词条 | Bristle blasting |
释义 |
Differences from conventional rotary brushesThe difference from conventional wire-brushing with an angle grinder lies first with the mounting of the bristles in the rotating brush. With a conventional rotary brush, the wire bristles are mounted rigidly in the hub, bristles sometimes being twisted or knotted in groups for extra stiffness. With bristle blasting, the wires are mounted resiliently in a flexible belt. As the brush rotates, immediately before contacting the work, rows of bristles are trapped behind a fixed 'accelerator bar' ,[2] which causes them to bend backwards in their flexible mount. As the bristles pass the accelerator bar, they are released to spring forwards. The extra energy stored for each bristle when being flexed backwards is added to their kinetic energy when released, and when they impact the surface of the workpiece. This gives a more violent impact with the surface, thus greater cleaning power, compared to a simple rotary brush at the same speed. As the geometry of the brush is also distorted from circular by the accelerator bar, the contact angle of the bristle tips with the surface is also nearer to perpendicular than the tangential contact of the circular rotary brush. This encourages a cleaning action and reduces the burnishing action that can be a problem with rotary brushes, where a surface is increasingly polished, but not truly cleaned of surface adherrents. The steeper action of the tips encourages a pitting effect on the surface, which may be considered useful for further painting.[2] DetailsThe cleaning performance of the bristle blasting process is a consequence of synchronized impact of the bristle tips onto the target surface. The tool head with the bristle belt rotates at approximately 2,500 rpm. A so-called 'accelerator bar' detains the bristle tips and by releasing them increases their kinetic energy with which they strike the surface. Immediately after the bristles strike the corroded steel surface, they retract (rebound) from the surface ('single-impact'), which results in corrosion removal and a micro-identation that exposes the sheer metallic surface. The multitude of such primary impact craters generates a texture and surface which in visual cleanliness and roughness (anchor profile) mimics those obtained by grit blasting processes.[2] The cleaned and coarsened surface is deemed favorable for the subsequent application and adhesion of protective films and industrial coatings.[3] Process and equipmentBristle blasting tools are fabricated from high-carbon steel wires that protrude through a flexible circular belt. The belt, in turn, is attached to a rotating hub, which is powered by an electric or pneumatically driven spindle. The tool is lightweight, portable, and easily implemented by workers without the need for elaborate set-up or sophisticated safety apparatus.[4] ApplicationsBristle blasting is most frequently used for removal of unwanted films and layers of corrosion that can form on metallic surfaces. Common applications include cleaning, preparation, and refurbishment of iron and steel components that are used for fabricating bridges, ships, and pipeline systems.[5] See also
References{{Commons category|Bristle blasting}}1. ^{{cite journal |last=Stango |first=Robert J. |last2=Khullar |first2=Piyush |title=Introduction to the Bristle Blasting Process for Simultaneous Corrosion Removal/Anchor Profile |journal=ACA Journal of Corrosion and Materials|year=2008 |volume=33 |issue=5 |pages=26–31 |url=http://www.monti.de/downloads/monti_industrial_pressrelease1.pdf}} 2. ^1 2 {{Youtube|ce0wLgs6sZA|Monti MBX Bristle Blaster, High-Speed Video}}, Monti Surface Technologies 3. ^{{cite journal |last=Wilds |first=Neil |title=Bristle Blasting Surface Preparation Methods for Maintenance |journal=International Paint, Inc., NACE Corrosion Conference, Atlanta, GA |year=2009 |issue=Paper No. 09004 |url=http://www.onepetro.org/mslib/servlet/onepetropreview?id=NACE-09004&soc=NACE&speAppNameCookie=ONEPETRO}} 4. ^{{cite journal |last=Stango |first=Robert J. |title=Bristle-blast Surface Preparation Process for Reduced Environmental Contamination and Improved Health/Safety Management |journal=18th International Oil and Gas Industry and Conference, OSEA, Singapore |date=Nov 30 – Dec 3, 2010 |url=http://www.airtech.dk/PDF/OSEA%202010%20Singapore%20-%20paper%20Prof%20%20Dr%20%20Stango.pdf }}{{dead link|date=July 2017 |bot=InternetArchiveBot |fix-attempted=yes }} 5. ^{{cite journal |last=Stango |first=R. J. |last2=Fournelle |first2=R. A. |last3=Martinez |first3=J. A. |last4=Khullar |first4=P. |title=Bristle Blast Surface Treatment of Welded Joints Fabricated from Commercial Ship Construction Steel |journal=NACE Corrosion Conference. Houston, TX|year=2011 |url=http://www.onepetro.org/mslib/servlet/onepetropreview?id=NACE-11417&soc=NACE}} 3 : Abrasives|Industrial processes|Cleaning methods |
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