环球电气之家-午夜精彩视频-中国专业电气电子产品行业服务网站!

產品分類

當前位置: 首頁 > 工業控制產品 > 運動控制 > 直流電動機

類型分類:
科普知識
數據分類:
直流電動機

直流電機應用注意事項

發布日期:2022-10-09 點擊率:72

MICROMO offers an extensive line of brush type DC motors ranging from 0.5 mW to 500 Watts in power. Here are some general notes on the application of our DC motors and some general guidelines for care and handling of precision motors.

Audible Noise: Audible noise is a concern in some types of motor applications. In many medical applications like infusion pumps or prosthetic devices, the patient can be very sensitive to the noise disturbance. Good design practice requires that the noise be limited as much as possible. In large machines, the combination of hundreds of DC motors and gears operating simultaneously can be very loud and distracting to the employees who have to work in close proximity to the machine

Quality Components: Probably the best method of insuring low audible noise in motors is to specify quality components. Motors using cheap or poorly fitted bearings are more likely to be noisy. Poorly designed or loose fitting brush sets can contribute to audibly noisy commutation. Manufacturers of inexpensive, high volume motors cannot reasonably be expected to concern themselves with quiet operation beyond some minimum standard, and the use of such motors in applications where quiet operation is important should be considered carefully. The designer must consider whether low cost takes precedence over quiet operation in the priorities of the customer.

Bearing Choice: The use of ball bearings without pre-load is a potential source of audible noise. Where the specific application permits, ball bearings should be pre-loaded. This means that the balls will not be able to move axially in the race and cause the minute intermittent rattling that can sometime be associated with unpreloaded ball bearings. Smaller ball bearings can be sensitive to heavy shaft loads. They are easily damaged during press fitting added components and by short radial or axial overloads. Care should be taken not to exceed the shaft loading ranges specified in the datasheets. A damaged ball bearing can be a significant source of audible noise and can effect motor life.

Sintered sleeve bearings are a very good choice when limiting audible noise if the application does not require the motor to endure significant continuous or intermittent changes in the shaft loading characteristics. The shaft of the motor actually rides on a thermodynamic film of lubrication and the reduced friction can limit audible noise. If the bearing is overloaded radially, however, this film breaks down and the shaft will grind the bearing down causing audible noise and reducing the operational lifetime of the motor.

Vibration: Rotor vibration can be a significant source of audible noise. Vibration and noise increases with speed. Even a slight imbalance in the rotor can cause major vibrations at speeds of 10,000rpm. FAULHABER Group DC motors have extremely low rotor vibration and an added precision balance can be specified to all but eliminate the effect of motor vibration on audible noise.

Brush Options: Copper-graphite type brushes tend to be both audibly and electrically noisier than precious metal systems. Graphite based brushes are capable of withstanding considerably higher current densities, however, and they are often required in an application for that reason. Where a choice is available for a specific application and audible noise is important, precious metal brushes are the better choice. MICROMO and the FAULHABER Group make every attempt to limit the brush noise in their motors with copper graphite commutation. The brushes are preground to fit the commutator profile and all motors are "burned in" overnight to smooth out the surface of the brushes, thereby reducing noise and increasing overall brush contact for maximum performance.

Electromagnetic Interference (EI)

DC motors are a source of electrical as well as audible noise. EMI (electro-magnetic interference) can be radiated by motor terminals and lead wires and may cause problems with other components in the vicinity of the motor. It is also possible for spikes to be coupled onto data lines or output lines from encoders. The result can be false data or encoder information. There are a number of methods that can be used to minimize EMI in motor applications. Like many other considerations in DC motor applications, each has its advantages and disadvantages and must be evaluated within the context of the application.

Motor Commutation: The most common source of EMI problems is the commutation of motors. At each commutation point, when the brush breaks contact with a commutator segment, the energy stored in the motor winding as a magnetic field causes an arc or voltage spike between the brush and the commutator segment. This occurs not only during normal commutation but also in situations where the brushes "bounce" on the rotating commutator. Coreless DC motors are typically less electrically noisy than iron core DC motors because of the lower armature inductance which in turn reduces the level of the arc energy. This arcing can be further mitigated with the addition of a capacitor ring, which serves to dissipate the energy through a capacitor and resistor series back into the motor coil.

Quality Components: We can't stress enough the importance of using quality components in any motor design. As was the case with audible noise, the use of cheap, poorly constructed motors adds to the electrical noise problem. "Open case" motors do not effectively block EMI radiated from the coil windings. Poorly fitted brush holders and inadequate brush tension contribute to radiated EMI as well.

Coreless motors: Coreless DC motors have much lower armature inductance than iron-core motors of comparable size. Since armature inductance is the primary cause of EMI problems, minimizing it through selection of coreless motors is recommended where EMI is a critical factor.

Lead Wires and Shielding: Motor lead wires should be placed as close together as possible so that EMI radiated from the two leads can cancel each other. This canceling effect can be improved by using so-called "twisted pairs" where the positive and negative lead wires are twisted together. Motor leads should be physically separated from data lines or encoder outputs to reduce the possibility of coupling motor noise onto them. This means that when using shielded pigtails, the feedback lines should be shielded separately from the motor leads. If noise is still causing problems with the encoder signals than it may be time to consider using a differential encoder to eliminate the effect of interference on the encoder. For information on the various types of shielding available, please contact a MICROMO applications engineer.  PWM switching noise is another source of EMI problems. Most commonly, PWM switching results in radiated noise from motor lead wires. Shielding and lead wire placement can also help mitigate the effect of PWM generated EMI.

Passive components: EMI problems can often be significantly reduced by the simple act of installing a capacitor across the motor terminals. In some types of applications, this method may not be suitable since a resonant circuit is created which can cause "ringing" problems near resonant frequencies. In these instances, an RC snubber network across the motor terminals may be more effective. Component values are not critical for motors driven with DC, but care must be taken in selecting components for PWM driven systems.

Motor Service Life

Operating Point: In most applications, the torque and speed demands placed upon a DC motor determine its overall operational lifetime. As the torque requirements on the motor increase, the current through the armature increases proportionally, thus increasing the current density at the brush-commutator interface. High current densities promote electro-erosion of brush and commutator materials, a limiting factor in motor service life. In addition, high rotational speeds shorten motor service life by accelerating mechanical wear.

Although each application has its own specific requirements to be addressed, it is usually advisable to operate a DC motor with precious metal brushes and commutator continuously at no more than 1/3 of its rated stall torque. Motors with graphite on copper commutation systems should be run continuously at no more than 1/2 of the motor's rated stall torque. These recommendations attempt to maximize motor service life. Some applications may not require the maximum lifetime that the motor has to offer. The applications engineers at MICROMO Electronics can help you determine the necessary service life and optimize the motor choice to fit the application.

Rotor Inductance: One of the factors limiting brush and commutator life is the inductance of the motor armature. During commutation, when current flows through a particular coil winding there is storage of energy in the form of a magnetic field. When the motor commutates and the current flow is switched to another winding, the magnetic field collapses and the resulting discharge of energy causes an arc between the commutator and brush. This arcing accelerates electro-erosion and decreases motor life. One could, theoretically, reduce the armature inductance of the motor windings by decreasing the number of turns in each armature segment. This lowers the torque constant of the motor, however, which increases the motor current for a given torque and, therefore, increases the current density at the brush-commutator interface. This is not recommended. To reduce the affect of inductance and arcing on motor lifetime, FAULHABER offers most motor series with a capacitor ring mounted to the commutator. The ring provides the equivalent effect of each winding connected in parallel with a small capacitor and resistor. The collapse of the magnetic field during commutation then serves to charge the capacitor rather than creating an arc between brush and commutator. The stored energy is released and dissipated back into the next coil phase in the commutation sequence. This technique, while slightly increasing the electrical time constant of the motor, dramatically increases motor service life. Make sure to inquire with the applications engineers at MICROMO to find out more about the use of capacitors to increase motor life.

Drive Profiles: Operating conditions other than torque and speed also affect service life. The application may require frequent starting and stopping or reversals of direction. Both situations result in periods of high current density and a resulting shortening of service life. A similar effect is seen in applications where pulse width modulated (PWM) drives are used. If the PWM frequency is too low, the motor is constantly accelerating and decelerating with an accompanying increase in current density. As a general rule, PWM frequencies of 20 KHz or higher are recommended for ironless core motors.

Environmental Considerations: Environmental conditions can have a profound effect on motor service life. One good example is the rapid drying and wear of graphite-based brushes in a vacuum or very dry environment. Very warm and dry conditions also hasten the breakdown of bearing and commutator lubricants. The ambient temperature has a cumulative effect on the motor's operational temperature and can lower performance by limiting the operational temperature range of the motor. External cooling by contact, air or forced air can produce significant gains in motor performance. At the opposite extreme, very cold conditions increase the viscosity of lubricants and cause the motor to run at a higher current. MICROMO has a wide variety of standard modifications for motors that will be experiencing temperatur or pressure extremes. These modifications usually consist of a change in the bearing and commutation lubrication but can also include special coil coatings for high temperature operation. Please consult with a MICROMO applications engineer to learn more about how to modify a motor for use in extreme temperature or pressures.

Shaft Loading: Shock loads and vibration contribute to the tendency of the brushes to "bounce" on the commutator, thus causing arcing and accelerated electro-erosion. Shock loads and vibration also accelerate bearing wear. Excessive axial or radial shaft loads decrease the life of bearings, sometimes significantly. MICROMO offers a variety of bearing options to compensate for different load types. In continuous duty applications with low radial shaft loads, sintered bearings are the inexpensive choice. For increased radial loads, ceramic bearings are available. Ball bearings are typically specified when the application calls for higher radial and axial shaft loads. Consult with a MICROMO applications engineer to determine which bearings type is most suitable for your application.

Quality and Workmanship: Lifetime performance is enhanced considerably by high standards of workmanship and quality. MICROMO and the FAULHABER Group are committed to producing the world's highest quality miniature drive systems, components and controls. Group-wide ISO certification and precise component design and assembly all help to maximize product lifetimes and value to the customer.

下一篇: PLC、DCS、FCS三大控

上一篇: 索爾維全系列Solef?PV

推薦產品

更多
主站蜘蛛池模板: 南昌旅行社_南昌国际旅行社_南昌国旅在线| 大白菜官网,大白菜winpe,大白菜U盘装系统, u盘启动盘制作工具 | 百度网站优化,关键词排名,SEO优化-搜索引擎营销推广 | 成都软件开发_OA|ERP|CRM|管理系统定制开发_成都码邻蜀科技 | 吸污车_吸粪车_抽粪车_电动三轮吸粪车_真空吸污车_高压清洗吸污车-远大汽车制造有限公司 | 重庆磨床过滤机,重庆纸带过滤机,机床伸缩钣金,重庆机床钣金护罩-重庆达鸿兴精密机械制造有限公司 | 带式压滤机_污泥压滤机_污泥脱水机_带式过滤机_带式压滤机厂家-河南恒磊环保设备有限公司 | 山东锐智科电检测仪器有限公司_超声波测厚仪,涂层测厚仪,里氏硬度计,电火花检漏仪,地下管线探测仪 | 精密模具-双色注塑模具加工-深圳铭洋宇通 | 干洗加盟网-洗衣店品牌排行-干洗设备价格-干洗连锁加盟指南 | 千淘酒店差旅平台-中国第一家针对TMC行业的酒店资源供应平台 | 海外整合营销-独立站营销-社交媒体运营_广州甲壳虫跨境网络服务 焊管生产线_焊管机组_轧辊模具_焊管设备_焊管设备厂家_石家庄翔昱机械 | 企小优-企业数字化转型服务商_网络推广_网络推广公司 | 利浦顿蒸汽发生器厂家-电蒸汽发生器/燃气蒸汽发生器_湖北利浦顿热能科技有限公司官网 | 贝壳粉涂料-内墙腻子-外墙腻子-山东巨野七彩贝壳漆业中心 | 深圳工程师职称评定条件及流程_深圳职称评审_职称评审-职称网 | 新密高铝耐火砖,轻质保温砖价格,浇注料厂家直销-郑州荣盛窑炉耐火材料有限公司 | 通风气楼_通风天窗_屋顶风机-山东美创通风设备有限公司 | 新疆散热器,新疆暖气片,新疆电锅炉,光耀暖通公司 | 喷码机,激光喷码打码机,鸡蛋打码机,手持打码机,自动喷码机,一物一码防伪溯源-恒欣瑞达有限公司 | 小学教案模板_中学教师优秀教案_高中教学设计模板_教育巴巴 | PCB厂|线路板厂|深圳线路板厂|软硬结合板厂|电路板生产厂家|线路板|深圳电路板厂家|铝基板厂家|深联电路-专业生产PCB研发制造 | 挤出熔体泵_高温熔体泵_熔体出料泵_郑州海科熔体泵有限公司 | 数控车床-立式加工中心-多功能机床-小型车床-山东临沂金星机床有限公司 | 塑料检查井_双扣聚氯乙烯增强管_双壁波纹管-河南中盈塑料制品有限公司 | PAS糖原染色-CBA流式多因子-明胶酶谱MMP-上海研谨生物科技有限公司 | 河南彩印编织袋,郑州饲料编织袋定制,肥料编织袋加工厂-盛军塑业 河南凯邦机械制造有限公司 | 伟秀电气有限公司-10kv高低压开关柜-高低压配电柜-中置柜-充气柜-欧式箱变-高压真空断路器厂家 | 刚性-柔性防水套管-橡胶伸缩接头-波纹管补偿器-启腾供水材料有限公司 | 壹作文_中小学生优秀满分作文大全 | 自清洗过滤器,浅层砂过滤器,叠片过滤器厂家-新乡市宇清净化 | 贵州成人高考网_贵州成考网| 网站建设,北京网站建设,北京网站建设公司,网站系统开发,北京网站制作公司,响应式网站,做网站公司,海淀做网站,朝阳做网站,昌平做网站,建站公司 | 制冷采购电子商务平台——制冷大市场 | 插针变压器-家用电器变压器-工业空调变压器-CD型电抗器-余姚市中驰电器有限公司 | 船老大板材_浙江船老大全屋定制_船老大官网 | 杭州营业执照代办-公司变更价格-许可证办理流程_杭州福道财务管理咨询有限公司 | 压接机|高精度压接机|手动压接机|昆明可耐特科技有限公司[官网] 胶泥瓷砖胶,轻质粉刷石膏,嵌缝石膏厂家,腻子粉批发,永康家德兴,永康市家德兴建材厂 | 水成膜泡沫灭火剂_氟蛋白泡沫液_河南新乡骏华消防科技厂家 | 电动葫芦|环链电动葫芦-北京凌鹰名优起重葫芦 | 齿轮减速马达一体式_蜗轮蜗杆减速机配电机-德国BOSERL齿轮减速电动机生产厂家 |