customizations involving stealthing the 5.25-inch drive cage and power supply area, as in:

LeftSideNoDoorToDoCovers.jpg



The power supply "cover" is really just a simple two-sided divider.

PSDividerParts.jpg


PSDividerTIs.jpg


AssembledPSDivider.jpg


PSDivider.jpg


The quad radiators were mounted with a couple of sets of (UN)Designs Rad Brackets.

RadsMounted1.jpg


RadsMounted2.jpg


Eventually there will be two 120mm fans mounted to these case holes that will supply fresh air to the radiator fans (in a push configuration).

RadsMounted3.jpg


The slot for the radiator tubing was cut into the top shelf with a router, guided by a template.

RadiatorTubingTemplate.jpg


RadiatorTubingSlot.jpg



And a mock-up of how the tubing will eventually be routed:
RadiatorTubing.jpg


Next task was to fabricate the 5-1/4" drive bay cover. The water cooling pumps, reservoirs and an SSD will all eventually hang off of the cover.

The first order of business was to cut the 5.2mm oak veneer plywood to size. Using my trusty router, this went quickly. (Afterword, I was amazed how badly this cut looks in the photo. Believe me, the final result was a razor sharp edge). There's no better way to cut veneer plywood than with a router.

RouterCutPlywood.jpg


Next up was to cut some holes in the cover to provide a path for the air coming in from the front intake fan. I had an old template lying around the shop from a previous project, but it was awkward to use on such a small piece of material. I ended up using that template to make another template.

TemplateTemplate.jpg


OpticalCoverParts.jpg


OpticalDriveCover.jpg


All that's left to do is apply some stain and wipe-on poly.
:rockout:
 
subscribed to this thread... love internal layout of this beast
 
If you take a high res picture I'm going to print it out, frame it, and hang it across my toilet for certain purposes I feel I shouldn't reveal.
 
Simply amazing work Spotswood. I am officially in awe :respect:
 
I have no words for ur Hard And Good work ...
 
Back
Top