#5124: Sharpening, Cleaning & Polishing with a Rotary Tool

Can a Dremel really sharpen a knife? What about drill bits? We break down which accessories work and which are a waste.

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A rotary tool like a Dremel is often sold as a do-everything gadget, but the truth is more nuanced. Sharpening a utility knife with one works surprisingly well—it creates a convex edge that's perfectly functional. The catch is technique: a light pass, constant movement, and water dips to prevent the thin blade from overheating and losing its temper. The A679 sharpening guide is the real hero here, holding the tool at a consistent angle that freehand work simply can't match.

Drill bits are a different story. While a rotary tool can touch up a large bit's cutting lips, the geometry involved—symmetrical lips, a centered chisel edge, proper relief angles—is too precise for freehand work on small bits. Rust can be cleaned off with a brass wire brush at low speed, but heat discoloration means the temper is already gone. For cleaning and polishing, however, the rotary tool excels. Small wire brushes, nylon bristle brushes, and felt wheels with the right compound make short work of corrosion, old gasket material, and surface refinement. The key insight: the compound does the cutting, not the wheel, and speed control matters more than most people realize.

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#5124: Sharpening, Cleaning & Polishing with a Rotary Tool

Corn
Daniel's been staring at some discolored drill bits and wondering if the rotary tool he bought for engraving can earn its keep on sharpening, polishing, and cleaning duty. He wants specifics, not the usual "it does everything" brochure talk. Which accessories actually work, which ones are a waste of time, and whether a Dremel can put a real edge on a utility knife.
Herman
The short answer on the utility knife is yes, but you have to understand what kind of edge you're making. A rotary tool puts a convex edge on a blade, not a flat bevel like you'd get from a whetstone. For a utility knife that's fine, even good. For a chisel or a plane iron it's a disaster.
Corn
So the geometry matters more than the tool's ability to remove metal.
Herman
Entirely. A utility knife blade is a consumable. People replace them, they don't sharpen them. But if you're going to sharpen one, a small grinding stone spinning at high speed will do it in seconds. The catch is heat. You're generating friction at a single point of contact, and thin blade stock heats up fast. If the edge turns blue, you've drawn the temper and ruined the steel.
Corn
So the technique is a light pass, not a grind.
Herman
Light pass, keep it moving, dip in water between passes. The Dremel sharpening kit, the A679, comes with three aluminum oxide grinding stones, the 453, 454, and 455. Different diameters and shapes. The 455 is a chain saw sharpening stone, the 453 is a general purpose grinding stone. The kit also has a guide that holds the tool at a fixed angle.
Corn
That guide is doing the real work, isn't it. Nobody's hand is steady enough to hold a spinning stone at a consistent angle freehand.
Herman
Right, and that's where most people fail with rotary sharpening. They freehand it, the angle wanders, and they end up with a rounded, wobbly edge that's worse than what they started with. The guide clamps onto the tool body and gives you a reference surface. You rest the guide on the blade and the geometry stays consistent.
Corn
Daniel's drill bits. That's the discoloration he mentioned. Is that rust, or is it heat discoloration from previous use?
Herman
Could be either. If they're old high-speed steel bits that sat in a damp drawer, it's surface rust. If the tips have gone blue or straw-colored, someone overheated them drilling. Rust you can clean. Heat damage means the temper is gone and no amount of sharpening will fix that.
Corn
So step one is diagnosis, not grinding.
Herman
Step one is always diagnosis. But let's say it's surface rust and a dull cutting edge. A rotary tool with a small grinding stone can touch up a drill bit's cutting lips. The problem is that drill bit geometry is more complicated than a knife edge. You've got two cutting lips that have to be symmetrical, a chisel edge at the center, and a relief angle behind each lip. If you grind one lip longer than the other, the bit walks and drills oversized holes.
Corn
How do you even see that at that scale?
Herman
You don't, not by eye. Professional bit sharpeners use a drill point gauge or a dedicated grinder with a jig. The Dremel can do it in a pinch, but you're essentially freehanding a precision job. For a large bit, say a half inch, you can see what you're doing. For a small bit, under an eighth of an inch, you're guessing.
Corn
So the honest answer is that a rotary tool can sharpen a drill bit, but it's not the right tool for that job.
Herman
It's the tool you use when it's the only one you have and the bit is already ruined. If you've got a box of dull bits and a Dremel, you can bring some of them back. If you're trying to do precision work, buy a dedicated drill sharpener or learn to use a bench grinder with a proper rest.
Corn
What about the cleaning side of this. Daniel mentioned micro brushes.
Herman
That's where the rotary tool shines. The little wire brushes, the nylon bristle brushes, the abrasive buffs. For cleaning corrosion off electrical contacts, getting rust out of small recesses, removing old gasket material from a sealing surface, that's work where the small size is an advantage, not a compromise.
Corn
And the speed matters there too, doesn't it. You can run a wire brush at low speed and it's more controlled than a full-size drill.
Herman
A full-size drill with a wire wheel is a lot of torque and a lot of momentum. On a small part you're fighting it. The Dremel at ten or fifteen thousand RPM with a small brass brush is delicate enough that you can see what you're cleaning as you clean it.
Corn
What's the risk there. Brass bristles flying off?
Herman
That's one. Wire brushes shed bristles, and at high speed they become little needles. Eye protection is not optional. The other risk is the brush itself being too aggressive. Brass is softer than steel, so a brass brush won't scratch a steel surface, but it will scratch aluminum if you lean on it. And a steel wire brush will scratch almost anything.
Corn
So brass for most cleaning, steel for when you need to remove actual material.
Herman
Steel for rust removal on iron and steel parts where you don't care about the surface finish. Brass for electrical contacts and softer metals. Nylon for anything delicate, or for applying polishing compound.
Corn
Let's talk about polishing, because that's the third thing Daniel asked about and it's the one where I think people have the most wrong ideas.
Herman
What do you mean?
Corn
People think a polishing wheel is a polishing wheel. They don't realize the compound is doing the work, not the wheel.
Herman
The felt wheel or the cloth wheel is just a carrier. The abrasive is in the compound. You've got your tripoli compound for cutting, your rouge for final polish, your white diamond for aluminum. The wheel picks up the compound and the heat from friction melts it just enough to transfer to the workpiece.
Corn
And if you use the wrong compound or no compound at all, you're just burnishing.
Herman
Or you're just smearing metal around. The classic mistake is putting a felt wheel on a Dremel, cranking it to full speed, and pressing it against a piece of brass. No compound. What you get is a shiny smear and a ruined wheel. The felt loads up with metal and becomes a cutting tool you didn't intend.
Corn
So the sequence is compound first, then contact.
Herman
Charge the wheel, touch it to the work, let the speed and the compound do the cutting. Keep the wheel moving. Don't dwell in one spot. And clean the wheel when it loads up. You can dress a felt wheel with a wire brush or a dressing stone.
Corn
What about the little rubber polishing points. The ones that look like pencil erasers.
Herman
Those are abrasive-impregnated rubber. They come in different grits and they're excellent for mold and die work, for cleaning up small tool marks, for finishing inside a recess where a wheel won't fit. They're less about shine and more about surface refinement. You can take a surface from rough to satin with the coarse ones and up to a near-polish with the fine ones.
Corn
Are those the ones that leave the little rubber crumbs everywhere?
Herman
They wear down as you use them, and the debris is a mix of rubber and the abrasive. It's messy but it's not toxic. Just don't breathe the dust. Same as any grinding operation.
Corn
Daniel's got a specific use case with those drill bits. He wants to clean them up. What's the best sequence for that? Rust removal first, then sharpen, then polish?
Herman
Clean first, always. Get the rust off so you can see what you're working with. A brass wire brush at low speed will take off surface rust without removing good steel. Then inspect. If the cutting lips are chipped or the point is rounded over, that's when you decide whether to sharpen or replace. If you're going to sharpen, do that before any polishing. Polishing is the last step, and honestly for a drill bit it's cosmetic.
Corn
A shiny drill bit doesn't drill any better.
Herman
It doesn't. But there's a case for it. A polished flute evacuates chips better. The chips slide off instead of sticking. On a drill bit that's going to see use in wood or plastic, a quick polish of the flutes can actually reduce binding.
Corn
That's a knock-on effect I wouldn't have guessed.
Herman
It's the same principle as polishing a rake face on a plane iron or a chisel. The smoother the surface, the less friction, the less heat, the cleaner the cut. For a drill bit it's marginal, but it's real.
Corn
So we've got sharpening, which is possible but limited. Cleaning, which is where the tool excels. Polishing, which is all about the compound and the technique. What else is in that accessories kit Daniel's been exploring?
Herman
The sanding drums. Those little rubber cylinders with the sanding bands that slip over them. Those are for shaping and smoothing wood, fiberglass, soft metals. They're aggressive. If you're cleaning up a rough edge on a piece of sheet metal or knocking down a weld, the sanding drum is the tool.
Corn
And the micro sanders he mentioned. Are those the same thing?
Herman
Different. The micro sanders are the small discs or the flap wheels. The flap wheels are layers of abrasive cloth arranged radially, and they're brilliant for getting into contours. They conform to the surface in a way a rigid drum won't.
Corn
So if you're polishing a curved piece of metal, the flap wheel follows the curve.
Herman
It does, and it wears evenly. The abrasive flaps break off as they dull, so you're always cutting with fresh abrasive. A sanding drum just gets dull and starts burning.
Corn
What's the lifespan on one of those flap wheels? Are we talking minutes or hours?
Herman
For a small one, maybe fifteen or twenty minutes of actual contact time. It depends on the material and the pressure. But they're cheap, and when they're done they're done. You don't dress them, you replace them.
Corn
Let me ask about speed, because I think this is where a lot of people get into trouble. The Dremel spins fast. Really fast. What's the right speed for these different jobs?
Herman
The general rule is that speed is for cutting and grinding, and lower speed is for anything where you want control. Polishing with a felt wheel, you want maybe five to ten thousand RPM. Too fast and the compound flies off and the wheel burns. Wire brushing, similar range. Grinding with a stone, you can go higher because the stone is rigid and you want the cutting speed. Sanding, somewhere in the middle.
Corn
And the tool itself. Does it have variable speed?
Herman
The newer ones do. The basic models have a dial that goes from five thousand to about thirty-five thousand RPM. The older single-speed models just go full blast. If Daniel's got a variable speed model, he should be using the low end for almost everything we've discussed.
Corn
Full speed is for cutting wheels and routing bits.
Herman
And even then, full speed on a cutting wheel is how you shatter them. The thin abrasive discs are rated for a maximum speed, and the Dremel can exceed that if you're not careful. When they shatter, the pieces go somewhere.
Corn
That's the part where you tell people to wear glasses.
Herman
I'm going to say it once and then move on. Eye protection. Every time. The wire bristles, the shattered discs, the metal dust. Your eyes are not replaceable.
Corn
Noted. So what about the cleaning applications that aren't rust. Daniel mentioned micro brushes. What are the actual brush accessories he's likely to have?
Herman
The standard kit usually has a brass wire brush, a steel wire brush, and a nylon bristle brush. The brass one is cup-shaped or wheel-shaped. The nylon one is for gentle scrubbing. Then there are the abrasive buffs, which are the little cylindrical felt or rubber points with abrasive embedded. Those are for polishing small areas.
Corn
And the polishing compound. Does that come in the kit?
Herman
Usually there's a small amount of red rouge compound included. It's the classic jeweler's rouge, iron oxide. Good for final polish on steel and brass. For aluminum you want something different, a white compound.
Corn
So Daniel could clean up those drill bits with the brass brush, touch up the edges with a grinding stone if they're dull, and give them a quick polish with the felt wheel and rouge. That's the full workflow.
Herman
And the whole thing would take maybe ten minutes per bit if he's being careful. The point is that the tool is capable of all of it, but the quality of the result depends on patience and the right accessory for the step.
Corn
What about sharpening things other than knives and drill bits. Scissors, for instance.
Herman
Scissors are hard because the bevel is on one side and the angle is critical. A rotary tool can touch up scissors, but you're better off with a dedicated scissor sharpener or a stone. The Dremel will remove metal fast, and if you take off too much from the wrong side, the scissors won't cut.
Corn
So it's a tool for rescuing abused edges, not for maintaining good ones.
Herman
If you've got a knife that's already dull, a Dremel will make it cut again. If you've got a knife that's just starting to lose its edge, a stone or a honing rod is the right tool. The Dremel is the emergency room, not the gym.
Corn
What about ax heads, lawn mower blades, garden tools. The things people actually abuse.
Herman
Lawn mower blades are a good use case, actually. They get nicked and dull, and the Dremel with a grinding stone can clean up the nicks. The problem is balance. If you take more metal off one side than the other, the blade vibrates and destroys the mower's bearings. You need to check the balance after sharpening.
Corn
How do you check the balance of a lawn mower blade at home?
Herman
Nail in the wall, hang the blade by its center hole. If one side dips, that side is heavier. Grind a little more off the heavy side until it hangs level.
Corn
That's a neat trick.
Herman
It's the same trick you use for checking a propeller. Balance matters when things spin.
Corn
So the rotary tool is a sharpening tool for people who understand geometry and are willing to check their work.
Herman
And for people who know when to stop. The biggest mistake with any power sharpening is overdoing it. You take off too much metal, you overheat the edge, you ruin the temper. A light touch and frequent checks.
Corn
What about the polishing side for things that aren't tools. Jewelry, for instance.
Herman
Jewelry is where the Dremel shines, literally. The felt wheels, the rouge, the small size. You can polish a ring or a bracelet without taking it to a jeweler. The trick is to use the right compound for the metal. Rouge for gold and silver, white diamond for platinum, tripoli for initial cutting on scratched pieces.
Corn
So if someone's got a scratched wedding ring, the Dremel is actually the right tool.
Herman
It is, with the caveat that you're removing metal. Every time you polish a ring, you take off a tiny amount of the surface. For a ring with deep engraving, you're wearing down the engraving. For a ring with a stone, you have to be careful not to hit the stone.
Corn
What about cleaning jewelry. The brushes.
Herman
A soft brass brush with a little soap and water will clean the gunk out of a ring's setting. The nylon brush is even gentler. That's a job where the Dremel's small size lets you get into places a toothbrush can't reach.
Corn
So cleaning is the safest entry point. Polishing is the middle ground. Sharpening is the advanced skill.
Herman
That's a reasonable hierarchy. Start with cleaning, get a feel for the tool, then move to polishing, and only try sharpening when you understand how the tool removes metal.
Corn
Daniel's already got the engraving experience, so he's past the beginner stage. He knows how the tool handles.
Herman
Then he's probably ready for all three. The drill bit project is a good test. Clean them first, see how they look. If they're just dirty, he's done. If they're dull, he can try touching up the edges. Worst case, he ruins a bit that was already useless.
Corn
That's the thing about practicing on ruined tools. You can't make them worse.
Herman
You can make them worse in the sense that you could turn a dull bit into a broken bit, but if it was going in the bin anyway, there's no loss.
Corn
Let's talk about the micro brushes more specifically. Daniel said he's been exploring them. What are the actual shapes and what's each one for?
Herman
You've got the cup brush, which is good for flat surfaces. The wheel brush, which gets into corners and slots. The end brush, which is like a tiny bottle brush for holes and recesses. Then the nylon versions of all three. The nylon cup brush is great for cleaning battery terminals without scratching the lead.
Corn
Battery terminals. That's a car maintenance job.
Herman
Disconnect the battery, clean the posts and the cable clamps with a brass or nylon brush, reconnect. Better contact, less corrosion. The Dremel is perfect for it because the posts are small and the brush fits around them.
Corn
So it's not just workshop tools. It's car maintenance, jewelry, even household stuff.
Herman
The people who use a Dremel for everything are the ones who understand that it's a small, precise, high-speed motor with interchangeable tips. Once you see it that way, the applications are endless.
Corn
What's the one accessory Daniel should buy that probably didn't come in his kit?
Herman
The flexible shaft attachment. It moves the spinning bit to a handpiece that's about the size of a pen. For detail work, for getting into tight spaces, for anything where the tool body is too bulky, the flexible shaft is transformative.
Corn
So you're holding a pen instead of a drill.
Herman
You're holding a pen that spins at twenty thousand RPM. Your control goes up dramatically because you're gripping it like a writing instrument. For polishing small parts, for cleaning inside a mechanism, for any kind of fine work, it's the single best upgrade.
Corn
Does it work with all the same accessories?
Herman
Same collet system, same bits. It's just a flexible drive cable in a sheath. You attach it to the tool in place of the collet nut, and the handpiece has its own collet.
Corn
What's the downside?
Herman
You lose a little bit of torque through the cable, and the cable needs to be hung up so it doesn't kink. But for the kind of work Daniel's describing, the precision gain far outweighs the torque loss.
Corn
So the workflow for those drill bits might be: brass brush on the flexible shaft to clean the rust, grinding stone on the flexible shaft to touch up the edges, felt wheel with rouge to polish. All with the same tool, three different accessories.
Herman
And the flexible shaft the whole time, so he's working with a pen instead of a drill. That's the setup.
Corn
What about the speed for each of those steps on the flexible shaft?
Herman
Same as on the tool body. Low for cleaning and polishing, medium for grinding. The flexible shaft doesn't change the physics, just the ergonomics.
Corn
You mentioned the collet system. Is there anything Daniel needs to know about changing accessories?
Herman
The collet nut has to be tight, and you use the little wrench that comes with the tool. There's a button on the tool body that locks the shaft so you can tighten against it. If the bit slips in the collet, it'll score the shaft and then nothing will hold properly.
Corn
So it's a maintenance thing. Keep the collet clean, tighten it properly.
Herman
And don't overtighten. The collet is a precision part. If you strip the threads, you're buying a new one. Snug is enough.
Corn
I want to go back to something you said earlier about heat and tempering. How fast does a Dremel actually overheat a blade edge?
Herman
At full speed with a grinding stone, you can draw the temper in a second or two. The edge is thin, the heat has nowhere to go, and the temperature spikes. That's why you dip in water constantly. The water isn't just cooling the blade, it's preventing the temperature from ever reaching the point where the steel's structure changes.
Corn
So the water is doing the same job as the quench in the original heat treatment.
Herman
It's preventing an unwanted quench, actually. When you overheat the edge and then it cools quickly, you're re-hardening it without tempering. That leaves it brittle. The water keeps it below the critical temperature so the original temper is preserved.
Corn
That's a subtlety most people don't get. They think the water is just to stop the blade getting hot to the touch.
Herman
It's doing both. But the metallurgical reason is the important one. You're protecting the heat treatment that the manufacturer already did.
Corn
So for Daniel's utility knife, the technique would be light passes with a grinding stone, water dip between passes, and the guide to hold the angle.
Herman
And a final hone with a fine stone or a ceramic rod to knock off the burr. The Dremel leaves a burr, just like any grinder. You need to remove it for the edge to feel sharp.
Corn
What's a burr, for the listener who's never sharpened anything.
Herman
It's a microscopic lip of metal that forms on the edge as you grind. It folds over to the opposite side. When you feel a sharp edge with your thumb, part of what you're feeling is the burr. A proper sharpening removes the burr and leaves a clean intersection of two surfaces.
Corn
So sharpness isn't just about the angle, it's about the cleanliness of the edge.
Herman
A clean edge at a slightly obtuse angle will cut better than a burred edge at a perfect angle. The burr folds over and acts like a dull edge.
Corn
That's why the honing step matters.
Herman
That's why a dull knife can be brought back with just a honing rod. You're not removing material, you're re-aligning the edge and knocking off the micro-burr. The Dremel is for when the edge is actually gone.
Corn
So we've got a full picture now. Cleaning is straightforward and safe. Polishing is about compound and technique. Sharpening is possible but demands understanding of geometry and heat.
Herman
And the accessories map cleanly onto those jobs. Wire brushes for cleaning, felt wheels and compound for polishing, grinding stones for sharpening. The sanding drums and flap wheels are for shaping and surface prep, which is a fourth category Daniel didn't ask about but probably has in his kit.
Corn
What would he use those for in a practical sense?
Herman
Removing rust from a flat surface before repainting. Smoothing a rough edge on a cut piece of metal. Taking the burr off a drilled hole. Shaping a wooden handle to fit a hand. The sanding drum is the workhorse for anything where you need to remove material over an area, not just at a point.
Corn
The flap wheels are for contours.
Herman
For finishing. A flap wheel with a fine grit leaves a surface that's almost polished. It's the bridge between sanding and polishing.
Corn
The kit Daniel got with his Dremel is actually a pretty complete system.
Herman
It is, and that's the thing about Dremel kits. They give you a little bit of everything, and most people use one or two accessories and ignore the rest. The value is in learning what each one does and when to reach for it.
Corn
That's the whole point of Daniel's question, really. He's got this tool, he's been using it for one thing, and he's realizing it can do more. He just needs the map.
Herman
The map is: match the accessory to the material, match the speed to the job, and respect the heat.
Corn
I think that's a good summary. But let me push on one thing. You said the Dremel is the emergency room, not the gym, for sharpening. Does that mean Daniel shouldn't bother trying to sharpen his drill bits?
Herman
He should try, because the bits are already dull and he's not going to make them worse. But he should go into it knowing that a hand-sharpened drill bit from a Dremel is never going to be as good as a factory grind. The geometry is too complex to nail freehand.
Corn
It's a rescue operation, not a precision service.
Herman
It's the difference between a bit that drills a slightly rough hole and a bit that doesn't drill at all. For most home use, the slightly rough hole is fine.
Corn
What about the polishing compounds. Is there a specific brand or type Daniel should look for?
Herman
The Dremel-branded compounds are fine for starting out. They come in small tubes and they're matched to the Dremel wheels. If he gets serious, there are better compounds from the jewelry supply world, but for drill bits and utility knives, the basic rouge is plenty.
Corn
The felt wheels. Do they wear out?
Herman
They load up and they lose their shape. You can dress them with a wire brush to clean them, and you can reshape them with a dressing stone. Eventually they get too small or too misshapen and you replace them. They're consumables.
Corn
The ongoing cost of the Dremel is in the accessories, not the tool.
Herman
That's the business model, and it's a fair one. The tool lasts for years. The bits and wheels are meant to be used up.
Corn
I think we've covered the three applications Daniel asked about. Let me ask you one more thing. What's the most common mistake you see people make with the polishing side?
Herman
Using too much compound. A little goes a long way. If you load the wheel with too much, it just flings off and makes a mess. You want a thin, even coating. Charge the wheel, touch it to the work, and let the friction do the rest.
Corn
The most common mistake with cleaning?
Herman
Using a steel brush on something soft. Steel on brass, steel on aluminum, steel on copper. It scratches. Match the brush to the metal.
Corn
The whole episode comes down to matching. Matching the accessory to the material, the speed to the job, the technique to the geometry.
Herman
Knowing when the rotary tool is the right tool and when it's the wrong tool. It's not a universal machine. It's a small, fast, precise machine, and that's a specific set of strengths.
Corn
I think Daniel's drill bits are going to be fine. Clean them up, touch up the edges, maybe polish the flutes. Worst case, they were already dull.
Herman
Worst case, he learns something about drill bit geometry and heat treatment. That's not a bad outcome either.
Corn
The discolored bits are actually a training opportunity.
Herman
They're a low-stakes way to learn the sharpening skills. If he ruins them, he was going to replace them anyway. If he succeeds, he's got working bits and new skills.

Hilbert: The 455 stone. It's not for chainsaws.
Corn
What?

Hilbert: The 455. Dremel lists it as a chainsaw sharpening stone, but it's just a cylindrical aluminum oxide stone, three thirty-seconds of an inch diameter. I used the same stone for sharpening fishhooks when I worked at a tackle shop in the eighties. You don't need the Dremel guide for a fishhook. You just touch the point.
Herman
That's actually a good point. The stone doesn't know what it's sharpening. The shape is the shape.

Hilbert: The guide is the part that makes it a chainsaw sharpener. Without the guide, it's just a small round stone. We sold them loose for a dollar twenty-five. People used them for all kinds of things.
Corn
The accessory numbering is about marketing, not capability.

Hilbert: The 453 is the same stone in a different diameter. The 454 is a pointed one. They're all just aluminum oxide on a shank. What you do with them is up to you.
Herman
That's true of most of the Dremel accessories. The names are suggestions. The geometry is what matters.

Hilbert: I sharpened a lot of hooks with a 455. Never once sharpened a chainsaw.
Corn
Did you use water to keep the hooks cool?

Hilbert: Fishhooks are small enough that they don't get hot. A second of contact, maybe two. You're just putting a point back on. The barb does the holding, the point does the penetrating.
Herman
The heat concern is proportional to the mass of the steel. A fishhook doesn't have enough mass to hold heat.

Hilbert: A drill bit does. So does a knife blade. But a fishhook, no. You touch it to the stone and it's done.
Corn
That's a useful distinction. The heat problem scales with the size of the workpiece.

Hilbert: With how long you hold it there. People hold the stone on the metal too long. That's the whole problem.
Herman
Light passes, keep it moving, dip in water. Same advice for everything.

Hilbert: I never used water on a fishhook. Just the stone, a light touch, and a steady hand. You can feel when the point is right.
Corn
The Dremel is a fishhook sharpener too.

Hilbert: It's a small spinning stone. It sharpens anything small enough to hold against it. The rest is just names on a package.
Herman
That's the thing about the whole episode, really. Daniel asked about three applications, but the underlying principle is the same. A small, fast, precise motor with interchangeable tips. The tips don't care what they're called.
Corn
The marketing names are for people who don't want to think about the geometry.
Herman
The geometry is the whole game.

Hilbert: The geometry and the speed. Those two things. Everything else is packaging.
Corn
For Daniel's drill bits, the answer is yes, with caveats. For the utility knife, yes, with a guide and water. For cleaning, yes, with the right brush. For polishing, yes, with compound and patience.
Herman
For anything else, the question is just: what shape is the bit, what speed is right, and what material am I touching it to.
Corn
That's a good place to land. Daniel's got the tool, he's got the accessories, and now he's got the framework.
Herman
If he ruins a drill bit, it was already dull. No loss.
Corn
I think that's the episode. Thanks to Hilbert for the fishhook correction.
Herman
For the reminder that the accessory names are just suggestions.
Corn
This has been My Weird Prompts. If you want to send us your own questions about tools, materials, or anything else, email us at show at my weird prompts dot com.
Herman
We'll be back soon.

This episode was generated with AI assistance. Hosts Herman and Corn are AI personalities.