Calcium zinc stabilizer and composite lead salt stabilizer refer to PVC thermal stabilizers that play a role in thermal stability in the production of PVC products. The difference between the two is as follows:
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Calcium zinc thermal stabilizers meet environmental requirements and are currently widely used. Its characteristics include the following aspects:
1. The most important feature of calcium zinc stabilizers is that they are used in both transparent and opaque product formulations in chemical building materials, with strong applicability.
2. The price is lower than organic tin.
3. It has good compatibility and coordination with lead, tin, cadmium, and antimony stabilizers, and there is no sulfide pollution. It is suitable for manufacturers who have already used lead salt stabilizers to replace non-toxic and environmentally friendly products.
4. Another significant advantage of calcium zinc stabilizers is their good weather resistance, and products produced with qualified calcium zinc composite stabilizers will not produce discoloration.
Lead salt stabilizers have two major categories of monomers and composites, and lead salt stabilizers are basically used as the main stabilizer in China. The composite lead salt heat stabilizer adopts symbiotic reaction technology to mix the three salts, two salts and metal soap in the reaction system with the initial ecological grain size and various lubricants to ensure the full dispersion of the heat stabilizer in the PVC system, and at the same time, due to the co-fusion with the lubricant to form a granular form, it also avoids the poisoning caused by lead dust. Compound lead salt stabilizers contain both the heat stabilizer and lubricant components needed for processing and are called full-package heat stabilizers.Its characteristics are as follows:
1. Toxic.
2. Cannot be used for transparent products.
3. Good electrical insulation and weather resistance;
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4. Low price;
5. Good processing performance suitable for various processes;
Post time: Apr-11-Lead salt composite stabilizers not only have good thermal stability and can be used as the main pvc stabilizer for PVC products, but also have their own independent characteristics, which need to be paid attention to when using them. According to many years of formula design experience, the points that need to be paid attention to when using monomeric lead salt stabilizers are summarized as follows:
1. Fully grasp the characteristics and application occasions of each lead salt composite stabilizer, and test and correct it in practice.
Each lead salt composite stabilizer has its own independent characteristics and application range. If we want to use a stabilizer well, we must fully grasp its characteristics, know under what conditions it can show its advantages, and under what conditions Conditions are not suitable for use. For example, dibasic lead phosphite has good weather resistance, and its advantages can be fully utilized in outdoor products that emphasize weather resistance, so it often acts as the main stabilizer in such products, while tribasic lead sulfate has great Good thermal stability performance, can be used as the main stabilizer in the occasion requiring high thermal stability.
2. Select the appropriate stabilizer according to the specific processing and application conditions
Different products have different requirements, and different stabilizers need to be selected. Different equipment and processing conditions have different requirements for stabilizers. We carefully consider the specific application conditions in the formulation design and select the appropriate stabilizer variety and combination. Dosage. Among the main products, pipes generally do not require high weather resistance, so tribasic lead sulfate with good thermal stability is mainly used as the main stabilizer. In addition, due to the simple cross-sectional shape of the pipe and the short thermal history during processing, the amount of stabilizer is not very large.
3. Synergistic effect between stabilizers
There are three different effects of the combination of stabilizers: one is the synergistic effect, which is the effect of 1+1>2; the other is the additive effect, which is the effect of 1+1=2; the other is the antagonistic effect, which is The effect of 1+1<2. We must carefully grasp the interaction between different stabilizers when formulating the design, make more use of the synergistic effect between the stabilizers, and try our best to avoid the confrontation effect between the stabilizers, so as to obtain a cost-effective heat stabilizer system.