@madelinee3d: Idk how to be nice about it #karen #cops #COP #copsoftiktok

Madelinee3d
Madelinee3d
Open In TikTok:
Region: US
Sunday 02 August 2026 13:20:29 GMT
267
8
3
0

Music

Download

Comments

spicytaco191
spicytaco19 :
call the police
2026-08-02 19:30:15
0
venomlexx
VENOM :
it looks good i wouldn’t complain
2026-08-02 13:48:03
0
thee_second_child
♠️ :
Say it exactly like that they are stealing and if they trip call the police and shit like they do
2026-08-02 14:49:29
0
To see more videos from user @madelinee3d, please go to the Tikwm homepage.

Other Videos

The Sand Casting Method I Wish I'd Discovered YEARS Ago If you make jewellery using sand casting, Delft clay casting or traditional casting flasks, this video might completely change the way you think about the process. I'm demonstrating my Aircast vacuum-assisted sand casting system while producing a detailed silver ring from start to finish. Traditional sand casting relies on molten metal displacing the air trapped inside the mould. That can mean additional vents, larger sprues and problems such as incomplete fills, flashing and porosity. Aircast approaches the problem differently. The system actively removes air from the mould during the pour, helping molten metal flow into the cavity and reproduce the detail of the original pattern. In this video you'll see the complete process: preparing the casting sand, creating and packing the mould, positioning the ring pattern, forming the casting cavity and sprue, assembling the flask, using the Aircast vacuum system, pouring the molten silver and finally revealing the casting. And importantly, you'll see the actual result rather than simply hearing claims about what the system can do. The Aircast system is designed to offer several advantages when sand casting jewellery: • Vacuum-assisted filling of the mould • No conventional air vents required • Tiny casting sprue • Reduced flashing • Reduced risk of trapped-air porosity • Less metal wasted in large sprues • Less cleaning and finishing after casting • Ability to cast in different orientations • Excellent reproduction of fine detail • Faster workflow for jewellery makers producing repeated castings For me, the real advantage isn't simply producing a successful casting. It's reducing all the unnecessary work that comes after the pour. Less sprue to remove, less flashing to clean up and fewer casting problems means more time actually making jewellery. Whether you're already experienced with Delft clay, Petrobond or other sand-casting methods, or you're a jewellery maker considering casting your own silver and gold pieces, I'd be interested to hear what you think of this approach. Could vacuum-assisted sand casting change the way you cast jewellery? Let me know in the comments.
The Sand Casting Method I Wish I'd Discovered YEARS Ago If you make jewellery using sand casting, Delft clay casting or traditional casting flasks, this video might completely change the way you think about the process. I'm demonstrating my Aircast vacuum-assisted sand casting system while producing a detailed silver ring from start to finish. Traditional sand casting relies on molten metal displacing the air trapped inside the mould. That can mean additional vents, larger sprues and problems such as incomplete fills, flashing and porosity. Aircast approaches the problem differently. The system actively removes air from the mould during the pour, helping molten metal flow into the cavity and reproduce the detail of the original pattern. In this video you'll see the complete process: preparing the casting sand, creating and packing the mould, positioning the ring pattern, forming the casting cavity and sprue, assembling the flask, using the Aircast vacuum system, pouring the molten silver and finally revealing the casting. And importantly, you'll see the actual result rather than simply hearing claims about what the system can do. The Aircast system is designed to offer several advantages when sand casting jewellery: • Vacuum-assisted filling of the mould • No conventional air vents required • Tiny casting sprue • Reduced flashing • Reduced risk of trapped-air porosity • Less metal wasted in large sprues • Less cleaning and finishing after casting • Ability to cast in different orientations • Excellent reproduction of fine detail • Faster workflow for jewellery makers producing repeated castings For me, the real advantage isn't simply producing a successful casting. It's reducing all the unnecessary work that comes after the pour. Less sprue to remove, less flashing to clean up and fewer casting problems means more time actually making jewellery. Whether you're already experienced with Delft clay, Petrobond or other sand-casting methods, or you're a jewellery maker considering casting your own silver and gold pieces, I'd be interested to hear what you think of this approach. Could vacuum-assisted sand casting change the way you cast jewellery? Let me know in the comments.

About