Lead tin phase diagram lab report. Phase Diagrams Report 2022-10-20

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A lead-tin phase diagram is a graphical representation of the different phases or states of a binary alloy system, in this case a mixture of lead and tin, as a function of temperature and composition. It is a useful tool for understanding the behavior of the alloy at different temperatures and compositions, and can be used to predict the microstructure and properties of the alloy.

In a lead-tin phase diagram lab report, the purpose of the experiment is usually to determine the phase diagram for the lead-tin alloy system by performing a series of heating and cooling cycles on samples of the alloy with different compositions. This is typically done using a differential scanning calorimeter (DSC), which measures the heat flow between a sample and a reference material as the temperature is changed.

To begin the experiment, the researcher will first prepare a series of alloy samples with different compositions of lead and tin. These samples can be prepared by melting the two metals together in a crucible and casting the alloy into ingots or discs. The composition of each sample is carefully measured and recorded.

Next, the samples are placed in the DSC and the temperature is gradually increased. As the temperature rises, the alloy will go through various phase transitions, such as the solid-solid transformation from the beta phase to the alpha phase, or the solid-liquid transformation as the alloy melts. The DSC measures the heat flow between the sample and the reference material as these phase transitions occur, and this data is used to construct the phase diagram.

The lead-tin phase diagram is divided into three main regions: the alpha region, the beta region, and the liquid region. The alpha region is the solid state of the alloy at low temperatures, and is characterized by a body-centered cubic (BCC) crystal structure. The beta region is the solid state at higher temperatures, and is characterized by a face-centered cubic (FCC) crystal structure. The liquid region is the molten state of the alloy, in which the atoms are disordered and able to move freely.

The phase diagram also includes several lines or boundaries that mark the transitions between the different phases. The solidus line marks the temperature at which the alloy begins to melt, while the liquidus line marks the temperature at which the alloy is completely melted. The eutectic line marks the composition at which the alloy has the lowest melting point, and the eutectic point marks the temperature at which the eutectic composition is reached.

In a lead-tin phase diagram lab report, the results of the experiment would typically be presented in the form of a graph showing the phase diagram for the lead-tin alloy system. The graph would include the solidus, liquidus, and eutectic lines, as well as the composition and temperature ranges for the alpha, beta, and liquid regions. The report would also include a discussion of the results, including any observations or discrepancies from the expected phase diagram, and any implications for the properties and microstructure of the alloy.

Overall, the lead-tin phase diagram is a valuable tool for understanding the behavior of this alloy system and predicting its microstructure and properties at different temperatures and compositions. By performing a series of heating and cooling cycles using a DSC, researchers can construct the phase diagram and gain valuable insights into the behavior of the alloy.

Lab2

lead tin phase diagram lab report

The atoms must condense to form a solid nucleus, then the nucleus must develop so that it is big enough not to melt back down and then. Summary This experiment was conducted in order to better understand the changes in volume that matter undergoes when heated. Consider the cooling curves of pure tin and pure lead shown on the next page. Three two-phase regions are designated in the figure above namely, L + α, L + β and α + β. The right side solid phase is called as alpha phase and the left side solid phase is called the beta phase in the Sn-Pb alloy system. The lead-tin alloy has been commonly used in the past as solders; metal alloys that are used to bond or join two or more components, usually other metal alloys. Cooling curves for the copper-nickel alloy.

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determination of phase diagram of lead

lead tin phase diagram lab report

The thermocouples are connected to an Omega DataLogger Thermometer. The graphs of the four known compositions were then compared to the graph of the unknown X%Sn composition to determine the composition of the unknown alloy X. Time s 20%Sn 40%Sn 60%Sn 80%Sn X%Sn 0:00:30 30 368. Ideally, the data points would lie exactly on the green lines. The different compositions tested in the lab were: 1. Bimetallic thermocouples were inserted in each crucible to measure the temperature of the alloy. Alloys and metallic compounds were developed to meet certain needs and are useful in a many areas.

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Phase Diagrams Lab Report Lead childhealthpolicy.vumc.org

lead tin phase diagram lab report

If the sample is pure metal or has a eutectic composition, the phase transformation will occur at a single temperature, resulting in a horizontal region in the heating curve Figure 2. Once the cooling process had begun, the temperature was recorded every 5 seconds, until the temperature went below 200˚F. The temperatures at which the slopes of the cooling curves changed were then plotted on the phaseequilibrium diagram. This could imply an inflexion in the data at the 350F region, since the 10% alloy does not undergo the eutectic reaction which takes place at 361. Sometimes super cooling is evident in the cooling curves Figure 3. The 10% alloy points in blue are ahead of the green curves. Disassemble the apparatus and cool the hollow metal tube by running water through it.

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Tin lead alloy phase diagram

lead tin phase diagram lab report

Figure 7: Eutectic alloy under a scanning electron microscope. The composition of the eutectic phase pf Sn-Pb alloy can be turned into liquid directly from the solid phase, without going through the solid+liquid phase. Knowledge of thermal expansion is undeniably crucial in various engineering industries. The density of the unknown metal was 6. For example, noting the solidification points and comparison of curves and data were all done manual and are therefore not 100% accurate.

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Report

lead tin phase diagram lab report

Therefore, readjustments in the intensity levels were made until the percentages were the same as those in Table 5. Using the specific heat value of the unknown metal and its density, it was determined that the unknown metal was Tin. The purpose of the lab was to observe the rate of cooling alloys of different composition, understand and construct a phase diagram. This happens because the eutectic reaction which converts the liquid to alpha and beta takes place at a constant temperature of 183˚C or 361. Your Boss would like you to check the eutectic composition and temperature of the Sn-Pb system. The same process was repeated for the 80% tin alloy.

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Phase Diagram Lab Report

lead tin phase diagram lab report

Once the cooling process had begun, the temperature was recorded every 5 seconds, until the temperature went below 200˚F. While each alloy was cooling, the temperature was recorded at a time interval of 30 seconds until 150°C was reached. Solders must allow for the expansion and contraction of its components, they must be able to transmit. Introduction A phase diagram is a graphical representation of chemical equilibrium. Compare your results with the accepted value and find the percent deviation. The Use of Cooling Curves in the Determination of the Phase Diagram for a Lead-Tin System V. The figure above shows the different transition temperatures and their locations on the phase diagram.

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Lead

lead tin phase diagram lab report

The use of the experiment planning programs in the study of phase Download our phase diagrams lab report lead tin eBooks for free and learn more about phase diagrams lab report lead tin. Figure 3 - Cooling Curve Method Lead-tin alloys are placed in electrically heated pots, shown in figure 4, with a thermocouple to measure the temperature of each sample. There are various kinds of phases are available in various compositions of tin. However, this change in slope is probably an inflexion in the data. Prior to the experiment, calculations were done using the tie line rule on the lead-tin equilibrium phase diagram. We also know that H2O is commonly found in all three of the different forms of matter: ice as the solid, water as the liquid, and steam as the gas.

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LEAD

lead tin phase diagram lab report

This site does not host pdf, DOC files all document are the property of their respective owners. There is a gradual change in the first slope of the cooling curve at around 390˚F, followed by an inflexion point and a much lower slope. In case of the 20% and 40% specimen, the initial data point is ahead of the liquidus, but the second data point is almost on the eutectic temperature line. The data was then used to generate cooling curves for the different composition alloys. · A plot of your cooling curve experimental data Temperature in °C as a function of time in minutes E. However, the general form of the curve is similar to that of a metal. Summary The main objective of this lab is to create an accurate lead and tin phase diagram with different compositions, analyze the melting and solidification points, and accurately describe the differences between various alloy compositions.

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Lab 2

lead tin phase diagram lab report

The pure lead and tin have melting temperatures which match the temperatures on the phase diagram. However, the data points are shifted either forward or back of the green lines. The energy being put into the lauric acid is directly changing the temperature of the acid. The corresponding temperature is the melting temperature. MATERIALS LABORATORY Fall 2008 Lab 5: Phase Diagrams THE LAB: · Construction of a phase diagram utilizing cooling curve data for a molten binary alloy.


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PHASE DIAGRAM LAB childhealthpolicy.vumc.org

lead tin phase diagram lab report

Since the apparatus may still be warm, take x1 and T1 as soon as the bar and jacket are put in place. This continues till all the liquid has been transformed into a mixture of alpha and beta. The linear parts of the cooling curve although does not always have to be linear identify the temperature in °C for the two-phase regions; i. Analyzing and collecting different data sets for the various compositions, we need to predict the unknown composition, by using the phase diagrams and comparing it with the other composition temperatures. For example, for the 20% tin specimen, since we already had the 10% Tin specimen, we just had to add 1.


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