Turn-milling composite slant bed body leveling ruler placing tool

By designing a fixture for placing the straightedge on a slant bed machine with a milling and turning compound, and utilizing leveling blocks and a height adjustment device, the problem of straightness detection of the guide rails of an integral slant bed CNC lathe was solved. This enabled simple installation of the guide rails and reliable data acquisition, improving detection efficiency and accuracy.

CN223557982UActive Publication Date: 2025-11-18SHENZHEN SHUOFANG PRECISION MASCH CO LTD
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Patent Information

Application Number
CN202423047438.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-11-18
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Existing technology cannot effectively detect the straightness of the guide rails of an integral slant bed CNC lathe, and the level cannot be placed on the guide rail plane, making detection difficult.

Method used

A tooling for mounting a straightedge on a milling and turning slant bed is designed, including a slant bed body, a guide rail slider, a straightedge bracket, a leveling block, and a height adjustment device. By cooperating with the leveling block and the height adjustment device, the installation and adjustment of the straightedge are simplified, and the straightness of the guide rail is detected.

Benefits of technology

It enables simple installation of the guide rail and reliable data acquisition, improving the efficiency and accuracy of guide rail straightness detection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a turning and milling composite slant lathe bed leveling ruler placing tool, and relates to the technical field of numerical control lathe detection. The inclined lathe bed comprises an inclined lathe bed body, a guide rail sliding block, a leveling ruler support, an equal-height block, a height adjusting device and a leveling ruler. Wherein a guide rail is arranged on the slant bed body; the guide rail sliding block is assembled on the guide rail in a sliding manner; the leveling ruler support is arranged on the slant bed body and located on the same side with the guide rail. The two leveling ruler brackets are arranged in parallel at an interval; the equal-height block is arranged on one leveling ruler bracket; the height adjusting device is arranged on the other leveling ruler bracket; one end of the leveling ruler is arranged on the top face of the equal-height block, and the other end of the leveling ruler is arranged on the top face of the height adjusting device. By the adoption of the technical scheme, the tool has the advantages of being convenient to install, simple in leveling ruler adjustment and simple and reliable in data acquisition.
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Description

TECHNICAL FIELD

[0001] The utility model relates to numerical control lathe detection technical field, concretely relates to a lathe milling composite inclined bed body flat ruler deposit frock. BACKGROUND

[0002] The detection of the straightness and parallel error of the guide rail of the machine tool in the vertical plane generally adopts the comparison measurement method of the precision level. This method is to replace the actual shape of the guide rail with the closest broken line in the vertical plane, and compare the segmented straight line with the ideal guide rail to determine the deviation of the guide rail broken line shape and the ideal guide rail shape. The value generated by the level during the movement is always the change relative to the absolute horizontal plane, and the horizontal plane is the reference for the change of the level. However, for the guide rail of the whole inclined bed of the numerical control lathe, since the plane where the guide rail is located is at an angle with the horizontal plane, the level cannot be placed on the guide rail plane (bridge plate) in the natural state, and the straightness detection of the guide rail of the machine tool cannot be completed. SUMMARY

[0003] The utility model discloses to the defects and the insufficient of prior art, provide a lathe milling composite inclined bed body flat ruler deposit frock, at least solve one of above-mentioned technical problems, have frock installation convenient, flat ruler adjustment simple and data obtain simple and reliable advantage.

[0004] To achieve the above object, the utility model adopts the technical scheme: A lathe milling composite inclined bed body flat ruler deposit frock, comprising:

[0005] Inclined bed body, the inclined bed body is provided with a guide rail;

[0006] Guide rail sliding block, the guide rail sliding block is slidably assembled on the guide rail;

[0007] Flat ruler support, set up on the inclined bed body and with the guide rail is located at the same side, the flat ruler support is provided with two, and interval is set up in parallel,

[0008] Equal height block, set up on one of the flat ruler supports;

[0009] Height adjusting device, set up on another flat ruler support; and

[0010] Flat ruler, one end of the flat ruler is set up on the top surface of the equal height block, and the other end is set up on the top surface of the height adjusting device.

[0011] The utility model further sets up, the height adjusting device includes:

[0012] Block, internally provided with a cavity, the top surface of the block is provided with an open structure;

[0013] A first inclined block is arranged in the cavity; the bottom surface of the first inclined block abuts the inner bottom surface of the block body, and the top surface of the first inclined block is arranged as a first inclined surface;

[0014] A second inclined block is arranged in the cavity; the top surface of the second inclined block is a plane, and the bottom surface of the second inclined block is arranged as a second inclined surface; the second inclined surface abuts the first inclined surface; and

[0015] An adjusting member is connected to the side wall of the first inclined block at one end and exposed outside the side wall of the block body at the other end;

[0016] Under the driving of the adjusting member, the first inclined block moves towards both sides, the first inclined surface abuts the second inclined surface, so that the height of the second inclined block exposed outside the open structure is increased or decreased.

[0017] The adjusting member is further arranged in pairs and symmetrically.

[0018] The cavity is further arranged with a stroke space for the movement of the first inclined block.

[0019] The height adjusting device further comprises a fastener abutting the second inclined block at one end and exposed outside the side wall of the block body at the other end; the fastener is used for fixing the second inclined block at a set position.

[0020] The second inclined block is further arranged with a stroke hole; the stroke hole cooperates with the fastener to fix the second inclined block at a set position.

[0021] The fixed part and the extension part are arranged on the same side of the guide rail.

[0022] The side surface adjusting member is arranged on the side of the extension part abutting the ruler; one end of the side surface adjusting member is arranged on the side of the extension part abutting the ruler and exposed on the side of the extension part away from the ruler, and the other end of the side surface adjusting member is arranged between the side of the extension part abutting the ruler and the side of the ruler facing the extension part.

[0023] The side surface adjusting member is arranged in pairs.

[0024] The utility model further sets up, car milling compound inclined bed body flat ruler deposit frock still includes: magnetic force table seat and lever micrometer, the magnetic force table seat can be detachably assembled on the guide rail sliding block, the lever micrometer is assembled on the magnetic force table seat.

[0025] After adopting the technical scheme, the utility model has the beneficial effects that: in the utility model, the guide rail is assembled on the inclined bed body, the guide rail slidingly has the guide rail sliding block, the flat ruler is arranged on the two flat ruler supports which are parallel and are spaced, the equal height block is arranged between one end of the flat ruler and one of the flat ruler supports, the height adjusting device is arranged between the other end of the flat ruler and the other flat ruler support, the whole frock is simple and convenient to install, and the flat ruler is adjusted by the equal height block and the height adjusting device, the adjustment mode is relatively simple, the data is obtained by moving the sliding block and leveling the flat ruler, and the data obtaining mode is simple and reliable. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without creative labor.

[0027] Figure 1 It is the structural schematic diagram of the utility model;

[0028] Figure 2 It is the structural schematic diagram of the right side view of the utility model;

[0029] Figure 3 It is the structural schematic diagram of the equal height block and the height adjusting device in the flat ruler and the section view state;

[0030] Figure 4 It is the structural schematic diagram of the flat ruler, the flat ruler support, the equal height block and the height adjusting device;

[0031] Figure 5 It is the structural schematic diagram of the height adjusting device;

[0032] Figure 6 It is the structural explosion schematic diagram of the height adjusting device;

[0033] Figure 7 It is the structural schematic diagram of the height adjusting device in another view;

[0034] Figure 8 It is the section view of A-A direction corresponding to Figure 7 ;

[0035] Figure 9Is the structure diagram of the upper surface of the ruler of the table of the utility model;

[0036] Figure 10 Is the corresponding Figure 9 The structure diagram of the upper surface of the ruler of the table of the hidden part assembly;

[0037] Figure 11 Is the structure diagram of the side surface of the ruler of the utility model.

[0038] Mark 100, slant bed body; 200, guide rail; 300, guide rail slider; 400, ruler support; 410, fixed part; 420, extension part; 500, equal height block; 600, height adjusting device; 610, block; 611, cavity; 612, stroke space; 613, open structure; 620, first inclined block; 621, first inclined surface; 630, second inclined block; 631, second inclined surface; 632, stroke hole; 640, adjusting piece; 650, fastener; 700, ruler; 800, side surface adjusting piece; 910, magnetic watch seat; 920, lever micrometer. DETAILED DESCRIPTION

[0039] The utility model will be further explained in detail below in combination with the drawings.

[0040] The embodiment is only the explanation of the utility model, and it is not the limitation of the utility model, and the person skilled in the art can make the modification of no creative contribution according to the need after reading the present specification, but as long as in the right claim range of the utility model, it is protected by the patent law.

[0041] The embodiment relates to a turning and milling combined slant bed ruler placing tool, and the utility model discloses Figures 1-2, including: inclined bed body 100, guide rail slider 300, level gauge support 400, equal height block 500, height adjusting device 600 and level gauge 700. Wherein the inclined bed body 100 is provided with guide rail 200; the guide rail slider 300 is slidingly assembled on the guide rail 200; the level gauge support 400 is arranged on the inclined bed body 100 and is located on the same side as the guide rail 200; the level gauge support 400 is provided with two, and is arranged in parallel and interval, facilitating supporting the level gauge 700. The equal height block 500 is arranged on one of the level gauge supports 400; the height adjusting device 600 is arranged on the other level gauge support 400; the height adjusting device 600 is used for adjusting the height of one end of the level gauge 700 to align the level gauge 700. One end of the level gauge 700 is arranged on the top surface of the equal height block 500, and the other end is arranged on the top surface of the height adjusting device 600. Specifically, the guide rail 200 is assembled on the inclined bed body 100, the guide rail slider 300 is slidingly assembled on the guide rail 200, the level gauge 700 is arranged on the two level gauge supports 400 arranged in parallel and interval, the equal height block 500 is arranged between one end of the level gauge 700 and one of the level gauge supports 400, and the height adjusting device 600 is arranged between the other end of the level gauge 700 and the other level gauge support 400, so that the whole tooling is simple and convenient to install. And the equal height block 500 and the height adjusting device 600 cooperate to adjust the level gauge 700, and the adjustment mode is relatively simple; by moving the guide rail slider 300 and leveling the level gauge 700, the method of obtaining data is simple and reliable. In the embodiment, the guide rail slider 300 is provided with two, which ensures the displacement accuracy of the guide rail slider 300, better provides support and guiding effect and relieves the influence of lateral force on the guide rail 200. In the embodiment, the guide rail 200 is provided with two, arranged in parallel. In some embodiments, the guide rail 200 can be provided with one. In the embodiment, the level gauge support 400 is connected and arranged with the inclined bed body 100 by screws. In some embodiments, it can also be connected and arranged by screws.

[0042] In the embodiment, referring to Figure 2The straightedge bracket 400 includes a fixed part 410 and an extension part 420. The fixed part 410 is disposed on the slant bed body 100 and is located on the same side as the guide rail 200. One end of the extension part 420 is vertically disposed on the top surface of the fixed part 410, and the other end extends upward. During assembly, the side of the leveling block 500 abuts against the side of the extension part 420, and the bottom surface of the leveling block 500 abuts against the top surface of the fixed part 410. Specifically, one side of the leveling block 500 is in close contact with the side of the extension part 420, and the bottom surface of the leveling block 500 is in close contact with the top surface of the fixed part 410 to prevent the leveling block 500 from sliding down. The side of the height adjustment device 600 abuts against the side of the extension 420, and the bottom surface of the height adjustment device 600 abuts against the top surface of the fixing part 410. Specifically, one side of the height adjustment device 600 is in close contact with the side of the extension 420, and the bottom surface of the height adjustment device 600 is in close contact with the top surface of the fixing part 410 to prevent the height adjustment device 600 from sliding down. One side of the straightedge 700 is in close contact with the side of the extension 420, the bottom surface of one straightedge 700 is in close contact with the top surface of the leveling block 500, and the bottom surface of the other straightedge 700 is in close contact with the top surface of the height adjustment device 600 to prevent the straightedge 700 from sliding down. In this embodiment, the straightedge bracket 400 is T-shaped to facilitate support of the leveling block 500, the height adjustment device 600, and the straightedge 700. In other embodiments, the straightedge bracket 400 may also be of other shapes.

[0043] In this embodiment, refer to Figure 2 as well as Figure 10 A side adjustment member 800 is provided on the side of the extension 420 that abuts against the flat ruler 700. One end of the side adjustment member 800 passes through the side of the extension 420 that abuts against the flat ruler 700 and protrudes from the side of the extension 420 facing away from the flat ruler 700. The other end is positioned between the side of the extension 420 that abuts against the flat ruler 700 and the side of the flat ruler 700 facing the extension 420. The side adjustment member 800 facilitates adjusting the side axis of both ends of the flat ruler 700 to be parallel to the axis of the guide rail 200. In this embodiment, two side adjustment members 800 are provided, respectively provided on the two extensions 420, for convenient adjustment from both ends of the flat ruler 700. In this embodiment, the side adjustment member 800 is a screw.

[0044] When it is necessary to adjust the side axes at both ends of the straightedge 700, simply screw one end of the side adjustment member 800 exposed on the side of the extension 420 facing away from the straightedge 700 out or in. This causes one end of the side adjustment member 800, which is located between the side of the extension 420 that abuts against the straightedge 700 and the side of the straightedge 700 facing the extension 420, to move away from or towards the straightedge 700. This makes one end of the straightedge 700 move towards or away from the extension 420, ultimately making the side axes at both ends of the straightedge 700 parallel to the axis of the guide rail 200.

[0045] In some embodiments, the side adjustment piece 800 can also be provided with four. In some embodiments, the side adjustment piece 800 can also be a screw or the like.

[0046] In the present embodiment, with reference to Figures 5-8 , the height adjustment device 600 comprises a block 610, a first inclined block 620, a second inclined block 630 and an adjustment piece 640. The block 610 is internally provided with a cavity 611, and the top surface of the block 610 is provided with an open structure 613. The first inclined block 620 is placed in the cavity 611, and the bottom surface of the first inclined block 620 abuts the inner bottom surface of the block 610. The top surface of the first inclined block 620 is provided with a first inclined surface 621. One end of the second inclined block 630 is placed in the cavity 611, and the other end is placed between the open structure 613 and the cavity 611. The top surface of the second inclined block 630 is a plane, and the bottom surface of the second inclined block 630 is provided with a second inclined surface 631. The second inclined surface 631 of the second inclined block 630 abuts the first inclined surface 621. One end of the adjustment piece 640 is connected to the side wall of the first inclined block 620, and the other end is exposed to the side wall of the block 610. Under the driving action of the adjustment piece 640, the first inclined block 620 moves towards both sides, the first inclined surface 621 abuts the second inclined surface 631, so that the height at which the second inclined block 630 is exposed to the open structure 613 increases or decreases. With reference to Figure 3 and Figure 8 In the present embodiment, the cross section of the first inclined block 620 and the second inclined block 630 is a right trapezoid. The position of the right edge line of the first inclined surface 621 of the first inclined block 620 is higher than that of the left edge line, and the first inclined surface 621 shows a tendency to rise upwards from left to right. The second inclined surface 631 of the second inclined block 630 faces the first inclined surface 621 of the first inclined block 620. The position of the right edge line of the second inclined surface 631 is higher than that of the left edge line, and the second inclined surface 631 shows a tendency to rise upwards from left to right. The top surface of the second inclined block 630 is a plane. In the present embodiment, the adjustment piece 640 is provided with two and is symmetrically arranged, which facilitates the adjustment of the height at which the second inclined block 630 is exposed to the open structure 613 from both sides, is convenient and fast, and also plays a role in limiting the first inclined block 620, avoiding displacement of the first inclined block 620.

[0047] In the present embodiment, with reference to Figures 2-4 and Figure 8When it is needed to raise one end of the ruler 700 in contact with the height adjusting device 600, the adjusting member 640 on the left side of the first inclined block 620 is withdrawn towards the direction away from the first inclined block 620 until it is withdrawn from the first inclined block 620, and the adjusting member 640 on the right side of the first inclined block 620 is moved to the left side, one end of the adjusting member 640 on the right side is connected to the side wall of the first inclined block 620, and the first inclined block 620 is moved to the left side under the pushing action of the adjusting member 640 on the right side. Since the first inclined surface 621 and the second inclined surface 631 both have a trend of climbing upwards from left to right, under the action of the two inclined surfaces, the second inclined block 630 is pushed up by the first inclined block 620, so that the height of the second inclined block 630 exposed outside the open structure 613 is increased. At this time, the height of the height adjusting device 600 as a whole is increased, and after the height of the second inclined block 630 exposed outside the open structure 613 rises to the set position, the position of the adjusting member 640 on the right side of the first inclined block 620 is fixed, the adjusting member 640 on the left side of the first inclined block 620 is moved to the right side until it is connected to the first inclined block 620 again. At this time, the adjusting member 640 on the left side cooperates with the adjusting member 640 on the right side to fix the first inclined block 620, so as to ensure that the height of the second inclined block 630 exposed outside the open structure 613 remains unchanged. When it is needed to lower one end of the ruler 700 in contact with the height adjusting device 600, the adjusting member 640 on the right side of the first inclined block 620 is withdrawn towards the direction away from the first inclined block 620 until it is withdrawn from the first inclined block 620, and the adjusting member 640 on the left side of the first inclined block 620 is moved to the right side, one end of the adjusting member 640 on the left side is connected to the side wall of the first inclined block 620, and the first inclined block 620 is moved to the right side under the pushing action of the adjusting member 640 on the left side. Since the first inclined surface 621 and the second inclined surface 631 both have a trend of climbing upwards from left to right, under the action of the two inclined surfaces, the position of the highest support of the second inclined block 630 by the first inclined block 620 is lowered, and the height of the second inclined block 630 is lowered, so that the height of the second inclined block 630 exposed outside the open structure 613 is lowered. At this time, the height of the height adjusting device 600 as a whole is lowered, and after the height of the second inclined block 630 exposed outside the open structure 613 is lowered to the set position, the position of the adjusting member 640 on the left side of the first inclined block 620 is fixed, the adjusting member 640 on the right side of the first inclined block 620 is moved to the left side until it is connected to the first inclined block 620 again. At this time, the adjusting member 640 on the left side cooperates with the adjusting member 640 on the right side to fix the first inclined block 620, so as to ensure that the height of the second inclined block 630 exposed outside the open structure 613 remains unchanged.

[0048] In some embodiments, the first inclined block 620 and the second inclined block 630 can also have other shapes in cross section, as long as the contact surfaces of the two are inclined surfaces, the bottom surface of the first inclined block 620 and the top surface of the second inclined block 630 are flat surfaces. In some embodiments, the first inclined surface 621 and the second inclined surface 631 can also have a rising trend from right to left.

[0049] In the embodiment, the adjusting member 640 is a screw, which can not only be rotated inwardly or outwardly to adjust the position of the first inclined block 620, but also can fix the position of the first inclined block 620 after adjustment to avoid displacement. In some embodiments, the adjusting member 640 can also be other components. In the embodiment, the block body 610 is spliced by multiple plates, which facilitates adjustment of the size of the cavity 611 and the size of the open structure 613 according to the size of the first inclined block 620 and the second inclined block 630.

[0050] Further, referring to Figure 3 and Figures 5-8 , the cavity 611 is provided with a stroke space 612 for movement of the first inclined block 620, so as to ensure that the first inclined block 620 can reciprocate in the cavity 611. The height adjusting device 600 further comprises a fastener 650, one end of the fastener 650 abutting against the second inclined block 630 and the other end of the fastener 650 exposed outside the side wall of the block body 610. The fastener 650 is used to fix the second inclined block 630 at a set position. The one end of the fastener 650 abutting against the second inclined block 630 and the other end of the fastener 650 passing through the block body 610 and exposed outside the side wall of the block body 610 facilitate fixing of the second inclined block 630 on the block body 610 after the height of the second inclined block 630 exposed outside the open structure 613 reaches a set height, so as to avoid displacement of the second inclined block 630 and affect the height of the second inclined block 630 exposed outside the open structure 613. Further, the second inclined block 630 is provided with a stroke hole 632, which cooperates with the fastener 650 to fix the second inclined block 630 at the set position. The stroke hole 632 also limits the fastener 650.

[0051] In the embodiment, referring to Figures 9-11 , the workpiece milling and turning combined inclined bed body flatness placing tool further comprises a magnetic table seat 910 and a lever micrometer 920. The magnetic table seat 910 is detachably assembled on the guide rail sliding block 300, and the lever micrometer 920 is assembled on the magnetic table seat 910. Specifically, the magnetic table seat 910 is adsorbed on the guide rail sliding block 300, and the lever micrometer 920 is installed and connected on the magnetic table seat 910.

[0052] The working principle and process of the utility model are roughly as follows:

[0053] 1. The ruler support 400 is installed and the ruler 700 is placed: two ruler supports 400 are arranged in parallel and at intervals on the inclined body 100 (specifically, on the platform of the bearing seat of the inclined body 100 with a lead screw), the height adjusting device 600 and the equal height block 500 are placed on the two ruler supports 400 respectively, and the height adjusting device 600 and the equal height block 500 are tightly attached to the side of the ruler support 400, so as to prevent the height adjusting device 600 and the equal height block 500 from sliding downward, and the ruler 700 is placed on the top surface of the height adjusting device 600 and the equal height block 500 and is tightly attached to the side of the two ruler supports 400, so as to prevent it from sliding downward.

[0054] 2. The ruler 700 is aligned: the magnetic table seat 910 is adsorbed on the guide rail slider 300, the lever micrometer 920 is installed and connected on the magnetic table seat 910, the upper surface of the ruler 700 is first aligned, the needle of the lever micrometer 920 is gently pressed on the upper surface of the ruler 700, the height adjusting device 600 is adjusted, the lever micrometer 920 on the guide rail slider 300 is moved back and forth, and the reading is observed, so that the values of the lever micrometers 920 at both ends of the ruler 700 are the same, that is, the upper surface of the ruler 700 is aligned; then the side of the ruler 700 is aligned, the needle of the lever micrometer 920 is gently pressed on the side of the ruler 700, the two ends of the ruler 700 are abutted by the side adjusting pieces 800 of the two ruler supports 400, the lever micrometer 920 on the guide rail slider 300 is moved back and forth, and the reading is observed, so that the values of the lever micrometers 920 at both ends of the ruler 700 are the same, that is, the side of the ruler 700 is aligned.

[0055] 3. The straightness of the guide rail 200 is detected:

[0056] (1) The straightness of the upper surface of the guide rail 200 is detected: after the upper surface of the ruler 700 is aligned, the magnetic table seat 910 is adsorbed on the guide rail slider 300, the needle of the lever micrometer 920 is gently pressed on the upper surface of the ruler 700, the lever micrometer 920 on the guide rail slider 300 is moved, and the reading is observed. In this connection structure, the difference between the maximum and minimum values of the reading during the pushing table process is the straightness of the main guide rail 200.

[0057] (2) The straightness of the side of the guide rail 200 is detected: after the side of the ruler 700 is aligned, the magnetic table seat 910 is adsorbed on the guide rail slider 300, the needle of the lever micrometer 920 is gently pressed on the side of the ruler 700, the lever micrometer 920 on the guide rail slider 300 is moved, and the reading is observed. In this connection structure, the difference between the maximum and minimum values of the reading during the pushing table process is the straightness of the main guide rail 200.

[0058] The present utility model discloses a compound inclined bed body flat ruler placing tool, which is used for placing a flat ruler 700 on an inclined bed body 100, and the flat ruler 700 is used as a reference for measurement. The tool is easy to install, and the height adjusting device 600, the equal height block 500 and the side adjusting part 800 are used to adjust the two end top surfaces and the side surface of the flat ruler 700, so that the upper surface and the side surface of the flat ruler 700 are aligned. The flat ruler 700 is easy to adjust, and the data is easy and reliable to obtain.

[0059] The above is only used to illustrate the technical scheme of the present utility model, but not limit it. Other modifications or equivalent replacements made by the ordinary skilled in the art to the technical scheme of the present utility model should be covered in the scope of the claims of the present utility model, as long as they do not deviate from the spirit and scope of the technical scheme of the present utility model.

Claims

1. A turning-milling combined slant bed flatness placement tooling, characterized in that, The utility model relates to a height adjusting device for a horizontal ruler of a slanting bed body, which comprises the following components: a slanting bed body (100) provided with a guide rail (200); a guide rail slider (300) slidingly assembled on the guide rail (200); a horizontal ruler support (400) provided on the slanting bed body (100) and located on the same side as the guide rail (200); the horizontal ruler support (400) is provided with two supports arranged in parallel and at intervals; an equal-height block (500) provided on one of the horizontal ruler supports (400); a height adjusting device (600) provided on the other horizontal ruler support (400); and a horizontal ruler (700) provided at one end on the top surface of the equal-height block (500) and at the other end on the top surface of the height adjusting device (600). The height adjusting device (600) comprises:

2. The hybrid turning and milling headstock level setting tooling of claim 1, wherein, a block body (610) provided with a cavity (611) therein; the top surface of the block body (610) is provided with an open structure (613); a first inclined block (620) arranged in the cavity (611); the bottom surface of the first inclined block (620) abuts against the inner bottom surface of the block body (610), and the top surface of the first inclined block (620) is provided with a first inclined surface (621); a second inclined block (630); one end of the second inclined block (630) is arranged in the cavity (611), and the other end is arranged between the open structure (613) and the cavity (611); the top surface of the second inclined block (630) is a plane, and the bottom surface of the second inclined block (630) is provided with a second inclined surface (631); the second inclined surface (631) abuts against the first inclined surface (621); and an adjusting member (640) connected at one end to the side wall of the first inclined block (620) and exposed at the other end from the side wall of the block body (610); under the driving action of the adjusting member (640), the first inclined block (620) moves towards both sides, the first inclined surface (621) abuts against the second inclined surface (631), so that the second inclined block (630) is raised or lowered in height from the open structure (613). The adjusting member (640) is provided with two adjusting members arranged in symmetry.

3. The hybrid turning and milling headstock level setting tooling of claim 2, wherein, The cavity (611) is provided with a stroke space (612) for the movement of the first inclined block (620).

4. The hybrid turning and milling headstock level setting tooling of claim 2, wherein, The height adjusting device (600) further comprises a fastener (650) abutting against the second inclined block (630) at one end and exposed at the other end from the side wall of the block body (610); the fastener (650) is used for fixing the second inclined block (630) at a set position.

5. The hybrid turning and milling headstock level setting tooling of claim 2, wherein, The second inclined block (630) is provided with a stroke hole (632) for fixing the second inclined block (630) at a set position in cooperation with the fastener (650).

6. The hybrid turning and milling headstock level setting tooling of claim 5, wherein, ​ 7. The hybrid turning and milling headstock level setting tooling of any one of claims 1-6, wherein, The ruler support (400) comprises a fixed part (410) arranged on the inclined body (100) and on the same side of the guide rail (200) and an extension part (420) vertically arranged on the top surface of the fixed part (410) and extending upward at one end.

8. The hybrid turning and milling headstock level setting tooling of claim 7, wherein, The extension part (420) is provided with a side surface adjusting part (800) abutting against one side of the ruler (700); one end of the side surface adjusting part (800) is arranged through the extension part (420) abutting against one side of the ruler (700) and exposed on the surface of the extension part (420) away from the ruler (700), and the other end is arranged between the surface of the extension part (420) abutting against the ruler (700) and the surface of the ruler (700) facing the extension part (420).

9. The hybrid turning and milling headstock level setting tooling of claim 8, wherein, The side surface adjusting part (800) is provided with two.

10. The hybrid turning and milling headstock level setting tooling of claim 1, wherein, The turning and milling combined inclined body ruler placing tool further comprises a magnetic table seat (910) and a lever micrometer (920); the magnetic table seat (910) is detachably assembled on the guide rail sliding block (300); and the lever micrometer (920) is assembled on the magnetic table seat (910).