Polycarbonate Erlenmeyer Flask
1) Narrow-mouth Bottle: 50ml~10000ml;
2) Big B Bottle: 50ml~3000ml;
3) Horn Mouth: 50ml~5000ml;
4) Wide-mouth Bottle: 50ml/100ml/250ml/500ml/1000ml;
5) Conical Flask With Cover: 50ml~1000ml;
6) Screw Conical Flask:
a. Black Lid (General Sets): 50ml~1000ml
b. Orange Lid (Thickening Type): 250ml~5000ml;
2. Single and Multi-mouth Round Bottom Flask:
1) Single Mouth Round Bottom Flask: 50ml~10000ml;
2) Inclined Three-mouth Flask: 100ml~10000ml;
3) Inclined Four-mouth Flask: 250ml~20000ml;
4) Straight Three-mouth Flask: 100ml~10000ml;
5) Straight Four-mouth Flask: 250ml~10000ml.
***Price List for whole above, inquire us to get
Description
Technical Parameters
Polycarbonate Erlenmeyer Flask, PC Erlenmeyer Flask, abbreviated as PC Erlenmeyer Flask, is a commonly used conical culture bottle in laboratories, widely used in various fields such as biochemical experiments, cell culture, and microbial fermentation. Due to its excellent material properties and design advantages, it has become an indispensable experimental tool in scientific research. As one of the classic experimental equipment in the laboratory, it plays an important role in scientific research due to its excellent material properties and design advantages. Through continuous innovation and development, it will become more intelligent, personalized, and environmentally friendly to meet the growing needs and challenges of laboratories. For researchers, choosing suitable products and maintaining them correctly will help improve experimental efficiency and accuracy, and promote the progress and development of scientific research.With the improvement of laboratory safety awareness and the continuous development of experimental techniques, the application prospects of polycarbonate conical flasks in laboratories will be even broader. In the future, the performance of polycarbonate materials may be further optimized, such as enhancing chemical resistance and high-temperature resistance. Meanwhile, with the development of intelligent manufacturing and automation technologies, the production process and quality control of polycarbonate conical flasks will also become more refined and standardized.
Specifications




Diverse usage and meticulous operation
Polycarbonate Erlenmeyer Flask, PC Erlenmeyer Flask, abbreviated as PC Erlenmeyer Flask, is a highly favored model of conical culture bottles in laboratory equipment, with its presence spread across multiple fields such as biological sciences, chemical engineering, medical research, and environmental science. This conical bottle is not only known for its unique polycarbonate (PC) material, but also provides great convenience and safety for researchers due to its exquisite design.
In terms of materials
PC material endows Erlenmeyer Flask with unparalleled transparency, almost comparable to glass, allowing experimenters to clearly observe the subtle changes in the liquid inside the bottle, the proliferation status of cells, and the fermentation process of microorganisms, providing a reliable basis for the precise analysis of experimental results. Meanwhile, the high impact resistance of PC materials significantly reduces the risk of accidental breakage in the laboratory, creating a safer working environment for researchers.
In terms of design
The conical bottle body of polycarbonate erlenmeyer flask, PC Erlenmeyer Flask, abbreviated as PC Erlenmeyer Flask, is a highly favored model of conical culture bottles in laboratory equipment, with its presence spread across multiple fields such as biological sciences, chemical engineering, medical research, and environmental science. This conical bottle is not only known for its unique polycarbonate (PC) material, but also provides great convenience and safety for researchers due to its exquisite design. is not only aesthetically pleasing but also practical. Its smooth lines facilitate the pouring and stirring of liquids, effectively reducing splashing and waste during operation. In addition, the precise scale markings on the bottle enable experimenters to easily measure the required volume of liquid, improving the accuracy and reproducibility of the experiment. The diverse bottle cap designs, such as sealing caps, breathable caps, etc., meet the flexible response to gas exchange, aseptic operations, and other requirements under different experimental conditions.
In biochemical experiments
PC Erlenmeyer Flask is an ideal container for cell culture. Its non-toxic and corrosion-resistant properties provide a stable and safe growth environment for cells, promoting cell proliferation and differentiation. In the field of microbial fermentation, PC Erlenmeyer Flask also plays an irreplaceable role. It can withstand various chemicals and temperature changes generated during the fermentation process, ensuring the smooth progress of the fermentation process and the final quality of the product.
With the continuous deepening of scientific research and the rapid development of laboratory technology, PC Erlenmeyer Flask is also constantly innovating and improving. In the future, we can look forward to the emergence of more intelligent, personalized, and environmentally friendly PC Erlenmeyer Flask products, providing researchers with more efficient, convenient, and safe experimental tools, and promoting the continuous progress and development of scientific research. Therefore, the PC Erlenmeyer Flask is not only a common equipment in laboratories, but also an indispensable partner in scientific research.
Design advantages
Multiple cover types:
According to experimental requirements, the PC Erlenmeyer Flask is equipped with various types of bottle caps, such as sealing caps, polyester caps, breathable caps, and spacer caps. Sealed caps are suitable for closed cultivation, while polyester caps and breathable caps are suitable for open cultivation that requires gas exchange. The spacer cover provides a more flexible way to add, absorb or harvest cells, reducing the chance of contamination.
The multiple cover designs are a major highlight of the PC Erlenmeyer Flask, which fully considers the diverse needs during the experimental process and provides great convenience for researchers. Specifically, this conical culture bottle is equipped with various types of bottle caps including sealed caps, polyester caps, breathable caps, and spacer caps, each optimized for specific experimental scenarios.
The sealing cover ensures complete sealing of the experimental environment with its excellent sealing performance, effectively preventing the invasion of external pollutants, and is particularly suitable for closed cultivation experiments that require extremely high sterile conditions. By using sealed covers, researchers can ensure the accuracy and reliability of experimental results, avoiding experimental failures caused by contamination.
Polyester caps and breathable caps are more commonly used in open culture experiments that require gas exchange. Polyester caps not only have good sealing properties, but also allow gas to pass through to a certain extent, providing necessary gas environments such as oxygen and carbon dioxide for microorganisms or cells. The breathable cover, through its special design, achieves more efficient gas exchange while maintaining a relatively sterile experimental environment. The application of these two types of lids enabled the PC Erlenmeyer Flask to perform equally well in open culture experiments.
The spacer cover is designed to meet more complex experimental operation requirements. It combines the two advantages of sealing and flexibility, which can prevent contamination to a certain extent and provide convenient operating space for experimenters to add, absorb or harvest cells. By using a spacer cover, researchers can easily complete these operations without opening the bottle cap, greatly reducing the risk of contamination and improving experimental efficiency.
Connection method:
Some PC Erlenmeyer Flasks are also equipped with special connection methods, such as Male Luer Lock, which facilitate connection and transfer with other experimental equipment, achieving continuity and automation of experiments.
As an important part of the design of PC Erlenmeyer Flask
The connection method not only enhances the flexibility of its experimental applications, but also further promotes the continuity and automation of experimental operations. Specifically, some high-end or special-purpose PC Erlenmeyer Flasks are equipped with special connection methods such as Male Luer Lock, which are designed with precision and standardized interfaces to greatly simplify the connection and transfer process with other experimental equipment.
Male Luer Lock
As a widely used medical device connection method, has a stable and reliable locking mechanism that ensures a tight and leak free connection during the experimental process, effectively preventing the leakage of liquids or gases, thereby ensuring the accuracy and safety of experimental results. Through this connection method, the PC Erlenmeyer Flask can be easily connected to various infusion tubes, burettes, gas supply tubes, and automated experimental devices, achieving seamless integration of complex experimental operations such as liquid delivery, gas regulation, and pressure maintenance.
In addition
The application of this special connection method also promotes the continuity and automation of the experimental process. Researchers can pre design and assemble a series of interconnected experimental equipment according to experimental needs, forming a complete experimental system. During the experiment, various experimental steps can be automatically carried out with simple operations, thereby reducing errors and uncertainties caused by human intervention and improving the accuracy and repeatability of the experiment.
Material characteristics
Polycarbonate (PC) is a thermoplastic with extremely high transparency, good impact resistance, heat resistance, and chemical corrosion resistance. These characteristics make PC one of the ideal materials for making laboratory containers.
High transparency:
PC materials have almost glass like transparency, allowing experimenters to clearly observe the color, clarity, and growth status of cells or microorganisms in the solution inside the bottle, which is crucial for scientific research activities that require precise monitoring of the experimental process..
Wide Applications
We offer a variety of transmission components, including sprockets, roller chains, gears, couplings, racks, hubs, pulleys, taper sleeves, bearing seats, and more.
Heat resistance:
PC materials can maintain stable physical and chemical properties within a certain temperature range, typically used at temperatures ranging from -40 ° C to 121 ° C, and suitable for heating, cooling, and sterilization under most laboratory conditions.
Chemical corrosion resistance:
PC materials have good resistance to various organic solvents and inorganic salts, and are not easily corroded or dissolved, thus ensuring the accuracy and reliability of experimental results.
Improve the convenience of experimental operations
Polycarbonate erlenmeyer flask are more portable than traditional glass conical bottles, which allows the experiment-worker to easily hold and move during the operation, especially when the experimental position needs to be changed frequently or the experimental layout needs to be adjusted, which greatly improves the efficiency of the work.
Polycarbonate material has excellent impact resistance, even in the case of accidental drop or external impact, it is not easy to break. This feature reduces the experiment interruption and cleaning work caused by container damage during the experiment, making the experiment flow more smooth.
The surface of the polycarbonate cone bottle is smooth, not easy to attach dirt and residue, and it is very convenient to clean. At the same time, its durable material allows for multiple reuse, reducing the cost of the experiment and improving the sustainability of the experiment.
Polycarbonate conical bottles are available in a variety of sizes to meet the needs of different experimental scenarios. In addition, some conical bottles are also equipped with LIDS, brackets and other accessories, making the experimental operation more flexible and diverse, but also improve the convenience of the experiment.
Polycarbonate conical bottles have good chemical stability and temperature resistance, and can be adapted to a variety of experimental environments, including high temperature, low temperature and contact with certain chemical agents. This allows experimentals to be more flexible when choosing experimental equipment, without worrying about the impact of container material on experimental results.
To sum up, the polycarbonate erlenmeyer flask significantly improves the convenience of experimental operation with its advantages of portability, impact resistance and non-crushing, easy cleaning and reuse, diversified specifications and accessories, and adaptation to a variety of experimental environments. These characteristics make the polycarbonate conical bottle an ideal choice for experimental personnel in various experimental operations.
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