Strength-enhanced vehicle-mounted module tray structure
By setting reinforcing ribs and alignment components on the periphery of the blister tray, the problem of insufficient strength of the tray is solved, the stability and stacking reliability of the tray during transportation are achieved, and the safety of the product is ensured without damage.
Patent Information
- Application Number
- CN202422954679.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-29
AI Technical Summary
The outer sides of existing blister trays are relatively weak, which makes them easily deformed when stacked, reducing the reliability of product transportation.
Reinforcing ribs are arranged on the outer periphery of the blister tray body, including a bottom edge, a reinforcing portion and a skirt edge, and an arc portion, an anti-fouling portion and an alignment component are provided on the tray body to enhance the structural strength and stacking stability of the tray.
It effectively prevents the four sides of the pallet from being crushed and deformed due to insufficient strength, ensures the quality of the product during transportation, and ensures that the inner layer of products is not crushed when stacking, making it easy to take out.
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Figure CN223457307U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to packing blister technology field especially is involved in a kind of vehicle-mounted module tray structure of enhanced strength. BACKGROUND
[0002] With the increasing of vehicle-mounted photoelectric module product, blister tray solves the reliability of product transportation, and the packaging of various electronic products is stored using blister tray, and each blister tray is stacked and packed for delivery. Blister tray is made of plastic hard sheet by blister process to form a specific groove, and the product is placed in the groove to protect and beautify the product.
[0003] The strength of the outer side of the blister tray in the prior art is relatively weak, and when the blister trays are stacked, the four edges of the blister tray are easily crushed and deformed, reducing the reliability of product transportation turnover. UTILITY MODEL CONTENT
[0004] The utility model aims at overcoming the insufficient in prior art, provide a kind of vehicle-mounted module tray structure of enhanced strength.
[0005] The utility model aims at overcoming the insufficient in prior art, provide a kind of vehicle-mounted module tray structure of enhanced strength.
[0006] A kind of vehicle-mounted module tray structure of enhanced strength, including: blister tray body, the outer periphery of the blister tray body is equipped with reinforcing rib, the reinforcing rib is around the blister tray body a circle along the outer circumferential direction of the blister tray body, the reinforcing rib includes bottom edge and the reinforcing part on the bottom edge, the reinforcing part is protruding from the surface of the bottom edge, the outer side of the reinforcing part is equipped with apron, the apron extends outward from the bottom of the reinforcing part.
[0007] In one embodiment, the bottom edge has a certain thickness, the reinforcing part is arranged in a convex shape upward from the connection with the bottom edge, the upper end of the reinforcing part is flush with the upper surface of the blister tray body, and the reinforcing rib is integrally formed with the blister tray body.
[0008] In one embodiment, the reinforcing rib is provided with an arc-shaped portion relative to the triangular portion of the blister tray body, the arc-shaped portion is matched with the thickness of the reinforcing rib, the outer side of the arc-shaped portion is arranged in an arc shape, and the arc-shaped portion is used to connect the reinforcing part and the bottom edge of the adjacent two sides of the blister tray body.
[0009] In one embodiment, the reinforcing rib is provided with a foolproof portion relative to a corner of the blister tray body, the outer side of the foolproof portion is arranged in a cut angle, and the foolproof portion is used for foolproof limiting when the blister tray body is stacked.
[0010] In one embodiment, the upper surface of the blister tray body is provided with a placing groove which is recessed downward from the surface of the blister tray body, and the bottom of the blister tray body is provided in a protruding manner relative to the position of the placing groove, and the placing groove is used for placing the vehicle-mounted product.
[0011] In one embodiment, the placing groove is provided with a plurality of placing grooves which are equidistantly distributed along the length direction of the blister tray body, and the bottom of the blister tray body is provided in a protruding manner relative to the position of the plurality of placing grooves.
[0012] In one embodiment, the blister tray body is provided with a positioning assembly on each of the two opposite outer sides relative to the placing groove, and the positioning assembly is used for positioning when the blister tray bodies are stacked, and the positioning assembly comprises a groove provided on the upper surface of the blister tray body, a positioning groove provided on the bottom of the groove, a protruding block located at the bottom of the blister tray body, and a positioning part provided on the protruding block, the groove is recessed downward from the upper surface of the blister tray body, the protruding block is provided relative to the position of the groove, the positioning groove is recessed downward from the bottom of the groove, and the positioning part is provided relative to the position of the positioning groove, the positioning part protrudes from the surface of the protruding block, and when the blister tray bodies are stacked, the protruding block at the bottom of the upper blister tray body and the positioning part are respectively inserted into the groove and the positioning groove of the lower blister tray body.
[0013] In one embodiment, the blister tray body is provided with a plurality of positioning assemblies on each of the two outer sides relative to the placing groove, and the plurality of positioning assemblies on the two sides of the placing groove are equidistantly distributed along the length direction of the blister tray body.
[0014] In one embodiment, the protruding block protrudes from the bottom of the blister tray body by a height greater than the protruding height of the bottom of the blister tray body relative to the position of the placing groove.
[0015] In one embodiment, the two short sides of the blister tray body are provided with finger positions which are recessed downward from the upper surface of the blister tray body.
[0016] Compared with the prior art, the utility model has at least the following advantages:
[0017] The utility model discloses a kind of strength-enhanced vehicle-mounted module tray structures, by being provided with reinforcing rib in suction tray body outside lateral portion, to effectively prevent the four sides of suction tray body from being crushed and deformed due to insufficient strength, so as to guarantee the quality of product in the process of turnover transport. BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the drawings needed to be used in the embodiments will be briefly introduced as follows.
[0019] Figure 1 A top structure schematic view of the strength-enhanced vehicle-mounted module tray structure provided by the utility model is provided.
[0020] Figure 2 A bottom structure schematic view of the strength-enhanced vehicle-mounted module tray structure provided by the utility model is provided.
[0021] BRIEF DESCRIPTION OF DRAWINGS: 10, suction tray body; 11, placing groove; 12, taking groove; 13, finger position; 20, reinforcing rib; 21, bottom edge; 22, reinforcing portion; 23, skirt; 30, arc-shaped portion; 40, foolproof portion; 50, alignment assembly; 51, groove; 52, alignment groove; 53, lug; 54, alignment portion. DETAILED DESCRIPTION
[0022] In order to facilitate understanding of the utility model, the utility model will be more comprehensively described with reference to related drawings as follows.
[0023] A strength-enhanced vehicle-mounted module tray structure, with reference to Figure 1 , comprising suction tray body 10, the outer circumferential side of suction tray body 10 is provided with reinforcing rib 20, reinforcing rib 20 is located at the outside of suction tray body 10, reinforcing rib 20 is around suction tray body 10 a circle along the circumferential direction of suction tray body 10, to form the outside of suction tray body 10.It needs to be explained that reinforcing rib 20 is as the outside of suction tray body 10, to protect each outside edge of suction tray body 10 from being crushed and deformed in transportation or turnover process.
[0024] Specifically, with reference to Figure 1The reinforcing rib 20 comprises a bottom edge 21 and a reinforcing portion 22 arranged on the bottom edge 21, and the reinforcing portion 22 is arranged protruding from the surface of the bottom edge 21, wherein the reinforcing portion 22 is arranged in a convex shape upward from the connection with the bottom edge 21. The outer side of the reinforcing portion 22 is provided with a skirt 23 extending outward from the bottom of the reinforcing portion 22. It should be noted that the skirt 23 is used to prevent the reinforcing portion 22 from tearing, and by arranging the skirt 23 on the outer side of the reinforcing portion 22, the plastic suction tray body 10 can be effectively prevented from tearing the reinforcing portion 22 due to gravity when bearing, thereby prolonging the service life of the plastic suction tray body 10.
[0025] Further, with reference to Figure 1 , the bottom edge 21 has a certain thickness, and the bottom edge 21 is used to support the plastic suction tray body 10 and improve the supporting force of the plastic suction tray body 10. The upper end of the reinforcing portion 22 is arranged flush with the upper surface of the plastic suction tray body 10, and the reinforcing rib 20 is integrally formed with the plastic suction tray body 10. The reinforcing rib 20 can effectively strengthen the strength of each outer side edge of the plastic suction tray body 10, so as not to be easily crushed and deformed during transportation and circulation.
[0026] With reference to Figure 1 , the reinforcing rib 20 is provided with an arc-shaped portion 30 at the triangular portion of the plastic suction tray body 10, wherein the arc-shaped portion 30 is matched with the thickness of the reinforcing rib 20, the outer side of the arc-shaped portion 30 is arranged in an arc shape, and the arc-shaped portion 30 is used to connect the reinforcing portion 22 and the bottom edge 21 of the adjacent two side edges of the plastic suction tray body 10. It should be noted that the arc-shaped portion 30 plays a role in connecting and reducing the impact force, and the arc-shaped portion 30 can buffer when the edge and corner of the plastic suction tray body 10 are impacted, thereby reducing the impact force and avoiding damage to the plastic suction tray body 10.
[0027] With reference to Figure 1 , the reinforcing rib 20 is provided with a foolproof portion 40 at a corner of the plastic suction tray body 10, and the three arc-shaped portions 30 are respectively located at the four corners of the plastic suction tray body 10. The outer side of the foolproof portion 40 is arranged in a cut corner, and the foolproof portion 40 is used to connect the reinforcing portion 22 and the bottom edge 21 of the adjacent two side edges, and is also used for foolproof limiting when the plastic suction tray body 10 is stacked. When the plastic suction tray body 10 is stacked, the foolproof portion 40 of the upper plastic suction tray body 10 is butt jointed with the foolproof portion 40 of the lower plastic suction tray body 10, so as to avoid that the upper and lower plastic suction tray bodies 10 are placed reversely and crush the vehicle-mounted product.
[0028] With reference to Figure 1 and Figure 2The upper surface of the blister tray body 10 is provided with a placing groove 11, which is recessed downward from the surface of the blister tray body 10. The bottom of the blister tray body 10 is protruded relative to the position of the placing groove 11 to adapt to the shape of the placing groove 11. It should be noted that the placing groove 11 is used to place the in-vehicle product. There are multiple placing grooves 11, which are equally distributed along the length direction of the blister tray body 10. The bottom of the blister tray body 10 is protruded relative to the position of the multiple placing grooves 11.
[0029] With reference to Figure 1 , a taking groove 12 is arranged between the two adjacent placing grooves 11. The taking groove 12 is in communication with the two adjacent placing grooves 11, respectively. The taking groove 12 is used to facilitate the placing or taking of the in-vehicle product.
[0030] With reference to Figure 1 and Figure 2 , in order to avoid the case that the upper layer of the blister tray body 10 will press the in-vehicle product in the lower layer of the blister tray body 10 when the blister tray bodies 10 are stacked, the blister tray body 10 is provided with a positioning assembly 50 for stacking alignment on both opposite sides relative to the placing groove 11. The two positioning assemblies 50 are located close to the two long sides of the blister tray body 10, respectively. The positioning assembly 50 is used for alignment when the blister tray bodies 10 are stacked. The positioning assembly 50 comprises a groove 51 arranged on the upper surface of the blister tray body 10, a positioning groove 52 arranged on the groove bottom of the groove 51, a protrusion 53 located on the bottom of the blister tray body 10, and a positioning part 54 arranged on the protrusion 53. The groove 51 is arranged on the upper surface of the blister tray body 10 and is recessed downward from the upper surface of the blister tray body 10. The protrusion 53 is arranged relative to the position of the groove 51. The depth of the recess of the groove 51 on the upper surface of the blister tray body 10 is consistent with the height of the protrusion 53 protruding from the bottom of the blister tray body 10. The positioning groove 52 is arranged on the groove bottom of the groove 51 and is recessed downward from the groove bottom of the groove 51. The positioning part 54 is arranged relative to the position of the positioning groove 52. The positioning part 54 protrudes from the surface of the protrusion 53. The depth of the downward recess of the positioning groove 52 is consistent with the height of the protrusion of the positioning part 54 from the protrusion 53. It should be noted that when the blister tray bodies 10 are stacked, the protrusion 53 and the positioning part 54 on the bottom of the upper layer of the blister tray body 10 are inserted into the groove 51 and the positioning groove 52 on the upper surface of the lower layer of the blister tray body 10, respectively, to support the alignment of the two adjacent blister tray bodies 10. There is a gap between the upper and lower layers of the blister tray bodies 10, so that the upper layer of the blister tray body 10 will not press the in-vehicle product in the lower layer of the blister tray body 10.
[0031] Further, with reference to Figure 1 and Figure 2, the plurality of alignment assemblies 50 on the two sides of the placing groove 11 are equidistantly distributed along the length direction of the blister tray body 10, so as to support the two sides of the plurality of placing grooves 11 when stacked, and to ensure that the vehicle-mounted products in the plurality of placing grooves 11 are not damaged when stacked.
[0032] Further, referring to Figure 1 and Figure 2 , the height of the protruding block 53 protruding from the bottom of the blister tray body 10 is greater than the protruding height of the bottom of the blister tray body 10 relative to the position of the placing groove 11, so that when the blister tray body 10 is stacked, the protrusion of the bottom of the upper blister tray body 10 relative to the placing groove 11 does not contact the vehicle-mounted products in the placing groove 11 of the lower blister tray body 10, so as to ensure that the vehicle-mounted products placed in the lower blister tray body 10 are not damaged.
[0033] Further, referring to Figure 1 , the two short sides of the blister tray body 10 are provided with finger positions 13, and the finger positions 13 are recessed downward from the upper surface of the blister tray body 10, and the finger positions 13 on the two sides of the blister tray body 10 are used for placing the thumbs of the two hands, and the remaining fingers are used to hold the bottom of the blister tray body 10, so as to lift the blister tray body 10.
[0034] Further, the blister tray body 10 is made of PET material.
[0035] The blister tray body 10 of the utility model is provided with the reinforcing ribs 20 on the outer side, so as to effectively prevent the four edges of the blister tray body 10 from being damaged and deformed due to insufficient strength, thereby ensuring the quality of the products in the turnover and transportation process. The blister tray body 10 is provided with a plurality of alignment assemblies 50, so as to align when the blister tray body 10 is stacked, and when the blister tray body 10 is stacked, the upper blister tray body 10 does not damage the vehicle-mounted products in the lower blister tray body 10, the protruding block 53 and the alignment part 54 of the bottom of the upper blister tray body 10 are respectively inserted into the groove 51 and the alignment groove 52 on the upper surface of the lower blister tray body 10, so as to better support the stacked blister tray body 10, and the stacked blister tray body 10 is easy to separate, and the vehicle-mounted products are convenient to take.
[0036] The above-described embodiments only express several implementation manners of the utility model, and the description is more specific and detailed, but it cannot be understood as the limitation of the scope of the utility model patent. It should be noted that for ordinary skilled persons in the art, without departing from the concept of the utility model, a number of modifications and improvements can be made, which belong to the protection scope of the utility model. Therefore, the protection scope of the utility model patent should be subject to the appended claims.
Claims
1. An enhanced strength vehicle module tray structure, characterized by, The application relates to a blister tray body (10) provided with a reinforcing rib (20) on the outer periphery of the blister tray body (10), wherein the reinforcing rib (20) is arranged around the blister tray body (10) along the outer peripheral direction of the blister tray body (10), the reinforcing rib (20) comprises a bottom edge (21) and a reinforcing part (22) arranged on the bottom edge (21), the reinforcing part (22) is arranged in a convex manner on the surface of the bottom edge (21), and the outer side of the reinforcing part (22) is provided with a skirt (23) extending outward from the bottom of the reinforcing part (22). The bottom edge (21) has a certain thickness, the reinforcing part (22) is arranged in a convex manner upward from the connecting position with the bottom edge (21), the upper end of the reinforcing part (22) is flush with the upper surface of the blister tray body (10), and the reinforcing rib (20) is integrally formed with the blister tray body (10).
2. The strength-enhanced vehicle module tray structure of claim 1, wherein, The reinforcing rib (20) is provided with an arc-shaped part (30) at the triangular position relative to the blister tray body (10), the arc-shaped part (30) is matched with the thickness of the reinforcing rib (20), the outer side of the arc-shaped part (30) is arranged in an arc shape, and the arc-shaped part (30) is used for connecting the reinforcing part (22) and the bottom edge (21) of the adjacent two side edges of the blister tray body (10).
3. The strength-enhanced vehicle module tray structure of Claim 2, wherein, The reinforcing rib (20) is provided with a foolproof part (40) at a corner position relative to the blister tray body (10), the outer side of the foolproof part (40) is arranged in a cut corner, and the foolproof part (40) is used for foolproof limiting when the blister tray body (10) is stacked.
4. The strength-enhanced vehicle module tray structure of claim 3, wherein, The upper surface of the blister tray body (10) is provided with a placing groove (11), the placing groove (11) is arranged in a recessed manner downward from the surface of the blister tray body (10), the bottom of the blister tray body (10) is arranged in a convex manner relative to the position of the placing groove (11), and the placing groove (11) is used for placing vehicle-mounted products.
5. The strength-enhanced vehicle module tray structure of Claim 1, wherein, The placing groove (11) is provided in a plurality of forms, the plurality of placing grooves (11) are distributed at equal distances along the length direction of the blister tray body (10), and the bottom of the blister tray body (10) is arranged in a convex manner relative to the positions of the plurality of placing grooves (11).
6. A strength-enhanced vehicle module tray structure according to claim 5, wherein, 7. The strength-enhanced vehicle module tray structure of claim 5, wherein, The blister tray body (10) is provided with a positioning assembly (50) on each of the two opposite outer sides relative to the placing groove (11), the positioning assembly (50) is used for positioning when the blister tray bodies (10) are stacked, the positioning assembly (50) comprises a groove (51) provided on the upper surface of the blister tray body (10), a positioning groove (52) provided on the groove bottom of the groove (51), a protrusion (53) located at the bottom of the blister tray body (10), and a positioning part (54) provided on the protrusion (53), the groove (51) is recessed downward from the upper surface of the blister tray body (10), the position of the protrusion (53) is set relative to the groove (51), the positioning groove (52) is recessed downward from the groove bottom of the groove (51), the position of the positioning part (54) is set relative to the positioning groove (52), the positioning part (54) protrudes from the surface of the protrusion (53), when the blister tray bodies (10) are stacked, the protrusion (53) and the positioning part at the bottom of the upper layer blister tray body (10) are respectively inserted into the groove (51) and the positioning groove (52) of the lower layer blister tray body (10).
8. The strength-enhanced vehicle module tray structure of claim 7, wherein, The blister tray body (10) is provided with a plurality of positioning assemblies (50) on each of the two outer sides relative to the placing groove (11), the plurality of positioning assemblies (50) on the two sides of the placing groove (11) are equidistantly distributed along the length direction of the blister tray body (10).
9. The strength-enhanced vehicle module tray structure of claim 8, wherein, The height of the protrusion (53) protruding from the bottom of the blister tray body (10) is greater than the protruding height of the bottom of the blister tray body (10) relative to the position of the placing groove (11).
10. The strength-enhanced vehicle module tray structure of claim 1, wherein, The blister tray body (10) is provided with a finger position (13) on each of the two short sides, the finger position (13) is recessed downward from the upper surface of the blister tray body (10).