Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and...

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Dial Calipers Dial Calipers

Transcript of Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and...

Page 1: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Dial CalipersDial Calipers

Page 2: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Dial CalipersDial Calipers

General InformationGeneral Information

Page 3: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Dial CalipersDial Calipers are arguably the most common and versatile of all the precision measuring tools used by engineers and manufacturers.

Page 4: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Four Types of MeasurementsFour Types of Measurements

Dial CalipersDial Calipers

Page 5: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Dial calipers are used to perform four common measurements on parts…

Page 6: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

1. Outside Diameter or Object Thickness

2. Inside Diameter or Space Width

3. Step Distance

4. Hole Depth

Page 7: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Outside Measuring FacesOutside Measuring FacesThese are the faces between which outside length or diameter is measured.

Page 8: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Example: Outside Diameter of object

Page 9: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Inside Measuring FacesInside Measuring Faces

These are the faces between which inside diameter or space width (i.e., slot width) is measured.

Page 10: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Example: Inside measuring

Page 11: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Step Measuring FacesStep Measuring Faces

These are the faces between which stepped parallel surface distance can be measured.

Page 12: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Example: Step Distance

Page 13: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Depth Measuring FacesDepth Measuring Faces

These are the faces between which the depth of a hole can be measured.

Page 14: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Note: Work piece is shown in section. Dial Caliper shortened for graphic purposes.

Example: Depth Measuring

Page 15: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

NomenclatureNomenclature

Dial CalipersDial Calipers

Page 16: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

A standard inch dial caliperinch dial caliper will measure slightly more than 6 inches.

Page 17: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

The blade scaleblade scale shows each inch divided into 10 increments. Each increment equals one hundred thousandths (0.100”).

Page 18: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

BladeBlade

The bladeblade is the immovable portion of the dial caliper.

The sliderslider moves along the blade and is used to adjust the distance between the measuring surfaces.

SliderSlider

Page 19: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

PointerPointer

The pointerpointer rotates within the dial as the slider moves back-and-forth along the blade.

Page 20: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Reference EdgeReference Edge

The reference edgereference edge keeps track of the larger increments (i.e. 0.100”) as the slider moves along the rack.

Page 21: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

RackRack

The gear-toothed rackrack is used to change linear motion (slider) to rotary motion (pointer).

Page 22: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Reading the Inch Dial CaliperReading the Inch Dial Caliper

Dial CalipersDial Calipers

Page 23: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

The dialdial is divided 100 times, with each graduation equaling one thousandth of an inch (0.001”).

Page 24: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Every time the pointerpointer completes one rotation, the reference edgereference edge on the sliderslider will have moved the distance of one blade scaleblade scale increment (0.100”).

Page 25: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

To determine the outside diameter of this pipe section, the user must first identify how many inches are being shown on the blade scaleblade scale.

Page 26: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

The reference edgereference edge is located between the 1 and 2 inch marks. So, the user makes a mental note…1 inch.

1.000”0.400”

The user then identifies how many 0.1” increment marks are showing to the right of the last inch mark. In this case, there are 4…or 0.400”.

Page 27: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Next, the user looks at the pointerpointer on the dialdial to see how many thousandths it is pointing to.

In this case, it is pointing to 37…or 0.037”.

1.000”0.400”0.037”

The user then adds the three values together…

+1.437”

Page 28: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

How wide is the block?

1.000”0.400”0.002”+1.402”

Page 29: Dial Calipers. General Information Dial Calipers Dial Calipers are arguably the most common and versatile of all the precision measuring tools used by.

Practice Time….

• Using your new-found knowledge of the Dial Caliper and its many uses, you and your partner will now re-measure your CD. Come to consensus on the readings. Record your measurements on the sketch you drew in the earlier activity. The team that has gets closest to the actual measurements wins 5 extra points!