Coupling for accommodating probe tip in probe measuring device and probe measuring device

文档序号:1873769 发布日期:2021-11-23 浏览:17次 中文

阅读说明:本技术 将探针尖容纳在探针测量装置中的联结件及探针测量装置 (Coupling for accommodating probe tip in probe measuring device and probe measuring device ) 是由 安德鲁斯·翰默 弗兰茨·翰默 弗兰茨-约瑟夫·翰默 于 2021-05-18 设计创作,主要内容包括:本发明涉及将探针尖容纳在探针测量装置中的联结件及探针测量装置。为了能够以简单且快速的方式将探针尖端8装配在探针测量装置2处,联结元件16设置在一端形成第一连接/联接区域18的轴颈24a、或者螺钉插入件116在一端设置具有凹陷124的第一连接/联接区域118,该第一连接/联接区域尤其用于与联结元件16相连接。联接元件16的这个轴颈24a在外表面60上形成在径向圆周方向上彼此不邻接的多个螺纹节段28,或螺钉插入件116的凹陷124在内表面70上形成在径向圆周方向上彼此不邻接的多个螺纹节段126。(The present invention relates to a coupling for accommodating a probe tip in a probe measuring apparatus, and a probe measuring apparatus. In order to be able to mount the probe tip 8 on the probe measuring device 2 in a simple and rapid manner, the coupling element 16 is provided at one end with a journal 24a forming the first connecting/coupling region 18, or the screw insert 116 is provided at one end with a first connecting/coupling region 118 having a recess 124, which is used in particular for connecting with the coupling element 16. This journal 24a of the coupling element 16 forms on the outer surface 60 a plurality of threaded segments 28 which do not adjoin one another in the radial circumferential direction, or the recess 124 of the screw insert 116 forms on the inner surface 70 a plurality of threaded segments 126 which do not adjoin one another in the radial circumferential direction.)

1. A coupling element 16 for accommodating a probe tip 8 in a probe measuring device 2, in particular a 3D probe 2, has a journal 24a forming a first connection/coupling region 18 at one end,

it is characterized in that the preparation method is characterized in that,

on the outer surface 60 of the journal 24a, a plurality of thread segments 28 are formed which do not adjoin one another in the radial circumferential direction 62.

2. Coupling element 16 according to one of the preceding claims,

it is characterized in that the preparation method is characterized in that,

the thread segments 28 are each formed by one or more recesses 30 which respectively form part of a thread path (partial thread path), wherein the pitch curve 68 is identical at all recesses 30 which form the partial thread path.

3. Coupling element 16 according to the preceding claim,

it is characterized in that the preparation method is characterized in that,

the same pitch curve 68 is constant or the same pitch curve changes, in particular decreases.

4. Coupling element 16 according to one of the preceding claims,

it is characterized in that the preparation method is characterized in that,

the recesses 30 forming the sub-threads do not form a common thread.

5. Coupling element 16 according to one of the preceding claims,

it is characterized in that the preparation method is characterized in that,

a clearance is formed between said sub-thread windings of the thread segments 28.

6. Coupling element 16 according to one of the preceding claims,

it is characterized in that the preparation method is characterized in that,

at least two or more, in particular all, thread segments 28 are of identical design.

7. Coupling element 16 according to one of the preceding claims,

it is characterized in that

Three thread segments 28, which are arranged in particular distributed uniformly in the radial circumferential direction 62 on the outer surface 60 of the journal 24 a.

8. Coupling element 16 according to one of the preceding claims,

it is characterized in that the preparation method is characterized in that,

a recess 26a with an internal thread 34 is provided in the journal 24a forming the first connecting/coupling region 18.

9. Coupling element 16 according to one of the preceding claims,

it is characterized in that

A further journal 24b, which at the other end forms the second connecting/coupling region 20, having a further recess 26 b.

10. Coupling element 16 according to one of the preceding claims,

it is characterized in that

A radially extending abutment surface 36 for the axially planar abutment.

11. Coupling element 16 according to one of the preceding claims,

it is characterized in that

The substantially cylindrical partial section 38 has formed on its outer surface a radially outwardly curved projection 40 which is at least partially, in particular completely, circumferential in the radial circumferential direction for radial centering.

12. Coupling element 16 according to one of the preceding claims,

it is characterized in that

The outer circumference of the partial section 38, which is non-circular in cross section, is formed in particular by a radially more inner region 50 and a radially more outer region 52.

13. Coupling element 16 for a probe tip (8) of a probe measuring device 2, in particular a 3D probe (2), having a journal 24a forming a first connection/coupling area 18 at one end,

it is characterized in that the preparation method is characterized in that,

a multi-start external thread is formed on the outer surface 60 of the journal 24 a.

14. A screw insert 116 for accommodating a probe tip (8) in a probe measurement device 2, in particular a 3D probe 2,

it is characterized in that

A first connecting/coupling region 118 formed at one end, in particular for connection with a coupling element 16 according to one of the preceding claims, having a recess 124 on the inner surface 70 of which a plurality of thread segments 126 are formed which do not adjoin one another in the radial circumferential direction 62.

15. The screw insert 116 according to one of the preceding screw insert claims,

it is characterized in that the preparation method is characterized in that,

the thread segments 126 are each formed by one or more recesses 128 which respectively form part of a thread path (partial thread path), wherein the pitch curve 68 is identical at all recesses 128 forming the partial thread path.

16. The screw insert 116 of the preceding screw insert claim,

it is characterized in that the preparation method is characterized in that,

the same pitch curve 68 is constant or the same pitch curve changes, in particular decreases.

17. The screw insert 116 according to one of the preceding screw insert claims,

it is characterized in that the preparation method is characterized in that,

the recesses 128 forming the sub-threads do not form a common thread.

18. The screw insert 116 according to one of the preceding screw insert claims,

it is characterized in that the preparation method is characterized in that,

a clearance gap is formed between the sub-thread windings of the thread segments 126.

19. The screw insert 116 according to one of the preceding screw insert claims,

it is characterized in that the preparation method is characterized in that,

at least two or more, in particular all, thread segments 126 are of identical design.

20. The screw insert 116 according to one of the preceding screw insert claims,

it is characterized in that

Three thread segments 126, which are arranged in particular distributed uniformly in the radial circumferential direction 62 on the inner surface 70 of the recess 124.

21. The screw insert 116 according to one of the preceding screw insert claims,

it is characterized in that

A journal 122 forming a second connection/coupling area 120 at the other end, on the outer surface 140 of which is formed an external thread 134; or at the other end, a hole 152 with an inserted (socket head) screw 122 of the second connecting/coupling region 120 is formed.

22. The screw insert 116 according to one of the preceding screw insert claims,

it is characterized in that

A narrowed diameter, generally cylindrical intermediate region 132 between the first connection/coupling region 118 and the second connection/coupling region 120.

23. The screw insert 116 according to one of the preceding screw insert claims,

it is characterized in that

A radially extending abutment surface 136 for the axially planar abutment.

24. The screw insert 116 according to one of the preceding screw insert claims,

it is characterized in that

A generally cylindrical sub-section 138 for radial centering.

25. The screw insert 116 according to one of the preceding screw insert claims,

it is characterized in that

A radial spring structure 148 on the outer surface 146 of the screw insert 116, in particular in the region of the first connection/coupling region 118, wherein the radial spring structure 148 ("clip") is formed, in particular, by means of a spring clamping element 150.

26. A coupling assembly 216 for a probe insert 8 at a probe measurement device 2,

it is characterized in that

Coupling element 16 according to one of the preceding coupling element claims, and screw insert 116 according to one of the preceding screw insert claims.

27. Coupling assembly 216 according to the preceding claim,

it is characterized in that the preparation method is characterized in that,

the threaded section 28 of the coupling element 16 and the threaded section 126 of the screw insert 116 are designed as corresponding, screwable internal/external threads.

28. A probe measurement device 2, in particular a 3D probe 2,

it is characterized in that

Screw insert 116 and coupling arm/measuring shaft 80 according to one of the preceding screw insert claims, wherein the screw insert 116 and the coupling arm/measuring shaft 80 are connected to one another, in particular screwed to one another, or are of one-piece design.

29. A probe measurement device 2, in particular a 3D probe 2,

the method is characterized in that:

coupling member 16 according to one of the preceding coupling member claims; the screw insert 116 according to one of the preceding screw insert claims; a probe insert 8, in particular a probe insert 8 having a probe ball 10, a pin 12 and a sleeve 14; and a coupling arm/measuring shaft 80, wherein the probe insert 8 is connected with the coupling arm/measuring shaft 80 by means of the coupling element 16 and a screw insert 116 connected with the coupling element 16.

30. Probe measuring device 2 according to the preceding claim,

it is characterized in that the preparation method is characterized in that,

the threaded section 28 of the coupling element 16 and the threaded section 126 of the screw insert 116 are designed as corresponding, screwable internal/external threads.

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