Maxwell Products Packaging

PolySkin: the first meltable package

Pavement products came in cardboard boxes with plastic liners for forty years. One had to be cut off and hauled away, the other went into the melter and would not melt. We were the first to make the package an ingredient instead, and the industry has been following since.

How it came about, what it had to do, and the answer to the one question we get asked about it.

Published January 1, 2019 · Updated September 30, 2026

A PolySkin block lit from behind against black, showing the moulded top with its interlocking bosses.
Fig. 01 A block of sealant in a foam shell, moulded to stack. The whole of it, shell included: is what goes into the melter.

Every package a crack sealant has ever come in had to be dealt with before the work started. Cardboard had to be cut off and carried away. Plastic liners went into the melter and stayed there, tangling agitators and settling on the intake.

The idea behind PolySkin is that the package stops being a separate thing you handle. It is simply part of what you melt.

Key takeaways
01 The package goes in whole. No boxes to cut, no liner to fish out, no cardboard to carry off the job.
02 It cannot block the intake, because the expanded bead shell floats while it melts and the intake is at the bottom.
03 The blocks interlock, so a pallet stands up on its own once the stretch wrap comes off and stores outdoors.
04 Maxwell was first to do it, and meltable packaging is normal across the industry now.
05 It started with a styrofoam takeout container on the floor of the lab.
01

What it replaced

Pavement maintenance products have been packaged in cardboard boxes with plastic bags or liners since the late 1970s. Both parts of that cause work.

The plastic goes into the melter with the material and does not reliably melt. It wraps agitators, settles onto intake valves, and leaves remnants stuck to the inside of the kettle that somebody has to get out later. The cardboard never goes in, which means it has to come off and then be collected, hauled and disposed of. On a plain carton that starts with a knife, on a job site, in gloves, which is the problem ZipBox solves for the products that still ship in cardboard. It does not solve the other half: the box still has to go somewhere.

Neither of those is the job anybody is being paid to do. They are both time spent on the packaging instead of on the pavement.

Two problems, not one
Cardboard is a handling problem: cutting, carrying and disposal. Liners are a machine problem: what is left inside the melter afterwards. A meltable package has to answer both.

“PolySkin opened a lot of doors to us. When we came out with PolySkin, it allowed us to focus on quality materials, because customers could see it was a premium product. We can brand PolySkin, mold it, color it. It just sets us apart.”

Ken Maxwell
Chief executive, Maxwell Products
02

It started with lunch

The idea was not new. Ted Maxwell, who founded the company and was its first chemist, had wanted a meltable package for years and had tried at it more than once.

A meltable plastic wrapper would melt, but it would not hold a pallet up. Plastic buckets held their shape, but melted slowly and put too much incompatible plastic into the material. The requirement was awkward: something rigid enough to stack and ship, and compatible enough to dissolve into a sealant without changing it.

The answer turned up in the lab entryway, in somebody's lunch.

The awkward part
Rigid enough to build a pallet out of, and compatible enough to melt into the product. Those two requirements pull in opposite directions, which is why it took as long as it did.
Cut away

Foam outside, sealant inside

There is no boundary here that a crew has to deal with. The shell is the package and the block is the product, and both go the same way: into the melter, at the same time, with nobody separating them first.

A PolySkin block with one wall cut away, showing the block of sealant inside the foam shell.

“I was in the lab contemplating meltable packaging. One of the salesmen walked into the entry of the lab, and he had his lunch in a [styrofoam] takeout container. After a while, I finished answering his questions, and he set his lunch in the entry of the lab and forgot it, walking away. In my peripheral vision I can see this container, and I thought, I wonder. I took it, brushed out the crumbs, and walked back to the packaging bay. I measured the temperature of the sealant being packaged, had them stop the line, and filled the container with material. After leaving it overnight, I noticed the packaging wasn't melted or damaged. The next day, I went out and bought a case of [styrofoam] takeout containers. I filled them all up and spread them over the floor of the packaging bay. I'm pretty sure the guys on the packaging line thought I was nuts.”

Mike Guymon
Materials engineer, Maxwell Products
03

From a takeout box to a pallet

What followed was several years of prototyping, because a foam box that survives one night of hot sealant is a long way from a package that ships.

It had to melt quickly and completely, and it had to be made of polymers compatible with the material it was going into, so that it mixes in rather than sitting in the kettle as clumps. It had to survive the filling line, which turned out to shape the design as much as anything. And it had to build a pallet that stood up.

That last requirement is where the shape came from. The early prototypes shifted in transit, so the containers were molded to interlock, the bosses on the top of one block seating into the base of the next, the way the pallet above shows. A wrapped pallet of PolySkin does not need the wrap to stay standing, and it does not sag, slump or topple when it comes off. It stores outside.

What it had to be
Meltable
Compatible
Structural
Any two of those are straightforward. All three together took years.
Unwrapped

A pallet that holds itself up

The bosses on top of each block seat into the base of the one above, so a column of them is locked together rather than balanced. Take the stretch wrap off and nothing moves.

That is why it stores outdoors and survives being handled on a job site, and it is the requirement that gave the block its shape.

A full pallet of PolySkin blocks interlocked into a column, standing without stretch wrap. Transparent, with the ground plane and most of the shadow taken out, so it can sit on the page rather than in a frame.

“The prototype containers had a tendency to shift some during shipping, and we knew we had to fix it. My initial concept drawings for a solution looked a lot like building blocks, which just made it all that much cooler.”

Brent Maxwell
Marketing director, Maxwell Products
What was new

Make the package an ingredient, and there is nothing left to take off, carry away or fish out of the kettle.

04

Everyone makes one now

Maxwell got there first. Ted had wanted a meltable package for years, Mike found the shape of the answer in a takeout container, and Ken had to go and sell a foam box to an industry that had always used cardboard.

Meltable packaging is normal now, and that is the part worth being pleased about. It stopped being our idea and became how the industry works.

Three people
Ted wanted it, Mike worked out how, Ken sold it. Mike and Ken are quoted below. Ted is the one this article cannot ask.

“I think PolySkin has inspired the entire industry to put more focus on innovation. I think it taught many in the industry that just because we have always done things one way, doesn't mean we can't do it better.”

Brent Maxwell
Marketing director, Maxwell Products
05

Does it clog the melter?

This is the question we get asked, and it is worth answering plainly rather than dismissing, because it is a reasonable thing to worry about. Anyone who has run plastic liners through a kettle has good reason to distrust the idea of putting packaging into it deliberately.

The answer is in the material. PolySkin is expanded bead foam, which floats. While it is melting it stays at the top of the melter, and the material intake is at the bottom, so the packaging and the intake are never in the same place at the same time. It is not that the foam clears the intake quickly. It is that it does not get there.

The rest follows from the polymers being chosen for compatibility with the sealant: it melts in rather than staying as clumps, and it does not wrap the agitator the way a sheet of liner does.

Where the foam is
Floating, at the top, until it has melted. The intake is at the bottom of the tank.
A macro of PolySkin's expanded bead foam, showing the closed cells that make the block float while it melts.
Fig. 02 Close on the foam. Those closed cells are the whole answer to the clogging question, they are what keeps the block at the top of the melter, and the intake is at the bottom.

“Our experience has been plug-and-play. We have two Crafco EZ100s and have experienced no noticeable clogging or any other negative effects.”

Pat Mendick
Miktom, Inc., Omaha, Nebraska
On the job
What changes for a crew
01 No box cutters, so one less blade in use on the job
02 No cardboard to stack, carry off, or pay to dispose of
03 Pallets that stand once the wrap is off, and store outdoors
04 Blocks that go from the pallet straight into the melter

“Time is money to our customers. If they're spending so much time nursing their kettles, they're not getting the work done.”

Mike Guymon
Materials engineer, Maxwell Products

Ask for a pallet and see what your crew does with the twenty minutes

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Maxwell Products
Salt Lake City, Utah
800.266.2090
maxwellproducts.com