Thomson ball screw assemblies consist of a ball screw, a ball nut with recirculating ball bearings and end supports for mounting. The interface between the screw and the nut is made by ball bearings that roll in matching forms in the ball screw and ball nut. The load on the ball screw is distributed over a large number of ball bearings so that each ball is subjected to a relatively low load. Because of the rolling element design, ball screw assemblies have a very low coefficient of friction, which equates to highly efficient mechanics.
Ball screw assemblies provide an excellent method for translating rotational motion to linear motion for many applications, including those where high loads and close tolerances are required. To apply the correct type of ball screw and nut assembly in a particular application, the design engineer must consider the advantages and capabilities of each. Selecting the right technology can reduce design complexity, improve performance and reduce the overall cost of the assembly.
This image compares the three types of ball return systems (from left to right): internal, button and external.
Ball screws are mounted in either supported or fixed configurations. A supported end holds the ball screw at one focal point and does not resist bending moments. A supported end is generally easier to align and install than a fixed one, so installation costs are typically lower. A fixed end resists bending moment loads because it is typically based on two bearings spaced sufficiently so the ball screw remains perpendicular to the planes of the rotary bearings. The fixed offers greater column strength and higher critical speed. The image below illustrates four fixity options.
The assembly can be fixed at both ends, fixed at only one end and supported on the other, supported at both ends, or fixed at one end and free at the other.
Ball screw assemblies are not all alike. Whether it be metric ball screws, inch ball screws or miniature ball screws, key differences affect their performance and extend their lives. These include:
憑借高質量、長使用壽命和可靠的支持服務,Thomson滾珠絲杠占據全球市場已有將近1個世紀。本視頻介紹Thomson滾珠絲杠生產過程、選型、定制選項、應用以及在線資源等。觀看視頻后,您也可以反問自己“Thomson滾珠絲杠對我而言有哪些用途?”
實施任何新應用都需要對產品性能、使用壽命和成本進行仔細分析,尤其是需要處理大負載的應用。了解為何應在未來的直線運動應用中考慮使用高負載滾珠絲杠而不是標準滾珠絲杠。
演講人: Markus Brändle,產品線專家 - 絲杠、螺旋升降機和LB&G,Thomson Neff Industries,德國
如何將軸承重新安裝到單循環滾珠螺母上。通常滾珠螺母是單循環滾珠螺母。但該技巧也適用于滾道循環滾珠螺母。
借助Thomson Electrak HD直線執行器的同步選項,Spika Design and Manufacturing公司為客戶打造性能、功能性和安全性更出色的作業平臺。
Because ball screws are available in both inch and metric dimensions, designers sometimes begin the specification process by selecting a product family based on the unit of measure. This decision may prematurely exclude the ideal product for the application and lead to significant losses in time, labor and expense. This article explains how sizing and selection questions centered on performance – instead of product monikers – can lead to more efficient linear motion designs.
Roller screws have been promoted as the only technology of choice for handling large loads when size is a constraint.?But in actuality, advances?in ball screw technology have now enabled the capability?to?support high-load applications as well. This is important because a high-load ball screw is typically less than half the cost of a comparable roller screw at equivalent performance points.?
Used in large-scale production applications that involve continuous lifting operations but still require a human touch, collaboration robots (cobots) are gaining popularity. A French?cobot?maker has developed a solution that uses ball screw and cable actuators instead of gears, setting a new benchmark for?cobot?efficiency and safety.
了解更多Metric Precision Ball Screws (Made in Germany) | 1135 KB | |
High-Load Ball Screws | 395 KB | |
小型公制精密滾珠螺桿 | 668 KB | |
Miniature Components and Systems | 1603 KB | |
SFM Safety Nut | 442 KB | |
Metric Precision Ball Screws (Made in Germany) | 1112 KB | |
小型公制精密滾珠螺桿 | 655 KB | |
Miniature Components and Systems | 6862 KB | |
SFM Safety Nut | 446 KB | |
High-Load Ball Screws | 370 KB | |
Flanged Metric Precision Rolled Ball Screws (16 - 50 mm) | 756 KB | |
小型公制精密滾珠螺桿 | 625 KB | |
High-Load Ball Screws | 391 KB | |
Miniature Components and Systems | 6871 KB |
Ball Screws – an answer to safe and efficient motion for Cobots. | 2020-01-01 | |
2019-04-26 | ||
2016-01-14 | ||
2016-01-04 | ||
Correct Lubrication is Vital to Ball Screw Life | 2015-01-07 | |
Ball Screws Go Green - the three “R’s”; Reduce, Re-use, and Recycle... | 2009-02-01 |
滾珠絲杠組件 | |||
滾珠絲杠組件-英制 | ![]() |
— | — |
滾珠絲杠組件-公制(北美) | ![]() |
— | — |
滾珠絲杠組件-公制(歐洲) | ![]() |
— | — |
滾珠螺母 | |||
法蘭滾珠螺母-英制 | ![]() |
— | — |
法蘭滾珠螺母-公制 | ![]() |
— | — |
螺紋滾珠螺母-英制 | ![]() |
— | — |
螺紋滾珠螺母-公制 | ![]() |
— | — |
圓柱形滾珠螺母-公制 | ![]() |
— | — |
末端支撐 | |||
滾珠絲杠末端支撐-英制 | ![]() |
— | — |
滾珠絲杠末端支撐-公制 | ![]() |
— | — |
絲杠 | |||
精密磨削滾珠絲杠-英制 | ![]() |
— | — |
精密磨削滾珠絲杠-公制 | ![]() |
— | — |
附件 | |||
滾珠絲杠法蘭 | ![]() |
— | — |
滾珠絲杠刮刷器 | ![]() |
— | — |
To provide better service to you on our websites, we and our service providers use cookies to collect your personal data when you browse. For information about our use of cookies and how to decline them or turn them off please read our cookie policy [available here].