High-strength supporting structure of die steel storage rack

By designing a triangular support structure, adjustable reinforcing ribs, sliding connecting guardrails, and movable ball bearings on the mold steel storage rack, the problems of insufficient strength and displacement of the storage rack are solved, achieving high-strength support and safe storage, protecting the mold steel and the rack body.

CN223802564UActive Publication Date: 2026-01-16DONGGUAN JINFENG MOLD STEEL CO LTD
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Patent Information

Application Number
CN202423302505.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-16
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing storage racks cannot adjust the support position and quantity according to the quantity of mold steel, resulting in low strength and easy displacement when storing short mold steel, which affects safety.

Method used

A high-strength support structure for mold steel storage rack was designed. It adopts a triangular support structure formed by a horizontal placement rack, vertical I-beam legs and inclined reinforcing ribs. The support strength and limiting fixation are increased by adjustable reinforcing ribs and sliding guardrail structure. Moving ball bearings are used to reduce friction and adapt to the storage of mold steel of different quantities and lengths.

Benefits of technology

The storage rack has improved support strength, can accommodate different quantities and lengths of mold steel, reduces friction damage, ensures storage safety and neatness, and extends the service life of mold steel and storage rack.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-strength supporting structure of a die steel storage rack, which comprises a horizontally arranged placing rack, four vertically connected I-shaped steel legs are arranged at the bottom of the placing rack, a reinforcing rib is arranged between each I-shaped steel leg and the placing rack, the reinforcing ribs are obliquely arranged, and a triangle is formed among the reinforcing ribs, the placing rack and the I-shaped steel legs; two symmetrically-arranged guardrails are welded to the containing frame, a double-layer storage moving structure is arranged between the two guardrails, a storage limiting structure in sliding connection is arranged between the two guardrails, and sliding grooves are formed in the tops of the guardrails. When the die steel storage rack is used for storing die steel, different numbers of reinforcing ribs can be selected to be located between the placing rack and the I-shaped steel legs according to the number and the weight of the die steel on the storage rack, so that supporting of the placing rack is enhanced, and the bearing capacity of the die steel storage rack is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to die steel storage technical field especially, relate to a die steel storage rack high strength support structure. BACKGROUND

[0002] Die steel is used to manufacture cold punch mould, hot forging mould, die casting mould and the steel grade of mould, mould is the main processing tool of the part manufacturing in mechanical manufacturing, wireless radio instrument, motor, electric appliance and other industrial departments, and the quality of mould directly influences the quality of pressure processing technology, the precision yield and production cost of product, and the quality and service life of mould are mainly affected by mould material and heat treatment except relying on reasonable structure design and machining precision.

[0003] However, the existing storage rack cannot adjust the position and quantity of the support of the storage rack according to the quantity of the die steel storage in the process of storing the die steel, which may result in low strength of the storage rack and cannot be suitable for placing different quantities of die steel, and when facing short die steel for storage, the die steel may be displaced, which affects the safety of storage. UTILITY MODEL CONTENTS

[0004] The utility model discloses a die steel storage rack high strength support structure, which solves the problems in the background art.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] A die steel storage rack high strength support structure, comprising a horizontally arranged placing rack, the bottom of the placing rack is provided with four vertically connected I-beam legs, a reinforcing rib is arranged between each I-beam leg and the placing rack, the reinforcing rib is arranged obliquely and forms a triangle with the placing rack and the I-beam leg, two symmetrically arranged guardrails are welded on the placing rack, a double-layer storage moving structure is arranged between the two guardrails, a storage limiting structure is slidably connected between the two guardrails, and a sliding groove is arranged at the top of the guardrail.

[0007] Further technical solutions, the reinforcing rib includes upper reinforcing plate, lower reinforcing plate and reinforcing frame, the side wall of the placing rack is equipped with a plurality of equidistantly arranged first jack, the I-beam is equipped with a plurality of equidistantly arranged second jack, the upper reinforcing plate and lower reinforcing plate are respectively equipped with a plurality of equidistantly arranged first connecting hole and second connecting hole, the upper reinforcing plate and lower reinforcing plate are respectively slidably connected on the reinforcing frame, the upper reinforcing plate and lower reinforcing plate are respectively equipped with upper connecting bolt and lower connecting bolt and are fixed with the reinforcing frame, the upper reinforcing plate is connected with the first jack by first connecting bolt, and the lower reinforcing plate is connected with the second jack by second connecting bolt.

[0008] Further technical solutions, the number of reinforcing ribs can be set to multiple.

[0009] Further technical solutions, the double-layer storage moving structure includes equidistantly distributed moving pieces, each moving piece includes three equidistantly welded moving plates between two guardrails, the moving plates are equipped with a plurality of equidistantly distributed moving balls, and the moving balls are rotatably connected with the moving plates.

[0010] Further technical solutions, the storage limiting structure includes a sliding plate horizontally and slidably connected at the top of the two guardrails, both ends of the bottom of the sliding plate are equipped with two sliding blocks, the sliding plate is slidably connected in the sliding groove of the guardrail through the two sliding blocks, the sliding plate is equipped with a limiting plate that slides up and down, and the two ends of the sliding plate are respectively locked to the limiting plate by locking knobs.

[0011] Further technical solutions, two sliding blocks are equipped with locking screws, the locking screws are threadedly connected with the sliding plate, and the bottom of the locking screw is equipped with a locking disc.

[0012] The beneficial effects of the utility model are as follows:

[0013] When the number of die steels on the placing rack increases, a plurality of reinforcing ribs can be added between the placing rack and the I-beam, at this time, the upper connecting bolt and the lower connecting bolt can be removed, the upper reinforcing plate and the lower reinforcing plate can slide on the reinforcing frame, the upper reinforcing plate and the lower reinforcing plate can be separated, the distance between the upper reinforcing plate and the lower reinforcing plate can be lengthened, and then the upper reinforcing plate and the lower reinforcing plate can be fixed on the reinforcing frame by the upper connecting bolt and the lower connecting bolt, when the number or weight of die steels on the placing rack increases, the supporting strength of the die steel storage rack can be improved.

[0014] Other features and advantages of the utility model will be described in detail in the following specific embodiment part. DRAWINGS

[0015] Figure 1 The utility model discloses a three -dimensional structure schematic diagram.

[0016] Figure 2 The side view of the utility model.

[0017] Figure 3 The utility model discloses the stereogram structure schematic diagram of reinforcing rib.

[0018] Figure 4 The utility model discloses the stereogram structure schematic diagram of double -deck storage mobile structure.

[0019] Figure 5 The utility model discloses the schematic diagram of storage limiting structure installs on two guardrails.

[0020] Figure 6 The utility model discloses the stereogram structure schematic diagram of storage limiting structure.

[0021] Reference Signs: placing rack 1, I -steel leg 11, guardrail 12, sliding slot 13, first jack 14, second jack 15, reinforcing rib 2, upper reinforcing plate 21, lower reinforcing plate 22, reinforcing frame 23, first connecting hole 24, second connecting hole 25, first connecting bolt 26, second connecting bolt 27, double -deck storage mobile structure 3, mobile plate 31, mobile ball 32, storage limiting structure 4, sliding plate 41, limiting plate 42, sliding block 43, locking knob 44, locking screw rod 45, locking disc 46. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model.

[0023] Please refer to Figures 1-6The utility model provides a die steel storage rack high strength support structure technical scheme: a die steel storage rack high strength support structure, including the horizontal placement frame 1 that sets, the bottom of placement frame 1 is equipped with four vertical connection's I -beam leg 11, be equipped with the reinforcing rib 2 between every I -beam leg 11 with placement frame 1, the reinforcing rib 2 is inclined and sets up and forms triangle between placement frame 1 and I -beam leg 11, in structural mechanics, triangle is the most stable geometric shape. When reinforcing rib 2, placement frame 1 and I -beam leg 11 form triangle, this structure can effectively resist the deformation effect of external force. For example, when placement frame 1 is supported by heavy object, pressure will be produced in the vertical direction. If there is no triangle structure support, placement frame 1 can be curved deformation downward because of pressure. And triangle structure can decompose this vertical pressure into the component force along the side of triangle, through the mutual support between reinforcing rib 2 and I -beam leg 11, disperses and transmits force to the ground or other support structure, the triangle that reinforcing rib 2 forms with placement frame 1 and I -beam leg 11 increases the effective bearing area of structure. Welding has two symmetrical guardrails 12 of setting of placement frame 1, two double -deck storage mobile structures 3 are equipped between two guardrails 12, two storage limiting structures 4 of sliding connection are equipped between two guardrails 12, the top of guardrail 12 is equipped with sliding slot 13.

[0024] In the embodiment, refer to Figure 3 As shown, the reinforcing rib 2 includes upper reinforcing plate 21, lower reinforcing plate 22 and reinforcing frame 23, the sidewall of placement frame 1 is equipped with a plurality of equidistantly arranged first jacks 14, the I -beam leg 11 is equipped with a plurality of equidistantly arranged second jacks 15, the upper reinforcing plate 21 and the lower reinforcing plate 22 are respectively equipped with a plurality of equidistantly arranged first connecting holes 24 and second connecting holes 25, the upper reinforcing plate 21 and the lower reinforcing plate 22 are respectively slidably connected to the reinforcing frame 23, the upper reinforcing plate 21 and the lower reinforcing plate 22 are respectively equipped with upper connecting bolts 28 and lower connecting bolts 29 and the reinforcing frame 23 is fixed, the upper reinforcing plate 21 is connected with the first jack 14 by first connecting bolt 26, and the lower reinforcing plate 22 is connected with the second jack 15 by second connecting bolt 27.

[0025] When the number of die steels on the placing rack 1 increases, several more reinforcing ribs 2 can be added between the placing rack 1 and the I-shaped steel leg 11. At this time, the upper connecting bolt 28 and the lower connecting bolt 29 can be removed, the upper reinforcing plate 21 and the lower reinforcing plate 22 can slide on the reinforcing frame 23, and the upper reinforcing plate 21 and the lower reinforcing plate 22 can be separated. The distance between the upper reinforcing plate 21 and the lower reinforcing plate 22 is lengthened. Then, the upper reinforcing plate 21 and the lower reinforcing plate 22 are fixed on the reinforcing frame 23 by the upper connecting bolt 28 and the lower connecting bolt 29, respectively. When the number or weight of the die steels on the placing rack 1 increases, the supporting strength of the die steel storage rack can be improved.

[0026] In the embodiment, the number of reinforcing ribs 2 can be set to be multiple. When the die steels are stored, according to the number and weight of the die steels on the storage rack, different numbers of reinforcing ribs 2 can be selected to be located between the placing rack 1 and the I-shaped steel leg 11, so as to strengthen the support of the placing rack 1 and improve the bearing capacity of the placing rack 1.

[0027] In the embodiment, referring to Figure 4 , the double-layer storage and moving structure 3 includes moving pieces that are distributed at equal intervals upward and downward. Each moving piece includes three moving plates 31 that are welded at equal intervals between two guardrails 12. The moving plates 31 are provided with a plurality of moving balls 32 that are distributed at equal intervals. The moving balls 32 are rotationally connected with the moving plates 31.

[0028] When the die steels are moved to the placing rack 1 for storage, the die steels are placed on the moving balls 32. The die steels are pushed forward, so that the moving balls 32 rotate on the moving plates 31. The position of the die steels is conveniently pushed to the placing rack 1. The rolling friction coefficient of the balls is much smaller than the sliding friction coefficient between the die steels and the placing rack 1. Therefore, the force required to push the die steels is significantly reduced, and the die steels can be moved more easily by the operator.

[0029] When the die steels directly slide on the placing rack 1, the die steels and the placing rack 1 can be scratched and worn due to the large friction. The moving balls 32 rotate on the moving plates 31, and the sliding friction between the die steels and the placing rack 1 is converted into the rolling friction between the balls and the moving plates 31. The direct contact and friction between the die steels and the placing rack 1 are reduced. In this way, the surface quality of the die steels and the placing rack 1 can be effectively protected, and the service life thereof can be prolonged.

[0030] In the embodiment, referring to Figure 5 and Figure 6As shown, the storage limiting structure 4 comprises a sliding plate 41 horizontally slidingly connected at the top of the two guardrails 12, both ends of the bottom of the sliding plate 41 are provided with two sliding blocks 43, the sliding plate 41 is slidingly connected in the slide groove 13 of the guardrail 12 through the two sliding blocks 43, the sliding plate 41 is provided with a limiting plate 42 slidingly matched up and down, the two ends of the sliding plate 41 respectively lock the limiting plate 42 through a locking knob 44; a locking screw 45 is arranged between the two sliding blocks 43, the locking screw 45 is threadedly connected between the sliding plate 41, and the bottom of the locking screw 45 is provided with a locking disc 46.

[0031] In the process of storing different lengths of die steel, such as placing short die steel, the sliding plate 41 can be pushed to move horizontally in the slide groove 13 through the corresponding sliding block 43, the limiting plate 42 can be moved downward on the sliding plate 41, the position of the limiting plate 42 is moved to the end position of the short die steel, then the position of the limiting plate 42 is fixed on the sliding plate 41 by rotating the two locking screws 45, after the position of the end die steel is limited by the limiting plate 42, the position of the short die steel on the storage rack 1 will not be offset due to the shaking caused by placing the die steel, and the short die steel will not be displaced to the other side, so that the end of the die steel is not neat, which affects the neatness of placement and also causes safety hazards when the die steel is taken subsequently.

[0032] After the position of the limiting plate 42 is moved to the end of the die steel, the two locking screws 45 can be rotated on the sliding plate 41 to move the position of the locking disc 46 downward, and the position of the locking disc 46 is locked in the slide groove 13, so that the position of the sliding plate 41 is locked between the two guardrails 12 to limit and fix the position of the die steel, and the sliding plate 41 can move between the two guardrails 12, so that the position of the sliding plate 41 can be adjusted according to the different lengths of the die steel.

[0033] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary and not restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and range of equivalents of the elements of the claims are intended to be embraced therein. Any reference signs in the claims should not be considered as limiting the claims involved.

[0034] The above merely describes preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A high strength support structure for a die steel storage rack, characterized by: The utility model provides a horizontal setting shelf (1) is provided with four vertical connection I -steel legs (11) on the bottom, and the reinforcing rib (2) is arranged between each I -steel leg (11) and the shelf (1), and the reinforcing rib (2) is arranged obliquely and forms a triangle between the shelf (1) and the I -steel leg (11), two symmetrical guardrails (12) are welded on the shelf (1), the double -deck storage mobile structure (3) is arranged between the two guardrails (12), the storage limiting structure (4) is slidably connected between the two guardrails (12), and the top of the guardrail (12) is provided with a sliding groove (13).

2. The high strength support structure for die steel storage racks of claim 1, wherein: The reinforcing rib (2) includes upper reinforcing plate (21), lower reinforcing plate (22) and reinforcing frame (23), the sidewall of the shelf (1) is provided with a plurality of first jack (14) arranged at equal intervals, the I -steel leg (11) is provided with a plurality of second jack (15) arranged at equal intervals, the upper reinforcing plate (21) and the lower reinforcing plate (22) are respectively provided with a plurality of first connecting hole (24) and second connecting hole (25) arranged at equal intervals, the upper reinforcing plate (21) and the lower reinforcing plate (22) are slidably connected on the reinforcing frame (23), the upper reinforcing plate (21) and the lower reinforcing plate (22) are respectively provided with upper connecting bolt (28) and lower connecting bolt (29) and are fixed with reinforcing frame (23), the upper reinforcing plate (21) is connected with the first jack (14) through the first connecting bolt (26), and the lower reinforcing plate (22) is connected with the second jack (15) through the second connecting bolt (27).

3. The high strength support structure for die steel storage racks of claim 2, wherein: The number of reinforcing ribs (2) can be set to multiple.

4. The high strength support structure for die steel storage racks of claim 1, wherein: The double -deck storage mobile structure (3) includes a plurality of mobile pieces arranged at equal intervals, each mobile piece includes three mobile plates (31) welded at equal intervals between two guardrails (12), a plurality of mobile balls (32) are arranged at equal intervals on the mobile plate (31), and the mobile ball (32) is rotatably connected with the mobile plate (31).

5. The high strength support structure for die steel storage racks of claim 1, wherein: The storage limiting structure (4) includes a sliding plate (41) slidably connected at the top of two guardrails (12), both ends of the bottom of the sliding plate (41) are provided with two sliding blocks (43), the sliding plate (41) is slidably connected in the sliding groove (13) of the guardrail (12) through the two sliding blocks (43), the sliding plate (41) is provided with a limiting plate (42) that slides up and down, and the two ends of the sliding plate (41) respectively lock the limiting plate (42) and lock the knob (44).

6. A high strength support structure for a die steel storage rack as defined in claim 5, wherein: Two sliding blocks (43) are provided with locking screw (45), the locking screw (45) is threadedly connected between the sliding plate (41), and the bottom of the locking screw (45) is provided with a locking disc (46).