Klongboonjit, Sakon
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Preferred name
Klongboonjit, Sakon
Alternative Name
Klongboonjit, S.
Klongboonjit, Sakol
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Email
sakon.kl@kmitl.ac.th
8 results
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Item type:Publication, Machine components clustering with DSM and repeating method: Case study of a soil mixing machine(2018-08-14) ;Kongsin, TanongsakIn this study, components of the machine are analyzed to group all components into modular groups with a case study of a soil mixing machine. The study begins by creating a design structure matrix of all components. Next, the design structure matrix is transferred into a distance matrix of all components with Jaccard method. After that, the equation of complete linkage must be applied to change the distance matrix to a tree dendrogram for showing the relationship of machine components and dependent coefficient. With this tree dendrogram, six clusters are arranged:- the 1<sup>st</sup> cluster has 8 modules at the lowest dependent coefficient, the 2<sup>nd</sup> cluster has 7 modules, the 3<sup>rd</sup> cluster has 6 modules, the 4<sup>th</sup> cluster has 5 modules, the 5<sup>th</sup> cluster has 4 modules, and the 6<sup>th</sup> cluster has 2 modules at the highest dependent coefficient. Finally, the 1st cluster with 8 modules is considered to be the most proper cluster for this soil mixing machine by applying the repeating method to analyze all six clusters. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Convection in deep vertically shaken particle beds. II. The relationship between convection and internal wave propagation(2008-01-01); Campbell, C. S.The convective motion in deep vertically shaken beds is not continuous but occurs only during a brief portion of a cycle that roughly repeats over three periods of vibration. The convection is coordinated by a series of waves that propagate through the bed, a compression wave formed as the flask's bottom pushes upward against the bottom of the bed, and two expansion waves: A Type 1 expansion wave that is the reflection of the compression wave and a Type 2 expansion wave that forms as the flask's bottom moves away from the bottom of the bed. Convection only is observed after Type 1 expansion wave has passed the convective zone, relaxing the stresses in the bed and leaving the particles free to move. However the convective motion is confined to the region above Type 2 wave and convection disappears as a Type 2 wave passes. © 2008 American Institute of Physics. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Convection in deep vertically shaken particle beds. III. Convection mechanisms(2008-01-01); Campbell, Charles S.Convection in a deep vertically vibrated two-dimensional cell of granular material occurs in the form of counter-rotating cells that move material from the walls to the center of the channel and back again. At least for deep beds, where for much of the cycle, particles are in long duration contact with their neighbors, convection only appears for a short potion of every third vibrational period. That period is delimited by the interaction of three types of internal waves, a compression wave, and two types of expansion waves. Four mechanisms are identified that drive the four basic motions of convection: (1) particles move upward at the center as the result of compression wave, (2) downward at the wall as a combined effect of frictional holdback by the walls and the downward pull of gravity, (3) from the center to the walls along the free surface due to the heaping of the bed generated by the compression wave, and (4) toward the center in the interior of the box to form the bottom of convection rolls due to the relaxation of compressive stresses caused by an expansion wave. Convection only occurs when the conditions are right for all four mechanisms to be active simultaneously. © 2008 American Institute of Physics. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Machine Component Clustering with Mixing Technique of DSM, Jaccard Distance Coefficient and k-Means Algorithm(2020-04-01) ;Kongsin, TanongsakThis study aims to introduce a design method of Jaccard Distance Coefficient with k-Means algorithm for machine component clustering into independent modules so that a machine can be easily modified to achieve its requirement functions. In this study, Jaccard Distance Coefficient is firstly applied to generate relation matrices. After that, six results of distance coefficients and their clusters (2.02 with 2 clusters, 1.95 with 3 clusters, 1.89 with 4 clusters, 1.83 with 5 clusters, 1.75 with 6 clusters and 1.66 with 9 clusters) are calculated corresponding to relation matrices from the first step. Nextly, k-Means algorithm is used to take care of these six results for analyzing the most proper level coefficient. The result shows that the modules of 3 clusters with distance coefficient of 1.95 is the best outcome at the 0.7074 natural value. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Optimization of Gelatin Fibrous Scaffold Properties by PCL and CMC by Using Electrospinning Technique(2025-01-01) ;Meesa, BanpotThis study aimed to utilize the electrospinning process to produce cell culture scaffolds from blends of gelatin-polycaprolactone and carboxymethyl cellulose. The experimental design involved determining the optimal voltage and feed rate for various ratios of the gelatin-polycaprolactone-carboxymethyl cellulose blends, including 100/0/0, 90/5/5, 80/15/5, 70/25/5, and 60/35/5. Gelatin served as the primary raw material at a 10% ratio, while polycaprolactone was added at 10%, and carboxymethyl cellulose acted as a strengthening agent at 0.8%. The solvent used for gelatin and polycaprolactone was 2,2,2 -trifluoroethanol, while water was used for carboxymethyl cellulose. The raw materials were thoroughly mixed to ensure homogeneity, and the resulting blend was processed by an electrospinning machine under various conditions to form nanofiber scaffolds. The workpieces were then dried and left to relax for 48 hours before being baked at 140°C for 72 hours, resulting in high-quality fiber material. The experiment revealed that the fiber sizes ranged from 1.5 μm to 5.2 μm, with the swelling ratio of the GPC60:35:5 mixture at 11.65%, confirming the feasibility of using electrospinning to create effective scaffolds for cell culture applications. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Assessment of Potential Area for Solar Energy Investment in Northeastern Thailand by Entropy-TOPSIS Method(2024-01-01) ;Phonphoon, Phichata ;Kiatcharoenpol, TossapolAgriculture is one of the important engines of Thailand's food industrial growth however the cost of fossil energy is quite high for Thai farmers. Since Thailand has great solar potential, especially northeastern region, renewable energy sources of sunlight in this region should be considered to be another energy source for Thai agriculture. To assess and classify the potential of the investment in agricultural solar power systems of 20 provinces in Thailand's northeastern region, this study applied the combining method of Entropy Weight Method and TOPSIS with secondary data of solar irradiance, farmer household density, and income of farmer households. With this combining method, the results showed that farmer household density and income of farmer household were more influence on assessing and classifying the potential of this investment than solar irradiance. Finally, all 20 provinces were classified into four groups of Group A (A<inf>12</inf>, A<inf>2</inf>, A<inf>4</inf>, A<inf>1</inf>, and A<inf>10</inf>), Group B (A<inf>8</inf>, A<inf>9</inf>, A<inf>19</inf>, A<inf>3</inf>, and A<inf>15</inf>)), Group C (A<inf>17</inf>, A<inf>13</inf>, A<inf>18</inf> A<inf>16</inf>, and A<inf>20</inf>) and Group D (A<inf>6</inf>, A<inf>11</inf>, A<inf>7</inf>, A<inf>14</inf>, and A<inf>5</inf>) from the most potential province group for investment in agriculture solar power system to the least potential province group for investment in agriculture solar power system. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Convection in deep vertically shaken particle beds. I. General features(2008-01-01); Campbell, S.It has long been known that shaking a granular bed can produce circulating convection. This is the first in a series of papers that explores convection in beds a hundred particles or more deep. In such deep beds, the pressures are high enough that the particles remain in contact with their neighbors throughout much of the vibrational period. As such, they interact elastically and convection becomes dependent on the elastic properties of the bed. Changing the particle stiffness can dramatically alter the convection, and for very soft or very hard particles, eliminate it completely. In this paper, the effect of stiffness, bed geometry, and frictional properties on the global convection properties are assessed. © 2008 American Institute of Physics. - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Electrospinning of Nanofibers Effect of Gelatin by Polycaprolactone and Carboxymethyl Cellulose Degradation Characteristics(2025-01-01) ;Meesa, BanpotThis study aims to investigate the degradation of gelatin-based polycaprolactone and carboxymethyl cellulose scaffolds produced through the electrospinning technique for nanofiber scaffolds. The experimental design varies the voltage and feed rate for different ratios of gelatin, polycaprolactone, cellulose, and carboxymethyl cellulose, which are 100/0/0, 90/5/5, 80/15/5, 70/25/5, and 60/35/5, respectively. An organic solvent, 2,2,2-trifluoroethanol, which is a suitable solvent for gelatin, polycaprolactone, and carboxymethyl cellulose, is used, though the materials are dissolved in water to prepare the raw material for electrospinning. To characterize the scaffolds, their physical properties are analyzed, including fiber morphology and size, using scanning electron microscopy. The results reveal that as the polycaprolactone content increases from 0%, 5%, 15%, 25%, to 35%, with carboxymethyl cellulose maintained at 0% or 5%, the fiber size decreases from 1.5 μm to 5.2 μm. This suggests that electrospinning is effective for fabricating scaffolds from all three materials. Furthermore, the decomposition rates are optimized for GPC90/5/5, GPC80/15/5, and GPC70/25/5, which completely decompose within 36 hours. Additionally, GPC80/15/5 shows a good degradation rate, while GPC100/0/0 and GPC60/35/5 exhibit rapid degradation.
