Wood tray with damping structure
By installing high-strength shock-absorbing pearl cotton and nickel-based alloy shock-absorbing support rings and support legs at the supporting wooden blocks, bridge plates and bottom plates of wooden pallets, combined with shock-absorbing balls, a multi-layer shock-absorbing structure is formed, which solves the problem of vibration damage to goods during transportation of wooden pallets, and achieves stable protection and reusability.
Patent Information
- Application Number
- CN202520563929.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-03-28
AI Technical Summary
Existing wooden pallets lack shock-absorbing structures during transportation and handling, making precision instruments and glass products susceptible to damage from vibration.
High-strength shock-absorbing pearl cotton and nickel-based alloy shock-absorbing support rings and support legs are installed at the supporting wooden blocks, bridge plates and bottom plates of the wooden pallet, combined with shock-absorbing balls to form a multi-layer shock-absorbing structure to absorb and disperse vibration and impact.
It effectively protects goods from damage, enhances the stability of the pallet structure, prevents goods from shifting, and ensures the reusability of the pallet in complex environments.
Smart Images

Figure CN223804040U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to wood pallet damping technical field, concretely is a wood pallet with damping structure. BACKGROUND
[0002] Wood pallet is the pallet made of natural wood. Compared with the pallet made of plastic, metal and other materials, the wood pallet has lower manufacturing cost and is more competitive in price, which can save the procurement cost for enterprises. The wood pallet has high strength and carrying capacity, can bear heavy goods, is not easy to deform and damage, and can be used repeatedly in the process of logistics transportation and warehousing. Wood is easy to cut, sawn, nailed and other processing operations, and various specifications and shapes of pallets such as single-sided type, double-sided type, river type, field type and sun type can be customized according to different needs to meet the requirements of different industries and application scenarios.
[0003] At present, the wood pallet is mostly composed of a panel, a bridge plate, a wooden block and a bottom plate. The wood pallet does not have a damping structure, and precision instruments, electronic devices and glass products are sensitive to vibration. During transportation, handling and loading and unloading, the wood pallet will be impacted and vibrated by various external forces, which is prone to deformation and damage of goods. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a wood pallet with a damping structure to solve the problems in the background art.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme.
[0006] A wood pallet with a damping structure comprises a panel, a bridge plate, a support wooden block and a bottom plate. The support wooden block is located on the top of the bottom plate. The bridge plate is located on the top of the support wooden block. The panel is located on the bridge plate. The support wooden block is provided with three groups. The three groups of support wooden blocks are evenly distributed on the top of the bottom plate near the two side outer edges and the center of the bottom plate. The support wooden block near the top of the two side outer edges of the bottom plate is provided with a first damping assembly inside. The top of the support wooden block located at the bottom of the bridge plate is provided with a second damping assembly. The bottom of the bottom plate is provided with a support damping assembly.
[0007] As a preferred scheme of the utility model, the panel is evenly distributed on the bridge plate. The bridge plate and the panel are perpendicular to each other. The second damping assembly comprises a center support damping piece and two side support damping pieces. The center support damping piece comprises a first high-strength damping pearl wool. The first high-strength damping pearl wool is located between the bottom of the bridge plate near the center and the top of the support wooden block near the center. The first high-strength damping pearl wool is connected by pasting the bridge plate and the support wooden block.
[0008] As the preferred scheme of the utility model, the both sides support shock absorption piece includes second high strength shock absorption pearl wool, support plate and third high strength shock absorption pearl wool, second high strength shock absorption pearl wool bottom is connected with support plate top, third high strength shock absorption pearl wool is pasted in support plate both sides bottom, support plate bottom is connected with support wood pier top close to bottom plate both sides outer edge top, second high strength shock absorption pearl wool top is connected with bridge plate bottom, second high strength shock absorption pearl wool is perpendicular to bridge plate.
[0009] As the preferred scheme of the utility model, the support wood pier top close to the bottom plate both sides outer edge top is provided with shock absorption groove, the first shock absorption assembly is located in the first shock absorption assembly, the first shock absorption assembly includes shock absorption support ring and support leg, the support leg is provided with L-shaped structure, the support leg is provided with three, three support legs are evenly distributed in the shock absorption support ring close to the outer edge bottom, the support leg top is connected with the shock absorption support ring bottom through welding, the support leg bottom is connected with the shock absorption groove inner bottom through bolt, the shock absorption support ring top is connected with the support plate.
[0010] As the preferred scheme of the utility model, the support plate includes shockproof ball, the shockproof ball is provided with nine, nine shockproof balls are evenly distributed in the bottom plate four around top angle and midline main place, the shockproof ball is connected with the bottom plate through bolt.
[0011] As the preferred scheme of the utility model, the shock absorption support ring and support leg material are nickel-based alloy.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] 1. According to the problems in the background art, the shock absorption assembly is arranged in the support wood pier, the bridge plate bottom and the bottom plate bottom, and the high-strength shock absorption pearl wool is used to connect between the panel and the bridge plate, so that the vibration and impact generated in the transportation or carrying process can be effectively absorbed and dispersed, and the goods can be protected from damage.
[0014] 2. The three groups of support wood piers are evenly distributed, and the reasonable connection mode enhances the overall structural stability of the wooden pallet, so that the pallet is more stable when bearing the weight of goods and is not easy to deform or tilt.
[0015] 3. The arrangement of the shockproof ball can further reduce the influence of vibration on the goods, and can also position the goods to prevent displacement of the goods on the pallet.
[0016] 4、The shock-absorbing support ring and support leg are made of nickel-based alloy material, have high strength and wear resistance, and also have certain elasticity and toughness, the nickel-based alloy can maintain good performance stability in a complex working environment, when the wood supporting plate body loads goods, the nickel-based alloy bears greater stress and strain without permanent deformation, and can restore to the original state after the external force disappears.
[0017] The utility model will be explained in detail below in combination with the specific embodiments and the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the overall side view of the utility model;
[0019] Figure 2 It is the plan view of the utility model;
[0020] Figure 3 It is the side structure schematic view of the utility model;
[0021] Figure 4 It is the utility model Figure 3 The enlarged view of A area in the utility model.
[0022] In the drawing: 1, panel; 2, bridge plate; 21, first high-strength shock-absorbing pearl wool; 22, second high-strength shock-absorbing pearl wool; 23, support plate; 24, third high-strength shock-absorbing pearl wool; 3, support wood pier; 31, shock-absorbing groove; 32, shock-absorbing support ring; 33, support leg; 4, bottom plate. DETAILED DESCRIPTION
[0023] In order to facilitate understanding of the utility model, the utility model will be described more comprehensively below with reference to the relevant drawings, and the drawings show several embodiments of the utility model, but the utility model can be realized by different forms, and is not limited to the embodiments described in the text, on the contrary, these embodiments are provided to make the disclosed content of the utility model more thorough and comprehensive. EMBODIMENT
[0024] Please refer to Figures 1-4The utility model provides a technical scheme: a wood tray with damping structure, including face plate 1, bridge plate 2, support wooden pier 3 and bottom plate 4, support wooden pier 3 is located at the top of bottom plate 4, bridge plate 2 is located at the top of support wooden pier 3, face plate 1 is located on bridge plate 2, support wooden pier 3 is provided with three groups, three groups of support wooden pier 3 are evenly distributed and are located at the top of the center of bottom plate 4 near two side outer edges and the center of bottom plate 4, the inside of support wooden pier 3 near the top of the two side outer edges of bottom plate 4 is provided with first damping assembly, is provided with second damping assembly at the top of support wooden pier 3 at the bottom of bridge plate 2, and the bottom of bottom plate 4 is provided with support damping assembly;Face plate 1 is evenly distributed on bridge plate 2, and bridge plate 2 and face plate 1 are perpendicular to each other, and the second damping assembly includes center support damping piece and two side support damping pieces, the center support damping piece includes first high strength damping pearl wool 21, and the first high strength damping pearl wool 21 is located between the bottom of bridge plate 2 near the center and the top of support wooden pier 3 near the center position, and the first high strength damping pearl wool 21 is connected by sticking bridge plate 2 and support wooden pier 3;The two side support damping pieces include second high strength damping pearl wool 22, support plate 23 and third high strength damping pearl wool 24, the bottom of second high strength damping pearl wool 22 is connected with the top of support plate 23, the third high strength damping pearl wool 24 is stuck to the bottom of support plate 23 on both sides, the bottom of support plate 23 is connected with the top of support wooden pier 3 near the top of the two side outer edges of bottom plate 4, the top of second high strength damping pearl wool 22 is connected with the bottom of bridge plate 2, and second high strength damping pearl wool 22 is perpendicular to bridge plate 2.
[0025] It should be noted that, in the embodiment, the support wooden pier 3 is located at the top of the bottom plate 4, the bridge plate 2 is located at the top of the support wooden pier 3, the three groups of support wooden piers 3 are evenly distributed, the inside of the support wooden pier 3 near the top of the two side outer edges of the bottom plate 4 is provided with the first damping assembly, the top of the support wooden pier 3 at the bottom of the bridge plate 2 is provided with the second damping assembly, and the bottom of the bottom plate 4 is provided with the support damping assembly, which can effectively absorb and disperse the vibration and impact generated in the transportation or carrying process, and protect the goods from being damaged.
[0026] The face plates 1 are evenly distributed on the bridge plates 2, and the bridge plates 2 are perpendicular to the face plates 1, the second damping assembly includes a center support damping piece and two side support damping pieces, the center support damping piece is provided with a support damping assembly, the support damping assembly is connected with the bridge plate 2 and the support wooden pier 3 through the first high-strength damping pearl wool 21, the two side support damping pieces include the second high-strength damping pearl wool 22, a support plate 23 and the third high-strength damping pearl wool 24, the second high-strength damping pearl wool 22 is connected with the top of the support plate 23, the third high-strength damping pearl wool 24 is attached to the bottom of the two sides of the support plate 23, the bottom of the support plate 23 is connected with the top of the support wooden pier close to the top of the outer edge of the two sides of the bottom plate, the top of the second high-strength damping pearl wool 22 is connected with the bottom of the bridge plate 2, damping is realized through the second damping assembly, the overall structural stability of the wooden pallet is enhanced, and the pallet is more stable and less likely to be deformed or inclined when bearing the weight of goods.
[0027] Please refer to Figure 3 and 4 , the top of the support wooden pier 3 close to the top of the outer edge of the two sides of the bottom plate 4 is provided with a damping groove 31, the first damping assembly is located in the first damping assembly, the first damping assembly includes a damping support ring 32 and a support leg 33, the support leg 33 is provided in an L-shaped structure, and there are three support legs 33, which are evenly distributed on the bottom of the damping support ring 32 close to the outer edge, the top of each support leg 33 is connected with the bottom of the damping support ring 32 through welding, and the bottom of each support leg 33 is connected with the inner bottom of the damping groove 31 through a bolt, the top of the damping support ring 32 is connected with the support plate 23, and the support plate 23 includes shockproof balls, and there are nine shockproof balls, which are evenly distributed on the top corners and the central line of the four sides of the bottom plate 4, and the shockproof balls are connected with the bottom plate 4 through bolts, and the damping support ring 32 and the support leg 33 are made of nickel-based alloy.
[0028] It should be noted that, in the embodiment, the top of the support wooden pier 3 close to the top of the outer edge of the two sides of the bottom plate 4 is provided with a damping groove 31, the first damping assembly is located in the damping groove 31, the first damping assembly includes a damping support ring 32 and a support leg 33, the support leg is provided in an L-shaped structure, there are three support legs 33, and they are evenly distributed on the bottom of the damping support ring 32 close to the outer edge, the top of each support leg 33 is welded to the bottom of the damping support ring 32, and the bottom is connected with the inner bottom of the damping groove 31 through a bolt, the top of the damping support ring 32 is connected with the support plate 23, when the top is impacted, the first high-strength damping pearl wool 21, the second high-strength damping pearl wool 22 and the third high-strength damping pearl wool 24 first dampen, while damping, the second high-strength damping pearl wool 22 and the third high-strength damping pearl wool 24 on the two sides are extruded, while extruding, the damping support ring 32 is driven to move downward, the damping support ring 32 and the support leg 33 made of nickel-based alloy bear a large stress and strain without permanent deformation, and can restore to the original state after the external force disappears;
[0029] Nickel-based alloy has high strength and hardness, good corrosion resistance, oxidation resistance and high temperature resistance, and also has certain elasticity and toughness. In complex working environment, nickel-based alloy can maintain good performance stability. When loading goods, nickel-based alloy can withstand large stress and strain without permanent deformation, and can recover to the original state after the external force disappears. Embodiment
[0030] When the goods are placed on the panel 1, the wooden pallet is in the initial state, and each damping component is in the natural state without force. When the wooden pallet encounters vibration and impact during transportation or handling, the first damping component inside the support wood 3 at the top of the outer edge of the bottom plate 4 on both sides will first play a role. If a vertical impact occurs, the first damping component in the damping groove 31, including the damping support ring 32 and the support leg 33 in the "L" shape structure, will first withstand part of the impact force. Since the bottom of the support leg 33 is connected to the bottom of the damping groove 31 by a bolt, and the material is nickel-based alloy, it has good elasticity and toughness, and will undergo certain elastic deformation when impacted, absorbing and dispersing part of the impact force, while driving the damping support ring 32 to move downward.
[0031] The second damping component at the bottom of the bridge plate 2 will also participate in damping. The first high-strength damping pearl cotton 21 of the center support damping piece and the second high-strength damping pearl cotton 22 of the two side support damping pieces will be extruded. The second high-strength damping pearl cotton 22 is connected to the top of the support plate 23, and the third high-strength damping pearl cotton 24 is pasted on the bottom of the support plate 23 on both sides. When impacted, they will be compressed, thereby absorbing vibration energy.
[0032] The nine shockproof balls located at the top corners of the four sides of the bottom plate 4 and the main line also play a role in the process of vibration and impact. When the wooden pallet is vibrated, the shockproof balls can reduce the impact of vibration on the goods to a certain extent, and because they are evenly distributed, they can help maintain the stability of the goods on the pallet and reduce the possibility of displacement of the goods due to vibration.
[0033] During the entire damping process, the first damping component, the second damping component and the shockproof balls cooperate with each other to effectively absorb and disperse the vibration and impact from all directions. The damping support ring 32 and the support leg 33 made of nickel-based alloy material can recover to the original state after bearing large stress and strain, ensuring the reusability of the wooden pallet.
[0034] When transportation or handling is completed and the external force disappears, each damping component gradually recovers to the original state, the wooden pallet maintains good structural integrity, and the goods can be safely placed on the pallet for subsequent operation or storage.
[0035] The utility model discloses a working procedure:
[0036] In use, the goods are placed on the panel 1, at this time, the wooden pallet is in the initial state, and each damping assembly is in the natural state without force, when the wooden pallet encounters vibration and impact in the transportation or carrying process, the first damping assembly in the support wooden pier 3 at the top of the outer edge of the both sides of the bottom plate 4 first plays a role, if vertical impact is generated, the first damping assembly in the damping groove 31, including the support leg 33 of the " L " type structure and the damping support ring 32, will first bear part of the impact force, because the bottom of the support leg 33 is connected with the bottom of the damping groove 31 through the bolt, and the material is nickel-based alloy, has good elasticity and toughness, and a certain elastic deformation will occur when the impact is received, absorbs and disperses part of the impact force, and drives the damping support ring 32 to move downward simultaneously;The second damping assembly at the bottom of the bridge plate 2 also participates in damping, wherein the first high-strength damping pearl cotton 21 of the center support damping piece and the second high-strength damping pearl cotton 22 of the both sides support damping piece will be extruded, the second high-strength damping pearl cotton 22 bottom is connected with the top of the support plate 23, and the third high-strength damping pearl cotton 24 is pasted on the both sides bottom of the support plate 23, when the impact is received, they will be compressed, thereby absorbing the vibration energy;Nine shockproof balls located at the top corners of the four periphery of the bottom plate 4 and the main line also play a role in the vibration and impact process, when the wooden pallet is vibrated, the shockproof ball can reduce the influence of vibration on the goods to a certain extent, and because it is uniformly distributed, can help to maintain the stability of the goods on the pallet, and reduce the possibility of displacement of the goods due to vibration. In the whole damping process, the first damping assembly, the second damping assembly and the shockproof ball cooperate with each other, effectively absorbing and dispersing the vibration and impact from all directions. The damping support ring 32 and the support leg 33 of the nickel-based alloy material can recover to the original state after bearing a larger stress and strain, ensuring the reusability of the wooden pallet. When the transportation or carrying is finished, the external force disappears, and each damping assembly gradually recovers to the original state, the wooden pallet maintains good structural integrity, and the goods can be safely placed on the pallet for subsequent operation or storage.
[0037] The utility model has been described exemplarily in the above in connection with the drawings, and obviously, the specific implementation of the utility model is not limited by the above mode, as long as this kind of non-essential improvement that the method concept and technical scheme of the utility model are adopted or the concept and technical scheme of the utility model are directly applied to other occasions without improvement are within the protection scope of the utility model.
Claims
1. A wooden pallet with a shock absorbing structure, comprising a face panel (1), a bridge panel (2), a support wooden block (3) and a bottom panel (4), characterized in that: The support pier (3) is located on the top of the bottom plate (4), the bridge plate (2) is located on the top of the support pier (3), the panel (1) is located on the bridge plate (2), the support pier (3) is provided with three groups, three groups of support piers (3) are evenly distributed on the top of the bottom plate (4) near the two side outer edges and the center top of the bottom plate (4), the support pier (3) near the top of the two side outer edges of the bottom plate (4) is provided with a first damping assembly inside, the top of the support pier (3) located at the bottom of the bridge plate (2) is provided with a second damping assembly, and the bottom of the bottom plate (4) is provided with a support damping assembly.
2. The wooden pallet having a shock absorbing structure according to claim 1, wherein: The panel (1) is evenly distributed on the bridge plate (2), the bridge plate (2) and the panel (1) are perpendicular to each other, the second damping assembly comprises a center support damping piece and two side support damping pieces, the center support damping piece comprises a first high-strength damping pearl wool (21), the first high-strength damping pearl wool (21) is located between the bottom of the bridge plate (2) near the center and the top of the support pier (3) near the center, and the first high-strength damping pearl wool (21) is connected by pasting the bridge plate (2) and the support pier (3).
3. The wooden pallet having a shock absorbing structure according to claim 1, wherein: The two side support damping pieces comprise a second high-strength damping pearl wool (22), a support plate (23) and a third high-strength damping pearl wool (24), the second high-strength damping pearl wool (22) is connected with the top of the support plate (23), the third high-strength damping pearl wool (24) is pasted on the two side bottoms of the support plate (23), the bottom of the support plate (23) is connected with the top of the support pier (3) near the top of the two side outer edges of the bottom plate (4), the top of the second high-strength damping pearl wool (22) is connected with the bottom of the bridge plate (2), and the second high-strength damping pearl wool (22) is perpendicular to the bridge plate (2).
4. The wooden pallet having a shock absorbing structure according to claim 3, wherein: The top of the support pier (3) near the top of the two side outer edges of the bottom plate (4) is provided with a damping groove (31), the first damping assembly is located inside the first damping assembly, the first damping assembly comprises a damping support ring (32) and a support leg (33), the support leg (33) is provided in an L-shaped structure, the support leg (33) is provided with three, the three support legs (33) are evenly distributed on the bottom of the damping support ring (32) near the outer edge, the top of each support leg (33) is connected with the bottom of the damping support ring (32) by welding, the bottom of each support leg (33) is connected with the inner bottom of the damping groove (31) by bolts, and the top of the damping support ring (32) is connected with the support plate (23).
5. The wooden pallet having a shock absorbing structure according to claim 4, wherein: The support plate (23) comprises shockproof balls, the shockproof balls are provided with nine, the shockproof balls are evenly distributed on the top corners and the main line of the bottom plate (4), and the shockproof balls are connected with the bottom plate (4) by bolts.
6. The wooden pallet having a shock absorbing structure according to claim 4, wherein: The materials of the damping support ring (32) and the support leg (33) are nickel-based alloy.