BMW Group Plant Dingolfing pilots new paint process: Overspray-free paint application opens up a wide range of possibilities for customisation. Plant Dingolfing.
BMW Group Plant Dingolfing pilots new paint process: Overspray-free paint application opens up a wide range of possibilities for customisation. Plant Dingolfing.
BMW Group Plant Dingolfing pilots new paint process: Overspray-free paint application opens up a wide range of possibilities for customisation. Plant ...
G82
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M4
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Coupé
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Samochody BMW M
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Zakłady produkcyjne
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Lokalizacje
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In the conventional procedure, paint is atomised by a rotating bell with 35 to 55,000 revolutions per minute and adheres electrostatically to the body. The new method works without electrostatics, relying instead on jet application. The paint is applied using an orifice plate that enables high edge definition with a variable paint thickness of between 1 and 48 millimetres. This requires maximum precision from both the robot and application technology.
BMW Group Plant Dingolfing pilots new paint process: Overspray-free paint application opens up a wide range of possibilities for customisation. Plant Dingolfing.
Related Articles.
In the conventional procedure, paint is atomised by a rotating bell with 35 to 55,000 revolutions per minute and adheres electrostatically to the body. The new method works without electrostatics, relying instead on jet application. The paint is applied using an orifice plate that enables high edge definition with a variable paint thickness of between 1 and 48 millimetres. This requires maximum precision from both the robot and application technology.
BMW Group Plant Dingolfing pilots new paint process: Overspray-free paint application opens up a wide range of possibilities for customisation. Plant ...
G82
·
M4
·
Coupé
·
Samochody BMW M
·
Zakłady produkcyjne
·
Lokalizacje
Embed this video
Select video size....
560 x 315
640 x 360
853 x 480
1280 x 720
Custom size
x
In the conventional procedure, paint is atomised by a rotating bell with 35 to 55,000 revolutions per minute and adheres electrostatically to the body. The new method works without electrostatics, relying instead on jet application. The paint is applied using an orifice plate that enables high edge definition with a variable paint thickness of between 1 and 48 millimetres. This requires maximum precision from both the robot and application technology.
BMW Group Plant Dingolfing pilots new paint process: Overspray-free paint application opens up a wide range of possibilities for customisation. Plant Dingolfing.
Related Articles.
In the conventional procedure, paint is atomised by a rotating bell with 35 to 55,000 revolutions per minute and adheres electrostatically to the body. The new method works without electrostatics, relying instead on jet application. The paint is applied using an orifice plate that enables high edge definition with a variable paint thickness of between 1 and 48 millimetres. This requires maximum precision from both the robot and application technology.
Designtalk M4 Coupé meets BMW M4 GT3
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Samochody BMW M
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Designtalk about the BMW M4 Coupé and the BMW M4 GT3. Michael Scully, BMW Design Works talks with Anne Forschner, Exterior Designer BMW Design. Both are talking about design aspects wich both cars have in common or are different in.
Designtalk about the BMW M4 Coupé and the BMW M4 GT3. Michael Scully, BMW Design Works talks with Anne Forschner, Exterior Designer BMW Design. Both are talking about design aspects wich both cars have in common or are different in.
BMW M4 Competition x KITH – Making of.
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Fuel consumption combined: 10.2 l/100 km [27.7 mpg imp]; CO2 emissions combined: 234 g/km.
Pre-chamber combustion patented by BMW celebrates its premiere. High-efficiency new development makes its series production debut in BMW M models and enables a significant reduction in fuel consumption under high loads. New ignition process is a prime example of the transfer of technology from racing cars to series-production models and helps to meet the requirements of the EU7 standard. Production of the BMW M3 and BMW M4 with BMW M Ignite technology begins in July 2026; the new engine technology will be available for the BMW M2 from August 2026.
Pre-chamber combustion patented by BMW celebrates its premiere. High-efficiency new development makes its series production debut in BMW M models and enables a significant reduction in fuel consumption under high loads. New ignition process is a prime example of the transfer of technology from racing cars to series-production models and helps to meet the requirements of the EU7 standard. Production of the BMW M3 and BMW M4 with BMW M Ignite technology begins in July 2026; the new engine technology will be available for the BMW M2 from August 2026.
BMW M3 CS Touring fastest Touring on the Nürburgring-Nordschleife
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M3
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Onboard recording of the record lap with graphics
Fuel consumption, combined: 10.5 l/100 km; CO2 emissions, combined: 238 g/km in the WLTP cycle, CO2 class: G.