Support assembly for quadratic element measurement equipment and quadratic element measurement equipment

By using a limiting frame in a two-dimensional measuring device to restrict the movement of the support block, the problem of unstable positioning of the support block is solved, resulting in more efficient measurement and less product waste.

CN223734693UActive Publication Date: 2025-12-30TUNGHSU TECH GRP CO LTD
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Patent Information

Application Number
CN202423169000.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-12-30
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

Unstable positioning of the support block in a two-dimensional measuring device can lead to inaccurate measurement data, increased testing time, or product waste.

Method used

A limiting frame is used to restrict the movement of the support block. The combination design of the support block and the limiting frame increases friction to stabilize the position of the support block.

Benefits of technology

It improves measurement accuracy, reduces product defect rates and waste, and enhances measurement efficiency.

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Abstract

The utility model provides a supporting assembly for quadratic element measurement equipment and the quadratic element measurement equipment, and the supporting assembly comprises a supporting block which is used for being placed on a supporting surface of the quadratic element measurement equipment; the limiting frame is used for being placed on the supporting surface of the quadratic element measurement equipment and is provided with an accommodating space for accommodating the supporting block; the supporting block can be arranged in the containing space of the limiting frame, so that movement of the supporting block on the supporting face is limited through the limiting frame. According to the technical scheme, the limiting frame can increase the friction force between the supporting assembly and the supporting face, movement of the supporting block can be better limited, the supporting block can be more stably kept on the supporting face, and the measuring quality is improved.
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Description

Technical Field

[0001] This disclosure relates to the technical field of glass measurement, and more particularly to a support assembly for a two-dimensional measuring device, and also to a two-dimensional measuring device. Background Technology

[0002] In existing technologies, when performing two-dimensional dimensional inspection on glass, a number of movable acrylic cubes of varying sizes are selected on a two-dimensional measuring device according to the glass size. The glass is then placed on the acrylic cubes for positioning before measurement begins. Since each acrylic cube is movable and not fixed, the operator may accidentally move individual cubes, resulting in unstable placement or inaccurate positioning before measurement. This leads to inaccurate data from the two-dimensional measuring device, necessitating retesting or causing the product to be rejected (NG). This increases the two-dimensional measurement time or wastes a good product due to the NG result. Utility Model Content

[0003] One of the technical problems that this disclosure aims to solve is the problem of unstable positioning of the support block in a two-dimensional measuring device.

[0004] To address the aforementioned technical problems, this disclosure provides a support assembly for a two-dimensional measurement device, comprising:

[0005] Support block, used to place on the support surface of the two-dimensional measuring equipment;

[0006] A limiting frame is used to be placed on the support surface of a two-dimensional measuring device and has an accommodating space to accommodate the support block.

[0007] The support block can be set in the accommodating space of the limiting frame so that the limiting frame restricts the movement of the support block on the support surface.

[0008] In some embodiments, the support block is made of acrylic and the limiting frame is made of stainless steel.

[0009] In some embodiments, a plurality of support blocks are included, and the size of the accommodating space of the limiting frame is adjustable to selectively accommodate different numbers of support blocks.

[0010] In some embodiments, the limiting frame includes a gate-shaped first frame and a locking rod. The first frame includes a first crossbeam and two first longitudinal beams connected to the first crossbeam. The two first longitudinal beams are provided with a plurality of first through holes. The locking rod can be selectively disposed in one of the first through holes to form an accommodating space of a predetermined size.

[0011] In some embodiments, the limiting frame further includes a gate-shaped second frame, the second frame including a second crossbeam and two second longitudinal beams connected to the second crossbeam, the two second longitudinal beams being provided with multiple sets of second through holes, the first frame being able to be inserted into the second frame, and the locking rod being able to selectively be inserted into one set of first through holes and one set of second through holes.

[0012] In some embodiments, the two first longitudinal beams are disposed between the two second longitudinal beams with a clearance fit.

[0013] In some embodiments, the locking lever is a bolt and screwed with a nut.

[0014] In some embodiments, the first through hole and the second through hole are provided at equal intervals.

[0015] In some embodiments, the height of the support block is greater than the height of the limiting frame.

[0016] On the other hand, embodiments of this disclosure provide a two-dimensional measurement device, which includes the support components for a two-dimensional measurement device described above.

[0017] Through the above technical solution, the limiting frame can increase the friction between the support component and the support surface, which can better restrict the movement of the support block, so that the support block can be kept more stably on the support surface, thereby improving the measurement quality. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this disclosure or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this disclosure. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a schematic diagram of the structure of the support component for a two-dimensional measurement device disclosed in this embodiment.

[0020] Explanation of reference numerals in the attached figures:

[0021] 1. Support block; 2. Locking rod; 3. First frame; 4. Second frame; 5. First through hole; 6. Second through hole; 7. Nut. Detailed Implementation

[0022] The embodiments of this disclosure will be further described in detail below with reference to the accompanying drawings and examples. The detailed description of the embodiments and the accompanying drawings are used to illustrate the principles of this disclosure by way of example, but should not be used to limit the scope of this disclosure. This disclosure can be implemented in many different forms and is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

[0023] These embodiments are provided to make the disclosure thorough and complete, and to fully express the scope of the disclosure to those skilled in the art. It should be noted that, unless otherwise specifically stated, the relative arrangement of components and steps, material composition, numerical expressions, and values ​​set forth in these embodiments should be interpreted as exemplary only and not as limiting.

[0024] It should be noted that, in the description of this disclosure, unless otherwise stated, "a plurality of" means two or more; the terms "upper," "lower," "left," "right," "inner," and "outer," etc., indicating orientation or positional relationship, are only for the convenience of describing this disclosure and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this disclosure. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0025] Furthermore, the terms "first," "second," and similar terms used in this disclosure do not indicate any order, quantity, or importance, but are merely used to distinguish different parts. "Vertical" is not strictly vertical, but within the permissible margin of error. "Parallel" is not strictly parallel, but within the permissible margin of error. Terms such as "including" or "contains" mean that the element preceding the word encompasses the element listed after the word, and do not exclude the possibility of encompassing other elements as well.

[0026] It should also be noted that, in the description of this disclosure, unless otherwise expressly specified and limited, the terms "installed," "connected," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this disclosure depending on the specific circumstances. When a particular device is described as being located between a first device and a second device, an intermediary device may or may not be present between the particular device and the first or second device.

[0027] All terms used in this disclosure have the same meaning as understood by one of ordinary skill in the art to which this disclosure pertains, unless otherwise specifically defined. It should also be understood that terms defined in general dictionaries should be interpreted as having meanings consistent with their meanings in the context of the relevant art, and not as idealized or highly formalized, unless expressly defined herein.

[0028] Techniques, methods, and equipment known to those skilled in the art may not be discussed in detail, but where appropriate, they should be considered part of the specification.

[0029] refer to Figure 1 As shown, this solution provides a support assembly for a two-dimensional measurement device, which includes:

[0030] Support block 1, which is used to be placed on the support surface of the two-dimensional measuring device;

[0031] A limiting frame, which is used to be placed on the support surface of the two-dimensional measuring device and has an accommodating space to accommodate the support block 1;

[0032] The support block 1 can be disposed in the accommodating space of the limiting frame to restrict the movement of the support block 1 on the support surface by the limiting frame.

[0033] Support block 1 can be placed on the support surface of a two-dimensional measuring device for measuring glass, and the top surface of support block 1 can be used to place glass to support the glass plate.

[0034] The limiting frame is a frame-shaped structure that forms an accommodating space for the support block 1. The limiting frame can also be set on the support surface of the two-dimensional measuring device.

[0035] The support block 1 is housed in the accommodating space of the limiting frame. The cross-section of the support block 1 is basically the same as the cross-section of the accommodating space to restrict the movement of the support block 1 in the limiting frame.

[0036] The addition of the limiting frame increases the overall mass of the support component, which in turn increases the friction between it and the support surface of the two-dimensional measuring device. This can prevent or reduce the movement of the support block 1 on the support surface of the two-dimensional measuring device, thus providing more stable support for the glass.

[0037] The support block 1 is made of acrylic, and the limiting frame is made of stainless steel. That is, the support block 1 is made of polymethyl methacrylate (PMMA), which better protects the supported glass from scratches. However, this material has a low density and is easily moved accidentally under external force. The limiting frame is made of stainless steel, giving it a greater weight and allowing it to be more stably held on the support surface of the two-dimensional measuring device, thus limiting the movement of the support block 1 relative to the support surface. Of course, in other embodiments, the limiting frame can also be made of other materials with higher density, such as copper or other alloys.

[0038] In some embodiments, the support assembly for the two-dimensional measuring device includes multiple support blocks 1, and the size of the accommodating space of the limiting frame is adjustable to selectively accommodate different numbers of the support blocks 1. Depending on the size of the glass, the required support area at each support point varies; therefore, different numbers of support blocks 1 can be provided at each support point to change the support area for the glass. Correspondingly, the size of the accommodating space of the limiting frame can also be adjusted so that the cross-section of the accommodating space is the same as the cross-section of the corresponding number of support blocks 1, ensuring that the limiting frame can always restrict the movement of the support blocks 1.

[0039] In some embodiments, the limiting frame includes a gate-shaped first frame 3 and a locking rod 2. The first frame 3 includes a first crossbeam and two first longitudinal beams connected to the first crossbeam. Multiple sets of first through holes 5 are provided on the two first longitudinal beams. The locking rod 2 can be selectively positioned in one set of the first through holes 5 to form a predetermined accommodating space. The first frame 3 is a gate-shaped structure including one crossbeam and two longitudinal beams, i.e., the two ends of the first crossbeam are connected to the first longitudinal beams, and each of the first longitudinal beams has through holes. The locking rod 2 can be inserted into one set of opposing first through holes 5 of the two first longitudinal beams to form a quadrilateral structure to accommodate the support block 1. When the locking rod 2 is inserted into the two first through holes 5 at different positions, its distance from the first crossbeam is different, resulting in different sizes of accommodating spaces. Therefore, different support blocks 1 can be accommodated, and different numbers of support blocks 1 can form different sizes of support areas.

[0040] In some embodiments, the limiting frame further includes a gate-shaped second frame 4. The second frame 4 includes a second crossbeam and two second longitudinal beams connected to the second crossbeam. Multiple sets of second through holes 6 are provided on the two second longitudinal beams. The first frame 3 can be inserted into the second frame 4, and the locking rod 2 can selectively insert into one set of the first through holes 5 and one set of the second through holes 6. The structure of the second frame 4 is similar to that of the first frame 3, but the second frame 4 is relatively large. The spacing between the two second longitudinal beams can accommodate the insertion of the first frame 3. The locking rod 2 can pass through both the first and second longitudinal beams simultaneously to connect the first frame 3 and the second frame 4 together. The two frames can increase the overall weight and increase the friction between the frame and the support surface, thus more stably limiting the movement of the support block 1.

[0041] In some embodiments, the two first longitudinal beams are spaced apart and positioned between the two second longitudinal beams. The overall width of the two first longitudinal beams is substantially equal to the distance between the two second longitudinal beams, so that the first frame 3 can be confined between the two second longitudinal beams and cannot move along the length of the first crossbeam.

[0042] In some embodiments, the locking rod 2 is a bolt with a nut 7 screwed onto it. The locking rod 2 passes through the first and second longitudinal beams and is screwed with the nut 7 to prevent the locking rod 2 from disengaging from the first and second longitudinal beams. In other embodiments, the locking rod 2 may also be a common pin.

[0043] In some embodiments, the first through hole 5 and the second through hole 6 are equally spaced. The spacing of the first through holes 5 can be the same as the dimension of the support block 1 in that direction; inserting different first through holes 5 can accommodate different numbers of support blocks 1.

[0044] In some embodiments, the height of the support block 1 is greater than the height of the limiting frame. The greater height of the support block 1 ensures that the limiting frame does not contact the glass when the support block 1 supports the glass, thus protecting the glass from scratches.

[0045] On the other hand, this solution also provides a two-dimensional measuring device, which includes the support component for the two-dimensional measuring device described in the above solution. The two-dimensional measuring device can be used to perform two-dimensional measurements on glass, and the support component can be used to support the glass.

[0046] The embodiments of this disclosure have now been described in detail. To avoid obscuring the concept of this disclosure, some details known in the art have not been described. Those skilled in the art can fully understand how to implement the technical solutions disclosed herein based on the above description.

[0047] While specific embodiments of this disclosure have been described in detail by way of examples, those skilled in the art should understand that the examples are for illustrative purposes only and not intended to limit the scope of this disclosure. Those skilled in the art should understand that modifications can be made to the above embodiments or equivalent substitutions can be made to some technical features without departing from the scope and spirit of this disclosure. In particular, as long as there is no structural conflict, the technical features mentioned in the various embodiments can be combined in any manner.

Claims

1. A support assembly for a coordinate measuring apparatus, characterized by, include: Support block (1), the support block (1) is used to be placed on the support surface of the two-dimensional measuring device; A limiting frame, the limiting frame being placed on the support surface of a two-dimensional measuring device and having an accommodating space for accommodating the support block (1); The support block (1) can be disposed in the accommodating space of the limiting frame to restrict the movement of the support block (1) on the support surface by means of the limiting frame.

2. The support assembly for a coordinate measuring apparatus according to claim 1, wherein The support block (1) is made of acrylic, and the limiting frame is made of stainless steel.

3. The support assembly for a coordinate measuring apparatus according to claim 1, wherein The frame includes multiple support blocks (1), and the size of the accommodating space of the limiting frame is adjustable to selectively accommodate different numbers of the support blocks (1).

4. The support assembly for a coordinate measuring apparatus according to claim 1, wherein The limiting frame includes a gate-shaped first frame (3) and a locking rod (2). The first frame (3) includes a first crossbeam and two first longitudinal beams connected to the first crossbeam. Multiple sets of first through holes (5) are provided on the two first longitudinal beams. The locking rod (2) can be selectively disposed in one of the sets of first through holes (5) to form an accommodating space of a predetermined size.

5. The support assembly for a coordinate measuring apparatus according to claim 4, wherein, The limiting frame also includes a gate-shaped second frame (4), which includes a second crossbeam and two second longitudinal beams connected to the second crossbeam. Multiple sets of second through holes (6) are provided on the two second longitudinal beams. The first frame (3) can be inserted into the second frame (4), and the locking rod (2) can be selectively inserted into one set of the first through holes (5) and one set of the second through holes (6).

6. The support assembly for a coordinate measuring apparatus according to claim 5, wherein The two first longitudinal beams are spaced apart and positioned between the two second longitudinal beams.

7. The support assembly for a coordinate measuring apparatus according to claim 5, wherein The locking rod (2) is a bolt and is screwed with a nut (7).

8. The support assembly for a coordinate measuring apparatus according to claim 5, wherein, The first through hole (5) and the second through hole (6) are respectively arranged at equal intervals.

9. The support assembly for a coordinate measuring apparatus according to claim 1, wherein, The height of the support block (1) is greater than the height of the limiting frame.

10. A two-dimensional measuring apparatus, characterized by comprising: Includes the support assembly for a two-dimensional measuring device as described in any one of claims 1-9.