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Manufaktur Handle Lifter Dengan Material SS400 Abdul Rahman Agung Ramadhan; Abdul Muchlis; Patrik Agung Tri Fajar
Venus: Jurnal Publikasi Rumpun Ilmu Teknik  Vol. 3 No. 1 (2025): Venus: Jurnal Publikasi Rumpun Ilmu Teknik
Publisher : Asosiasi Riset Ilmu Teknik Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.61132/venus.v3i2.715

Abstract

A lifter is a device used to lift and move objects or materials from one place to another. Lifters are commonly used in the industrial world, examples of lifters are forklifts, cranes, stackers, drum lifters and hydraulic lifters. A lifter is a device used to lift and move heavy objects such as wooden pallets, boxes, or other industrial goods. One of the important components of a lifter is the handle which functions as a hand grip to move the lifter. A lifter handle is a handle or hand grip to push a lifter. The right material to use as a handle lifter is SS400. SS400 (Structural Steel) is a low carbon steel (mild steel) that complies with ASTM (American Society for Testing Materials) A36 or JIS (Japanese Industrial Standards) G3101 standards. The Handle Lifter manufacturing process includes the cutting process, namely cutting from an initial length of 6 meters to 150mm. The milling process is cutting lengths and thicknesses with a length of 135mm with a first thickness of 13mm, a second thickness of 15mm and a third thickness of 13mm. Drilling process, where this process involves making a hole with a diameter of 10mm. The grinding process is a finishing process that aims to smooth uneven surfaces. And finally, Quality Control is carried out to check whether or not the goods being produced are suitable. Based on the calculation results, the productivity value for making Handle Lifters in 1 day was obtained, where the working hours used were 8 hours, resulting in 17 Handle Lifters.
TRANSFORMASI DIGITAL UNTUK UMKM :STRATEGI BRANDING DAN PEMASARAN Abdul Muchlis; Wendra Haudi; Andre Pratama
 Jurnal Abdi Masyarakat Multidisiplin Vol. 3 No. 3 (2024): Desember: JURNAL ABDI MASYARAKAT MULTIDISIPLIN
Publisher : Asosiasi Dosen Muda Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56127/jammu.v3i3.1881

Abstract

Pengabdian kepada masyarakat ini bertujuan untuk memberikan pembekalan dan pelatihan kepada pelaku UMKM mengenai transformasi digital, khususnya pada strategi branding dan pemasaran berbasis data, guna meningkatkan daya saing mereka di pasar lokal maupun global. Kegiatan pengabdian masyarakat ini merupakan bentuk kerjasama antara Universitas Gunadarma dengan Asosiasi Dosen Muda Indonesia (ADMI). Program ini dilaksanakan selama tahun ajaran PTA 2024-2025, dengan metode pertemuan yang dilakukan secara online dan offline, disesuaikan dengan kebutuhan pelaku UMKM. Target luaran dari program ini adalah memberikan pemahaman mendalam kepada UMKM terkait pentingnya memanfaatkan data untuk pengambilan keputusan strategis dalam branding dan pemasaran. Teknis pelaksanaan kegiatan pengabdian masyarakat (abdimas) ini mengintegrasikan bidang unggulan Universitas, khususnya pada aspek Teknologi Informasi dan Komunikasi (TIK). Program ini melibatkan 4 Fakultas dengan 10 bidang ilmu terkait, yaitu sistem informasi, sistem komputer, akuntansi, manajemen, teknik elektro, teknik industri, teknik mesin, teknik sipil, ilmu komunikasi, dan Sastra Inggris. Kegiatan ini mencakup pelatihan tentang analisis data pelanggan, pengelolaan identitas merek digital, hingga penerapan strategi pemasaran yang didukung oleh data untuk meningkatkan efektivitas kampanye branding UMKM.
Pemanfaatan CRISPR dalam Pengembangan Vaksin Generasi Baru terhadap Virus Tropis Bagus Kusuma Ardi; Abdul Muchlis
Journal of New Trends in Sciences Vol. 3 No. 2 (2025): Journal of New Trends in Sciences
Publisher : CV. Aksara Global Akademia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.59031/jnts.v3i2.793

Abstract

The development of vaccines for tropical viruses such as dengue and Zika presents a significant challenge in global health. These viruses not only cause serious health complications but also impact health systems and economies in tropical countries. CRISPR/Cas9 technology offers an innovative solution to accelerate vaccine development by enabling precise gene editing. This study aims to explore the potential of CRISPR in accelerating the design and production of vaccines for tropical viruses. The method used in this study is a laboratory-based experimental design involving genetic engineering, with dengue and Zika virus genome models. The first step involves identifying virus target genes using the CRISPR/Cas9 system, which allows the detection of specific genes involved in pathogenesis and immune responses. Subsequently, genetic constructs are designed to generate vaccine candidates that can efficiently and precisely target pathogens. The resulting vaccines are tested in vitro in cell cultures to observe immune responses and their effectiveness against virus infections. The results show that CRISPR not only accelerates the process of identifying and engineering vaccine genes but also significantly improves vaccine production efficiency. CRISPR-based vaccines demonstrate higher immunogenicity compared to conventional methods, thus holding potential as the foundation for developing faster and safer next-generation vaccines. However, this study also identifies challenges related to off-target effects and the efficient delivery of CRISPR components, which require further research to ensure safety and efficacy in human clinical applications.