Changes for page Desktop Waterjet Cutting
Last modified by Zaara Hashmy on 2026/03/16 19:22
From version 2.6
edited by Zaara Hashmy
on 2026/02/23 19:52
on 2026/02/23 19:52
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To version 8.1
edited by Zaara Hashmy
on 2026/03/16 17:57
on 2026/03/16 17:57
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... ... @@ -1,5 +1,11 @@ 1 1 |=((( 2 -{{{WAZER Desktop Waterjet Cutting Machine}}}[[Specs>>https://www.matterhackers.com/store/l/wazer-desktop-waterjet-cutter-machine/sk/MVN5VKM5]] 2 +((( 3 +WAZER Desktop Waterjet Cutting Machine 4 +))) 5 + 6 +((( 7 +[[Specs>>https://www.matterhackers.com/store/l/wazer-desktop-waterjet-cutter-machine/sk/MVN5VKM5]] 8 +))) 3 3 )))|=Working Area 4 4 (LxW)|=(% style="width: 376px;" %)Max Allowable Working Pressure|=(% style="width: 307px;" %)Max Working Flow Rate 5 5 |[[image:WazerPhoto.png||alt="omtechaf3555.jpeg" width="200"]]|((( ... ... @@ -19,13 +19,13 @@ 19 19 20 20 == == 21 21 22 -= =About the Waterjet ==28 += About the Waterjet = 23 23 24 24 [[Waterjet cutting>>https://en.wikipedia.org/wiki/Water_jet_cutter]] is the process of using a high pressure jet of water to cut a material. --laser to vaporize a material, so that the laser beam cuts through the material. When this is combined with a CNC tool head and both power and speed are balanced properly, this process allows the user to create flat parts from sheets of material, using 2D CAD drawings.-- 25 25 26 -The reare severaltypes of lasers, with differentspectrum wavelengths andfiring characteristics. We use [[CO2 lasers>>url:https://en.wikipedia.org/wiki/Carbon-dioxide_laser#Industrial_(cutting_and_welding)]] withpower outputsof130Wand below.Lasers of this type andratingcannotcut metals, but areexcellentforcutting organicmaterials andsomeplastics,aswellas some otherniche materials.Birch Plywood,Acrylic, thin silicone andbunarubbergaskets,organicmaterialssuch as leather,most fabrics andpaper-basedmaterialsare amongthematerialsthat CO2laserscancut. Materialsthat should generallybeavoidedarehighly reflectivematerialssuchasmirrors,materialsthat giveoff toxic fumesor particulatessuchasPTFE,ABS, Vinyl, andPVC plastics,and materials thatcutpoorly duetolow wavelengthabsorptionor otherphysicalcharacteristics,such as HDPE and polycarbonate.32 +The waterjet has a hydraulic power output of 820 W. There are a variety of materials that the waterjet can cut, example of allowed materials include acrylic, agate, aluminum, borosilicate, brass, carbon fiber, ceramic tile, copper, gabbro, fused glass, graphite, granite, HDPE, marble, memory foam, mild steel, neoprene, polycarbonate, polyethylene, polyurethane, porcelain tile, silicone, spring steel, stained glass, stainless steel, titanium, and tool steel. Materials that are water soluble or shatter under high pressure are not suitable for waterjet cutting. 27 27 28 -**Advantages:** 34 +**Advantages: (Needs to be edited still)** 29 29 30 30 * Laser cutting tool heads never touch the material, leave fairly clean cuts, and are highly accurate and repeatable. 31 31 * Laser cutting is far faster than manual cutting of the material, especially with repeated cuts in bulk materials. ... ... @@ -32,109 +32,118 @@ 32 32 * Laser cutting allows for very small and intricate designs, which would be difficult or impossible with traditional cutting tools. 33 33 * Laser cutting allows for much more efficient material usage than hand cutting in many cases. 34 34 35 -**Disadvantages:** 41 +**Disadvantages: (needs to be edited still) ** 36 36 37 37 * Our CO2 lasers can't cut metals, or materials that reflect/poorly absorb its wavelength at powers below 130W. 38 38 * Laser cutters create a fine cutting spot size by focusing the laser through a lens, and as a result, cuts can never be completely perpendicular to the material. 39 39 * In most cases, CO2 lasers have difficulty penetrating cleanly through materials greater than 1/4 inch thick. 40 40 41 -= =Software Usage Instructions ==47 += Software and Usage Instructions = 42 42 43 - Hereis thelink to the **[[How to Use Lightburn>>doc:How to Use LightBurn.WebHome]]** page, where you canlearn how to use the software that tells the laser how to cut your part.49 +== Opening WazerCam == 44 44 45 - ==OMTechLaserSettings(LongFocal Lens)==51 +Open WazerCam website, [[WazerCam>>https://wam.wazer.com/wazercam]] , and enter the following login information. 46 46 47 - The Long focal length lensin our large-format OMTech laser cutter allows for more efficient cuts in thicker materials. However, this comesat the cost of a slightly large spot size, and thus, less fine engraving abilities.53 +**Username:** RPSpublic 48 48 49 - Use the table below to input the correct valuesfor your material. Note that for engraving, the thickness does not matter, because itwon't cut all the way through.We also have sample engravings at various settings in theRPSif you would like to change the depth or darkness of the engraving. Keep in mind that the depth and color might notbe exact, as they depend highly on laser focus and various other environmental parameters thatcannot be controlled.55 +**Password:** RPSpublic 50 50 51 - **CuttingTable**57 +== File Import == 52 52 53 -|=**Material**|=Speed|=Max Power|=Min Power|=Passes 54 -|1/8" (3 mm) Birch Plywood|45 mm/s|70%|35%|1 55 -|1/4" (6 mm) Birch Plywood|15 mm/s|70%|35%|1 56 -|1/16" (1.5 mm) Cast Acrylic|90 mm/s|70%|20%|2 57 -|1/8" (3 mm) Cast Acrylic|55 mm/s|70%|20%|2 58 -|1/4" (6 mm) Cast Acrylic|20 mm/s|70%|70%|2 59 -|1/16" (1.5 mm) Buna N Rubber|80 mm/s|70%|20%|1 59 +Files uploaded must be in .dxf or .svg file types. Multiple files can be added at once using the "+" and "-" buttons. 60 60 61 - **EngravingTable**61 +[[image:1772478564567-669.png||height="269" width="557"]] 62 62 63 -|=**Material**|=Speed|=Max Power|=Min Power|=Passes 64 -|Birch Plywood|475 mm/s|50%|35%|1 65 -|Cast Acrylic|550 mm/s|20%|20%|1 63 +== Setting Scale and Positioning == 66 66 67 - Settings can be changedwithinLightburnor on thephysical OMTech Laser inthe highlighted portion on the display screen. Pleaseconsult withatechnicianbeforechangingspeedsand power onthe machine.65 +The following metrics can be adjusted within WazerCam: 68 68 67 +**Rotation:** the angle which the part needs to be rotated to 69 69 70 - [[image:omtech12.jpg||alt="https://wiki.rapidprototypingstudio.com/learning/omtech12.jpg"height="40%"width="40%"]]69 +**X & Y positions:** The top left of the screen represents 0. All X and Y movements will move from the top left of your part. 71 71 72 - == DremelLaserSettings==71 +**Scale:** Scale of parts can be changed by any magnitude 73 73 74 - All settingsarepreset withintheDremel's IP address site.73 +**Height & Width**: Similar to scale, height and width can be changed independently. 75 75 76 - ==UnsafeMaterialsforLaserCutting==75 +(Be aware of total physical space that the waterjet will occupy on a material, taking into account the width of the cut itself (kerf) ) 77 77 78 -* ABS 79 -* Beryllium oxide 80 -* Carbon 81 -* Chlorinated plastics 82 -* Coated carbon fiber 83 -* Coated materials 84 -* Epoxy-based or phenolic resins 85 -* Fiberglass 86 -* Fluorine-based plastics: 87 -** PTFE (Teflon) 88 -** Fluorinated ethylene propylene (FEP) 89 -* Galvanized metal 90 -* HDPE (High-Density Poly Ethylene) 91 -* Leather, Artificial or Chrome tanned 92 -* Materials containing: 93 -** Astatine 94 -** Bromine 95 -** Chlorine 96 -** Fluorine 97 -** Formaldehyde 98 -* Wood containing: 99 -** Flame-retardants 100 -** Halogens 101 -** Iodine 102 -* Wood that has been: 103 -** Coated 104 -** Fumigated 105 -** Pressure-treated 106 -** Stained 107 -* Mirrored surfaces 108 -* Nylon 109 -* Painted material 110 -* Varnished materials 111 -* Particleboard, paneling 112 -* Polycarbonate 113 -* Polychloroprene (CR or chloroprene rubber, marketed under the brand name Neoprene) 114 -* Polypropylene foam 115 -* Polypropylene sheet 116 -* Polystyrene foam 117 -* Polyurethane 118 -* Polyurethane foam 119 -* Polyvinyl chloride (PVC) 120 -* POM Delrin/acetyl 121 -* Rubber 122 -* Styrofoam 77 +[[image:1772478615037-166.png||height="266" width="554"]] 123 123 124 -== PostProcessing==79 +== Materials Selection == 125 125 126 - **RequiredPPE**forwoods and acrylic:81 +Using the first dropdown menu, select the material category. Using the second dropdown menu, select the specific material you are cutting. If the specific material is not listed, consult an RPS studio staff member. Once category and material type are selected, input the material thickness in either millimeters or inches. 127 127 128 - * None83 +[[image:1772478775055-319.png||height="264" width="550"]] 129 129 130 - Oncethe job has concluded, allowthe fumesto be vented for a minimumof 10 seconds.Please note thatwoods will have charring which is not harmful but may transferto your hands or anything else it touches. If desired, youmay sand thewood with the sandpaper we have in stock or useasander. For acrylic sheets, peel off the protective film once ready for personal/project use.85 +== Cutting Path Adjustments == 131 131 132 - **RequiredPPE**forrubber:87 +Change the cutting path to match the design of your file. 133 133 134 -* LatexorNitrile gloves89 +**Outside:** Part will be cut outside the designated lines by a user given offset. 135 135 136 - [[image:ppe_gloves.png||height="100"]]91 +**Centerline:** Part will be cut directly on the lines of your part. 137 137 138 - Once the job hasconcluded, allow the fumes to be vented for a minimum of 30 seconds. Please note thatrubber materialswillchar as welland it isbest practice to weargloveswhile handlingthem.Rinsethe rubbercutsunderwatertowash offasmuch charred edges as possible.93 +**Inside:** Part will be cut inside the designated lines by a user given offset. 139 139 140 -If you need assistance, RPS staff are always present to help with advice! **Please ensure that you return hand tools to their proper locations, and turn off the machine once use is complete.** 95 +**No Cut:** Lines will not be cut 96 + 97 + 98 +[[image:1772479961994-308.png||height="242" width="554"]] 99 + 100 +== Tabs and Leads == 101 + 102 +Tabs are a connection point between your part and where it's being cut on the material. Tabs keep your part in place while being cut, and improve the overall cut accuracy by preventing your part from popping up or out of place. The default settings are that all cut paths receive a single tab, with the size based on the material, however tabs can be manually adjusted as well. 103 + 104 +A Lead refers to the distance that a cut will made away from the Cut Path. This is done to make sure that the pierce at the start of a cut does not remove any excess material on your part. The Lead’s location and size are designated with a blue indicator. 105 + 106 += Machine Setup = 107 + 108 +== Turning Machine On == 109 + 110 +1. Place SD card with part file into the right side of the wazer jet machine. **(SD cards are not provided)** 111 +1. Twist the E-Stop button to where it releases, the screen should begin to turn on. 112 +1. Check that the button on the bottom right of the machine is set to "On" (if screen is still not turning on, consult a staff member) 113 + 114 +== Setting Up == 115 + 116 +1. On the starting screen there will be two options, "Select Cut File" and "Setup & Maintenance". Press the OK button to Select the Select Cut File option. 117 +1. Scroll down until the cursor is next to the file you created earlier, and hit OK 118 +1. Loosen the Nozzle securing knob, pull the nozzle up, and retighten the nozzle securing knob, press OK to home the nozzle 119 +1. Fill the grit hopper on the left side of the machine, hit OK 120 +1. Check to make sure the blue water valve is in line with the vertical pipe, hit OK 121 +1. Secure the material to the cut bed using the screws and a screwdriver, hit OK 122 +1. Now that the arrow keys can be used to move the nozzle over the material, remove the plastic cover off of the cutting head. 123 +1. Loosen the nozzle securing knob, and place the tab side of the plastic cover underneath the nozzle. 124 +1. Lower the nozzle until it makes contact with the plastic tab, and tighten the nozzle securing knob and place the plastic cover back on top of the cutting head. Hit OK. 125 +1. The next screen will have several options. Before doing anything else, **move the origin to the location of your choosing** 126 +1*. Move Origin - allows you to move the origin for the program to a location of your choosing. **DO THIS FIRST.** 127 +1*. Cut - sends you to the next screen where you must press the Start button to begin cutting. 128 +1*. Dry Run - Follows the exact cutting path of the program without firing the waterjet. 129 +1*. Check Extents - Outlines the bounding box of the area being cut 130 +1*. Restart cut - if the cut fails or stops in the middle, this will restart the program in the Dry Run state and will allow you to resume the cut at any point along the program. 131 +1*. Cancel - sends you back to the starting screen. 132 + 133 +== Run Part == 134 + 135 +***You must remain with the machine for the entirety of the cut* ** 136 + 137 +* It may be necessary to refill the water in the machine before running. Use the white 3 gallon bucket to pour more water into the tank directly. The water level should sit right below the surface of the bed. 138 +* Monitor the level of the grit while the part is running, if it's running low, machine will automatically stop the cut and shut off. 139 +* It is recommended to keep the hoppers topped off 140 +* If water starts pouring out from under the hoppers, the machine is having a backflow problem, **SHUT IT OFF with the E-Stop and notify RPS Staff.** 141 + 142 +== Clean Up == 143 + 144 +1. Remove your part and any excess material from the bed. 145 +1. Clean material and part(s) off by dunking them in the grit catchers/water bucket. **DO NOT wash grit down the sink.** 146 +1. Pull the grit catchers out and drain the excess water back into the tank. 147 +1. Once the majority of the water is drained, dump the grit into the orange 5 gallon bucket 148 +1. Place the grit catchers back into the machine. 149 + 150 +== == 151 + 152 +== Required PPE == 153 + 154 +* Close toed shoes 155 +* Eye glasses/goggles
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