Showing posts with label engineered quartz plant. Show all posts
Showing posts with label engineered quartz plant. Show all posts

18.2.11

Quality in Engineered Stone

Engineered stone like every other product has quality standards, although at the current moment the CE marking is not ready for engineered stone slabs. On this post I want to show you, common industrial problems with engineered stone, you will see things that should not arrive at your warehouse, let alone in someone's household.
Engineered stone being a man made stone or as some like to call it an artificial stone, it's rather complex to make a perfect piece of engineered stone, many little things may go wrong during production, warehousing and shipping.
Here is a list of the most common problems that may be visable on your engineered stone slab or tile:
  1. White superficial dust/veins: this superficial white dust is due to bad formulation or uneven distribution of the mixture, what happened was that the mixture was not done correctly, being that in the mixture some dry unmixed quartz dust was incorporated into the slab. In the photo you will see a vein effect, after the dust is cleaned the tile will not have a perfect surface.
  2. Cracking: you may receive pieces or even slabs with small tiny crack that you can barely see. These are due to an improper chemical reaction, normally the hardening process of resin is a very controlled chemical process, but many factors can either accelerate or slow down the reaction.
  3. Tiny pin holes: Unfortunately the photos I have can't give you a correct idea of this, as the definition is not as good as I need to actually show you it. But basically it characterized by small pin holes on the slab surface, it's really difficult to see, and sometimes you may need the right lighting angle to correctly visualize it. These little pin holes with time will accumulate dirt, and the engineered stone will quickly look very awful, although in dark colours this negative may be hidden. In theory a slab by slab production process should be less porous than a block production process, so if you deal with engineered marble it may be a good thing to look out for. Some manufacturers end up resining the surface to hide this defect, but many times the defect is so small that even resin will have problems solving it.
  4. Shade differences in the same slab: I had once a project where I learned a very painful lesson, we cut the counters from the same slab (dark blue with mirror chips), and so we did not worry about checking the shade, as we all did assume that the same slab would have an even mixture. Truth is that polishing also has an important effect on the surfaces shade. Applying those miraculous chemical products will improve the shade difference, but will not solve it.

  5. Slab length: I've learned through experience not to believe in everything people tell me, so I usually do a visual inspection of my cargo, a handy measuring tape is essential, and don't be surprised if you find what I found (in the photo you may see that the slab has 303 cm, and I was paying 307).
  6. Warped slabs: engineered quartz slabs is far from being plastic, as it has more than 90% natural stone, as everyone knows most materials warp if they are not warehoused properly. And engineered stone may warp slightly more than your common natural stones. So make sure to properly warehouse you engineered stone slab and tile.
  7. Slab thickness: as I mentioned the length, the thickness may be a more common defect, everyone who has done some engineered quartz countertops, know that an uneven thickness in the same slab or between slabs, will cause adjustment problems. To actually measure the thickness of a slab, besides the measuring equipment, you also need to take the measurement of the slab in several points, 6 are just enough to conclude if the thickness is according to your tolerances.
  8. Tile mitre is a common problem, a quick check can be made by facing two polished surfaces and trying to even out the sides, just by putting the tiles standing on a flat surface you will quickly figure out if the tiles are well cut. Avoid these problems before they get to difficult to handle, these types of controls are in some factories made automatically by machinery, but many factories use sampling methods to do such test. 
  9. Engineered stone tile cut imperfection: equipment and tooling age rather quickly, if you have automatic cutting lines you may have several tiles to handle per minute, which in some factories may leave quality inspection to the side to deal with the current problem.
  10. Engineered stone tile uneven bevelling: the correct way to bevel a tile and to guarantee a perfect bevel, is bevelling it with the polishes surface facing down. However most factories do bevel it with the polished surface facing up, which means any little deviation in thickness will be an imperfection in bevelling. It can be a possible problem in some cases where quality control is not taken seriously. 
  11. Grey smudges: these occur more frequently in engineered marble than in engineered quartz, and is mainly due to the production process.
  12. Surface scratches: you find several types of surface scratches, some due to bad packing others due to manufacturing. One thing for certain, it's easier to find scratched material on engineered marble, than engineered quartz, the hardness of marble is relatively low and can be scratched by many materials. Regarding packaging engineered marble and engineered quartz should be done with the polished surface facing each other. When dealing with engineered marble tiles, especially on long voyages, if their is not protection in between polished surface, micro scratches might appear on the end of the tiles. Packing has to be very well done to avoid these situations, the trepidation during transportation will gradually make friction between the tiles and any micro dust will become an abrasive. The other often situation, and common to engineered marble and engineered quartz are micro scratches on the polished surface, namely in dark colours. Very frequently small particles of sand/dust appear during the polishing process (in saturated water for example) and they create defects on the surface, which sometimes may not be effectiently detected by visual inspection.

      4.2.11

      Engineered Quartz : A Guided Tour

      Visiting an engineered quartz plant, will help you understand some particular things that relate to the product. Not so long ago I posted a guided tour of an engineered marble (cultured marble) plant, today I will guide you through a engineered quartz slab plant, what I have described in these two posts are in general the way things still work today, many brand names which you may know use similar methods.
      So we'll start off with raw material ... engineered quartz and engineered marble have more or less the same type of composition, although, engineered marble normally is made from natural stone with less that 4 Mohs hardness. Engineered quartz technology is based on a slab production plant, which avoids the stressful sawing. Just to add, that you can make engineered quartz using the marble block technology (in theory) although you'd have several problems afterwards, mainly regarding to sawing and polishing. You'd need to use granite cutting and polishing technology to actually have any positive results. So to make really hard materials like quartz slabs, it's has been made in a slab by slab processing units.

      The guided tour through a engineered quartz plant starts here:
      • Raw materials: the components necessary to make an engineered quartz slab are quartz grit (which may vary in size, it basically defines the texture of the final product), quartz dust (main filler component), unsaturated polyester resin and coloring pigments.










      • Raw material feeding system: the feeding system is divided into several types, as the polyester resin is used in a liquid state, all other materials are either dust or chips. So you may have screw conveyors for the dust and normal conveyor belt systems for the grit. The pigments are used in such small doses that it has a separate feeding system for them.
      • Making the engineered quartz slab - Mixing: the first phase in the slab production line is the mixing of the components. A engineered quartz slab production line may have 2 to 3 mixers in some cases even more. The multiple mixers are used due to two reasons: to maintain and guarantee production flow, while one is discharging the content to the slab moulds the other one will be loading another batch; the second reason is to do special effects on the slab texture, namely bi-colours and tri-colours, the mixtures  (2or 3 colours can be used) are mixed separately in specific vertical mixers, before going into the mould they are slightly mixed in one final vertical mixer, the final effect on the slab is a unique texture filled with colour nuances.
      • Filling the moulds with the mixture: In the photo position D is the transport conveyor that brings the mixture from the mixer to the mould filling unit. At point E the mould is filled with the mixture, due to the gas emitted by resin in the composition of the engineered quartz slab the whole mould filling sector is protected. The mixture is evenly spread on the mould.
      • Vacuum & Vibro Compressing Unit: at point A we have a small vacuum chamber and a vibro compressing unit. This is the main secret of engineered stone, this procedure is of the utmost importance in the production of high quality engineered stone.

      •  Staging Hub: at point B, we will find a staging hub. The chemical reaction has started before the mould filling so by the time it reaches the staging hub, although it is still not solid., it has hardened significantly The staging hub is a giant oven where the slabs accelerate and stabilize the curing. These staging hub are one of the greatest limitations to a production plant so the bigger the better, you'll have several slabs in this position, constantly one going in and one coming out on the other end.
      •  Slab and mould separating unit (F): at this point the slab just left the staging hub, it's very warm, a little too warm to put your hand on. It's time to separate the slab from the mould. In the photo underneath you may see the moulds G, which are separate from the engineered quartz slab (H).
      •  Mould cleaning line (C): I guess by now, most of you have questioned about C, as it has appeared on the last few photos. Well C is the mould cleaning line, the first models of engineered quartz production lines used paper base moulds, which would only be used once in most cases, the waste was too much, associated with the waste treatment cost and the cost of the paper moulds, not very long after appeared the first rubber mould cleaning line. A recycling line with a water treatment plant for the waste.
      • Slab calibrating and polishing: The final phase: the slab surface finishing unit. One particular thing about the quartz slab, it's calibrated on both surfaces, before it gets polished. So the finishing line starts off with a JOT robot loading the slab, followed by a first calibration of the non finished side. Then comes one of the coolest devices I have seen, it's an inline flipping unit for slabs. After this stage the rest of the line is very similar to granite surface finishing line, with the required inspection at the end.