Polyethylene Flashcards

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0
Q

How is UHMWPE made?

A
  • By CONDENSATION POLYMERISATION and SINTERING ( fusing) of the polyethylene fine granular powder into a prefabricated cast in a LOW PRESURE (4-6 bar) and LOW TEMP (66-88oC) with addition of CALCIUM STERATE to prevent yellowing.
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1
Q

What is UHWMPE?

A

A polyethylene polymer with a least 3 million units

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2
Q

Why is the process of formation of UHMWPE important ?

A
  • If the particules are not SINTERED together well they may have FUSION DEFECTS.
  • Early failure of UHMWPE in literature due to high wear, because of fusion defects from manufacturing process.
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3
Q

What is the structure of UHMWPE?

A
  • Semi crystalline polymer
  • but tends to form a Amorphous structure with random arrangements and entangling of structure
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4
Q

What is the importance of the UHMWPE structure?

A
  • Gives UHMWPE unparalleled STRENGTH and RESISTANCE TO WEAR cf HDP as used previously
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5
Q

Can you draw the monomer ethylene that forms UHMWPE?

A

H H

I I

H H

C======C

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6
Q

What are the problems with sterilisation of UHWMPE?

A
  • Can’t be sterilised by AUTOCLAVE
      • as softens at 70oC and melts at 135oC so needs to be IRRADIATED GAMMA RADIATION-
    • advantage= promotes X LINKING OF PE-> INCREASED tensile strength and WEAR resistance
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7
Q

what are the problems of irradiating UHMWPE in O2 atmosphere

A
  • Causes OXIDATION of the PE by BREAKING DOWN THE C-C bonds -> formation of more FREE RADICALS -> decrease in MOLECULAR WEIGHT-> detoriation in mechanical properties
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8
Q

How is oxidation prevented in sterilisation of UHMWPE?

A
  • Irradiation in ARGON/ NITROGEN atmosphere
  • then VACCUM PACKED BUT post irradiation oxidation of UHWMPE does occur
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9
Q

What are the disadvantages of gamma irradiation ?

A
  • Reduces RESISTANCE to FATIGUE and FRACTURE reduces elastic modulus , tensile strength, ductility and yield stress
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11
Q

What is UHMWPE use?

A
  • In weight bearing components of TKA
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12
Q

What is the process of ANNEALING? Why is it used?

A
  • Heating to below melting point
  • Aim to reduce free radicals and not disrupt crystalline structure
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13
Q

What is UHWPE wear debris associated with?

A
  • HISTIOCYTIC OSTEOLYTIC response
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14
Q

What size UHMWPE particles are the most reactive?

A
  • 0.1 to 1.0 um
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15
Q

What are the properties of UHWMPE which increase wear debris?

A
  • Thinner <6mm
  • Flatter
  • Carbon fibre reinforced polyethylene
  • Metal backed PE may minimise plastic deformation and loosening but reduce the effective thickness of the PE
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16
Q

What factors cause catastrophic wear of Pe in TKR?

A
  • VARUS knee alignment
  • Thin PE < 8mm
  • Flat , non conforming inserts- less contact area > stress
  • Heat tx of inserts, sterilisation
17
Q

UHWMPE is Viscoelastic so what wear is it susceptible to?

A
  • Abrasion wear
18
Q

Wear damage to UHWMPE articulating surfaces is mainly due to what type of wear?

A
  • 3rd body wear
19
Q

Describe the characteristics of UHWMPE?

A

Tough Ductile Resilient Resistant to wear Low friction Thermoplastic- altered by high temps