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CN-224207122-U - Anti-slip stacking limit structure of sterilization tray

CN224207122UCN 224207122 UCN224207122 UCN 224207122UCN-224207122-U

Abstract

The utility model relates to the technical field of sterilization trays, in particular to an anti-slip stacking limit structure of a sterilization tray, which comprises an upper sterilization tray main body and a lower sterilization tray main body which are stacked together, wherein the sterilization tray main body consists of a mesh tray, an upper rectangular supporting frame fixedly arranged at the top position of the mesh tray and a lower rectangular supporting frame fixedly arranged at the bottom position of the mesh tray, four corner supporting beams are fixedly arranged between the upper rectangular supporting frame and the lower rectangular supporting frame, rectangular slots are arranged in the corner supporting beams, a plurality of rectangular supporting inserting rods are fixedly arranged on the bottom surface of the lower rectangular supporting frame, the rectangular supporting inserting rods are in splicing fit with the corresponding rectangular slots, bottom anti-slip blocks are arranged on the bottom surface of each side plate body of the lower rectangular supporting frame, left anti-slip stop blocks and right anti-slip stop blocks are arranged on the upper surface of each side plate body of the upper rectangular supporting frame, and the bottom anti-slip blocks are clamped between the corresponding two anti-slip stop blocks. The utility model has the effects of skid resistance and limiting, and is beneficial to stable stacking operation.

Inventors

  • ZHANG LINGYUN
  • YUAN YUNHAO
  • WANG DONGYUAN
  • YANG JUN

Assignees

  • 南京洁圣灭菌技术有限公司

Dates

Publication Date
20260508
Application Date
20250424

Claims (9)

  1. 1. The utility model provides an anti-skidding stacking limit structure of sterilization tray, includes a plurality of sterilization tray main part (1) that stack together from top to bottom, its characterized in that sterilization tray main part (1) comprises mesh tray (10), fixed mounting in last rectangle support frame (12) of mesh tray (10) top position department and fixed mounting in lower rectangle support frame (11) of mesh tray (10) bottom position department, go up rectangle support frame (12) with fixed mounting has four corner supporting beams (13) between lower rectangle support frame (11), corner supporting beam (13) fixed mounting are in the corner of mesh tray (10), be provided with rectangle slot (131) that top and external are linked together in corner supporting beam (13), fixed mounting has a plurality of rectangle support inserted bars (15) that are vertical form setting on the bottom surface of lower rectangle support frame (11), peg graft the cooperation between rectangle support inserted bar (15) and the corresponding rectangle slot (11), the fixed mounting has four corner supporting beams (13) between every curb plate body bottom of lower rectangle support frame (11), the slider (16) are all fixed mounting on the bottom of every curb plate body (16) on two anti-skidding blocks (2) are gone up in the corresponding anti-skidding block (2).
  2. 2. The anti-slip stacking limit structure of a sterilization tray according to claim 1, wherein the upper rectangular supporting frame (12) and the lower rectangular supporting frame (11) are in rectangular ring shapes, and the upper rectangular supporting frame (12) and the lower rectangular supporting frame (11) are fixedly arranged on four side plate bodies of the mesh tray (10).
  3. 3. The anti-slip stacking limit structure of a sterilization tray according to claim 1, wherein the mesh tray (10) is of a mesh structure, and front and rear symmetrical side carrying plates (121) are fixedly arranged on the left side surface and the right side surface of the upper rectangular tray frame (12).
  4. 4. The anti-slip stacking limit structure of a sterilization tray according to claim 1, wherein a flaring groove (132) is arranged on a groove wall at the top of the rectangular slot (131), and the inner diameters of the flaring grooves (132) are sequentially increased from bottom to top.
  5. 5. The anti-slip stacking limit structure of a sterilization tray according to claim 1, wherein the side plate body of the corner supporting beam (13) is provided with an inclined drain hole (14) communicated with the rectangular slot (131), and the inclined drain hole (14) is inclined downwards by 45-60 degrees.
  6. 6. The anti-slip stacking limit structure of a sterilization tray according to claim 1, wherein the cross sections of the rectangular support inserting rod (15) and the rectangular inserting groove (131) are rectangular, and the size of the rectangular support inserting rod (15) is matched with the size of the rectangular inserting groove (131).
  7. 7. The anti-slip stacking limit structure of the sterilization tray according to claim 1, wherein a clamping gap (21) is arranged between the two anti-slip stop blocks (2) on each side plate body, and the bottom anti-slip blocks (16) are matched with the clamping gap (21) in a clamping manner.
  8. 8. The anti-slip stacking limit structure of a sterilization tray according to claim 7, wherein the cross sections of the anti-slip stop block (2), the bottom anti-slip block (16) and the clamping gap (21) are all in an isosceles trapezoid shape, and a bottom exposure groove (22) with the top and the front side communicated with the outside is arranged on the bottom wall of the clamping gap (21).
  9. 9. The anti-slip stacking limit structure of a sterilization tray according to claim 8, wherein a plurality of clearance protrusions (20) are fixedly arranged on the adjacent side surfaces of the two anti-slip stop blocks (2) on each side plate body, and the clearance protrusions (20) are solid hemispheric.

Description

Anti-slip stacking limit structure of sterilization tray Technical Field The utility model relates to the technical field of sterilization trays, in particular to an anti-skid stacking limit structure of a sterilization tray. Background In modern medical systems, sterilization trays are used as key tools for carrying various medical instruments to perform sterilization treatment, and are widely applied to a plurality of places such as a disinfection supply center, an operating room, a ward and the like of hospitals, and no matter small-sized surgical instruments such as surgical knives, forceps or large-sized diagnosis and treatment equipment parts, standard sterilization processes are completed by means of the sterilization trays so as to ensure the sterile state of the medical instruments and reduce the infection risk of patients. However, the existing sterilization trays expose a plurality of problems to be solved in the stacking, storing and transporting processes, firstly, in the aspect of skid resistance, the surfaces and edges of most sterilization trays lack effective skid resistance design, when the number of stacking layers of the trays is large or the trays are slightly collided by external force, the upper trays are easy to slide and misplace, so that the devices in the trays can be scattered and damaged, normal medical work development is affected, the personal safety of medical staff is possibly threatened, for example, in the daily carrying process of a disinfection supply center, a plurality of device damage events can occur each year due to the sliding of the trays, and direct economic loss is caused. Secondly, in the aspect of stacking and limiting, the limiting structure of the existing tray is simple in design or has no limiting measure at all, so that the tray cannot be aligned accurately when being stacked, the storage space is wasted, the space utilization rate is reduced, the risk of collapse of the tray is increased, the working efficiency is seriously influenced by an unreasonable tray stacking mode in places with limited space such as an operating room, and the operation preparation time is delayed. In view of this, we propose an anti-slip stacking limit structure for sterilization trays. Disclosure of utility model The utility model aims to provide an anti-slip stacking limit structure of a sterilization tray so as to solve the defects in the background technology. In order to achieve the above purpose, the present utility model provides the following technical solutions: The utility model provides an anti-skidding stacks limit structure of sterilization tray, includes a plurality of sterilization tray main part that stack together from top to bottom, sterilization tray main part comprises mesh tray, the last rectangle tray of fixed mounting in mesh tray top position department and the lower rectangle tray of fixed mounting in mesh tray bottom position department, go up rectangle tray with fixed mounting has four corner supporting beams between the rectangle tray down, corner supporting beam fixed mounting is in the corner position department of mesh tray, be provided with the rectangle slot that top and external world are linked together in the corner supporting beam, fixed mounting has a plurality of rectangle supporting inserted bars that are vertical form setting on the bottom surface of lower rectangle tray, the rectangle supporting inserted bar with correspond peg graft the cooperation between the rectangle slot down, equal fixed mounting has bottom antiskid block on every curb plate body bottom surface of rectangle tray down, on each curb plate body upper surface of rectangle tray all fixed mounting have two anti-skidding dogs of mutual symmetry about, bottom antiskid block is between two of correspondence. Preferably, the upper rectangular supporting frame and the lower rectangular supporting frame are rectangular annular, and the upper rectangular supporting frame and the lower rectangular supporting frame are fixedly arranged on four side plate bodies of the mesh tray. Preferably, the mesh tray is of a mesh structure, and two side carrying plates which are symmetrical to each other are fixedly arranged on the left side surface and the right side surface of the upper rectangular supporting frame. Preferably, a flaring groove is formed in the groove wall at the top of the rectangular slot, and the inner diameter of the flaring groove is sequentially increased from bottom to top. Preferably, the side plate body of the corner support beam is provided with an inclined drain hole communicated with the rectangular slot, and the inclined drain hole is inclined downwards by 45-60 degrees. Preferably, the cross sections of the rectangular support inserting rod and the rectangular inserting groove are rectangular, and the size of the rectangular support inserting rod is matched with the size of the rectangular inserting groove. Preferably, a clamping gap is formed between two anti