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INDUSTRIAL MACHINE TECHNOLOGY

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Presentation on theme: "INDUSTRIAL MACHINE TECHNOLOGY"— Presentation transcript:

1 INDUSTRIAL MACHINE TECHNOLOGY
MEASURING INSTRUMENTS COMBINATION SQUARE HEAD

2 INDUSTRIAL MACHINE TECHNOLOGY
MEASURING INSTRUMENTS COMBINATION CENTER HEAD

3 INDUSTRIAL MACHINE TECHNOLOGY
MEASURING INSTRUMENTS COMBINATION PROTRACTOR HEAD

4 INDUSTRIAL MACHINE TECHNOLOGY
MEASURING INSTRUMENTS MICROMETER OUTSIDE

5 INDUSTRIAL MACHINE TECHNOLOGY
MEASURING INSTRUMENTS MICROMETER OUTSIDE

6 INDUSTRIAL MACHINE TECHNOLOGY
MEASURING INSTRUMENTS MICROMETER DEPTH

7 INDUSTRIAL MACHINE TECHNOLOGY
MEASURING INSTRUMENTS VERNIER CALIPHER OUTSIDE INSIDE DEPTH HEIGHT

8 INDUSTRIAL MACHINE TECHNOLOGY
MEASURING INSTRUMENTS TELESCOPE GAGE DIAL INDICATORS

9 INDUSTRIAL MACHINE TECHNOLOGY
LATHE PRODUCTIVITY

10 INDUSTRIAL MACHINE TECHNOLOGY
LATHE PRODUCTIVITY BED

11 INDUSTRIAL MACHINE TECHNOLOGY
LATHE PRODUCTIVITY HEADSTOCK ASSEMBLY

12 INDUSTRIAL MACHINE TECHNOLOGY
LATHE PRODUCTIVITY HEADSTOCK ASSEMBLY

13 INDUSTRIAL MACHINE TECHNOLOGY
LATHE PRODUCTIVITY TAILSTOCK ASSEMBLY

14 INDUSTRIAL MACHINE TECHNOLOGY
LATHE PRODUCTIVITY CARRIAGE

15 INDUSTRIAL MACHINE TECHNOLOGY
LATHE PRODUCTIVITY FEEDING AND THREADING MECHANISM

16 INDUSTRIAL MACHINE TECHNOLOGY
LATHE PRODUCTIVITY DRILLING BORING REAMING KNURLING FILING AND POLISHING TAPER TURNING

17 INDUSTRIAL MACHINE TECHNOLOGY
MILL PRODUCTIVITY

18 INDUSTRIAL MACHINE TECHNOLOGY
MILL PRODUCTIVITY PARTS OF THE PLAIN MILLING MACHINE

19 INDUSTRIAL MACHINE TECHNOLOGY
MILL PRODUCTIVITY MACHINE TABLE

20 INDUSTRIAL MACHINE TECHNOLOGY
MILL PRODUCTIVITY MILLING CUTTERS AND CUTTER HOLDERS

21 INDUSTRIAL MACHINE TECHNOLOGY
MILL PRODUCTIVITY CUTTING SPEEDS AND FEEDS

22 INDUSTRIAL MACHINE TECHNOLOGY
MILL PRODUCTIVITY CUTTING SPEEDS AND FEEDS

23 INDUSTRIAL MACHINE TECHNOLOGY
MILL PRODUCTIVITY WORK-HOLDING DEVICES

24 INDUSTRIAL MACHINE TECHNOLOGY
MILL PRODUCTIVITY FACE MILLING SIDE MILLING STRADDLE MILLING MILLING A SLOT OR KEYWAY

25 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY ARC WELDING ARC WELDING IS A PROCESS THAT USES THE HEAT OF AN ELECTRIC ARC TO JOIN TWO PIECES OF METAL BY FUSION AND ADDITION METAL SUPPLIED BY THE “STICK”, THE CONSUMABLE ELECTRODE.

26 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY ARC WELDING

27 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY ARC WELDING ARC WELDING IS OFTEN CALLED “STICK WELDING” FOR THE CONSUMABLE ELECTRODE WHICH IS COVERED IN SOLID FLUX AROUND THE METAL STICK.

28 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY ARC WELDING

29 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY SOLDERING USES A FILLER METAL, SOLDER, USUALLY A TIN-LEAD ALLOY. IT ALLOWS TWO METALS TO BE JOINED WITHOUT HEATING THE METALS TO THEIR MELTING POINTS. IT CAN BE USED TO JOIN COPPER, ZINC, IRON, NICKEL, LEAD AND TIN AT A TEMPERATURE LESS THAN 800º F.

30 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY SOLDER

31 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY SOLDER

32 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY SOLDERING USES A HEATED IRON MADE OF COPPER OR A SOLDERING GUN BOTH OF WHICH HEAT THE METALS AND MELT THE SOLDER. FLUXES ARE CHEMICAL COMPOUNDS USED TO CLEAN THE METAL SURFACES DURING THE SOLDERING.

33 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY SOLDERING

34 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY SOLDERING FLUX

35 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY BRAZING USES A NONFERROUS METAL FILLER THAT MELTS ABOVE 800º F WHILE THE TWO METALS TO BE JOINED ARE HEATED ABOVE THAT TEMPERATURE. THE FILLER METAL IS DRAWN INTO THE JOINT BY CAPILLARY ACTION.

36 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY BRAZING USES THE OXYGEN ACETYLENE TORCH TO HEAT THE METALS TO BE JOINED.

37 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY AN ACID FLUX IS OFTEN USED TO CLEAN THE METAL FOR THE CAPILLARY ACTION TO BE ABLE TO WORK AND THE METALS JOINED.

38 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY METAL INERT GAS OR MIG WELDING USES A SPOOL OF SOLID-STEEL WIRE FED FROM THE MACHINE THROUGH A LINER AND OUT THE MIG GUN. WHEN THE TRIGGER IS SQUEEZED, THE WIRE FEEDS OUT AND THE ELECTRIC CURRENT MELTS THE WIRE AND THE METALS BEING JOINED.

39 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY METAL INERT GAS OR MIG WELDING USES A SPOOL OF SOLID-STEEL WIRE FED FROM THE MACHINE THROUGH A LINER AND OUT THE MIG GUN.

40 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY THE MIG GUN PROVIDES THE INERT GAS WHICH PROVIDES THE PROTECTIVE ATMOSPHERE FOR THE WELDING. THE ELECTRIC CURRENT MELTS THE WIRE AND THE METALS BEING JOINED IN A VERY CLEAN ATMOSPHERE.

41 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY TUNGSTEN INERT GAS OR TIG WELDING USES A PERMANENT NON-MELTING ELECTRODE MADE OF TUNGSTEN.

42 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY THE ARGON GAS FROM THE MACHINE THROUGH THE LINER AND OUT THE TIG GUN TO FORM A PROTECTIVE ATMOSPHERE WITH THE INERT GAS.

43 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY THE ELECTRIC CURRENT MELTS THE FILLER ROD AND THE METALS WHILE BEING JOINED IN A VERY CLEAN ATMOSPHERE.

44 INDUSTRIAL MACHINE TECHNOLOGY
WELDING TECHNOLOGY TUNGSTEN INERT GAS OR TIG WELDING USES A PERMANENT NON-MELTING ELECTRODE MADE OF TUNGSTEN.


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