Focus : Main vision is to integrating technical expertise and financial insight to enhance operations, mitigate risks, and boost profitability across industries.
Specifications : Finance
Sports, travelling, and playing with numbers
Versatile Mechanical Engineer with an MBA in Finance, adept at merging technical expertise with financial insight to optimize operations, mitigate risks, and drive profitability across diverse industries. Enthusiast in managing sports events, crowd management, cultural events and university fest.
The report titled "Comprehensive Analysis of GST Attributes and Fraud Prevention in the Commercial Tax Sector" provides an in-depth exploration of the Goods and Services Tax (GST) system in India, focusing on the commercial tax sector and fraud prevention mechanisms. Conducted as part of an MBA summer internship, the study aims to understand various aspects of GST implementation, tax evasion strategies, and measures to prevent fraud. The report delves into key GST attributes, such as input tax credit (ITC), GST structure, and the challenges faced by tax authorities in curbing fraud. A survey conducted within the Koramangala region of Bangalore explores the reasons behind delays in GST return filing and tax evasion methods like mismatching invoices and over-claiming ITC. The study identifies gaps in the GST framework and offers recommendations for improving tax compliance, enhancing the infrastructure of the GST Network (GSTN), and integrating the system with income tax and banking data to mitigate evasion risks. Ultimately, the report highlights the importance of legislative reforms and technological advancements in strengthening GST compliance and fraud prevention in India.
The internship report titled "3D Printing and Injection, Blow Mould Products at ABNB Innovations" focuses on the author’s experience at ABNB Innovations, Bangalore. The report highlights the company's expertise in 3D printing and related services such as CAD/CAM design, new product development, and rapid prototyping. During the internship, the author learned about 3D printing technologies, including Fused Deposition Modeling (FDM), and gained hands-on experience with 3D modeling using SOLIDWORKS and slicing techniques with Cura software for preparing models for 3D printing. The report also discusses the significance of 3D printing in modern manufacturing, emphasizing its potential to disrupt traditional industries by enabling cost-effective, assembly-free production of complex components.
The project, titled "Design and Analysis of Power Transmitted Gear Assembled with Shaft," aims to design and analyze the components of a mechanical assembly that transmits power. The assembly consists of a spur gear, shaft, rectangular key, and bearings, all of which are designed to handle specific power transmission requirements. The project's main objective is to evaluate the stresses, deformation, and vibration characteristics of these components under operational loads. This is done using both theoretical design principles and advanced simulation techniques, including Finite Element Analysis (FEA).
The methodology begins with the theoretical design of the spur gear and shaft based on mechanical engineering principles. 3D models of the components are developed using SOLIDWORKS, and these models are used for finite element analysis in ANSYS. The FEA is performed to analyze stress distribution, deformation, and the natural frequencies of the assembly. Modal analysis is also conducted to identify the various modes of vibration, which provides critical insights into the system’s dynamic behavior under load.
The analysis reveals that the maximum stress in the gear occurs at 112.59 MPa, and the maximum deformation is 0.13891 mm. Six vibration modes were identified, with frequencies ranging from 798.91 Hz to 2816 Hz. The results demonstrate that the design can handle the specified power transmission requirements. Overall, the project successfully applies modern computational tools to validate the mechanical design of the assembly, ensuring its performance in real-world applications.
The internship report titled "3D Printing and Injection, Blow Mould Products at ABNB Innovations" documents the experience gained by the author, Mohammed Azeem Savadatti, during an internship at ABNB Innovations, Bangalore. The focus of the internship was on understanding 3D printing technologies and the production of various products using these techniques. ABNB Innovations is a service provider offering a range of industrial and academic solutions, including CAD/CAM design, product development, rapid prototyping, and 3D printing.
The report outlines the various activities undertaken during the internship, including the development of 3D models using SOLIDWORKS software and the subsequent slicing of these models for 3D printing using CURA software. The slicing process involves converting the 3D model into layers, which are then printed sequentially using Fused Deposition Modeling (FDM) technology. Key aspects of the 3D printing process, such as setting printing parameters and optimizing the model for accurate production, are discussed in detail. The author also explores different 3D printing technologies such as Stereolithography (SLA), Selective Laser Sintering (SLS), and Direct Metal Laser Sintering (DMLS).
In conclusion, the internship provided valuable hands-on experience in 3D printing, allowing the author to learn the entire process, from design to production, of complex parts. The report emphasizes that 3D printing is a transformative technology, which has the potential to revolutionize manufacturing by enabling more efficient, cost-effective, and design-focused production methods.