shear strength test of soil | Direct Shear Test of soil | Triaxial Shear Test of soil | Unconfined Compression Test of soil | Lab Vane Shear Test of soil | Applicability,Advantages,Disadvantages of soil

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shear strength test of soil | Direct Shear Test of soil | Triaxial Shear Test of soil | Unconfined Compression Test of soil

                                           

shear strength test of soil | Direct Shear Test of soil | Triaxial Shear Test of soil | Unconfined Compression Test of soil | Lab Vane Shear Test of soil | Applicability,Advantages,Disadvantages  of soil

SHEAR STRENGTH TEST OF SOIL:

The choice of appropriate shear strength tests for a particular project depends on the soil type, whether the parameters will be used in a total or effective stress analysis, and the relative importance of the structure. Common laboratory tests include direct shear, triaxial, unconfined compression, and laboratory vane shear test. The applicability, advantages and disadvantages for each test are summarized in following table.

shear strength test of soil | Direct Shear Test of soil | Triaxial Shear Test of soil | Unconfined Compression Test of soil | Lab Vane Shear Test of soil | Applicability,Advantages,Disadvantages  of soil


TABLE

SUMMARY OF COMMON SHEAR STRENGTH TESTS

Test TypeApplicabilityAdvantagesDisadvantages
Direct Shear Testa. Effective strength

parameters for coarse grained and fine grained

soils

a. Simple and

inexpensive

b. Thin sample allows for

rapid drainage of fine grained soils

a. Only for drained conditions

b. Failure plane forced to

occur at joint in box

c. Non-uniform

distribution of stress

and strain

d. No stress-strain data

Triaxial Shear Testa. Effective and total

strength parameters

for coarse-grained and

fine-grained soils

b. Compared to direct

shear tests, triaxial

tests are preferred for

fine-grained soils

a. Easy to control

drainage

b. Useful stress-strain

data

c. Can consolidate

sample hydrostatically

or to in situ Kstate of

stress

d. Can simulate various

loading conditions

a. Apparatus more

complicated than

other types of tests

b. Drained tests on fine grained

soils must be

sheared very slowly

Unconfined Compression Testa. Undrained shear

strength of 100%

saturated samples of

homogenous,

unfissured clay

b. Not suitable as the

only basis for design

on critical projects

a. Very rapid and

inexpensive

a. Not applicable to soils

with fissures, silt

seams, varves, other

defects, or less than

100% saturation

b. Sample disturbance

not systematially

accounted for

Lab Vane Shear Testa. Undrained shear

strength of 100%

saturated samples of

homogenous,

unfissured clay

b. Not suitable as the

only basis for design

on critical projects

a. Very rapid and

inexpensive

a. Not applicable to soils

with fissures, silt

seams, varves, other

defects, or less than

100% saturation

b. Sample disturbance

not systematially

accounted for





QUIZ PRACTICE

RCC

RCC-1 -Click here

RCC-2- Click here

𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘
SOM/MOS

SOM-1 -Click here

𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘
SOIL

SOIL-1 -Click here
𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘

FLUID MECHANICS

𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘

BUILDING MATERIALS

𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘

SURVEY

𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘𐩘

COMMENTS

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shear strength test of soil | Direct Shear Test of soil | Triaxial Shear Test of soil | Unconfined Compression Test of soil | Lab Vane Shear Test of soil | Applicability,Advantages,Disadvantages of soil
shear strength test of soil | Direct Shear Test of soil | Triaxial Shear Test of soil | Unconfined Compression Test of soil
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