Conveying device
By integrating heat dissipation and conveying mechanisms into the conveying device, the problem of heat rise affecting test results during power-on testing of electronic products is solved, achieving effective temperature control and improved test accuracy.
Patent Information
- Application Number
- CN202520042740.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-01-08
AI Technical Summary
The heat generated during the power-on testing of electronic products causes the temperature to rise, affecting the accuracy of the test results.
Design a conveying device that includes a support, a heat dissipation mechanism, and a conveying mechanism. The heat dissipation mechanism is connected to the support, and the product is cooled by using a heat conduction structure and a cooling structure. Combined with adjustment and positioning mechanisms, the product's temperature is kept stable during the testing process.
It effectively reduces product temperature during transportation, improving the accuracy of test results and work efficiency.
Smart Images

Figure CN223851447U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to automatic equipment technical field, especially relate to a conveying device. BACKGROUND
[0002] After the production of electronic products is completed, the electronic products often need to be tested to detect whether the working state of the electronic products is normal, but a large amount of heat is generated during the power-on test of the electronic products, which causes the temperature of the electronic products to rise, and the temperature rise of the electronic products may change the performance of the electronic products, thereby affecting the accuracy of the test results. SUMMARY
[0003] The utility model discloses at least one of the technical problems existing in the prior art. To this end, the utility model provides a conveying device capable of reducing the temperature of products.
[0004] The conveying device according to an embodiment of the utility model, including bearing seat, heat dissipation mechanism and conveying mechanism, bearing seat is used to bear product, heat dissipation mechanism is connected with bearing seat, and is used to heat dissipation to the product on bearing seat, conveying mechanism is connected with bearing seat, and is used to drive bearing seat reciprocating movement along the preset direction.
[0005] The conveying device according to an embodiment of the utility model has at least the following technical effects:
[0006] In the conveying device of the present application, when the conveying device is located in the loading area, the product is placed on the bearing seat, and then the bearing seat is driven to move to the test area along the preset direction by the conveying mechanism connected with the bearing seat. Since the heat dissipation mechanism is connected with the bearing seat, the bearing seat can be cooled by the heat dissipation mechanism, thereby realizing the cooling of the product on the bearing seat. The heat dissipation mechanism is connected with the bearing seat, and the bearing seat is connected with the conveying mechanism, thereby forming a conveying device integrating the conveying mechanism and the heat dissipation mechanism. Therefore, the conveying device of the present application can reduce the temperature of the product.
[0007] The conveying device according to some embodiments of the utility model, the heat dissipation mechanism includes the heat conduction structure and the cooling structure connected, the heat conduction structure is connected with the bearing seat, the heat conduction structure has the heat dissipation part, the heat conduction structure can conduct the heat on the bearing seat to the heat dissipation part, and the cooling structure is used to cool the heat dissipation part.
[0008] The conveying device according to some embodiments of the utility model, the heat dissipation part is a heat dissipation plate, and the heat conduction structure further includes a heat equalizing plate, and two plate surfaces of the heat equalizing plate are respectively abutted with the bearing seat and the heat dissipation plate.
[0009] According to some embodiments of the utility model, a cooling structure includes a mounting seat, a heat dissipation cavity is arranged in the mounting seat, a coolant is used to be introduced into the heat dissipation cavity, and a heat dissipation plate is arranged at the cavity opening of the heat dissipation cavity.
[0010] According to some embodiments of the utility model, a heat dissipation cavity is arranged in the heat dissipation cavity.
[0011] According to some embodiments of the utility model, a heat dissipation plate is arranged on one side of the mounting seat, and the fin is arranged in the heat dissipation cavity.
[0012] According to some embodiments of the utility model, a detection structure is arranged on the bearing seat, and the detection structure is used to detect the temperature of the product on the bearing seat.
[0013] According to some embodiments of the utility model, the conveying device further comprises an adjusting mechanism, the adjusting mechanism is connected with the bearing seat, and the adjusting mechanism is used to adjust the spatial posture of the product on the bearing seat.
[0014] According to some embodiments of the utility model, the adjusting mechanism comprises a first adjusting assembly, a second adjusting assembly and an angle adjusting assembly, the first adjusting assembly, the second adjusting assembly and the angle adjusting assembly are respectively drivingly connected with the bearing seat, the first adjusting assembly is used to adjust the position of the bearing seat in a first direction, the second adjusting assembly is used to adjust the position of the bearing seat in a second direction, and the angle adjusting assembly is used to adjust the spatial angle of the bearing seat, the first direction, the second direction and a preset direction are arranged to be inclined to each other, and the preset direction is inclined to the plane where the first direction and the second direction are located.
[0015] According to some embodiments of the utility model, the conveying device further comprises a positioning mechanism, the positioning mechanism is connected with the heat dissipation mechanism, the positioning mechanism and the bearing seat are arranged along a preset direction, and the positioning mechanism is used to position the product on the bearing seat.
[0016] The additional aspects and advantages of the utility model will be partially given in the following description, partially will become obvious from the following description, or will be understood through the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS
[0017] The above and / or additional aspects and advantages of the utility model will become apparent and more readily appreciated from the following description of the embodiments, with reference to the following drawings, in which:
[0018] Figure 1 FIG. 1 is a structural schematic view of a conveying device according to one embodiment of the utility model;
[0019] Figure 2 FIG. 2 is a structural schematic view of a conveying device according to another embodiment of the utility model; Figure 1The connection structure schematic view of the bearing seat, the heat dissipation mechanism and the positioning mechanism in the device;
[0020] Figure 3 The bearing seat, the heat dissipation mechanism and the positioning mechanism in the device are connected; Figure 2 The exploded structure schematic view of the bearing seat, the heat dissipation mechanism and the positioning mechanism in the device;
[0021] Figure 4 The bearing seat, the heat dissipation mechanism and the positioning mechanism in the device are connected; Figure 2 The cross-sectional view of the bearing seat, the heat dissipation mechanism and the positioning mechanism in the device;
[0022] Figure 5 The bearing seat, the heat dissipation mechanism and the positioning mechanism in the device are connected; Figure 1 The structure schematic view of the conveying device in the device removes the conveying mechanism.
[0023] Reference signs:
[0024] The bearing seat 100, the detection structure 110;
[0025] The heat dissipation mechanism 200, the heat conduction structure 210, the heat dissipation plate 211, the fin 211a, the heat equalization plate 212, the cooling structure 220, the mounting seat 221, the heat dissipation cavity 221a, the refrigerant input port 221b, the refrigerant output port 221c;
[0026] The conveying mechanism 300, the first driver 310, the sliding rail 320, the sliding seat 330;
[0027] The adjustment mechanism 400, the first adjustment assembly 410, the second adjustment assembly 420, the angle adjustment assembly 430, the first angle adjustment structure 431, the second angle adjustment structure 432, the third angle adjustment structure 433;
[0028] The positioning mechanism 500, the second driver 510, the top block 520, the mounting frame 530, the long hole 531, the locking block 540, the threaded connecting piece 550;
[0029] The refrigerant supply mechanism 600. DETAILED DESCRIPTION
[0030] The embodiments of the present application are described in detail below, and examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application.
[0031] In the description of the utility model, it is understood that the orientation description, such as the orientation or positional relationship indicated by up, down, left, right, front, back and the like, is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the utility model and simplifying the description, and therefore cannot be understood as limiting the utility model.
[0032] In the description of the utility model, if the first and second are described for the purpose of distinguishing technical features, it cannot be understood as indicating or implying the relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.
[0033] In the description of the utility model, unless otherwise explicitly limited, the words such as setting, installing and connecting should be understood broadly, and the skilled in the art can reasonably determine the specific meaning of the above words in the utility model according to the specific content of the technical scheme.
[0034] The following refers to Figures 1 to 5 A conveying device according to an embodiment of the utility model is described in detail.
[0035] Reference Figure 1 And Figure 2 According to a conveying device according to an embodiment of the utility model, it comprises a bearing seat 100, a heat dissipation mechanism 200 and a conveying mechanism 300, the bearing seat 100 is used for bearing product;The heat dissipation mechanism 200 is connected with the bearing seat 100, and is used for dissipating heat to the product on the bearing seat 100;The conveying mechanism 300 is connected with the bearing seat 100, and is used for driving the bearing seat 100 to move along the preset direction reciprocatingly.
[0036] In the conveying device of the application, when the conveying device is located in the loading area, the product is placed on the bearing seat 100, and then the bearing seat 100 is driven to move to the test area along the preset direction by the conveying mechanism 300 connected with the bearing seat 100, since the heat dissipation mechanism 200 is connected with the bearing seat 100, the bearing seat 100 can be cooled by the heat dissipation mechanism 200, so as to realize the cooling of the product on the bearing seat 100. The heat dissipation mechanism 200 is connected with the bearing seat 100, and the bearing seat 100 is connected with the conveying mechanism 300, so as to form the conveying device integrating the conveying mechanism 300 and the heat dissipation mechanism 200, therefore the conveying device of the application can reduce the temperature of the product.
[0037] It can be understood that, in the conveying device of the application, the heat dissipation can be realized while conveying the product by connecting the conveying mechanism 300 and the heat dissipation mechanism 200 with the bearing seat 100, which further improves the work efficiency.
[0038] ReferenceFigure 2 And Figure 3 In some embodiments of the utility model, the heat dissipation mechanism 200 includes the heat conduction structure 210 and the cooling structure 220, the heat conduction structure 210 is connected with the bearing seat 100, the heat conduction structure 210 has the heat dissipation part, the heat conduction structure 210 can conduct the heat on the bearing seat 100 to the heat dissipation part, and the cooling structure 220 is used to cool the heat dissipation part.It can be understood that the product is placed on the bearing seat 100, the heat of the product is transferred to the bearing seat 100, then the heat is transferred to the heat conduction structure 210 connected with the bearing seat 100 through the bearing seat 100, and then the heat dissipation part of the heat conduction structure 210 is cooled through the cooling structure 220 to take away the heat in the heat conduction structure 210, so that the cooling of the product on the bearing seat 100 is realized.
[0039] Reference Figure 3 In some embodiments, the heat dissipation part is a heat dissipation plate 211, and the heat conduction structure 210 further includes a heat equalizing plate 212, and the two plate surfaces of the heat equalizing plate 212 are respectively in abutment with the bearing seat 100 and the heat dissipation plate 211.It can be understood that the heat conduction structure 210 is cooled through the cooling structure 220 to take away the heat of the heat conduction structure 210, and since the upper end surface of the heat equalizing plate 212 is in abutment with the lower end surface of the bearing seat 100 and the lower end surface of the heat equalizing plate 212 is in abutment with the heat dissipation plate 211, the heat on the bearing seat 100 can be evenly distributed, and the heat on the bearing seat 100 can be evenly reduced under the cooling of the cooling structure 220, thereby reducing the possibility of lower or higher heat in the local area of the product.
[0040] As Figure 3 And Figure 4 As shown in some embodiments, the cooling structure 220 includes a mounting seat 221, a heat dissipation cavity 221a is arranged in the mounting seat 221, the heat dissipation cavity 221a is used to pass in refrigerant, and the heat dissipation plate 211 is arranged at the cavity opening of the heat dissipation cavity 221a.It can be understood that the heat dissipation plate 211 is arranged at the cavity opening of the heat dissipation cavity 221a, and the heat dissipation cavity 221a is filled with refrigerant, and the refrigerant in the heat dissipation cavity 221a can absorb the heat in the heat dissipation plate 211, so that the heat in the bearing seat 100 is reduced, thereby realizing the cooling of the product on the bearing seat 100.
[0041] Specifically, the refrigerant is air, and the heat dissipation plate 211 closes the cavity opening of the heat dissipation cavity 221a.
[0042] Reference Figure 4In some embodiments, the cavity wall of the heat dissipation cavity 221a is provided with a refrigerant input port 221b and a refrigerant output port 221c. It can be understood that, by providing the refrigerant input port 221b and the refrigerant output port 221c on the cavity wall of the heat dissipation cavity 221a, the refrigerant input port 221b is used for inputting refrigerant to input the refrigerant into the heat dissipation cavity 221a, and the refrigerant output port 221c is used for outputting refrigerant to exhaust the refrigerant in the heat dissipation cavity 221a, so that the refrigerant in the heat dissipation cavity 221a is in a flowing state, thereby improving the cooling effect of the refrigerant on the heat dissipation plate 211.
[0043] In some embodiments, the heat dissipation plate 211 is provided with fins 211a on the side close to the mounting seat 221, and the fins 211a are located in the heat dissipation cavity 221a. For example, as shown in Figure 3 and Figure 4 , the heat dissipation plate 211 is provided with a plurality of fins 211a on the side close to the mounting seat 221, and the fins 211a are located in the heat dissipation cavity 221a. It can be understood that, by providing a plurality of fins 211a on the heat dissipation plate 211, and the fins 211a are located in the heat dissipation cavity 221a, the heat dissipation plate 211 is in contact with the refrigerant through the plurality of fins 211a, thereby increasing the heat dissipation area of the heat dissipation plate 211, and improving the heat dissipation effect of the heat dissipation plate 211.
[0044] Reference Figure 3 In some embodiments of the utility model, the bearing seat 100 is provided with a detection structure 110, and the detection structure 110 is used for detecting the temperature of the product on the bearing seat 100. It can be understood that, by using the detection structure 110 to detect the temperature of the product in real time, when the actual temperature detected is higher than the preset temperature, the temperature of the product is reduced by the cooling structure 220, so that the temperature of the product is always maintained within the preset temperature range.
[0045] Reference Figure 2 and Figure 4 In further embodiments of the utility model, the conveying device further comprises a refrigerant supply mechanism 600, the refrigerant supply mechanism 600 is in communication with the refrigerant input port 221b, the refrigerant supply mechanism 600 is electrically connected with the detection structure 110, and the refrigerant supply mechanism 600 can input refrigerant into the heat dissipation cavity 221a or stop inputting refrigerant into the heat dissipation cavity 221a according to the detection result of the detection structure 110.
[0046] Specifically, the detection structure 110 is a thermistor, and the thermistor is electrically connected with the refrigerant supply mechanism 600.
[0047] Reference Figure 1 and Figure 5In some embodiments of the utility model, the conveying device further comprises an adjusting mechanism 400, the adjusting mechanism 400 is connected with the bearing seat 100, and the adjusting mechanism 400 is used for adjusting the spatial posture of the product on the bearing seat 100. It can be understood that when the bearing seat 100 is conveyed to the test area by the conveying mechanism 300, then the spatial posture of the bearing seat 100 is adjusted by the adjusting mechanism 400, so as to adjust the spatial posture of the product on the bearing seat 100, so that the product can be accurately connected with the test equipment.
[0048] Specifically, the conveying assembly comprises a first driver 310, a sliding rail 320 and a sliding seat 330, the sliding rail 320 extends along a preset direction, the first driver 310 can drive the sliding seat 330 to move along the sliding rail 320, and the adjusting mechanism 400 is connected with the sliding seat 330.
[0049] Reference Figure 5 In some embodiments, the adjusting mechanism 400 comprises a first adjusting assembly 410, a second adjusting assembly 420 and an angle adjusting assembly 430, the first adjusting assembly 410, the second adjusting assembly 420 and the angle adjusting assembly 430 are respectively drivingly connected with the bearing seat 100, the first adjusting assembly 410 is used for adjusting the position of the bearing seat 100 in the first direction, the second adjusting assembly 420 is used for adjusting the position of the bearing seat 100 in the second direction, and the angle adjusting assembly 430 is used for adjusting the spatial angle of the bearing seat 100, the first direction, the second direction and the preset direction are arranged to be inclined to each other, and the preset direction is inclined to the plane where the first direction and the second direction are located. It can be understood that when the bearing seat 100 is conveyed to the test area by the conveying mechanism 300, the positions of the bearing seat 100 in the first direction and the second direction are respectively adjusted by the first adjusting assembly 410 and the second adjusting assembly 420, so that the adjustment of the spatial position of the bearing seat 100 can be realized, and then the spatial angle of the bearing seat 100 is adjusted by the angle adjusting assembly 430, so that the adjustment of the spatial posture of the product on the bearing seat 100 is realized, so as to ensure that the product on the bearing seat 100 can be well connected with the test device.
[0050] Specifically, the first direction is a vertical direction, the second direction and the preset direction are both horizontal directions, and the second direction is perpendicular to the preset direction; the first adjusting assembly 410 is a vertical adjusting sliding platform, the second adjusting assembly 420 is a horizontal adjusting sliding platform, the sliding seat 330 is connected with the vertical adjusting sliding platform, the vertical adjusting sliding platform is connected with the horizontal adjusting sliding platform, the vertical adjusting sliding platform can adjust the position of the horizontal adjusting sliding platform in the vertical direction, the horizontal adjusting sliding platform is connected with the angle adjusting assembly 430, and the horizontal adjusting sliding platform can adjust the position of the angle adjusting assembly 430 in the second direction.
[0051] As Figure 5As shown, in one embodiment, the angle adjusting assembly 430 includes a first angle adjusting structure 431, a second angle adjusting structure 432 and a third angle adjusting structure 433, all of which are connected with the bearing seat 100, the first angle adjusting structure 431 is capable of driving the bearing seat 100 to rotate around the vertical axis, the second angle adjusting structure 432 is capable of driving the bearing seat 100 to rotate around the first horizontal axis, and the third angle adjusting structure 433 is capable of driving the bearing seat 100 to rotate around the second horizontal axis, the first horizontal axis being perpendicular to the second horizontal axis.
[0052] Specifically, the first horizontal axis is parallel to the second direction, and the second horizontal axis is parallel to the preset direction; the first angle adjusting structure is a vertical rotation slide, the second angle adjusting structure 432 is a first angle slide, the third angle adjusting structure 433 is a second angle slide, the vertical rotation slide is connected with the first angle slide, the first angle slide is connected with the second angle slide, the second angle slide is connected with the mounting seat 221, the vertical rotation slide is capable of adjusting the angle of the first angle slide rotating around the vertical axis, the first angle slide is capable of adjusting the angle of the second angle slide rotating around the first horizontal axis, and the second angle slide is capable of adjusting the angle of the mounting seat 221 rotating around the second horizontal axis.
[0053] Reference Figure 2 And Figure 4 In some embodiments of the utility model, the positioning mechanism 500 is further included, the positioning mechanism 500 is connected with the heat dissipation mechanism 200, the positioning mechanism 500 is arranged along the preset direction with the bearing seat 100, and the positioning mechanism 500 is used for positioning the product on the bearing seat 100.It can be understood that by arranging the positioning mechanism 500 along the preset direction with the bearing seat 100, and the positioning mechanism 500 and the bearing seat 100 are moved along the preset direction under the action of the conveying mechanism 300, so that the positioning mechanism 500 can move along the moving space of the bearing seat 100, the space required by the positioning mechanism 500 in the moving process is reduced, and the space required by the conveying device as a whole is reduced.
[0054] As Figure 3As shown in the utility model embodiment, the positioning mechanism 500 comprises a second driver 510, a top block 520, a mounting rack 530 and a locking block 540, the second driver 510 is connected with the top block 520 and is used to drive the top block 520 to move along a preset direction so that the top block 520 abuts against a product on the bearing seat 100, the second driver 510 is arranged on the mounting rack 530, the locking block 540 is arranged on the lower side of the mounting rack 530, the mounting rack 530 is connected with the mounting seat 221 and is arranged along the preset direction with the mounting seat 221, a long hole 531 extending along the preset direction is arranged on the mounting rack 530, a through hole is arranged on the second driver 510, a threaded connecting piece 550 is arranged in the through hole, the threaded connecting piece 550 is slidably arranged in the long hole 531 and is threadedly connected with the locking block 540.
[0055] It can be understood that the second driver 510 is slid along the preset direction to make the threaded connecting piece 550 slide in the long hole 531, and finally the threaded connecting piece 550 is screwed to lock the second driver 510 on the mounting rack 530, so that the position adjustment of the positioning mechanism 500 along the preset direction is realized.
[0056] Although the embodiments of the utility model have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the utility model, and the scope of the utility model is defined by the claims and their equivalents.
Claims
1. A delivery device characterized by, The utility model relates to a product cooling and positioning device, which comprises: a bearing seat for bearing products; a heat dissipation mechanism connected with the bearing seat and used for dissipating heat from the products on the bearing seat; a conveying mechanism connected with the bearing seat and used for driving the bearing seat to move back and forth along a preset direction; an adjusting mechanism connected with the bearing seat, the adjusting mechanism being used for adjusting the spatial posture of the products on the bearing seat, the adjusting mechanism comprising a first adjusting assembly, a second adjusting assembly and an angle adjusting assembly, the first adjusting assembly, the second adjusting assembly and the angle adjusting assembly being respectively drivingly connected with the bearing seat, the first adjusting assembly being used for adjusting the position of the bearing seat in a first direction, the second adjusting assembly being used for adjusting the position of the bearing seat in a second direction, and the angle adjusting assembly being used for adjusting the spatial angle of the bearing seat, the first direction, the second direction and the preset direction being arranged obliquely to each other, wherein the preset direction is oblique to the plane in which the first direction and the second direction lie.
2. A delivery device according to claim 1, wherein, The heat dissipation mechanism comprises connected heat conduction structure and cooling structure, the heat conduction structure is connected with the bearing seat, the heat conduction structure has a heat dissipation part, the heat conduction structure can conduct heat on the bearing seat to the heat dissipation part, and the cooling structure is used for cooling the heat dissipation part.
3. A delivery device according to claim 2, wherein, The heat dissipation part is a heat dissipation plate, the heat conduction structure further comprises a heat equalizing plate, and two plate surfaces of the heat equalizing plate are respectively abutted against the bearing seat and the heat dissipation plate.
4. A delivery device according to claim 3, wherein, The cooling structure comprises a mounting seat, a heat dissipation cavity is arranged in the mounting seat, the heat dissipation cavity is used for passing in refrigerant, and the heat dissipation plate is arranged at the cavity opening of the heat dissipation cavity.
5. A delivery device according to claim 4, wherein, A refrigerant inlet and a refrigerant outlet are formed in the cavity wall of the heat dissipation cavity.
6. The delivery device of claim 4, wherein, Fins are arranged on the side of the heat dissipation plate close to the mounting seat, and the fins are located in the heat dissipation cavity.
7. The delivery device of claim 1, wherein, A detection structure is arranged on the bearing seat, and the detection structure is used for detecting the temperature of the products on the bearing seat.
8. The delivery device of claim 1, wherein, Further comprising a positioning mechanism connected with the heat dissipation mechanism, the positioning mechanism being arranged along the preset direction with the bearing seat, and the positioning mechanism being used for positioning the products on the bearing seat.