Jumping detection device
The automatic rotation detection device uses an electric concentricity detector and a cylinder-driven probe to automatically measure the runout value of parts, which solves the problems of inaccurate detection results and low efficiency in the existing technology, improves detection efficiency and product quality, and is suitable for production lines.
Patent Information
- Application Number
- CN202520585735.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-31
AI Technical Summary
Existing methods for detecting part runout suffer from inaccurate results and low efficiency due to manual rotation.
An automatic rotation detection device is adopted, which uses an electric concentricity detector head to drive rollers to achieve automatic rotation of the parts, and uses radial and axial probe cylinders to measure the radial and axial runout values of the parts respectively, eliminating manual gestures and reading errors.
It enables automated detection of part runout values, improving detection efficiency and product quality, reducing process flow and labor intensity, and is suitable for production lines.
Smart Images

Figure CN223882952U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to detection equipment technical field, concretely relates to a runout detection device. BACKGROUND
[0002] In the whole inspection process of the part, the part needs to be runout detected, and the prior art is to detect the runout by adsorbing the shaft part on the V-shaped block, manually rotating the part and reading the dial gauge value. This detection method is prone to cause inaccurate detection results and low detection efficiency due to hand shaking and reading error, and affects product quality. CONTENT OF THE UTILITY MODEL
[0003] To solve the above problems, the utility model provides a runout detection device, which changes manual rotation detection into automatic rotation detection, can automatically measure the runout of the part in two directions at the same time, eliminates the influence of personnel gestures and reading error on the measurement result, and improves detection efficiency and product quality.
[0004] A runout detection device, comprising a mounting bottom plate. The mounting bottom plate is sequentially provided with a measuring mechanism support, a shaft bottom positioning support and a clamping air cylinder support from left to right. The top of the clamping air cylinder support is provided with a horizontal clamping air cylinder, and the output end of the horizontal clamping air cylinder is provided with a bearing. The top of the shaft bottom positioning support is provided with a plane bearing. The right side of the measuring mechanism support is provided with an electric concentricity detector head. The top of the measuring mechanism support is provided with a radial probe air cylinder, and the output end of the radial probe air cylinder is provided with an L-shaped support. The front side wall of the L-shaped support is provided with a radial runout electric probe. The right side wall of the L-shaped support is provided with an axial probe air cylinder, and the output end of the axial probe air cylinder is provided with an axial runout electric probe.
[0005] Further, the electric concentricity detector head is provided with a roller and a cleaning strip, and the cleaning strip is located on the left side of the roller and is tangent to the roller.
[0006] Further, the radial probe air cylinder and the axial probe air cylinder are both adjustable stroke air cylinders.
[0007] Compared with the prior art, the utility model has the beneficial effects that: the utility model realizes automatic detection of the runout value of the part, can automatically measure the runout value of the part in two directions at the same time, combines two measurement procedures of the part into one procedure, not only reduces procedure circulation, but also eliminates the influence of personnel gestures and reading error on the measurement result, greatly reduces the labor intensity of workers, and improves detection efficiency; the utility model can also be well installed on a production assembly line and has good applicability. BRIEF DESCRIPTION OF DRAWINGS
[0008] Figure 1A structure diagram of a runout detection device is described in the utility model.
[0009] Figure 2 A front view of the runout detection device is described in the utility model.
[0010] Mark explanation:
[0011] The drawing includes, installation base plate 1, measuring mechanism support 2, shaft bottom positioning support 3, clamping cylinder support 4, horizontal clamping cylinder 5, bearing 6, plane bearing 7, electric concentricity detector machine head 8, radial probe cylinder 9, L-shaped support 10, radial runout electric probe 11, axial probe cylinder 12, axial runout electric probe 13, roller 14, cleaning strip 15. Specific implementation
[0012] In order to make the technical problem, technical scheme and advantage that the utility model is going to solve more clearly, the following will combine with the drawing and specific embodiment and carry out the detailed description.
[0013] Please refer to the description of the accompanying drawings Figure 1 And the accompanying Figure 2 The utility model discloses a runout detection device, including installation base plate 1. The installation base plate 1 is equipped with measuring mechanism support 2, shaft bottom positioning support 3, clamping cylinder support 4 from left to right in proper order on it. The top of clamping cylinder support 4 is equipped with horizontal clamping cylinder 5, and the output end of horizontal clamping cylinder 5 is equipped with bearing 6. The top of shaft bottom positioning support 3 is equipped with plane bearing 7. The right side of measuring mechanism support 2 is equipped with electric concentricity detector machine head 8. The top of measuring mechanism support 2 is equipped with radial probe cylinder 9, and the output end of radial probe cylinder 9 is equipped with L-shaped support 10. The front side wall of L-shaped support 10 is equipped with radial runout electric probe 11. The right side wall of L-shaped support 10 is equipped with axial probe cylinder 12, and the output end of axial probe cylinder 12 is equipped with axial runout electric probe 13.
[0014] As preferred but not limited, the electric concentricity detector machine head 8 is equipped with roller 14 and cleaning strip 15, and the cleaning strip 15 is located on the left side of the roller 14 and is tangent to it. The setting of cleaning strip 15 can not only clean the roller 14, but also improve the measurement stability.
[0015] As preferred but not limited, the radial probe cylinder 9 and the axial probe cylinder 12 are all adjustable stroke cylinders.
[0016] The working principle of the utility model is as follows:
[0017] The run-out detection device can be independently used or installed on a production assembly line. The part to be measured is placed on the shaft bottom positioning support 3 for rough positioning; the horizontal clamping cylinder 5 works, and the part to be measured is clamped and positioned by the bearing 6 on the horizontal clamping cylinder 5 and the electric concentricity detector head 8; the electric concentricity detector head 8 works, drives the roller 14 to rotate, and under the action of the roller 14, the bearing 6 and the plane bearing 7, the automatic rotation of the part can be realized; the radial probe cylinder 9 drives the radial run-out electric probe 11 to move right, contacts the part to be measured, and measures the radial run-out value; the axial probe cylinder 12 works, drives the axial run-out electric probe 13 to move down, contacts the part to be measured, and measures the axial run-out value; with the rotation of the part, the two run-out values of the part can be measured multiple times.
[0018] The above detailed description is only a preferred embodiment of the present application, and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A beat detection apparatus comprising a mounting plate, characterised in that: The mounting base is sequentially provided with a measuring mechanism support, an axle bottom positioning support and a clamping cylinder support from left to right; the top of the clamping cylinder support is provided with a horizontal clamping cylinder, and the output end of the horizontal clamping cylinder is provided with a bearing; the top of the axle bottom positioning support is provided with a plane bearing; the right side of the measuring mechanism support is provided with an electric concentricity detector head; the top of the measuring mechanism support is provided with a radial probe cylinder, and the output end of the radial probe cylinder is provided with an L-shaped support; the front side wall of the L-shaped support is provided with a radial run-out electric probe; the right side wall of the L-shaped support is provided with an axial probe cylinder, and the output end of the axial probe cylinder is provided with an axial run-out electric probe.
2. A beat detection apparatus according to claim 1, wherein: The electric concentricity detector head is provided with a roller and a cleaning strip, and the cleaning strip is located at the left side of the roller and is tangent to the roller.
3. The beat detection apparatus of claim 1, wherein: The radial probe cylinder and the axial probe cylinder are adjustable stroke cylinders.