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POLYMER PRODUCTION BASED ON POLYMERATION REACTIONS


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POLYMER PRODUCTION BASED ON POLYMERATION REACTIONS


Purpose of work:Study of technological properties of products made of polymeric materials.
General maInformation:

  1. IIRT type viscometer;

  2. Mufel 'furnace;

  3. Ceramic tableware;

  4. Analytical and technical scales;

  5. 50 ml of pycnometer;

  6. VL40 vertical injection molding machine.

Workplace equipment:

  1. UME-10TM stretching test machine.

  2. Handles for fastening samples.

  3. SHTS-250-0.05 caliper.

  4. Micrometer.

  5. Metal ruler.

  6. 2M-3M black pencil.

  7. Grinding machine.

  8. Fabric grinding material.

  9. Cotton gloves.

Procedure:
1. Determine the fluidity of the solution.
The readability of the solution is determined in a standard way using a device type IIRT-M. The numerical value of the readability of the solution is determined by the following expression:
EOK = 600 m / t, g / 10 min
where m is the mass of the flowing solution, g;
t is the time interval between the two discharged solutions, s.
As a result of the test, the average value of the results obtained three times is taken. The results obtained are tabulated.
2. Determining the actual amount of filler in the composition.
The solution is poured into a clean and pre-weighed ceramic vessel with a thickness of not more than 5 mm and weighed to the nearest 0.002 gram. The PKM-filled dish is then placed in a muffle furnace. And kept at a temperature of 450oS for 30 minutes. Calcium chloride is cooled in a desiccator. The cooled ceramic dish is weighed on a scale. The actual amount of filler is determined by the following expression:
S = 100 M1 / ​​M,%
where M and M1 are the weights before and after heating, respectively.
The results obtained are tabulated.
3. Determining the technological parameters of injection molding.
Technological parameters of injection molding include tool cylinder temperature, mold temperature, injection pressure and cycle time. The casting modes of the most widely used polymers in production are given in the table below.
According to the literature, the injection temperature of filler polymers is 20-30oS higher than that of pure polymer.
The cycle time is determined as follows:
tts = tmash + ttexn, s
heretmash - machine time, s; ttexn - technological time, p.
Table 8.1
Pressure injection modes

Material

Injection modes

Cylinder temperature, oS

Pressure, MPa

Mold temperature, oS

PEVD

170-200

60-100

20-60

PEND

180-250

80-120

20-60

PP

200-280

80-140

20-80

PS is shock resistant

170-260

80-120

20-50

PA-610, PA-6-1

230-260

80-120

50-90

PA-6-11-108 glass fiber

250-270

100-120

75-85

Machine time -taken from the technical passport of the injection molding machine.


Technological time required for the formation of the product -ttexn is equal to the sum of the holding times of the product in the mold under pressure and without pressure (cooling time). The holding time under pressure is determined by the following expression.


d- length of the filling channel, m; α-thermal conductivity, Tr-solution temperature, Tf-mold temperature, T-polymer liquefaction temperature,
The cooling time is also determined as above. The results obtained are included in the table below.
Table 8.2
Basic technological properties of PKMs

EOK, g / 10 minut

S,%

R, g / sm3

W,%





























































The casting modes determined in this way are also used to obtain other castings.


The procedure for taking bulk samples is as follows:
1. Getting acquainted with the technical characteristics of the casting machine;
2. Study of casting safety;
3. Casting of products from the prepared polymer composite material;
4. Check the quality of the casting obtained.
5. Write a report on the work done.
BOOKS



  1. Klyuchnikov n. G. Prakticheskie zanyatiya po ximicheskoy teknologii. -m .: «prosveshchenie», 1972.

  2. Pv Dibina, as Soloveva, yu.i. Vishnyak raschetы po teknologii inorganic veshchestv - m: «vysshaya shkola», 1967.

  3. Fa Andreev, si Kargin, l. I. Kozlov, vf Pristavko.

Technology svyazannogo nitrogen - M: «Chemistry», 1966.

  1. Alekseevskiy EV Gols RK Musakin AP Kolichestvennyy analiz, Gosximizdat, 1957

  2. GOST 2184-43. Acid sernaya technicheskaya.

  3. Groshev AP Technical analysis, p. 320-322, Gosximizdat, 1953.

  4. Ismatov AA and others. Chemical technology of inorganic materials, -T: Uzbekistan, 2002, 336 p.





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