Case detection structure of all-in-one machine
By designing an integrated chassis inspection structure and utilizing the through holes of the fixing plate and fixing block in conjunction with the inspection probe, the problems of low inspection efficiency and low accuracy were solved, and fast and accurate through hole inspection was achieved.
Patent Information
- Application Number
- CN202520803333.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-25
AI Technical Summary
In existing technologies, the inspection efficiency and accuracy of integrated machine chassis parts are low, especially the problem of missed inspection of through holes for tapping is difficult to avoid.
An integrated chassis inspection structure was designed, including chassis parts and inspection fixtures. Corresponding through holes were set on the fixing plate and fixing block, and inspection probes were used for fast and accurate inspection.
It improves detection efficiency and accuracy, prevents measurement errors and missed detection of through holes, and is especially suitable for through hole detection of mounting plates in all-in-one machine chassis.
Smart Images

Figure CN223954815U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of machine case class parts detection tool, especially to a kind of all-in-one machine case detection structure. BACKGROUND
[0002] In the production link of all-in-one machine case, it needs to quickly and accurately inspect the all-in-one machine case produced, to find out unqualified machine case parts, and then to ensure the smooth progress of subsequent production. The machine case parts of all-in-one machine case, due to the shape of irregular specification, and product hole position is more, therefore, through the traditional manual use of caliper, and artificial naked eye observation to detect the production of machine case parts, the efficiency is slower, and precision is not high, prone to measurement error problem. Especially the tapping hole quantity of machine case parts is more, and it is easy to appear the problem of tapping hole corresponding through-hole missed detection. Therefore, can the shape of irregular specification and the characteristics of product hole position of all-in-one machine case be more, design and match detection tool, and quickly and accurately realize inspection, is the problem that all-in-one machine case manufacturer needs to solve urgently. SUMMARY
[0003] The utility model solves the technical problem that a kind of all-in-one machine case detection structure for quickly realizing the through-hole detection of machine case parts is provided.
[0004] The utility model solves the technical problem and adopts the technical scheme that all-in-one machine case detection structure includes machine case part and detection tool, the machine case part includes bottom fixed plate and the machine case fixed plate being set on bottom fixed plate, is provided with positioning recess on bottom fixed plate, and at least one fixed plate through-hole is set on the machine case fixed plate;Detection tool includes bottom fixed block and tool fixed block being set on bottom fixed block, is provided with positioning column on bottom fixed block, and tool fixed block is provided with at least one fixed block through-hole;Positioning column is set in corresponding positioning recess, and fixed plate through-hole and fixed block through-hole are set one by one, and the axis between the fixed plate through-hole and fixed block through-hole corresponding setting is coaxially arranged.
[0005] Further, detection needle is set in fixed plate through-hole and fixed block through-hole, and detection needle is the structure of extending along straight line.
[0006] Further, the machine case fixed plate includes right side fixed plate, and the tool fixed block includes right side fixed block, and the fixed plate through-hole of right side fixed plate and the fixed block through-hole of right side fixed block are set one by one.
[0007] Furthermore, the bottom fixing plate is rectangular, the chassis fixing plate includes a left fixing plate, a right fixing plate is fixed to one side of the bottom fixing plate, and the left fixing plate is fixedly set on the side of the bottom fixing plate opposite to the right fixing plate. The tooling fixing block includes a left fixing block, and the left fixing block and the right fixing block are arranged opposite to each other. The fixing plate through hole of the left fixing plate is arranged one-to-one with the fixing block through hole of the left fixing block.
[0008] Furthermore, the chassis mounting plate includes a rear mounting plate, which is fixedly mounted on one side of the bottom mounting plate located between the right mounting plate and the left mounting plate. The tooling mounting block includes a rear mounting block, which is located on the same side of the left mounting block and the right mounting block. The mounting through holes of the rear mounting plate correspond one-to-one with the mounting through holes of the rear mounting block.
[0009] Furthermore, the rear end fixing plate includes a first rear end plate and a second rear end plate, which are coplanarly disposed, and fixing plate through holes are respectively provided on the first rear end plate and the second rear end plate.
[0010] Furthermore, the bottom fixing plate is rectangular, and the right fixing plate is located on the side along the length of the bottom fixing plate.
[0011] Furthermore, the through holes of the fixing plate are arranged perpendicularly to the fixing plate of the chassis, and the through holes of the fixing block are arranged perpendicularly to the tooling fixing block.
[0012] Furthermore, at least one bottom through hole is provided on the bottom fixing plate.
[0013] Furthermore, there are at least two bottom fixing blocks.
[0014] The beneficial effects of this utility model are as follows: 1. In actual use, the bottom fixing plate of the chassis part to be inspected is placed on the bottom fixing block of the inspection fixture, and the positioning pins are aligned with the corresponding positioning grooves to correct the placement position of the chassis part. Subsequently, by checking whether each fixing block through hole has a corresponding fixing plate through hole, the number and drilling position of the fixing plate through holes can be quickly detected. This inspection structure greatly improves the inspection efficiency and prevents measurement errors and missed through holes. 2. When there are many fixing plate through holes and corresponding fixing block through holes to be inspected, a detection pin can be inserted into each fixing block through hole, allowing the detection pin to pass through the corresponding fixing plate through hole and fixing block through hole. Since the detection pin has a linear structure, it is visually clear how many fixing plate through holes have been inspected, thereby greatly improving the accuracy of the identification and reducing the possibility of missed fixing plate through holes. This utility model is particularly suitable for the inspection of fixing plate through holes in all-in-one machine chassis. Attached Figure Description
[0015] Figure 1 is a position relation schematic view of the case part and the detection tool when detecting.
[0016] Figure 2 is an embodiment schematic view of the case part.
[0017] Figure 3 is an embodiment schematic view of the detection tool corresponding to Figure 2 the case part.
[0018] In the figure, marked as: bottom fixed plate 1, positioning groove 11, bottom through hole 12, right side fixed plate 2, first rear end plate 31, second rear end plate 32, first left side plate 41, second left side plate 42, third left side plate 43, fourth left side plate 44, fifth left side plate 45, front end fixed plate 5, case part 6, detection tool 7, bottom fixed block 71, right side fixed block 72, rear end fixed block 73, left side fixed block 74, positioning column 75, fixed block through hole 8, fixed plate through hole 9. DETAILED DESCRIPTION
[0019] The utility model is further explained below in combination with the drawings and embodiments.
[0020] As Figures 1 to 3 shown is an embodiment of all-in-one machine case detection structure, mainly including two parts of case part 6 and detection tool 7.In actual detection, as Figure 1 shown, case part 6 is set on detection tool 7 in the corresponding position, realizes the quick alignment of case part 6 and detection tool 7, and the corresponding detection can be realized.
[0021] Specifically, case part 6 includes bottom fixed plate 1, bottom fixed plate 1 is rectangular, and a plurality of bottom through holes 12 are arranged on bottom fixed plate 1 to reduce the overall weight of bottom fixed plate 1 and heat dissipation ventilation.Two positioning grooves 11 are arranged on bottom fixed plate 1, and the positioning grooves 11 bulge to the upper of bottom fixed plate 1 and form a recessed structure on the bottom surface of bottom fixed plate 1.The two positioning grooves 11 are arranged corresponding to the two positioning columns 75 on detection tool 7, and when detecting, as Figure 1As shown, the positioning column 75 is quickly matched with the positioning groove 11, realizing the accurate alignment between the case part 6 and the detection tool 7. The right side fixed plate 2 is arranged on the side of the length direction of the bottom fixed plate 1, the left side fixed plate is fixedly arranged on the side opposite to the right side fixed plate 2 of the bottom fixed plate 1, the rear end fixed plate is fixedly arranged on one side between the right side fixed plate 2 and the left side fixed plate of the bottom fixed plate 1, and the fixed plate through hole 9 is arranged on the opposite side of the rear end fixed plate. The right side fixed plate 2 is provided with four fixed plate through holes 9. The left side fixed plate includes a first rear end plate 31 and a second rear end plate 32, and the first rear end plate 31 and the second rear end plate 32 are coplanarly arranged between the first rear end plate 31 and the second rear end plate 32. The first rear end plate 31 and the second rear end plate 32 are respectively provided with fixed plate through holes 9. The left side fixed plate includes a first left side plate 41, a second left side plate 42, a third left side plate 43 and a fourth left side plate 44, and the first left side plate 41, the second left side plate 42, the third left side plate 43 and the fourth left side plate 44 are parallelly arranged between the first left side plate 41, the second left side plate 42, the third left side plate 43 and the fourth left side plate 44. The first left side plate 41, the second left side plate 42, the third left side plate 43 and the fourth left side plate 44 are respectively provided with fixed plate through holes 9. The fifth left side plate 45 is arranged on the front end fixed plate 5, and the front end fixed plate 5 is parallelly arranged between the first left side plate 41 and the fifth left side plate 45. The fifth left side plate 45 is also provided with a fixed plate through hole 9.
[0022] As shown in Figure 1 and Figure 3 The detection tool 7 includes a bottom fixed block 71, and the right side fixed block 72, the rear end fixed block 73 and the left side fixed block 74 are respectively arranged on the top surface of the bottom fixed block 71 and perpendicular to the top surface of the bottom fixed block 71. Among them, the right side fixed block 72 and the left side fixed block 74 are parallelly arranged, and the rear end fixed block 73 is arranged on the left side of the right side fixed block 72 and the left side fixed block 74. The right side fixed block 72, the rear end fixed block 73 and the left side fixed block 74 are respectively provided with fixed block through holes 8 corresponding to the positions of the fixed plate through holes 9 of the case part 6, and the axes between the corresponding fixed plate through holes 9 and the fixed block through holes 8 are coaxially arranged.
[0023] In actual detection, as shown in Figure 1As shown, the positioning groove 11 of the chassis part 6 is aligned with the corresponding positioning column 75 on the detection tool 7, and the chassis part 6 is arranged on the detection tool 7. At this time, the bottom fixed plate 1 corresponds to the bottom fixed block 71, the right fixed plate 2 corresponds to the right fixed block 72, the first left plate 41, the second left plate 42, the third left plate 43, the fourth left plate 44 and the fifth left plate 45 correspond to the left fixed block 74, the first rear end plate 31 and the second rear end plate 32 correspond to the rear end fixed block 73. Then, the detection needle is inserted into each pair of corresponding fixed block through hole 8 and fixed plate through hole 9. The detection needle is a linearly extending structure. After insertion, the detection needle is retained in the corresponding fixed block through hole 8 and fixed plate through hole 9 until all the fixed block through hole 8 and fixed plate through hole 9 are inserted with the detection needle. Finally, by observing whether the fixed block through hole 8 is not inserted with the detection needle, it is confirmed that all the fixed block through hole 8 has been inserted with the detection needle, and the detection is completed, which indicates that the number of fixed plate through hole 9 of the chassis part 6 is correct, and the position of the fixed plate through hole 9 is also accurate, that is, the detection is qualified. After the detection is completed, the detected chassis part 6 is taken off from the detection tool 7, and then the detection of the next chassis part 6 is carried out.
Claims
1. An all-in-one machine case detection structure, comprising a machine case part (6) and a detection tool (7), characterized in that: the machine case part (6) comprises a bottom fixed plate (1) and a machine case fixed plate arranged on the bottom fixed plate (1), the bottom fixed plate (1) is provided with a positioning groove (11), and the machine case fixed plate is provided with at least one fixed plate through hole (9); the detection tool (7) comprises a bottom fixed block (71) and a tool fixed block arranged on the bottom fixed block (71), the bottom fixed block (71) is provided with a positioning column (75), and the tool fixed block is provided with at least one fixed block through hole (8); the positioning column (75) is arranged in the corresponding positioning groove (11), the fixed plate through hole (9) and the fixed block through hole (8) are arranged one by one in correspondence, and the axes between the corresponding fixed plate through hole (9) and the fixed block through hole (8) are coaxially arranged. The detection needle is arranged in the fixed plate through hole (9) and the fixed block through hole (8), and the detection needle is a linearly extending structure. The machine case fixed plate comprises a right side fixed plate (2), the tool fixed block comprises a right side fixed block (72), and the fixed plate through hole (9) of the right side fixed plate (2) is arranged one by one in correspondence with the fixed block through hole (8) of the right side fixed block (72). The bottom fixed plate (1) is rectangular, the machine case fixed plate comprises a left side fixed plate, the right side fixed plate (2) is fixed to one side edge of the bottom fixed plate (1), the left side fixed plate is fixedly arranged on the side edge of the bottom fixed plate (1) opposite to the right side fixed plate (2), the tool fixed block comprises a left side fixed block (74), and the left side fixed block (74) and the right side fixed block (72) are oppositely arranged; the fixed plate through hole (9) of the left side fixed plate is arranged one by one in correspondence with the fixed block through hole (8) of the left side fixed block (74).
2. The all-in-one machine case detection structure of claim 1, wherein: The machine case fixed plate comprises a rear end fixed plate, the rear end fixed plate is fixedly arranged on one side edge of the bottom fixed plate (1) between the right side fixed plate (2) and the left side fixed plate, the tool fixed block comprises a rear end fixed block (73), and the rear end fixed block (73) is arranged on the same side of the left side fixed block (74) and the right side fixed block (72); the fixed plate through hole (9) of the rear end fixed plate is arranged one by one in correspondence with the fixed block through hole (8) of the rear end fixed block (73).
3. The all-in-one machine case detection structure of claim 1 or 2, wherein: The rear end fixed plate comprises a first rear end plate (31) and a second rear end plate (32), the first rear end plate (31) and the second rear end plate (32) are coplanarly arranged, and the fixed plate through holes (9) are arranged on the first rear end plate (31) and the second rear end plate (32) respectively.
4. The all-in-one machine case detection structure of claim 3, wherein: The bottom fixed plate (1) is rectangular, and the right side fixed plate (2) is arranged on the side edge in the length direction of the bottom fixed plate (1).
5. The all-in-one machine case detection structure of claim 4, wherein: The fixed plate through hole (9) and the machine case fixed plate are vertically arranged, and the fixed block through hole (8) and the tool fixed block are vertically arranged.
6. The all-in-one machine case detection structure of claim 5, wherein: The bottom fixed plate (1) is provided with at least one bottom through hole (12).
7. The all-in-one machine case detection structure of claim 3, wherein: The bottom fixed block (71) is at least two.
8. The all-in-one machine case detection structure of claim 1 or 2, wherein: 9. The all-in-one machine case detection structure of claim 1 or 2, wherein: 10. The all-in-one machine case detection structure of claim 1 or 2, wherein: