316e hydraulic excavator specifications, Bucket specifications and compatibility – Milton CAT 316E User Manual
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316E Hydraulic Excavator Specifications
Bucket Specifications and Compatibility
Width
Capacity
Weight
Fill
m
3
yd
3
kg
lb
%
Reach Booms
R3.1
R2.6
R2.9
R3.1
(10'2")
mm
in
(8'6")
(9'6")
(10'2")
Thumb*
Without Quick Coupler
General Duty (GD)
600
24
0.35
0.46
445
980
100%
750
30
0.49
0.64
502
1,106
100%
900
36
0.62
0.81
548
1,208
100%
1050
42
0.76
1.00
595
1,312
100%
1200
48
0.91
1.19
672
1,480
100%
X
X
Severe Duty (SD)
600
24
0.35
0.46
496
1,093
90%
750
30
0.49
0.64
564
1,243
90%
900
36
0.62
0.81
644
1,420
90%
1050
42
0.76
1.00
689
1,519
90%
1200
48
0.91
1.19
762
1,678
90%
X
X
Maximum load pin-on (payload + bucket)
kg
2205
2095
1945
1875
lb
4,860
4,617
4,287
4,133
With Center Lock Quick Coupler
General Duty (GD)
600
24
0.35
0.46
445
980
100%
750
30
0.49
0.64
502
1,106
100%
900
36
0.62
0.81
548
1,208
100%
1050
42
0.76
1.00
595
1,312
100%
1200
48
0.91
1.19
672
1,480
100%
Severe Duty (SD)
600
24
0.35
0.46
496
1,093
90%
750
30
0.49
0.64
564
1,243
90%
900
36
0.62
0.81
644
1,420
90%
1050
42
0.76
1.00
689
1,519
90%
1200
48
0.91
1.19
762
1,678
90%
Maximum load with coupler (payload + bucket)
kg
1815
1705
1555
1485
lb
4,000
3,758
3,427
3,273
The above loads are in compliance with hydraulic excavator standard EN474, they do not exceed
87% of hydraulic lifting capacity or 75% of tipping capacity with front linkage fully extended
1800 kg/m
3
(3,000 lb/yd
3
)
at ground line with bucket curled.
1500 kg/m
3
(2,500 lb/yd
3
)
Capacity based on ISO 7451.
1200 kg/m
3
(2,000 lb/yd
3
)
Bucket weight with General Duty tips.
900 kg/m
3
(1,500 lb/yd
3
)
* Densities with 3.1 m (10'2") thumb stick does not consider thumb weight.
X
Not recommended
Maximum Material Density:
2100 kg/m
3
(3,500 lb/yd
3
)
Caterpillar recommends using appropriate work tools to maximize the value customers receive from our products. Use of work tools, including buckets, which are
outside of Caterpillar’s recommendations or specifications for weight, dimensions, flows, pressures, etc. may result in less-than-optimal performance, including
but not limited to reductions in production, stability, reliability, and component durability. Improper use of a work tool resulting in sweeping, prying, twisting and/or
catching of heavy loads will reduce the life of the boom and stick.
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