Scandium Canada Ltd.(SCD)
(SCD)
Orderdjup
Stängd
Antal
Köp
356 000
Sälj
Antal
20 000
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Nyheter och/eller generella investeringsrekommendationer alternativt utdrag därav på denna sida och relaterade länkar är framtagna och tillhandahålls av den leverantör som anges. Nordnet har inte medverkat till framtagandet, granskar inte och har inte gjort några ändringar i materialet. Läs mer om investeringsrekommendationer.
Nyheter & Analyser
Nyheter och/eller generella investeringsrekommendationer alternativt utdrag därav på denna sida och relaterade länkar är framtagna och tillhandahålls av den leverantör som anges. Nordnet har inte medverkat till framtagandet, granskar inte och har inte gjort några ändringar i materialet. Läs mer om investeringsrekommendationer.
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- 25 juni25 juniMONTRÉAL, QUÉBEC – TheNewswire - June 25, 2024 – Scandium Canada Ltd. (the “Company” or "Scandium Canada") (TSX VENTURE: SCD); (OTCQB: SCDCF) is pleased to announce the opening of its work camp at its flagship Crater Lake project in northeastern Quebec and the start of the summer 2024 field work program. Crater Lake is the only active primary scandium project globally. The Company has a permanent camp at Crater Lake that is accessible via helicopter or float plane. The camp cook and general handyman arrived on site June 13 to prepare. Staff from the engineering firm WSP arrived June 17 to begin their environmental work which will consist of study of fauna (birds and bats) and flora (inventory of vegetation and wetland to establish a baseline) and establishing baselines of water quality and fish habitats. This work is a prerequisite for the environmental permitting process. It will be done by different WSP teams this summer and some of the work will include fieldwork in 2025. The Crater Lake site and the proposed path of the road from the mine site to the current paved road will be mapped using the LiDAR (Light Detection and Ranging) technology. The resulting information will be used to help plan out in detail the path of the proposed road and to accurately plan the infrastructure of the Crater Lake permanent camp and facilities. Finally, later this month a drilling campaign will be undertaken that will include geomechanical drilling and conversion drilling. Drilling equipment and personnel are being mobilized. The drilling is expected to start by the end of June. The Company will update the market as the drilling progresses. https://stockhouse.com/companies/news?symbol=v.scd
- 13 juni13 juniPress Release: Update on Market Development Read the details at: https://stockhouse.com/news/press-releases/2024/06/13/scandium-canada-ltd-announces-update-on-market-development
- 10 juni10 juniScandium Canada is prototyping ScAl Alloys Good to hear that they are working at market delelopment i.e. developing and prototyping Sc-Al alloy products. I think they are makin g that in cooperation with Albecour Inc. (seen press release July 13th 2023). https://www.youtube.com/watch?v=JUGg3T33hq0 Pat Bolland with Guy Bourassa on Scandium Canada's Recent Rights Offering - YouTube
- 6 juni6 juniScandium Canada is developing one of the largest primary sources of scandium in the world. https://www.innovationnewsnetwork.com/scandium-canada-developing-one-of-the-largest-sources-of-scandium/48238/
- 31 maj31 majExcellent mechanical properties of Al-Mn-Sc alloy The enhanced mechanical properties of laser powder bed fusion Al-Mn-Sc alloy via non-isothermal aging Conclusions In this paper, the LPBF Al-Mn-Sc alloys with excellent mechanical properties were obtained by using a novel non-isothermal thermal treatment at a heating rate of 2 °C/min from 30°C to 350°C. By analysing precipitation behaviour and mechanical properties, the conclusions are as follows: (1) By analysing the activation energies and Avrami exponent of Al-Sc and Al-Mn precipitates, it was found that the precipitation of Al3(Sc,Zr) after nonisothermal aging was mainly dominated by interface-controlled growth through the reaction at the interface of matrix/particle, whereas the phase transformation of Al-Mn precipitates was mainly dominated by diffusion-driven phase transition. The non-isothermal model proposed was well suited for predicting non-isothermal processes of LPBF AlMn-Sc alloy. (2) More nanoscale Al3(Sc,Zr) precipitated within the grain after non-isothermal aging. The precipitates QC-Al81Mn19 precipitated along the grain boundaries for as-built samples, whereas they transformed into coarser precipitates QC Al85(Mn0.72Fe0.28)14Si, Al4Mn and Al6Fe0.5Mn0.5 after non-isothermal aging. (3) The excellent mechanical properties of LPBF Al-MnSc alloy are obtained by non-isothermal aging, which is equivalent to or even better than those obtained by isothermal aging. By revealing the strengthening mechanism, it is found that the excellent mechanical properties of the non-isothermally aged Al-Mn-Sc alloys are mainly attributed to the retention of the solid solution strengthening and fine grains by the highly efficient heat treatment, and the precipitation strengthening of the precipitates Al3(Sc,Zr), Al81Mn19, Al85(Mn0.72Fe0.28)14Si, Al4Mn and Al6Fe0.5Mn0.5 Jiang, W., Deng, Y., Xu, X., He, X., & Sing, S. L. (2024). The enhanced mechanical properties of laser powder bed fusion Al-Mn-Sc alloy via non-isothermal aging. Virtual and Physical Prototyping, 19(1). https://doi.org/10.1080/17452759.2024.2317777 https://www.researchgate.net/publication/378401163_The_enhanced_mechanical_properties_of_laser_powder_bed_fusion_Al-Mn-Sc_alloy_via_non-isothermal_aging
Kommentarerna ovan kommer från användare på Nordnets sociala nätverk Shareville och har varken redigerats eller på förhand granskats av Nordnet. Det innebär inte att Nordnet tillhandahåller investeringsrådgivning eller investeringsrekommendationer. Nordnet påtar sig inget ansvar för kommentarerna eller eventuella felaktigheter i automatiska översättningar.
Nyheter & Analyser
Nyheter och/eller generella investeringsrekommendationer alternativt utdrag därav på denna sida och relaterade länkar är framtagna och tillhandahålls av den leverantör som anges. Nordnet har inte medverkat till framtagandet, granskar inte och har inte gjort några ändringar i materialet. Läs mer om investeringsrekommendationer.
Shareville
Delta i diskussionerna på SharevilleFå inspiration från tusentals portföljer och diskutera med andra duktiga investerare.
Logga in
- 25 juni25 juniMONTRÉAL, QUÉBEC – TheNewswire - June 25, 2024 – Scandium Canada Ltd. (the “Company” or "Scandium Canada") (TSX VENTURE: SCD); (OTCQB: SCDCF) is pleased to announce the opening of its work camp at its flagship Crater Lake project in northeastern Quebec and the start of the summer 2024 field work program. Crater Lake is the only active primary scandium project globally. The Company has a permanent camp at Crater Lake that is accessible via helicopter or float plane. The camp cook and general handyman arrived on site June 13 to prepare. Staff from the engineering firm WSP arrived June 17 to begin their environmental work which will consist of study of fauna (birds and bats) and flora (inventory of vegetation and wetland to establish a baseline) and establishing baselines of water quality and fish habitats. This work is a prerequisite for the environmental permitting process. It will be done by different WSP teams this summer and some of the work will include fieldwork in 2025. The Crater Lake site and the proposed path of the road from the mine site to the current paved road will be mapped using the LiDAR (Light Detection and Ranging) technology. The resulting information will be used to help plan out in detail the path of the proposed road and to accurately plan the infrastructure of the Crater Lake permanent camp and facilities. Finally, later this month a drilling campaign will be undertaken that will include geomechanical drilling and conversion drilling. Drilling equipment and personnel are being mobilized. The drilling is expected to start by the end of June. The Company will update the market as the drilling progresses. https://stockhouse.com/companies/news?symbol=v.scd
- 13 juni13 juniPress Release: Update on Market Development Read the details at: https://stockhouse.com/news/press-releases/2024/06/13/scandium-canada-ltd-announces-update-on-market-development
- 10 juni10 juniScandium Canada is prototyping ScAl Alloys Good to hear that they are working at market delelopment i.e. developing and prototyping Sc-Al alloy products. I think they are makin g that in cooperation with Albecour Inc. (seen press release July 13th 2023). https://www.youtube.com/watch?v=JUGg3T33hq0 Pat Bolland with Guy Bourassa on Scandium Canada's Recent Rights Offering - YouTube
- 6 juni6 juniScandium Canada is developing one of the largest primary sources of scandium in the world. https://www.innovationnewsnetwork.com/scandium-canada-developing-one-of-the-largest-sources-of-scandium/48238/
- 31 maj31 majExcellent mechanical properties of Al-Mn-Sc alloy The enhanced mechanical properties of laser powder bed fusion Al-Mn-Sc alloy via non-isothermal aging Conclusions In this paper, the LPBF Al-Mn-Sc alloys with excellent mechanical properties were obtained by using a novel non-isothermal thermal treatment at a heating rate of 2 °C/min from 30°C to 350°C. By analysing precipitation behaviour and mechanical properties, the conclusions are as follows: (1) By analysing the activation energies and Avrami exponent of Al-Sc and Al-Mn precipitates, it was found that the precipitation of Al3(Sc,Zr) after nonisothermal aging was mainly dominated by interface-controlled growth through the reaction at the interface of matrix/particle, whereas the phase transformation of Al-Mn precipitates was mainly dominated by diffusion-driven phase transition. The non-isothermal model proposed was well suited for predicting non-isothermal processes of LPBF AlMn-Sc alloy. (2) More nanoscale Al3(Sc,Zr) precipitated within the grain after non-isothermal aging. The precipitates QC-Al81Mn19 precipitated along the grain boundaries for as-built samples, whereas they transformed into coarser precipitates QC Al85(Mn0.72Fe0.28)14Si, Al4Mn and Al6Fe0.5Mn0.5 after non-isothermal aging. (3) The excellent mechanical properties of LPBF Al-MnSc alloy are obtained by non-isothermal aging, which is equivalent to or even better than those obtained by isothermal aging. By revealing the strengthening mechanism, it is found that the excellent mechanical properties of the non-isothermally aged Al-Mn-Sc alloys are mainly attributed to the retention of the solid solution strengthening and fine grains by the highly efficient heat treatment, and the precipitation strengthening of the precipitates Al3(Sc,Zr), Al81Mn19, Al85(Mn0.72Fe0.28)14Si, Al4Mn and Al6Fe0.5Mn0.5 Jiang, W., Deng, Y., Xu, X., He, X., & Sing, S. L. (2024). The enhanced mechanical properties of laser powder bed fusion Al-Mn-Sc alloy via non-isothermal aging. Virtual and Physical Prototyping, 19(1). https://doi.org/10.1080/17452759.2024.2317777 https://www.researchgate.net/publication/378401163_The_enhanced_mechanical_properties_of_laser_powder_bed_fusion_Al-Mn-Sc_alloy_via_non-isothermal_aging
Kommentarerna ovan kommer från användare på Nordnets sociala nätverk Shareville och har varken redigerats eller på förhand granskats av Nordnet. Det innebär inte att Nordnet tillhandahåller investeringsrådgivning eller investeringsrekommendationer. Nordnet påtar sig inget ansvar för kommentarerna eller eventuella felaktigheter i automatiska översättningar.
Orderdjup
Stängd
Antal
Köp
356 000
Sälj
Antal
20 000
Senaste avslut
Tid | Pris | Antal | Köpare | Säljare |
---|---|---|---|---|
- | - | - | - |
Volymvägt snittpris (VWAP)
-VWAP
-Omsättning (CAD)
-Mäklarstatistik
Ingen data hittades
Kunder har även besökt
Företagshändelser
Nästa händelse | |
---|---|
Tidigare händelser | ||
---|---|---|