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Automated Material Handling

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Work Load WL = Rf Tc. Rf = Specific flow rate of total delivery ... c) WL = 40(5.05) = 202 min/hr. AT = 60 (0.95) (0.90)(1.0) = 51.3 ... nc = WL/AT ... – PowerPoint PPT presentation

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Title: Automated Material Handling


1
Automated Material Handling
  • Automated Guided Vehicles

2
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3
Automated Guided Vehicles
4
Automated Guided Vehicles (AGVs)
  • ????????????????????????
  • Battery-powered
  • Automatically Steered
  • Follow defined pathway
  • Programmable
  • Driverless

5
Types of AGVs
  • Automated Guided Train
  • AGV Pallet truck
  • Unit load Carrier

6
Types of AGVs
  • Automated guided Train

7
Types of AGVs
  • AGV Pallet truck

8
Types of AGVs
  • AGV Pallet truck

9
Types of AGVs
  • Unit load Carrier

10
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11
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12
Vehicle Guidance Technology
  • Imbedded Guide Wires and Paint Strips
  • Electromagnetic
  • Visual Line , Infrared, Laser

13
Vehicle Guidance Technology
  • Self-Guided Vehicles (SGVs)
  • Auto navigation
  • Advantage gt more Flexible way

14
Vehicle Management
  • Traffic Control
  • On-board vehicle sensing forward Sensing
  • Zone Control

15
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16
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17
Analysis of Vehicle-Based Systems
  • The time for a typical delivery cycle in the
    operation of a vehicle-based transport system
  • Loading at the pickup station
  • Travel time to the drop-off station
  • Unloading at the drop-off station
  • Empty travel time

18
Analysis of Vehicle-Based Systems
  • The total time per delivery per vehicle
  • Tc TL Ld TU Le
  • ?c ?e
  • When
  • Tc delivery Cycle time (Time/del)
  • TL time to load at load station (min)
  • Ld distance between load and unload
    station(m,ft)
  • ?c carrier velocity (m/min , ft/min)
  • Tu time to unload at unload station (min)
  • Le distance the travel empty
  • ?e Empty velocity (m/min , ft/min)

19
Analysis of Vehicle-Based Systems
  • Available Time
  • AT 60 A Tf E
  • When
  • AT Available Time (min/hr per Vehicle)
  • A Availability
  • Tf Traffic factor
  • E Worker Efficiency

20
Analysis of Vehicle-Based Systems
  • The rate of delivery per vehicle
  • Rdv AT
  • Tc
  • Work Load WL Rf Tc
  • Rf Specific flow rate of total delivery per
    hour (de/hr)
  • Tc delivery cycle Time

21
Analysis of Vehicle-Based Systems
  • Number of carrier required
  • nc WL nc Rf
  • AT Rdv

22
EXAMPLE
  • AGVs ??????????? ??????
  • Loading time at Load station 0.75 min,
  • Unloading time at unload station 0.50 min
  • ??????? ??????????? 40 del/hr ???????? 50
    m/min(3km/hr)
  • availability 0.95 traffic factor 0.90 E 1.0
  • Determine a) travel distance loaded and empty
  • b) Ideal delivery cycle time c) number of vehicle

23
EXAMPLE
Unload
20
55
40
20
load
24
EXAMPLE 10.1
  • Sol ????????????????
  • Ld 354035 110 m
  • Le 204020 80 m
  • b) Tc 0.75 110/50 0.50 80/50
  • 5.05 min
  • c) WL 40(5.05) 202 min/hr
  • AT 60 (0.95) (0.90)(1.0)
  • 51.3 min/hr per vehicle
  • nc WL/AT 202/51.3 3.94 vehicles

25
EXAMPLE 10.2
30
50
35
50
15
10
30
30
10
10
26
  • From-to Chart
  • To 1 2 3 4 5
  • From 1 - 9L/50 5L/120 6L/205 0
  • 2 4E/110 9L/80
  • 3 7E/200 2L/85 3L/170
  • 4 8L/85
  • 5

27
  • ????? (?????? x ???????) / ??????????????????
  • Ld n1xm1 n2xm2 .
  • n1n2n3.
  • (9x 50)(5x120)(6205)(9x80)(2x85)
  • (3x170) (8x85) /(9569238)
  • 103.8 m
  • Le (4x110) (7x200) / (47)
  • 167.27 m

28
  • TL 0.75 TE 0.5
  • TC 0.75 103.8/50 0.5 107.2/50
  • TC
  • WL 40( TC) min/hr
  • AT 60 (0.95) (0.90)(1.0)
  • min/hr per vehicle
  • nc WL/AT / vehicles

29
Exercise
  • Ex 10.8 AGVs ?????????????????????????? ??????
    200 ???? ???????????????????? 150 ?. ???? load
    ??? unload 24 ?????? ????????????? 1
    ?/??????
  • ???????? Traffic factor 0.9 ??? A 0.95 E 1.0
  • ????????????????????? ???????????????? 30
    ??????/??. del/hr

30
Home Work
  • Text Book ???? 323
  • ??? 10.4 -10.17
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