Academic literature on the topic 'Milling machine FNG 32'

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Journal articles on the topic "Milling machine FNG 32"

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Supriyono, Noor Rahmad Tri Hermawan, Tri Widodo Besar Riyadi, Waluyo Adi Siswanto, and Wijianto. "The Effect of Water Content on Particle Characterization of Bamboo Charcoal Resulted from Ball Milling." Materials Science Forum 1029 (May 2021): 189–96. http://dx.doi.org/10.4028/www.scientific.net/msf.1029.189.

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The objective of this research is to study the effect of water content on particle characterization and agglomeration of bamboo charcoal resulted from ball milling process. The characterization is determined by the particle size and the morphology of the particle. The milling was performed in cylinder vial of stainless steel. The element of milling is steel balls. The dimension of the cylinder vial was 120 mm length and 1-inch diameter, while the ball diameter was 5/32 inch. The charcoal resulted from pyrolysis was milled manually then strained with a filter size of 200 meshes. The particles passing the strainer were washed in water and then dried to obtain 25%, 28%, 32% and 35% water content. Then they were put together with the milling balls into cylinder vial. There were four vials with a water content of 25%, 28%, 32% and 35% respectively for milling process. Every vial contained 11 grams of bamboo charcoal and approximately 299 grams of steel balls. It represents 1/3 of vial volume for charcoal, 1/3 of vial volume for ball and 1/3 of vial volume for empty space. Two type tests were conducted. The first test was to run the milling machine at 700 rpm for 2 million cycles and the second test was to run the milling machine at 1000 rpm for 3 million cycles. Particulate characterization was done by a particle size analyzer (PSA), a scanning electron microscope (SEM) with energy dispersive X-Ray (EDX). The results showed that the water content does not have any influenced to the particle size. For the both test the particle sizes are in the range of 100 nm or less to more than 1 μm. However, the second test produces smaller particles and a higher number of smaller particles due to higher impact energy and longer milling time. The two tests inform that agglomeration does not happen by having wet milling. The dominant element of the bamboo charcoal is carbon with more than 90% in number.
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Koval’ova, Iryna. "DEVICE FOR INCREASING THE PRODUCTIVITY OF MILLING MACHINE OPERATION WITH CNC MCV-1000." ENGINEERING, ENERGY, TRANSPORT AIC, no. 3(106) (November 27, 2019): 73–79. http://dx.doi.org/10.37128/2520-6168-2019-3-9.

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Тhe work of the milling machine with the CNC MCV-1000 is considered. A device that significantly improves the productivity of this machine when performing the operation of milling round holes along the outer surface of the pipe with a certain step is shown. The results obtained by experimental means are indicated. Analysis of current trends in the development of machine tool industry indicates the need to increase the technical level of metalworking equipment with developed complexes of technological operations. A significant role is played by the equipment of metalworking machines, namely, specialized devices for various types of processing. The goal is to increase metalworking productivity. As a result of the analysis of existing devices revealed their advantages and disadvantages. A new design of the device for the simultaneous processing of four pipes with a length of up to 1000 mm and a diameter of 32 mm on a MCV-1000 CNC milling machine is proposed. This device is designed for reliable fixation of four pipes simultaneously for the operation of milling round holes along the outer surface of the pipe with a certain step. The introduction of this device showed a double increase in productivity compared with the previous device, which was used at the enterprise.
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Sartika, Novi Dewi, and Zuhriyah Ramdhani. "KAJIAN PENGGUNAAN MESIN PENGGILING MOBILE TERHADAP MUTU BERAS UNTUK BEBERAPA VARIETAS PADI DI KABUPATEN SUMBAWA BARAT (Study on Mobile Milling Machine Utilization in Rice Quality of Several Paddy Variety at Sumbawa Barat Regency)." Jurnal Ilmiah Rekayasa Pertanian dan Biosistem 6, no. 1 (March 22, 2018): 53–59. http://dx.doi.org/10.29303/jrpb.v6i1.72.

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Rice mill has a very important role, this role is reflected in the large number of rice mills that spread almost evenly throughout the rice production centers in Indonesia. The large number of rice mills scattered in some areas does not guarantee the quality of rice produced will be better. One of the areas that have used rice milling technology is Sumbawa Barat Regency. The grinding machines used in this area are mobile. Therefore, this study aims to analyze the effect of rice varieties used on the quality of rice from milling, to determine the quality of rice produced, and to determine the yield of the milling. This research was conducted by grinding Ciherang varieties, Cigelis and Infari 32 using mobile grinding machine each three replications. The result of this research showed that rice varieties had significant effect on yield and losses of milling. Infari 32 varieties yield average yield of 69.41%, followed by Cigelis varieties 62.75% and Ciherang 59.36%. Infari 32 varieties also resulted in the lowest shrinkage of 1.46% compared to Ciherang (3.48%) and Cigelis (2.95%). Keyword: Grinding machine mobile, quality of rice, rice, yield milled ABSTRAK Penggilingan padi memiliki peran yang sangat penting, peranan ini tercermin dari besarnya jumlah penggilingan padi yang menyebar hampir merata di seluruh daerah sentra produksi padi di Indonesia. Besarnya jumlah penggilingan padi yang tersebar di sejumlah daerah tidak menjamin kualitas beras yang dihasilkan akan lebih baik. Salah satu daerah yang telah menggunakan teknologi penggilingan padi adalah Kabupaten Sumbawa Barat. Mesin penggiling yang digunakan di daerah ini bersifat berpindah-pindah (mobile). Maka dari itu, penelitian ini bertujuan untuk menganalisis pengaruh dari varietas padi yang digunakan terhadap mutu beras hasil penggilingan, menentukan kualitas/mutu beras yang dihasilkan, dan menentukan rendemen dari hasil penggilingan. Penelitian ini dilakukan dengan menggiling varietas padi Ciherang, Cigelis dan Infari 32 menggunakan mesin penggiling mobile masing-masing tiga kali ulangan. Hasil penelitian yang diperoleh adalah varietas padi berpengaruh nyata terhadap rendemen dan susut penggilingan. Varietas Infari 32 menghasilkan rendemen tertinggi rata-rata 69.41%, disusul oleh varietas Cigelis 62.75% dan Ciherang 59.36%. Varietas Infari 32 juga menghasilkan susut paling rendah 1.46% dibandingkan Ciherang (3.48%) dan Cigelis (2.95%). Kata Kunci: Mesin penggiling mobile, mutu beras, rendemen giling, padi
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Rajadurai, A., Gouthama Gouthama, and T. Ashokkumar. "A Study on Ni-Fe Ball Milled Spark Plasma Sintered Sample." Material Science Research India 8, no. 1 (June 25, 2011): 157–64. http://dx.doi.org/10.13005/msri/080123.

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Mechanical alloying through high energy ball milling was used to produce 40wt.%Ni-Fe alloy powder of average particle sizes 80 μm and 25 μm respectively. High Energy Planetary ball milling at room temperature was performed for various time durations of 16, 32 and 64 hours. Sintering was carried on DR.SINTER.LABTM (SPS 515S) machine. Samples were sintered at constant temperature of 650°C and pressure of 30 MPa for all samples. This study exhibits in same alloy, but increases of milling hours, the densification of the sintered samples decreases and also porosity of the sample increases. This may be due to the reasons of increases in the surface area of the milled nanopowder (ie. Reduction of particle size), low green body density of long milling powders by agglomeration of powders and oxidation of powders during a milling process. However, this study revealed that in the same alloy with increasing milling hours, required more temperature and pressure for perfect densification. Densification of 85.4 % was achieved in 16 hours milled sample.
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Ramadhan, Wachid Nur, and Setuju Setuju. "PENGEMBANGAN BAHAN AJAR TEKNIK PEMESINAN FRAIS UNTUK SISWA KELAS XI JURUSAN TEKNIK PEMESINAN DI SMK MUHAMMADIYAH PRAMBANAN." TAMAN VOKASI 4, no. 2 (December 1, 2016): 229. http://dx.doi.org/10.30738/jtvok.v4i2.507.

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Passivity of students in learning, together with limited productive lesson teaching materials particularly in milling machine techniques, lead to a low level understanding of students in particular subjects. Development of teaching materials in the form of module is expected to be the solution of existing learning problems. This study is purposed to determine the development of teaching materials in the form of milling machine techniques modules and measure the quality of the feasibility of such modules through an assessment by experts and students. Thirty two students of 12th grade at Machine Engineering Department of SMK Muhammadiyah Prambanan were involved as the object of this study. The development model used in this study is analysis, design, development and implementation. Data analysis techniques used in the form of descriptive analysis. The results of this study are the development of teaching materials in the form of 4 stages modules (analysis, design, development and implementation). Experts’ assessment shows that this module is qualified and appropriate to be used in learning process. While the assessment by 32 students known that the average score in graphic, content and language is 21.28 with quality category of "very good", 41,50 with quality category of "good", 21.12 with quality category "very good". A total of 53.12% of students expressed that module quality is "good". From the data, it can be concluded that the module of teaching materials development in milling machine techniques is "good" so that it is appropriate in learning process at SMK MuhammadiyahPrambanan.
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Zhang, Jing, Wei Qiang Gao, Ze Hua Hu, Xiu Wen Huang, and Jun Hua Song. "The Applied Research of Four Polynomial Acceleration and Deceleration Control Method in Multi-Axis DSP Motion Controller." Advanced Materials Research 542-543 (June 2012): 567–72. http://dx.doi.org/10.4028/www.scientific.net/amr.542-543.567.

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In traditional NC systems, the linear, index and S curve acceleration and deceleration control methods exist lots of problems that jerk is discontinuous or algorithm is too complex, seeking a more superior acceleration and deceleration control method to make up these shortages is needed. In this paper, the Four polynomial acceleration and deceleration control method is researched further, some contrast experiments have been done on NC terrace which is based on 32 bit floating point multi-axis DSP motion controller, and the superiority of this method and the practicability in NC field are analysed by processing two hemispheres with H600 CNC engraving and milling machine.
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Wen, Liang, Chang Qi Yang, Qiu Lin Niu, Wei Wei Ming, and Ming Chen. "Experimental Study on the Formation Mechanism of Serrated Chip of TC11 Titanium Alloy." Key Engineering Materials 693 (May 2016): 767–74. http://dx.doi.org/10.4028/www.scientific.net/kem.693.767.

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Serrated chips were a universal phenomenon and it had a significant effect on cutting process. In this paper, single tooth dry cutting of TC11 titanium alloy were conducted on a five-axis CNC machine using Stellram milling cutter with a diameter of 32 mm. Both chip macroscopic morphology and microcosmic morphology of TC11 titanium alloy were studied in-depth examining the impact of cutting speed and feed rate to the serrated chips. The results showed that: with the increase of cutting speed, the chip morphology of titanium alloy TC4 experienced a change process from the hair bar to a “C” shape and then become a long strip. The critical cutting speed of TC11 for serrated chips was found at 80 m/min and the critical feed rate to form serrated chip was defined as 0.05mm/z. With the increasing of cutting speed, the extent of chip serration was significantly enhanced. Increasing cutting speed can decrease the feed rate to form serrated chips.
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Rawangwong, Surasit, Worapong Boonchouytan, Jaknarin Chatthong, and Romadorn Burapa. "An Investigation of Optimum Cutting Conditions in Face Milling Mold Steel Affect the Surface Roughness and Tool Wear." Advanced Materials Research 931-932 (May 2014): 354–59. http://dx.doi.org/10.4028/www.scientific.net/amr.931-932.354.

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The purpose of this research was to investigate the effect of the main factors on the surface roughness in mold steels face milling by carbide tool for results obtained from the analysis used in the manufacture of molds and other parts of the industry. The etching experiment using semi-automated milling machine Obraeci Strojie brand FGV 32 model. Concerning the material was steel grade AISI P20 mold with a hardness between 280-325 HB which used to insert carbide tool. The factors of a speed, feed rate and depth of cut were study. Preliminary experiments showed that the depth does not affect the surface roughness fix depth of cut at 0.5 mm. The experimental revealed that the factor affecting surface roughness was feed rate and speed. The roughness value trenced to reduce at lower feed rate and greater speed. It was possible determine a facing condition by means of the equation Ra = 1.29 - 0.000654Speed + 0.00305Feed rate leading this equation goes to use is in limitation speed 500-1,000 rpm. at feed rate 160-315 mm/min. From the experiment was confirming the result of a comparison between the equation and the percent accuracy with the margin of error. The result from the experiment of mean absolute percentage error (MAPE) of the equation of surface roughness was 3.27% which was less than the margin of error and was acceptable. The pattern of wear was similar to mechanical fatigue cracking. It may be due to the verious tip of the cutting tool or an impact and flank wear as cutting tool materials resistant to wear less.
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Mulato, Sri, Sukrisno Widyotomo, and Hadi Karia Purwadaria2. "Performance of Disk Mill Type Mechanical Grinder for Size Reducing Process of Robusta Roasted Beans." Pelita Perkebunan (a Coffee and Cocoa Research Journal) 23, no. 3 (December 31, 2006). http://dx.doi.org/10.22302/iccri.jur.pelitaperkebunan.v23i3.39.

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One of improtant steps in secondary coffee processing that influence on final product quality such as consistency and uniformity is milling process. Usually, Indonesian smallholder used "lumpang" for milling coffee roasted beans to coffee powder product which caused the final product not uniformed and consistent, and low productivity. Milling process of coffee roasted beans can be done by disk mill type mechanical grinder which is used by smallholder for milling several cereals. Indonesian Coffee and Cocoa Research Institute have developed disk mill type grinding machine for milling coffee roasted beans. Objective of this research is to find performance of disk mill type grinding machine for size reducing process of Robusta roasted beans from several size dried beans and roasting level treatments. Robusta dried beans which are taken from dry processing method have 13—14% moisture content (wet basis), 680—685 kg/m3 density, and classified in 3 sizes level. The result showed that the disk mill type of grinding machine could be used for milling Robusta roasted beans. Machine hascapacity 31—54 kg/h on 5,310—5,610 rpm axle rotation and depend on roasting level. Other technical parameters were 91—98% process efficientcy, 19—31 ml/ kg fuel consumption, 0.3—1% slips, 50—55% particles had diameter less than 230 mesh and 38—44% particles had diameter bigger than 100 mesh, 32—38% lightness was increased, 0.6—12.6% density was decreased, and solubility of coffee powder between 28—30%. Cost milling process per kilogram of Robusta roasted beans which light roast on capacity 30 kg/hour was Rp362.9. Key words : Coffee roasted, Robusta, disk mill, mechanical grinder, size reduction.
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Purnama, Widhaya Bastian, Indri Yaningsih, and Heru Sukanto. "The Utilizing Cutting Fluid And Feeding Rate Effect To The Surface Hardness And Precission Of Aluminum Material Using Cnc Milling Machine." Mekanika: Majalah Ilmiah Mekanika 16, no. 1 (March 5, 2017). http://dx.doi.org/10.20961/mekanika.v16i1.35049.

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There are many factor affecting the quality of product that are produced from milling machine process. The quality is mostly about surface roughness and precision. Those affecting factors are the selection of cutting parameter and use of cutting fluid. The research is done in order to know the effect of using cutting fluid and feed rate to aluminum on surface roughness and precision using Milling CNC machine. This research uses milling CNC Mitsubishi M70 machine. The free variables of feed rate are 20, 32, 45, 69, 108 mm/min. Each feed rate variations are given cutting fluid and no- cutting fluid treatment. The cutting fluid used is bromus oil which is mixed with water. The tests performed were surface roughness test, precision test. The result of this study shows that feed rate is in line with surface roughness. The use of cutting fluid affects surface roughness. The surface roughness score at feed rate variation using coolant treatment are 20, 32, 45, 69, 108 mm/min shows the surface roughness score of 0,442; 0,484; 0,553; 0,643; 0,797 μm. surface roughness score without cutting fluid treatment reveals the score of 0,470; 0,517; 0,582; 0;662; 0,847 μm. According to statistical analysis result using two way ANOVA, it can be concluded that the use of cutting fluid and feed rate affect precision at 95% trust rate. The measurement of A dimension using cutting fluid in the variation of feed rate 20, 32, 45, 69, 108 mm/min shows the precision rate of 99,999348; 99,99929; 99,999304; 99,999261; 99,9992 %. While, the variation without cutting fluid treatment reveals the precision rate at 99,999188 ; 99,999184; 99,999037; 99;998884; 99,998684 %.
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Dissertations / Theses on the topic "Milling machine FNG 32"

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Holas, Jiří. "Modernizace řízení frézky FNG." Master's thesis, Vysoké učení technické v Brně. Fakulta strojního inženýrství, 2021. http://www.nusl.cz/ntk/nusl-442843.

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This thesis deals with a proposal modernisation of control and electroinstalation of the milling machine FNG 32. The thesis is divided into several sections: The first section is dedicated to the research of the milling machine and the description of its current condition. The second section deals with possible options of retrofitting and with the components.The third section includes the technical and economical evaluation and the selection of the solution. In the next section, the selected components are described and an electronic documentation of the machine has been created in EPLAN. In the last section, a proposal of control of the milling machine has been created with the help of the TwinCAT development environment provided by Beckhoff company.
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Book chapters on the topic "Milling machine FNG 32"

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Nithyanandam, Ganesh Kumar, Saravana Kumar Sellappan, and Selvaraj Ponnumuthu. "A Cyber-Physical System Improves the Quality of Machining in CNC Milling Machine—A Case Study." In Advances in Forming, Machining and Automation, 421–29. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-32-9417-2_34.

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Yohannes, Gizaw, Habtamu Beri, and Perumalla Janaki Ramulu. "Fabrication of Hexagonal Bar from Aluminum Alloy AA6063 Scrap by Frictional Stir Back Extrusion on Milling Machine." In Lecture Notes on Multidisciplinary Industrial Engineering, 733–42. Singapore: Springer Singapore, 2019. http://dx.doi.org/10.1007/978-981-32-9072-3_61.

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