Controlled transport of nanoparticle jets under magnetically enhanced electric field for minimal quantity lubrication grinding equipment
A nano-particle and micro-lubrication technology, which is applied in electrostatic spraying devices, grinding/polishing equipment, grinding/polishing safety devices, etc., can solve problems such as increasing electrostatic voltage, achieve enhanced air ionization, fully charged particles, and Effect of halo voltage reduction
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Embodiment 1
[0079] The first embodiment of the present invention figure 1 with Figure 3 to 17 Shown, it is about a magnetically enhanced electric field induced nanoparticle jet droplet charging mechanism and droplet controllable and orderly transport micro-lubrication grinding process and equipment.
[0080] Such as figure 1 As shown, in the first embodiment, part of the worktable 2 of the grinder is covered with an insulating plate 3 (this new type of material can be magnetic but not conductive, so as to ensure the installation of the workpiece 4 and the nozzle 12 and the workpiece 4 to form a stable electric field). Place the workpiece 4 on the insulating plate 3, clamp and position the workpiece 4 when the grinder is magnetized, and attach the magnetic chuck 5 to the side of the grinding wheel cover 6 to fix the nanofluid conveying serpentine tube 8, compressed air conveying serpentine tube 7 And the negative electrode wire in the high-voltage wire 10 of the electrode. One end of the na...
Embodiment 2
[0087] figure 2 To 5 and Figure 18 to 22 This is the second embodiment of the present invention. In the second implementation, the nozzle 12 and the electromagnetic device 13 in the first embodiment are replaced with an integrated nozzle 110.
[0088] Such as figure 2 As shown, part of the worktable 2 of the grinder is covered with an insulating plate 3 (this new type of material can be magnetically conductive, but not conductive, which can ensure the installation of the workpiece and the formation of a stable electric field between the nozzle and the workpiece). Place the workpiece 4 on the insulating plate 3, clamp and position the workpiece 4 when the grinder is magnetized, and attach the magnetic chuck 5 to the side of the grinding wheel cover 6 to fix the nanofluid conveying serpentine tube 8, compressed air conveying serpentine tube 7 And the negative electrode wire in the high-voltage wire 10 of the electrode. One end of the nanofluid conveying serpentine tube 8 is conn...
Embodiment 3
[0094] The third embodiment of the present invention figure 1 , image 3 To 5, Image 6 , Figure 7 , Figure 9 to 16 with Figure 23 As shown, in the third embodiment of the present invention, except that the arrangement of the electrodes and the design of the spray head are different from the first embodiment, other designs are the same as the first embodiment. In the third embodiment, the method of adding the discharge electrode is changed. The L-shaped needle electrode I83 is no longer arranged in the electrode slot 68 on the electrode chuck 51 in the original first embodiment. In the third embodiment, the electrode The chuck 51 is only used as a cover of the magnetic box 52. In the third embodiment, the spray head 18 in the first embodiment is redesigned. The design scheme is as follows: Figure 23 As shown, the spray head 18 in the original first embodiment is split into two parts: the spray head body 111 and the electrode nozzle I 112. The spray head body 111 and the ele...
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