Scientists have found a way to harden wood to make a knife that rivals steel
cbc.ca
cbc.ca
> "Surprisingly, our wooden knife is actually three times sharper than the typical stainless steel dinner table knife,"
The typical stainless steel dinner table knife is slightly serrated, which means it doesn't need to be sharp to work well. Being sharper than something that doesn't need to be sharp to function properly is a very dumb comparison.
Sharpness also has no relation to durability except possibly in the inverse. A typical steel dinner table knife will keep doing its job for decades and thousands of wash cycles without any maintenance. Meanwhile there's a great youtube channel where a guy makes razor sharp chef's knives out of random fragile materials like jello.
replace the blade on your tablesaw with a bit of paper and try it :)
Nails don't need to be that hard. They're typically made from thin mild steel. If it's hard enough to be used as cutlery, demo it like every knife gets demoed. Slice up some tomatoes, chop roots, and see how it holds and edge. If it can still cut 2m slices, it's functional kitchen knife.
You can cut a steak with the disposable softwood knives we already have.
The way they were hitting it looked either like they had never hammered before, or that they were afraid of shattering the nail.
In the steak cutting one, the way one little edge piece is cut off looks like a plastic butterknife could have done just as well. Your description of the nail driving one was spot on - that video was downright embarrassing.
Do you have a link? Search isn't producing anything useful for me. (Particularly to the jello video, but I can't find the channel either.)
I could make a knife from wood now and it would be sharp enough to cut steak. It, just like cheaper steel knives, wouldn't remain sharp as long as it's higher value counterparts.
They mention wooden nails but don't mention if they'll fill an important role nails do -- their success isn't only that they're hard enough to nail through wood, but that they can bend. Houses move. The nails have to have that bit of movement too.
Yes yes, you've made wood roughly as hard as steel, but steel has more than hardness going for it.
For example, the usual method for replacing the gasket in an automatic transmission, which is on the bottom of the car, is to remove the transmission. This is because it is impossible to hold all the balls and springs in place to put the cover on while it is upside down. The trick shown is to use a bit of vaseline to "glue" the parts in place. The vaseline will dissolve in the trans fluid and won't affect it. Voila! You save a lot of time.
The trick is to rub your hands with Vaseline Lotion beforehand. Then the car dirt will wash right off.
Not to diminish your inventive skills but I'm pretty sure this was known back in the mid 80's when I was doing rockets as a kid. Googling it shows it to be a pretty common technique going back to at least the early 2000's.
https://bioresources.cnr.ncsu.edu/resources/solubility-of-li...
DMSO is a by-product of cellulose production.
https://en.wikipedia.org/wiki/Dimethyl_sulfoxide#Synthesis_a...
For example, they say 23 times harder in the article than regular wood. Wood has a Brinell scale of up to 7 although most is less. Times 23 that comes out to 161. Mild steel is 120. However hardened tool steel is 900.
For what they were showing, if you were going for "equivalent to steel", I'd expect to see a tap to secure the nail and then probably only two strokes to sink it. They tap it a hundred times, which begs the question of what would happen if you actually hit it.
Strength comes in many dimensions.
LIGNOLOC wooden nails are made from indigenous beech wood and boast a tensile strength similar to aluminium nails.
LIGNOLOC wooden nails are shot in pneumatically [using their specific nail-gun with reels of their nails].
LIGNOLOC wooden nails conserve tools and saw blades when post-processing wooden components in prefabricated buildings.
LIGNOLOC wooden nails do not cause any unattractive wood discolouration or leave any traces of corrosion, such as those left by steel nails.
LIGNOLOC wooden nails do not act as thermal bridges. This results in better insulation values and improved structural properties.
Death (decomposition) is a critical part of the circle of life...
If we had “mined” plastic directly out of the ground, it would be fine to use (again from an emissions perspective), though not a net win since it would have already been “locked up” whereas wood only temporarily locks up hydrocarbons until it is cut down, used, and then ultimately decomposed. This would break that cycle.
From a non-emissions perspective, wood doesn’t have the same “microplastics” problem (although who knows what this bastardized wood might end up having).
In the meanwhile, we somehow stop focusing on the whole bunch of other problems, that definitely aren't gonna solve themselves as well. Like, the fact that the oceans are turning into a huge dumpster for plastics that aren't going to magically dissolve in the next couple of hundreds of years. Or like we are only concerned about burning oil not being "green energy", and somehow skip over the fact, that we are literally burning millions of tons of substance each day, that we cannot produce and that doesn't renew itself (practically speaking), while being the ONLY substance suitable for making thousands of materials that we use to build basically everything for the last 50 of years (and it doesn't seem like we are going to find a better alternative soon).
"The compressed material showed very little tendency to bounce back to its original thickness."
I love the soft and squishy part, wondering whether it could be pressed into a form to make a bicycle frame to get away from the complicated process of laying carbon layers or the heavy weight of steel. But yeah, replacing plastic throw away utensils should be a priority for a material like that.
Very interesting. One question I'd have is what happens when the hardened wood is exposed to moisture over a long period of time? Humid climates? Does it reabsorb water which would take away from the hardness? The article did mention it could "survive a dishwasher" but doesn't clarify what that actually means. What happens over time when you use it as a nail if the wood you're nailing it into is moist?
The video shows pretty mediocre cutting, but perhaps that's on par with a "typical table knife". There's a good reason restaurants will give you a steak knife, alongside a table knife, for red meat.
If you ever want to get into woodworking you can pick up a bandsaw for a couple hundred bucks and they’re a great first project.
Nowadays they look most like the ones on the right but are better refined and are serrated. The two left are pine (smells great but are soft), and the two right are maple.
Having just spent the morning driving nails with a 10-year-old, it pained me to watch this adult use a hammer.
Cool stuff, but that's not very sharp. Still a long way to go?
How do they handle people bringing caramic knifes today? Would wooden knives display clearly on their scanners?
I suspect this is overstated: preventing access to the cockpit from the passenger cabin solves a lot of the issues here: if a hijacker can’t use the plane as a cruise missile, the need for security is about equivalent to attacks on metros or passenger trains.
Why?
Do we need this level of security at a bus station or a train station? No? Why?
Because planes can be flown into things? Lock the cabin door.
Because there's lots of people on planes? Well, there's lots of people on trains, buses, or in random offices and hotels. Why are the plane people special? What about giant conventions or events?
We have all this security because of 9/11, but only 1 security measure (locking cabin doors) was needed to stop the next 9/11.
Consider, for example, the fact that there is now "pre-clearance". Or the fact that they no longer make people take off their shoes.
Is there not still a risk of a shoe bomber? Couldn't a terrorist get on the pre-clearance list?
https://www.tsa.gov/travel/security-screening/whatcanibring/...
> If packed in carry-on, they must be less than 4 inches from the pivot point
https://abcnews.go.com/US/exclusive-undercover-dhs-tests-fin...
I imagine if one were resourceful and deliberate about it, it would be even more successful.
It's obviously not a win if there's too many false positives, but it's worth a try.
If we have X cases where people brought knives onto planes, and no notable incidents of knife-enabled violence in the past few years, what's the motivation for reducing X by half?
I'm sure that some would-be-criminals are dissuaded by the TSA, but that seems to already be working today. It seems like a very reasonable outcome would be no decrease in airline violence/crime, but an increase in taking people's property.
All said, if there is still a scourge of knife-wielding criminals on airlines, I'd be happy to be wrong here. Otherwise, though, this seems like it have a very marginally negative impact on the average passenger by taking away their belongings that they accidentally packed.
Joe McRandom is heading through TSA, and is falsely flagged as having a knife by this software.
Because the computer _can't_ be wrong - a depressingly common view among anyone who doesn't work with computers regularly - the TSA agent flags our friend Joe. Joe's entire luggage is then unpacked, in front of everyone present - hope he didn't have anything sensitive in there!
When he inevitably does not have a knife in his luggage, the TSA agent spends way too much time searching for the secret compartment, as well as digging through all the stuff. When there is _still_ no knife to be found, Joe is taken into custody - we've already seen that airport security can be trusted to abuse their power - causing Joe to miss his flight, be psychologically damaged (I'd be pretty shook up after that degree of search and detainment), and possibly lose his luggage (better hope the TSA did a good job keeping track of it, and decides you deserver to have it)!
Is this situation likely, strictly speaking? Over the massive number of TSA agents working and travel being done, I would say yes. All of the negative effects of the TSA mentioned above already happen, a system like this just makes it more likely to be occur for no real reason.
Also, while the average knife may not be expensive, some are. On top of that, many who carry knives form emotional attachments to them, so even if there's no "real" damage being done, there is some amount of harm being done in a much harder to quantify way.
May I ask what your race, and the race of your circle, is?
This happened to my friend (not White if that's so important to you) when an old pocket knife had gotten stuck beneath the bottom of her handbag. They kept running it through the detector, took everything out of it to check, couldn't find the source, and so eventually let her go.
All ceramics are available for people (police, military) who need a hard to detect self-defence knife, eg:
Then - cut all the items you want into the hunk/hunks of metal such that you can pop them out in-flight and assemble your mechanisms of chaos...
You can just have non-descript blocks in a case and say they are for scientific experiments but they look like un-machined pieces in the case. heck - even have a clear lid on the case with labels of different 'alloy make-ups' to make it look more like a metallurgical kit...
I used to (post-9/11, pre-pandemic) frequently fly with bags that get used daily, and I often forgot about fairly large flip-blades rolling around in the bottom.
Several times, I had to surrender them to the TSA before a return flight, but usually I'd find them when I got back, and they never caught one on the first try IME.
So your odds of getting a big metal knife through are likely better than 50/50, and there didn't seem to be any penalty for getting caught. Why bother with fancy materials?
The mentioned that it became "squishy" and then they pressed it to become its final shape. Building boats this way would be an interesting application.
And it would be interesting to understand its combustion properties. "Engineered wood" is all the rage in home building in North America because getting long structural timbers has become so expensive. If you add this to the set of techniques on engineered lumber, could you build better structural members with less material? Could you build those materials out of layered materials? (think oriented strand board (OSB) as 4 x 6 equivalent).
The NileRed YouTube channel goes into the lignin removal chemistry here https://youtu.be/x1H-323d838
There's also great progress in using nanocrystalline cellulose to produce super strong composite materials. Embedding graphene or carbon nanotubes gives you super light, super tough material that is suitable for replacing aluminum and steel structures.
Edit: I decided to do some research on if a serrated edge blade would in fact be better, leading me to a strange but interesting video of some Dutchmen unscientifically testing: https://www.youtube.com/watch?v=bAzrz0nC9-M (tl;dw, serrated seems it would be better for steak)
[1] https://en.wikipedia.org/wiki/Malazan_Book_of_the_Fallen
There is always going to be the emergency/contingency psychology calling for quality steel in every knife to "save your life someday" but TBH it's a relief that customers themselves get to decide exactly what that could mean to them...otherwise the raging debate would probably mean even more prepper content invading innocent hobbyist videos.
I look forward to the coming cutting-materials range expansion. I would even look at a non-metal SAK for working people, if just as a recognition of human creativity...
That is more to my point: Steel isn't needed in a surprising number of knife use cases. I'm not surprised that an engineer wants to speak on behalf of steel and its properties. But that probably won't stop product designers from noticing a huge and tantalizing materials gap, around redefining what makes a knife useful to a consumer.
steel works well. its really cheap - both in economic and physical terms. it recycles perfectly, and if you do leave it in the ground on the water, its not going to harm anything. lasts a really long time, more with care.
seems like a really great design fit. Maybe there are better opportunities elsewhere?
Your website in your profile already establishes that you're a professional bullshitter[1], so I don't think we need to dwell on that.
Even so, things of value can grow in manure. Do you actually have anything concrete to say or is it just handwaving all the way down? What's a superior alternative to steel for the general knife use cases? Maybe nanocarbon-quantumfiber?
[1] http://www2.csudh.edu/ccauthen/576f12/frankfurt__harry_-_on_...
So, cool, but the best use I’ve considered for a wood knife is getting through X-ray, but now you are back to composites being an option.
The market for green circumvention of security measures is probably very small.
The article also says it won't rust like iron, but didn't say it wouldn't rot!
compare that to a roofer https://youtu.be/19RGYncQzlo