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## Tour
### Description
### Title
tour.name = Industry 4.0 Testlab
## Skin
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Location
Materials & Minerals Science Building (Building MM)
UniSA Mawson Lakes Campus
Mawson Lakes, South Australia, 5095, Australia
General Enquiries
For general enquiries or to book a one-on-one with one of our experts please contact:
testlab@unisa.edu.au
HTMLText_221B6648_0C06_E5FD_41A0_77851DC2C548_mobile.html = Location
Materials & Minerals Science Building (Building MM)
UniSA Mawson Lakes Campus
Mawson Lakes, South Australia, 5095, Australia
General Enquiries
For general enquiries or to book a one-on-one with one of our experts please contact:
testlab@unisa.edu.au
HTMLText_23F067B8_0C0A_629D_41A9_1A1C797BB055.html = UniSA's Industry 4.0 Testlab
The University of South Australia’s Industry 4.0 Testlab has been set up to demonstrate Industry 4.0 methodologies and practices and includes practical laboratory-based capabilities and a pilot scale manufacturing demonstration. The Testlab has a particular focus on the defence sector, and is also highly relevant to the space, mining, electronics, food and agriculture, and automotive industries.
A key objective of the Testlab is engagement with small and medium enterprises (SMEs), introducing them to a broad range of Industry 4.0 strategies, methodologies and approaches. This includes demonstrating how these methods can be adopted by industry to enhance productivity, competitiveness and profitability. The Testlab provides local SMEs and high-tech start-ups with otherwise unattainable access to these smart factory technologies.
HTMLText_23F067B8_0C0A_629D_41A9_1A1C797BB055_mobile.html = UniSA's Industry 4.0 Testlab
HTMLText_2F8A4686_0D4F_6B71_4183_10C1696E2923.html =
UniSA's Industry 4.0 Teslab - 360-degree walkthrough
HTMLText_2F8A4686_0D4F_6B71_4183_10C1696E2923_mobile.html = 360-degree Testlab walkthrough
HTMLText_3918BF37_0C06_E393_41A1_17CF0ADBAB12.html =
HTMLText_3918BF37_0C06_E393_41A1_17CF0ADBAB12_mobile.html =
HTMLText_662EDF34_4D08_7426_41A6_551B90F8D427_mobile.html = The University of South Australia’s Industry 4.0 Testlab has been set up to demonstrate Industry 4.0 methodologies and practices and includes practical laboratory-based capabilities and a pilot scale manufacturing demonstration. The Testlab has a particular focus on the defence sector, and is also highly relevant to the space, mining, electronics, food and agriculture, and automotive industries.
A key objective of the Testlab is engagement with small and medium enterprises (SMEs), introducing them to a broad range of Industry 4.0 strategies, methodologies and approaches. This includes demonstrating how these methods can be adopted by industry to enhance productivity, competitiveness and profitability. The Testlab provides local SMEs and high-tech start-ups with otherwise unattainable access to these smart factory technologies.
HTMLText_732372CA_69D3_16E6_41B7_6633D42BC0EA.html =
Multi-Spanner
Printer: Desktop Metal Printer
Material: Stainless Steel 316L
Infill: Triangular, 12% density
Print Duration: 10 Hrs & 15 Mins
HTMLText_7D48F990_544D_6E80_41D3_4C2F435D3683.html =
HTMLText_7D4CC99F_544D_6E80_41A5_589981A2CCE4.html = The PolyJet printing process utilises photopolymer resin technology to produces highly accurate parts in multiple colours and material properties. PolyJet models have a high-quality surface finish comparable to injection moulding, often not requiring any post processing to achieve a finished part.
Printer: Stratasys J735
Resolution (Layer Height): 14 – 30 microns
Materials: Vero CMYK & Clear (Acrylic-like), Tango/Agilus (Rubber-like), Digital ABS
Colours: CMYK, White, Clear & Ultra Clear, Pantone Match, Digital Mix
Typical Applications: Product development, prototyping, demonstration/display models
HTMLText_9B860A63_BFAD_E070_41B9_93755D6E5164.html = 3D Scanning has never been so portable. The technology operates similar to a video camera, but it captures objects in 3D with continuous scanning. Simply turn it on and hover around the object for recording. Handheld 3D scanners are compatible with both lightweight laptops and tablets, providing the best overall user experience.
The UniSA Testlab 3D Scanners
Artec Space Spider:
• High Resolution Industrial 3D scanner of metrological accuracy
• Reverse engineering – Product Design, Customisation, and 3D Documentation.
• Fast scanning speed - 7.5 fps.
• High 3D point accuracy - 0.05 mm.
• 3D Resolution – 0.1 mm.
• Object size - Starting from 5 mm.
Artec Eva:
• Fast 3D scanner for large complex objects.
• 3D accuracy - Up to 0.1 mm.
• 3D resolution - Up to 0.2 mm.
• Object size - Starting from 10 cm
HTMLText_9B860A63_BFAD_E070_41B9_93755D6E5164_mobile.html = 3D Scanning has never been so portable. The technology operates similar to a video camera, but it captures objects in 3D with continuous scanning. Simply turn it on and hover around the object for recording. Handheld 3D scanners are compatible with both lightweight laptops and tablets, providing the best overall user experience.
The UniSA Testlab 3D Scanners
Artec Space Spider:
• High Resolution Industrial 3D scanner of metrological accuracy
• Reverse engineering – Product Design, Customisation, and 3D Documentation.
• Fast scanning speed - 7.5 fps.
• High 3D point accuracy - 0.05 mm.
• 3D Resolution – 0.1 mm.
• Object size - Starting from 5 mm.
Artec Eva:
• Fast 3D scanner for large complex objects.
• 3D accuracy - Up to 0.1 mm.
• 3D resolution - Up to 0.2 mm.
• Object size - Starting from 10 cm
HTMLText_9B86BA5A_BFAD_E050_41BA_9D74AA4ACF74.html =
HTMLText_9B86BA5A_BFAD_E050_41BA_9D74AA4ACF74_mobile.html =
HTMLText_9BC3E788_BFB2_A0CA_41D2_4ADEB123CEE5.html =
HTMLText_9BC3E788_BFB2_A0CA_41D2_4ADEB123CEE5_mobile.html =
HTMLText_9BC41793_BFB2_A0DE_41D3_A5FE81DCFA07.html = Bound metal deposition (BMD) is an extrusion-based printing process where metal components are printed by an extrusion of a metal powder-filled thermoplastic media and sintered to obtain full strength.
Printer: Desktop Metal
Resolution (Layer Height): 0.15 – 0.30 mm
Materials: 17-4 PH steel, 316 stainless steel, copper, H13 tool steel, 4140
Typical Applications: End use parts, replacement parts
HTMLText_9BC41793_BFB2_A0DE_41D3_A5FE81DCFA07_mobile.html = Bound metal deposition (BMD) is an extrusion-based printing process where metal components are printed by an extrusion of a metal powder-filled thermoplastic media and sintered to obtain full strength.
Printer: Desktop Metal
Resolution (Layer Height): 0.15 – 0.30 mm
Materials: 17-4 PH steel, 316 stainless steel, copper, H13 tool steel, 4140
Typical Applications: End use parts, replacement parts
HTMLText_D96CBB91_CD11_D6D5_41BA_5FAB95597205.html =
HTMLText_D96CBB91_CD11_D6D5_41BA_5FAB95597205_mobile.html =
HTMLText_D96DCB92_CD11_D6D7_41E9_A2A9A74D64F0.html = The PolyJet printing process utilises photopolymer resin technology to produces highly accurate parts in multiple colours and material properties. PolyJet models have a high-quality surface finish comparable to injection moulding, often not requiring any post processing to achieve a finished part.
Printer: Stratasys J735
Resolution (Layer Height): 14 – 30 microns
Materials: Vero CMYK & Clear (Acrylic-like), Tango/Agilus (Rubber-like), Digital ABS
Colours: CMYK, White, Clear & Ultra Clear, Pantone Match, Digital Mix
Typical Applications: Product development, prototyping, demonstration/display models
HTMLText_D96DCB92_CD11_D6D7_41E9_A2A9A74D64F0_mobile.html = The PolyJet printing process utilises photopolymer resin technology to produces highly accurate parts in multiple colours and material properties. PolyJet models have a high-quality surface finish comparable to injection moulding, often not requiring any post processing to achieve a finished part.
Printer: Stratasys J735
Resolution (Layer Height): 14 – 30 microns
Materials: Vero CMYK & Clear (Acrylic-like), Tango/Agilus (Rubber-like), Digital ABS
Colours: CMYK, White, Clear & Ultra Clear, Pantone Match, Digital Mix
Typical Applications: Product development, prototyping, demonstration/display models
HTMLText_DA2C91DA_F795_7E4D_41B1_4227A8FD58EA.html = The FDM 3D printing technology uses a thermoplastic polymer in a filament form to create 3D products. The Testlab currently has four filament deposition modeling (FDM) printers; Fortus 450mc, MakerBot Method X, Markforged Mark Two, Lulzbot TAZ 5.
Printer: Fortus 450 mc
Resolution (Layer Height): 0.13 – 0.33 mm
Materials: ABS, ASA, Nylon 12, Nylon 12 with chopped CF, Polycarbonate, ULTEM, Antero (PEKK)
Colours: White, red, blue, yellow, natural, black
Typical Applications: Engineering models, prototypes, end use parts
HTMLText_DA2D31D9_F795_7E4F_41E2_3412B4D4715B.html =
HTMLText_E4705834_CF0F_518D_41D4_8AA2FE0BC023.html = The Fused Deposition Modelling (FDM) 3D printing technology uses a thermoplastic polymer in a filament form to create 3D products. The Fortus 450mc delivers accurate, reliable performance that lets you transform supply chains, accelerate manufacturing, and reduce production costs. It offers the materials you need to meet demanding production applications in any industry. From soft jaw tooling to ESD-capable space components, the Fortus 450mc is the additive manufacturing multi-tool.
Printer: Fortus 450 mc
Resolution (Layer Height): 0.13 – 0.33 mm
Materials: ABS, ASA, Nylon 12, Nylon 12 with chopped CF, Polycarbonate, ULTEM, Antero (PEKK)
Colours: White, red, blue, yellow, natural, black
Typical Applications: Engineering models, prototypes, end use parts
HTMLText_E4705834_CF0F_518D_41D4_8AA2FE0BC023_mobile.html = The Fused Deposition Modelling (FDM) 3D printing technology uses a thermoplastic polymer in a filament form to create 3D products. The Fortus 450mc delivers accurate, reliable performance that lets you transform supply chains, accelerate manufacturing, and reduce production costs. It offers the materials you need to meet demanding production applications in any industry. From soft jaw tooling to ESD-capable space components, the Fortus 450mc is the additive manufacturing multi-tool.
Printer: Fortus 450 mc
Resolution (Layer Height): 0.13 – 0.33 mm
Materials: ABS, ASA, Nylon 12, Nylon 12 with chopped CF, Polycarbonate, ULTEM, Antero (PEKK)
Colours: White, red, blue, yellow, natural, black
Typical Applications: Engineering models, prototypes, end use parts
HTMLText_E471D833_CF0F_518B_41E2_3E8EA7F8076B.html =
HTMLText_E471D833_CF0F_518B_41E2_3E8EA7F8076B_mobile.html =
HTMLText_FE0307B9_E836_D96D_41DE_502C000D24F9.html = for further enquiries please contact
testlab@unisa.edu.au
HTMLText_FE0307B9_E836_D96D_41DE_502C000D24F9_mobile.html =
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## Hotspot
### URL
FramePanoramaOverlay_C00DCC5E_DE2F_8D2F_41B2_DD38BE4ED17D.url = https://www.unisa.edu.au/research/testlab/
## Action
### Text to Speech
TextToSpeechBehaviour_56A82075_4508_6DD7_41C2_1FB9DD12E68D.text = 3D Scanning has never been so portable. The technology operates similar to a video camera, but it captures objects in 3D with continuous scanning. Simply turn it on and hover around the object for recording. Handheld 3D scanners are compatible with both lightweight laptops and tablets, providing the best overall user experience.
TextToSpeechBehaviour_56ABB088_4508_6D3D_41AE_C52E38F830D8.text = The Fused Deposition Modelling (FDM) 3D printing technology uses a thermoplastic polymer in a filament form to create 3D products. The Fortus 450mc delivers accurate, reliable performance that lets you transform supply chains, accelerate manufacturing, and reduce production costs. It offers the materials you need to meet demanding production applications in any industry. From soft jaw tooling to ESD-capable space components, the Fortus 450mc is the additive manufacturing multi-tool.
TextToSpeechBehaviour_56AF5059_4508_6DDF_41CE_2748281B9D28.text = Bound metal deposition (BMD) is an extrusion-based printing process where metal components are printed by an extrusion of a metal powder-filled thermoplastic media and sintered to obtain full strength.
TextToSpeechBehaviour_6759EB9F_4778_3329_41CB_5255FC902FE8.text = The PolyJet printing process utilises photopolymer resin technology to produce highly accurate parts in multiple colours and material properties. PolyJet models have a high-quality surface finish comparable to injection moulding, often not requiring any post processing to achieve a finished part.
TextToSpeechBehaviour_7D50A9A2_544D_6E80_41C1_76DBE4DA0812.text = The PolyJet printing process utilises photopolymer resin technology to produce highly accurate parts in multiple colours and material properties. PolyJet models have a high-quality surface finish comparable to injection moulding, often not requiring any post processing to achieve a finished part.
TextToSpeechBehaviour_9B811A65_BFAD_E070_41C6_B3F619AA3027.text = 3D Scanning has never been so portable. The technology operates similar to a video camera, but it captures objects in 3D with continuous scanning. Simply turn it on and hover around the object for recording. Handheld 3D scanners are compatible with both lightweight laptops and tablets, providing the best overall user experience.
TextToSpeechBehaviour_9BC95795_BFB2_A0DA_41E3_FEEC97329AED.text = Bound metal deposition (BMD) is an extrusion-based printing process where metal components are printed by an extrusion of a metal powder-filled thermoplastic media and sintered to obtain full strength.
TextToSpeechBehaviour_D968CB93_CD11_D6D5_41E7_E4E0AEE3B81B.text = The PolyJet printing process utilises photopolymer resin technology to produce highly accurate parts in multiple colours and material properties. PolyJet models have a high-quality surface finish comparable to injection moulding, often not requiring any post processing to achieve a finished part.
TextToSpeechBehaviour_E58E5836_CF0F_518D_41D5_9F1E0F5195B4.text = The Fused Deposition Modelling (FDM) 3D printing technology uses a thermoplastic polymer in a filament form to create 3D products. The Fortus 450mc delivers accurate, reliable performance that lets you transform supply chains, accelerate manufacturing, and reduce production costs. It offers the materials you need to meet demanding production applications in any industry. From soft jaw tooling to ESD-capable space components, the Fortus 450mc is the additive manufacturing multi-tool.
### URL
LinkBehaviour_22E5F0CE_3694_4FCD_4190_AE3AB77C22E9.source = mailto:testab@unisa.edu.au
LinkBehaviour_42BFD605_5A2F_B508_41CD_0EED6AAC85AF.source = https://twitter.com/UniSATestlab
LinkBehaviour_565C800C_4508_6D35_41CF_FCAB27BC8510.source = https://twitter.com/UniSATestlab
LinkBehaviour_56ABF08C_4508_6D35_41C8_C2A922FE6A55.source = mailto:testab@unisa.edu.au
LinkBehaviour_F93EC4C8_E320_66C1_41D2_DECE4BB1B11D.source = https://twitter.com/UniSATestlab
PopupWebFrameBehaviour_565B101C_4508_6D55_4181_5D3F9C5DCEA9.url = https://www.unisa.edu.au/research/testlab/
PopupWebFrameBehaviour_56A1E023_4508_6D73_41C1_5BCCEA12A1AF.url = https://www.unisa.edu.au/research/testlab/
PopupWebFrameBehaviour_E9E7EF5B_C824_61A3_41E2_C1E102EDBA57.url = https://www.unisa.edu.au/research/testlab/
PopupWebFrameBehaviour_EBC4C1FB_C824_606C_41E0_971F00F0D1A2.url = https://www.unisa.edu.au/research/testlab/
## E-Learning
### Score Name
score1.label = Score 1
### Question Screen
quizQuestion_E4C3348E_E80D_DF5B_41E4_071A7C584C79.ok = OK
### Report Screen
quizScore_E4C0D48E_E80D_DF5B_41CE_D64A580698EC.completion = Completed
quizScore_E4C0D48E_E80D_DF5B_41CE_D64A580698EC.downloadCSV = Download .csv
quizScore_E4C0D48E_E80D_DF5B_41CE_D64A580698EC.elapsedTime = Time
quizScore_E4C0D48E_E80D_DF5B_41CE_D64A580698EC.items = Items Found
quizScore_E4C0D48E_E80D_DF5B_41CE_D64A580698EC.questions = Questions
quizScore_E4C0D48E_E80D_DF5B_41CE_D64A580698EC.questionsCorrect = Correct
quizScore_E4C0D48E_E80D_DF5B_41CE_D64A580698EC.questionsIncorrect = Incorrect
quizScore_E4C0D48E_E80D_DF5B_41CE_D64A580698EC.repeat = Repeat
quizScore_E4C0D48E_E80D_DF5B_41CE_D64A580698EC.submitToLMS = Submit
quizScore_E4C0D48E_E80D_DF5B_41CE_D64A580698EC.title = - SCORE -
### Timeout Screen
quizTimeout_E4C4048D_E80D_DF59_41CA_2D462286E6E5.repeat = Repeat
quizTimeout_E4C4048D_E80D_DF59_41CA_2D462286E6E5.score = View Score
quizTimeout_E4C4048D_E80D_DF59_41CA_2D462286E6E5.title = - TIMEOUT -