Stadea DSD102A 7 Inch Dust Shroud for hand held angle grinder vacuum shroud for dry grinding with vacuum attachment, suction hole, that fits variety of known brand 7 inch grinders.
Easy to Use
Stadea 7 Inch Dust Shroud body has optimal flexible for easy handling and provide adequate robustness to handle heavy grinding.
Shroud material with little flexibility makes grinding work easier as it matches reducing height of the grinding wheel over usage.
The dust shroud suction hole for optimal suction of dust from the dust shroud that keeps the dust low.
One for All
DSD102A dust shroud fits to Makita, Milwakee, Metabo, Dewalt 7 inch hand held angle grinders, the brand specific collars supplied with the shroud.
It has 2-1/2"" diameter extra long vacuum connector for optimal surface dust suction efficiency.
- Stadea 7 Inch Dust Shroud for angle grinder, durable with little flexible for easy handling with angle grinders, with suction hole for optimal suction of dust from the shroud
- Front Flap to flip open to view inside, easy to open and close flap, Removable flap if needed
- Shroud material with little flexibility offer easy grinding to match reducing height over time of the grinding wheel to the grinding surface
- Fits to Makita, Milwakee, Metabo, Dewalt 7 inch hand held angle grinders, the brand specific collars supplied with the shroud
- 2-1/2"" diameter extra long vacuum connector for optimal surface dust suction efficiency
- Stadea 7 Inch Dust Shroud for angle grinder, durable with little flexible for easy handling with angle grinders, with suction hole for optimal suction of dust from the shroud
- Front Flap to flip open to view inside, easy to open and close flap, Removable flap if needed
- Shroud material with little flexibility offer easy grinding to match reducing height over time of the grinding wheel to the grinding surface
- Fits to Makita, Milwakee, Metabo, Dewalt 7 inch hand held angle grinders, the brand specific collars supplied with the shroud
- 2-1/2"" diameter extra long vacuum connector for optimal surface dust suction efficiency