Diploma in Ceramic Technology - Course, Fees, Eligibility, Top Colleges, Top Careers

Engineering & technology
Duration
img3 Years
Level
imgDiploma
Programme
imgDiploma
Study Mode
imgFull Time

Course Description

Diploma in Ceramics Technology is a course which develops the required practical, technological and business skills required for a career as a studio production ceramist, a craftsperson, or a ceramic designer etc. It develops ceremic designing skills also. Students will learn both traditional hand and digital ceramic production skills which includes throwing, hand building, modelling, casting, moulding, decoration, drawing, glazing, printing and firing in theoretical and practical approach. They will be using computer labs and workshops with well equipped tools. Students will also gain knowledge and skills in hands-on techniques. Students will of having critical discourses and a good range of professional opportunities related to ceramic.

Why to choose Diploma in Ceramic Engineering?

Choosing a Diploma in Ceramic Engineering can be an excellent decision for several reasons:

  1. Specialized Field: Ceramic Engineering studies ceramics, materials with unique properties in various industries like manufacturing, construction, and electronics. By pursuing this diploma, you gain expertise in working with these specialized materials.
  2. Career Opportunities: The diploma equips you with the practical skills and knowledge required for various job roles in ceramics-related industries, such as ceramic production, quality control, research and development, and design.
  3. Growing Industry: The demand for ceramics and ceramic-based products is increasing in diverse sectors, including aerospace, healthcare, electronics, and energy. This growth translates to a higher demand for skilled ceramic engineers.
  4. Technological Advancements: With advancements in technology, there are continuous innovations in the ceramics industry. A diploma in ceramic engineering keeps you updated with the latest techniques and applications.
  5. Hands-on Training: Diploma programs typically offer hands-on training, laboratory work, and industrial exposure, providing you with practical experience to handle real-world challenges effectively.
  6. Shorter Duration: Compared to a full-fledged degree program, a diploma in ceramic engineering is usually shorter, allowing you to enter the workforce earlier and start building your career.
  7. Entry to Higher Studies: The diploma can be a stepping stone for further education. If desired, you can opt for higher studies or lateral entry into relevant engineering degree programs.

Typical day at work

Frequently Asked Questions

1. Is ceramic technology a good career? 

Answer: Yes, ceramic technology can be a rewarding and promising career choice. As a ceramic technologist, you can work in various industries like manufacturing, construction, aerospace, electronics, and healthcare. The demand for skilled professionals in ceramic technology is rising due to the increasing use of ceramics in different applications. Pursuing a career in ceramic technology can lead to diverse job opportunities and contribute to technological advancements.

2. What is a ceramic technologist?

Answer: A ceramic technologist is a professional specializing in studying and applying ceramics, which are materials with unique properties used in various industries. They are experts in understanding ceramics' behaviour, production, and applications. Ceramic technologists work on developing new ceramic materials, improving manufacturing processes, conducting quality control, and ensuring product efficiency and safety.

3. What is the job of a ceramic technologist? 

Answer: The job of a ceramic technologist involves various responsibilities, such as:

  • Conducting research and development to create new ceramic materials with specific properties.
  • Analyzing the characteristics and performance of ceramic products through testing and quality control procedures.
  • Designing and optimizing manufacturing processes to ensure efficient production of ceramic products.
  • Troubleshooting and resolving issues related to the production and performance of ceramic materials.
  • Collaborating with engineers and scientists to develop innovative ceramic applications in different industries.
  • Ensuring compliance with safety regulations and environmental standards in ceramic manufacturing.

4. How do I become a ceramic engineer? 

Answer: To become a ceramic engineer, you typically need to follow these steps:

  • Obtain a bachelor's degree in ceramic engineering or a related field like materials science or chemical engineering.
  • Gain practical experience through internships or co-op programs in ceramic-related industries.
  • Pursue a master's or doctoral degree for advanced research and specialized knowledge.
  • Stay updated with the latest advancements in ceramic technology through workshops, conferences, and professional development programs.

5. What is the salary of a ceramic engineer in India per month? 

Answer: The salary of a ceramic engineer in India can vary depending on factors like experience, location, employer, and job role. On average, a ceramic engineer can earn a starting salary of around ?25,000 to ?40,000 per month. With experience and expertise, the salary can increase to ?60,000 or more per month. These approximate figures can vary based on individual circumstances and market trends.

Eligibilty

The candidates should have passed 10th Standard or equivalent from any recognized board of education

How to apply for Diploma in Ceramic Engineering

To apply for a Diploma in Ceramic Engineering, follow these steps:

  1. Research Institutions: Research educational institutions offering Diplomas in Ceramic Engineering programs. Look for reputable colleges or technical institutes known for their quality education and facilities in ceramic engineering.
  2. Check Eligibility: Ensure that you meet the eligibility criteria for admission. Typically, candidates need to have completed their 10th standard or equivalent examination from a recognized board. Some institutions may have specific subject requirements or minimum percentage criteria, so verify all the necessary details.
  3. Obtain Application Form: Once you have identified the institution of your choice, obtain the application form. You can usually obtain the form online through the college's website or their admission office.
  4. Fill out the Application Form: Carefully fill in all the required information in the application form. Provide accurate personal details, academic records, and any additional documents requested by the institution.
  5. Attach Documents: Gather all the necessary documents as mentioned in the application form, including academic certificates, identity proof, passport-sized photographs, and any other required certificates.
  6. Pay Application Fee: Some institutions may require an application fee. Pay the fee through the specified payment method mentioned in the application form.
  7. Submit Application: Submit the completed application form and all the relevant documents to the college's admission office within the specified deadline.
  8. Entrance Examination (if applicable): Some institutions may conduct entrance examinations for diploma programs. If required, prepare for and appear for the entrance test as per the schedule.
  9. Await Results: Wait for the college to announce the results of the admission process. If selected, you will receive further instructions regarding the enrollment process.
  10. Complete Admission Formalities: If your application is accepted, complete the necessary admission formalities, pay the required fees, and secure your seat in the Diploma in Ceramic Engineering program.

Diploma in Ceramic Technology Syllabus

The syllabus for the Diploma in Ceramic Engineering is as follows:

Semester 1:

  1. Applied Mathematics I
  2. Applied Physics-I
  3. Introduction To Glass & Ceramic Engineering
  4. Engineering Drawing
  5. Introduction To Computer

Semester 2:

  1. Applied Mechanics 1
  2. Applied Mathematics 2
  3. Applied Physics 2
  4. Applied Chemistry 1
  5. Workshop Practice

Semester 3:

  1. Applied Chemistry-II
  2. Fundamental Electrical Engineering
  3. Mechanical and Civil Engineering
  4. Industrial Operations
  5. Pottery & Refractory
  6. Modelling & Mould Lab

Semester 4:

  1. Glass and Enamel
  2. Glass and Ceramic
  3. Engineering Drawing
  4. Industrial Calculations and Environmental Pollution
  5. Fuels, Furnaces & Pyrometry
  6. Element of Geology
  7. Industrial visits

Semester 5:

  1. Industrial Management
  2. Modern Ceramics and its Application
  3. Pottery and Porcelain-I
  4. Refractory Technology
  5. Glass Technology-I
  6. Pottery and Refractory Lab
  7. Glass and Ceramic Workshop
  8. Industrial Training

Semester 6:

  1. Environmental Education & Disaster management
  2. Cement and Lime
  3. Ceramic Machinery and Furnace Design
  4. Glass & Ceramic Engineering Drawing-II
  5. Elective subjects
  6. Labs
  7. Projects
  8. Industrial Visits

Which career I can pursue?