Baking tray performance detection device
By designing a negative pressure suction cup and a linkage mechanism, the problem of fixing the silicone baking tray during testing is solved, achieving stable support for the silicone baking tray and multi-angle wear-resistant testing, which is suitable for silicone baking trays with different structures.
Patent Information
- Application Number
- CN202423097976.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Existing technologies lack effective methods for securing silicone baking trays, especially given their soft texture and grooved structure, making coating abrasion resistance testing difficult.
The tray seat with a negative pressure suction cup structure works in conjunction with the telescopic rod and linkage mechanism to firmly fix the silicone baking tray, and wear resistance testing is performed through pressure adjustment components and friction parts.
It achieves stable support for silicone baking pans and multi-angle, multi-force wear resistance testing, applicable to baking pans of different structures, ensuring the stability and accuracy of the test.
Smart Images

Figure CN223581341U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of baking pan technology, specifically to a baking pan performance testing device. Background Technology
[0002] A silicone baking pan is a kitchen utensil made of food-grade silicone. Silicone baking pans can be injection molded to form different patterns of grooves and textures.
[0003] The surface coating of silicone baking pans is a technical treatment used to improve the performance and appearance of silicone baking pans. Therefore, it is necessary to test the wear resistance of the surface coating of silicone baking pans to prevent the coating from peeling off and causing adverse effects on food.
[0004] Because silicone baking trays are soft and have grooves on them, general abrasion testing equipment lacks an effective means of securing the trays. Utility Model Content
[0005] The present invention aims to at least solve the problem of support and fixation during the testing of silicone baking tray coatings in the prior art.
[0006] This solution provides a baking pan performance testing device, which is achieved by the following specific technical means: including a frame and a crossbar fixed on the frame. Multiple sets of tray seats are connected to the crossbar, and the position of the tray seats on the crossbar is adjustable. When in use, the silicone baking pan is placed on the multiple sets of tray seats, and the groove is located between two sets of tray seats, so that the top surface of the tray seat contacts the bottom side plane of the silicone baking pan.
[0007] The top surface of the tray seat is a negative pressure suction cup structure, which firmly adheres to the bottom wall of the silicone baking tray through the negative pressure suction cup.
[0008] Preferred technical solution 1: A set of telescopic rods is horizontally fixed to the bottom side of each set of pallet seats, and a connecting seat is fixed to the telescopic end of the telescopic rod. The connecting seat is connected to a set of friction elements through a pressure adjustment component.
[0009] Preferred technical solution 2: The cross frame is connected to multiple sets of tray seats through a linkage mechanism, and the linkage mechanism is used to control the synchronous adjustment of the spacing between the multiple sets of tray seats.
[0010] The preferred technical scheme three: the support plate seat is arranged at the upper and lower ends of the linkage mechanism, and a plurality of groups are also distributed along the length direction of the linkage mechanism at the same height; the linkage mechanism comprises a plurality of cross rod groups, the cross rod group is composed of rod one and rod two which are connected and crossed with each other, the top end of the rod one in a group of the cross rod group is crossed with the top end of the rod two in the adjacent cross rod group on one side, and the cross is rotationally connected with the convex shaft fixed at the side end of the support plate seat at the high position; the bottom end of the rod one in a group of the cross rod group is crossed with the bottom end of the rod two in the adjacent cross rod group on one side, and the cross is rotationally connected with the convex shaft fixed at the side end of the support plate seat at the low position;
[0011] The hinge shaft at the cross of the rod one and the rod two in the cross rod group is fixed with the sliding block one, and the sliding block one in the middle group is fixed with the cross frame, and the remaining groups of the sliding block one slide on the cross frame.
[0012] The preferred technical scheme four: the cross frame is also slidably provided with the sliding block two which is equal in number to the support plate seats at the same height, a group of vertical rails are fixed on each of the sliding block two, and the convex shafts on the two groups of opposite support plate seats are respectively fixed with the two groups of sliding block three slidably arranged on the vertical rails.
[0013] The preferred technical scheme five: the cross frame is fixed with the telescopic rod two, and the telescopic end of the telescopic rod two is fixed with a group of sliding block two.
[0014] The above structure makes the scheme have the following beneficial effects:
[0015] 1. According to the soft characteristics of the silica gel baking tray, the plurality of groups of support plate seats are arranged to be adsorbed and fixed with the bottom wall of the silica gel baking tray, and at the same time, the polishing area is also supported flatly, so that the polishing part can maintain a stable contact state with the silica gel baking tray;
[0016] 2. The linkage mechanism is used in cooperation with the vertical rail to conveniently adjust the spacing between the support plate seats;
[0017] 3. It can also be used for supporting and fixing other matrix-shaped concave-convex structures or flat structures;
[0018] 4. It can simultaneously test different friction forces of a group of silica gel baking trays. BRIEF DESCRIPTION OF DRAWINGS
[0019] The accompanying drawings are used to provide a further understanding of the present application, and constitute a part of the specification, and are used to explain the present application together with the embodiments of the present application, and do not constitute a limitation on the present application. In the drawings:
[0020] Figure 1 It is a whole structure schematic view of the present scheme;
[0021] Figure 2 It is a structural schematic view of the pressure adjusting assembly of the present scheme;
[0022] Figure 3 It is an exploded view of the present scheme of the supporting plate seat, friction piece and pressure adjusting assembly;
[0023] Figure 4 It is a structural schematic view of the present scheme of the cross rod group;
[0024] Figure 5 It is a structural schematic view of the present scheme of the cross rod group;
[0025] Wherein, 1, rack, 11, cross frame, 2, supporting plate seat, 21, convex shaft, 3, telescopic rod one, 31, connecting seat, 4, friction piece, 5, pressure adjusting assembly, 51, vertical rod, 52, screw rod, 6, linkage mechanism, 61, cross rod group, 611, rod one, 612, rod two, 613, hinged shaft, 62, sliding block one, 63, sliding block two, 64, vertical rail, 65, sliding block three, 66, telescopic rod two. DETAILED DESCRIPTION
[0026] The technical scheme in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0027] Please refer to Figures 1-2 The baking tray performance detection device comprises a rack 1 and a cross frame 11 fixed on the rack 1. A plurality of groups of supporting plate seats 2 are connected to the cross frame 11. The positions of the supporting plate seats 2 on the cross frame 11 are adjustable, that is, the spacing between adjacent supporting plate seats 2 can be adjusted, so that the spacing between two groups of supporting plate seats 2 is adapted to the spacing between adjacent grooves on the silica gel baking tray. When in use, the silica gel baking tray is placed on the plurality of groups of supporting plate seats 2, and the grooves are located between the two groups of supporting plate seats 2, so that the top surface of the supporting plate seat 2 is in contact with the bottom side planar part of the silica gel baking tray.
[0028] The top surface of the supporting plate seat 2 is a negative pressure suction disc structure (using the prior art), that is, a plurality of negative pressure suction holes are formed at the top opening of the negative pressure suction disc on the contact top surface of the silica gel baking tray. The silica gel baking tray bottom wall is firmly adsorbed by the negative pressure suction force generated by the negative pressure suction disc in the negative pressure suction hole, so as to realize the support and fixation of the silica gel baking tray during the test process.
[0029] Please refer to Figure 3, the bottom side of each group of the supporting plate seat 2 is fixed with a group of telescopic rods one 3 horizontally, and the telescopic end of the telescopic rod one 3 is fixed with a connecting seat 31, the connecting seat 31 is connected with a group of friction pieces 4 through a pressure adjusting assembly 5, the friction piece 4 is located directly above the corresponding supporting plate seat 2, after the silica gel baking tray is placed on the supporting plate seat 2, the friction piece 4 is adjusted to contact the top surface of the silica gel baking tray through the pressure adjusting assembly 5, and the contact pressure is regulated, then the telescopic rod one 3 is used to control the reciprocating horizontal movement of the friction piece 4, and the friction piece 4 is driven to reciprocate along the length direction of the supporting plate seat 2;
[0030] The pressure adjusting assembly 5 comprises a vertical rod 51 fixed at the end of the friction piece 4, the vertical rod 51 is slid through the connecting seat 31, and a threaded hole is formed in the connecting seat 31 and a screw rod 52 is installed in the threaded hole, and the top end of the screw rod 52 is rotationally connected with the friction piece 4, so that the distance between the friction piece 4 and the supporting plate seat 2 can be controlled by rotating the screw rod 52, thereby adjusting the friction degree; a plurality of groups of friction pieces 4 matched with a plurality of groups of supporting plate seats 2 are arranged, so that the wear resistance of the same silica gel baking tray under different pressure states of the coating can be detected, and a pressure sensor is arranged on the friction piece 4, the contact pressure between the friction piece 4 and the silica gel baking tray is detected by the pressure sensor, and the pressure data is conveniently controlled.
[0031] Please refer to Figures 1-5 , the cross frame 11 and the plurality of groups of supporting plate seats 2 are connected through the linkage mechanism 6, the linkage mechanism 6 is used to control the synchronous adjustment of the distance between the plurality of groups of supporting plate seats 2, the supporting plate seat 2 is arranged at the upper and lower ends of the linkage mechanism 6, and a plurality of groups are also distributed along the length direction of the linkage mechanism 6 at the same height; the linkage mechanism 6 is used to control the distance change between different supporting plate seats 2 at the same height, and the distribution of the upper and lower two groups of supporting plate seats 2 makes it possible to complete the test of a plurality of silica gel baking trays at one time;
[0032] The linkage mechanism 6 comprises a plurality of cross rod groups 61, each cross rod group 61 is composed of rod one 611 and rod two 612 which are connected and crossed with each other, the top end of the rod one 611 in one cross rod group 611 is crossed with the top end of the rod two 612 in the adjacent cross rod group 611 on one side, and the cross is rotationally connected with the convex shaft 21 fixed at the side end of the plate support seat 2 located at the high position, the top end of the rod two 612 in the cross rod group 611 is crossed with the top end of the rod one 611 in the adjacent cross rod group 611 on the other side, and the cross is rotationally connected with the convex shaft 21 fixed at the side end of the adjacent plate support seat 2 located at the high position; the bottom end of the rod one 611 in one cross rod group 611 is crossed with the bottom end of the rod two 612 in the adjacent cross rod group 611 on one side, and the cross is rotationally connected with the convex shaft 21 fixed at the side end of the plate support seat 2 located at the low position, the bottom end of the rod two 612 in the cross rod group 611 is crossed with the bottom end of the rod one 611 in the adjacent cross rod group 611 on the other side, and the cross is rotationally connected with the convex shaft 21 fixed at the side end of the adjacent plate support seat 2 located at the low position;
[0033] The hinge shaft 613 located at the cross of the rod one 611 and the rod two 612 in the cross rod group 611 is rotationally connected with the rod one 611 and the rod two 612, and each hinge shaft 613 is fixedly connected with a group of sliding blocks one 62, and the sliding blocks one 62 located at the middle are fixedly connected with the horizontal frame 11, and the remaining groups of sliding blocks one 62 slide on the horizontal frame 11, so that the position of the linkage mechanism 6 is limited.
[0034] Please refer to Figures 1-2 The horizontal frame 11 is also slidably provided with the sliding blocks two 63 which are equal in number to the plate support seats 2 at the same height, each group of sliding blocks two 63 is fixedly provided with a group of vertical rails 64, and the convex shafts 21 on the upper and lower two groups of plate support seats 2 are fixedly connected with the two groups of sliding blocks three 65 which are symmetrically arranged at the upper and lower ends of the vertical rails 64, the sliding blocks three 65 are used for limiting the posture of the plate support seats 2, and the sliding blocks two 63 are used for ensuring that the vertical rails 64 can follow the movement of the corresponding upper and lower two groups of plate support seats 2, the horizontal frame 11 is fixedly provided with the telescopic rods two 66, and the telescopic ends of the telescopic rods two 66 are fixedly connected with a group of sliding blocks two 63, so that the distance between the groups of vertical rails 64 can be changed under the action of the linkage mechanism 6 by pulling a group of sliding blocks two 63 to slide, that is, the distance between the adjacent plate support seats 2 on the same plane can be adjusted.
[0035] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A baking pan performance testing device, comprising a frame (1) and a crossbar (11) fixed on the frame (1), characterized in that: Multiple sets of tray seats (2) are connected to each of the cross frame (11), and the position of the tray seats (2) on the cross frame (11) is adjustable; The top surface of the tray seat (2) is a negative pressure suction cup structure.
2. The baking pan performance testing device according to claim 1, characterized in that: Each set of pallet seats (2) has a set of telescopic rods (3) fixed horizontally on its bottom side, and the telescopic end of the telescopic rods (3) is fixed with a connecting seat (31). The connecting seat (31) is connected to a set of friction elements (4) through a pressure adjustment component (5). The friction elements (4) are located directly above the corresponding pallet seat (2). The pressure adjustment component (5) is used to adjust the distance between the friction elements (4) and the pallet seat (2).
3. The baking pan performance testing device according to claim 2, characterized in that, A pressure sensor is provided on the friction element (4) to detect the contact pressure between the friction element (4) and the silicone baking tray.
4. A baking pan performance testing device according to claim 1 or 2, characterized in that: The cross frame (11) is connected to multiple sets of tray seats (2) via a linkage mechanism (6), which is used to control the synchronous adjustment of the spacing between the multiple sets of tray seats (2).
5. The baking pan performance testing device according to claim 4, characterized in that: The tray base (2) is provided at both the upper and lower ends of the linkage mechanism (6), and multiple sets are also distributed at the same height along the length direction of the linkage mechanism (6). The telescopic control of the linkage mechanism (6) controls the change in the spacing between different pallet seats (2) at the same height.
6. The baking pan performance testing device according to claim 5, characterized in that: The linkage mechanism (6) includes multiple sets of cross-shaped rod groups (61). Each cross-shaped rod group (61) consists of a first rod (611) and a second rod (612) that are hinged to each other and cross each other. The top of the first rod (611) in one set of cross-shaped rod groups (61) crosses the top of the second rod (612) in an adjacent cross-shaped rod group (61) on one side, and the intersection is rotatably connected to a convex shaft (21) fixed to the side of a set of support plate seats (2) located at a high position. The bottom end of rod one (611) in a set of cross-shaped rod groups (61) intersects with the bottom end of rod two (612) in an adjacent set of cross-shaped rod groups (61) on one side, and the intersection is rotatably connected to a convex shaft (21) fixed to the side end of a set of support plates (2) located at a low position. The hinge shaft (613) located at the intersection of rod one (611) and rod two (612) in the cross-shaped rod group (61) is rotatably connected to rod one (611) and rod two (612). Each set of hinge shafts (613) is fixed with a set of sliders (62). The set of sliders (62) located in the middle is fixed to the cross frame (11), and the remaining sets of sliders (62) slide on the cross frame (11).
7. The baking pan performance testing device according to claim 6, characterized in that: The crossbar (11) also has a number of sliders (63) equal to the number of tray seats (2) at the same height. Each set of sliders (63) is fixed with a set of vertical rails (64), and the convex shafts (21) on the upper and lower sets of tray seats (2) are respectively fixed to two sets of sliders (65) symmetrically slidably arranged at the upper and lower ends of the vertical rails (64).
8. The baking pan performance testing device according to claim 7, characterized in that: The crossbar (11) is fixed with a telescopic rod two (66), and the telescopic end of the telescopic rod two (66) is fixedly connected to a set of slider two (63).