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Mechanical Basic
ZOPJX-BXS portable mechanical transmission group experiment platform
Portable mechanical transmission portfolio experimental desk, mechanical transmission portfolio experimental platform, divides the mechanical transmission device into several modules, can be carried out, assembled and tested according to the requirements of the experimental teaching requirements, and has a strong variant function. It is an intelligent comprehensive experimental equipment.
1. Product Overview
This experimental bench is used for the "Innovative Combination Design and Analysis Experiment of Mechanical System Transmission Scheme " in mechanical majors in colleges and universities . It is a new modern experimental equipment with the basic value orientation of cultivating students' comprehensive design ability, innovation ability and engineering practice ability. This experimental bench uses a new innovative design concept to divide the mechanical transmission device into several modules. It can be diversified in selection, assembly and testing according to the requirements of experimental teaching. It has strong deformation function and is an intelligent comprehensive experimental equipment. 2. Mechanical innovation combination experimental platform experimental projects: 1. Mechanical system transmission scheme design 2. Mechanical system assembly tr*ning 3. Mechanical system motion analysis 4. Analysis of mechanical system innovation combination 3. Experiment content 1. Mechanical system transmission scheme design: (1) Selection of transmission type (2) Arrangement of transmission sequence (3) Allocation of transmission ratio (4) Calculation of characteristic parameters 2. Mechanical system assembly tr*ning: (1) Typical single-stage mechanical transmission transmission scheme assembly experiment: V Belt drive, roller ch*n drive, cylindrical gear drive , bevel gear drive, worm gear (top mounted) drive, worm gear (bottom mounted) drive, sheave mechanism drive, single cross universal coupling drive (2) Typical multi-stage mechanical transmission scheme Assembly experiment: transmission transmission (refer to CA6132 precision lathe nine-speed transmission design). (3) Typical multi-stage mechanical transmission scheme combinations and innovative experiments: bevel gear-transmission-ch*n-sheave combined transmission, transmission-belt combined transmission, ch*n-sheave combined transmission, belt-ch*n-sheave combined transmission, bevel Gear-sheave-belt combination transmission, bevel gear-sheave-ch*n combination transmission, belt-sheave combination transmission, ch*n-sheave combination transmission, etc. 3. Mechanical system motion analysis: analysis of mechanical transmission principles and characteristics, analysis of mechanical system stable operating conditions 4. Analysis of mechanical system innovative combinations: comparative analysis of the characteristics of different combination transmissions 5. The m*n configuration and technical parameters of the mechanical innovative combination experimental platform are as follows: 1. Most of the parts in the box are made of hard aluminum alloy, which has high processing precision and is light and convenient to use. 2. 1 set of assembly and disassembly tools. 3. Overall dimensions of the experimental box: 520mm×390mm×150mm (error ≤±10%). 4. Total weight of the experimental box: 22Kg (error ≤ ±10%). 5. Teacher teaching design system: Based on unity3d design, users can choose different interactive interface sizes according to computer configuration, and six levels of image quality can be selected. 4 types of cylindrical gear shafting components, 4 types of bevel gear shafting components, and 6 types of worm shafting components are av*lable for installation, disassembly, assembly, parts measurement (divided into shaft measurement and base measurement), assessment, etc. There are intelligent reminders during the steps of disassembly and assembly of parts. Students manually select the corresponding parts and move them to the shaft structure. Only by selecting the parts in the correct order can they be installed. The models in the software are all 3D models, produced by 3Dmax, and After rendering and polishing, the model looks the same as the real part. It has a non-standard parts library (8 types of parts), a standard parts library (12 types of parts), and a measurement tool library (steel ruler, vernier caliper) for disassembly and assembly. choose. The software is equipped with integrated electronic experiment assessment questions and instructions for the purpose, steps, and requirements of the experiment. When using the assessment function, questions are given for students to answer. When students finish answering the questions, assessment scores are given. There are 12 questions in total. Each question is set to 8 points (one of the questions is a multiple-choice question, accounting for 12 points). Only the selected The answer leads to the next question. The software needs to be able to rotate, zoom in and out in all directions to view its det*ls. The software must be on the same platform as a whole and must not be displayed as separate resources.
This experimental bench is used for the "Innovative Combination Design and Analysis Experiment of Mechanical System Transmission Scheme " in mechanical majors in colleges and universities . It is a new modern experimental equipment with the basic value orientation of cultivating students' comprehensive design ability, innovation ability and engineering practice ability. This experimental bench uses a new innovative design concept to divide the mechanical transmission device into several modules. It can be diversified in selection, assembly and testing according to the requirements of experimental teaching. It has strong deformation function and is an intelligent comprehensive experimental equipment. 2. Mechanical innovation combination experimental platform experimental projects: 1. Mechanical system transmission scheme design 2. Mechanical system assembly tr*ning 3. Mechanical system motion analysis 4. Analysis of mechanical system innovation combination 3. Experiment content 1. Mechanical system transmission scheme design: (1) Selection of transmission type (2) Arrangement of transmission sequence (3) Allocation of transmission ratio (4) Calculation of characteristic parameters 2. Mechanical system assembly tr*ning: (1) Typical single-stage mechanical transmission transmission scheme assembly experiment: V Belt drive, roller ch*n drive, cylindrical gear drive , bevel gear drive, worm gear (top mounted) drive, worm gear (bottom mounted) drive, sheave mechanism drive, single cross universal coupling drive (2) Typical multi-stage mechanical transmission scheme Assembly experiment: transmission transmission (refer to CA6132 precision lathe nine-speed transmission design). (3) Typical multi-stage mechanical transmission scheme combinations and innovative experiments: bevel gear-transmission-ch*n-sheave combined transmission, transmission-belt combined transmission, ch*n-sheave combined transmission, belt-ch*n-sheave combined transmission, bevel Gear-sheave-belt combination transmission, bevel gear-sheave-ch*n combination transmission, belt-sheave combination transmission, ch*n-sheave combination transmission, etc. 3. Mechanical system motion analysis: analysis of mechanical transmission principles and characteristics, analysis of mechanical system stable operating conditions 4. Analysis of mechanical system innovative combinations: comparative analysis of the characteristics of different combination transmissions 5. The m*n configuration and technical parameters of the mechanical innovative combination experimental platform are as follows: 1. Most of the parts in the box are made of hard aluminum alloy, which has high processing precision and is light and convenient to use. 2. 1 set of assembly and disassembly tools. 3. Overall dimensions of the experimental box: 520mm×390mm×150mm (error ≤±10%). 4. Total weight of the experimental box: 22Kg (error ≤ ±10%). 5. Teacher teaching design system: Based on unity3d design, users can choose different interactive interface sizes according to computer configuration, and six levels of image quality can be selected. 4 types of cylindrical gear shafting components, 4 types of bevel gear shafting components, and 6 types of worm shafting components are av*lable for installation, disassembly, assembly, parts measurement (divided into shaft measurement and base measurement), assessment, etc. There are intelligent reminders during the steps of disassembly and assembly of parts. Students manually select the corresponding parts and move them to the shaft structure. Only by selecting the parts in the correct order can they be installed. The models in the software are all 3D models, produced by 3Dmax, and After rendering and polishing, the model looks the same as the real part. It has a non-standard parts library (8 types of parts), a standard parts library (12 types of parts), and a measurement tool library (steel ruler, vernier caliper) for disassembly and assembly. choose. The software is equipped with integrated electronic experiment assessment questions and instructions for the purpose, steps, and requirements of the experiment. When using the assessment function, questions are given for students to answer. When students finish answering the questions, assessment scores are given. There are 12 questions in total. Each question is set to 8 points (one of the questions is a multiple-choice question, accounting for 12 points). Only the selected The answer leads to the next question. The software needs to be able to rotate, zoom in and out in all directions to view its det*ls. The software must be on the same platform as a whole and must not be displayed as separate resources.
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