Glass transfer rack
By designing movable and pivotable limiting components, as well as retractable base frames and side supports, the problem of high transportation costs for curved glass in existing technologies has been solved, enabling low-cost and efficient transportation of glass products of different specifications.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO CIMC LOGISTICS EQUIP CO LTD
- Filing Date
- 2025-05-23
- Publication Date
- 2026-06-02
AI Technical Summary
In the existing technology, the transportation of curved glass requires a variety of transfer racks, which increases the transportation cost. Moreover, the existing transfer racks are usually of fixed size and cannot be adapted to glass products of different specifications.
A glass transfer rack has been designed, including movable and pivotable limiting components, combined with a retractable base and side supports, which can accommodate glass products of different sizes, expand the storage range, and reduce space occupation through a foldable structure.
This has resulted in reduced transportation costs for glass products, expanded the range of applicable specifications, and improved transportation efficiency and space utilization.
Smart Images

Figure CN224312200U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates generally to the technical field of glass packaging and transportation, and more specifically to a glass transfer rack. Background Technology
[0002] Automotive glass is typically curved, requiring packaging during transport to prevent breakage. Current methods for transporting curved glass usually involve first creating a foam packaging unit adapted to the curved glass, then placing the glass inside. This necessitates the creation of a foam mold for each type of curved glass, increasing both material consumption and transportation costs.
[0003] In existing technologies, curved glass can also be transported using transfer racks. However, transfer racks are usually of fixed size and can only transport glass products of a single specification or a few specifications. This requires the use of multiple transfer racks to transport glass products of different specifications, which increases the transportation cost of glass products. Utility Model Content
[0004] The utility model description section introduces a series of simplified concepts, which will be further explained in detail in the detailed description section. This utility model description section is not intended to limit the key features and essential technical features of the claimed technical solution, nor is it intended to determine the scope of protection of the claimed technical solution.
[0005] To at least partially solve the above problems, this utility model provides a glass transfer rack, the glass transfer rack comprising:
[0006] Base frame;
[0007] Side bracket, the side bracket being disposed on the base frame;
[0008] A first limiting assembly, movably connected to the base frame along a first horizontal direction, the first limiting assembly supporting the glass article, and the first limiting assembly including a plurality of first limiting teeth spaced apart along a second horizontal direction perpendicular to the first horizontal direction for limiting the glass article along the second horizontal direction; and
[0009] The second limiting component is pivotally connected to the side bracket about a first pivot axis parallel to the second horizontal direction. The second limiting component includes a plurality of second limiting teeth spaced apart along the second horizontal direction for limiting the glass article along the second horizontal direction.
[0010] The base frame is telescopically oriented along the first horizontal direction, and the side support is telescopically oriented along the height direction.
[0011] According to the glass transfer rack of this utility model, the first limiting component is movably connected to the base frame along the first horizontal direction, and the second limiting component is pivotally connected to the side support, thereby limiting glass products of different sizes along the first horizontal direction. The telescopic arrangement of the base frame and the side support can further expand the specification range of glass products accommodated by the glass transfer rack, thereby reducing the transportation cost of glass products.
[0012] Optionally, the base frame includes a bottom longitudinal beam extending along the first horizontal direction; the first limiting component includes at least two support beams arranged along the first horizontal direction, and the first limiting tooth is disposed on the support beam; the end of the support beam is provided with an adjustment port, and the support beam is sleeved onto the bottom longitudinal beam through the adjustment port.
[0013] Optionally, the base frame further includes support legs, a bottom crossbeam, and a first telescopic rod. The support legs are arranged at the four corners of the base frame, and the side brackets are connected to the support legs. The bottom crossbeam is disposed at the end of the bottom longitudinal beam and connected to the support legs. The first telescopic rod extends along the first horizontal direction, with a first end connected to the support leg and a second end passing through the bottom longitudinal beam. The first telescopic rod is fixed to the bottom longitudinal beam by fasteners.
[0014] Optionally, the side support includes a first upright, a first telescopic column, a first connecting beam, and a second connecting beam. The first upright is connected to the base frame, and the first telescopic column extends to the top of the first upright and is fixed to the first upright with fasteners. The first connecting beam is connected to the first upright, and the second connecting beam is connected to the first telescopic column.
[0015] Optionally, the glass transfer frame further includes a back frame and a third limiting component. The back frame is arranged along the second horizontal direction on at least one side of the base frame, and the third limiting component is disposed on the back frame to prevent the glass product from detaching from the glass transfer frame along the second horizontal direction.
[0016] Optionally, the back frame includes a second upright, a second telescopic column, a third connecting beam, and a top beam. The second upright is connected to the base frame and the second upright is also connected to the third limiting component. The second telescopic column passes through the second upright and is fixed to the second upright by fasteners. The third connecting beam is connected to the second upright, and the top beam is connected to the second telescopic column.
[0017] Optionally, the back frame further includes a second telescopic rod, the first end of which extends along the first horizontal direction and passes through the top beam and is fixed to the top beam by fasteners, and the second end of the second telescopic rod is used to be fixed to the first telescopic column by fasteners.
[0018] Optionally, the second column is provided with a first connector, and the third limiting component includes a back stop and an elastic support. The elastic support is connected to the back stop, and the back stop is provided with mounting holes spaced apart along the length direction of the back stop. The first connector of the back stop fixes the elastic support through the cooperation of fasteners and the mounting holes.
[0019] Optionally, the first column is provided with a second connector, the top of the support leg is provided with a plug-in post for passing through the first column, and the side of the support leg is provided with a limiting groove extending along the height direction. The second connector is connected to the support leg through the cooperation of a fastener and the limiting groove, so that the first column is movable relative to the support leg along the height direction, and the first column is rotatably connected to the support leg; and / or
[0020] The second column is rotatably connected to the bottom longitudinal beam.
[0021] Optionally, the first limiting component further includes a first support member made of rubber material, the first support member being disposed on the top of the support beam, and the top of the first support member being configured to form the first limiting tooth.
[0022] Optionally, the top of the support beam is configured to form a first positioning groove, and the bottom of the first support member is configured to form a first positioning block, the first positioning block being disposed in the first positioning groove, such that the first support member is connected to the support beam; and / or
[0023] The first support member is bonded to the top surface of the support beam.
[0024] Optionally, the second limiting component includes a side stop, a first support arm, and a second support arm. The second limiting tooth is disposed on the side stop. A first end of the first support arm is connected to the side stop, and a second end of the first support arm is pivotally connected to the first connecting beam about the first pivot axis. A first end of the second support arm is rotatably connected to the first support arm about a second pivot axis parallel to the first pivot axis, and a second end of the second support arm is movably connected to the first column along the height direction.
[0025] Optionally, the second limiting component further includes a slide rail and a slider, the slide rail being disposed on the first column and extending along the height direction; the slider being fitted into the slide rail, and the second end of the second support arm being connected to the slider by a fastener.
[0026] Optionally, the second limiting component further includes a third telescopic rod, the first end of which is connected to the side stop bar, and the second end of which passes through the first support arm, and the first support arm is fixed to the third telescopic rod by fasteners.
[0027] Optionally, the second limiting component further includes a third connector and a fourth connector, the third connector being connected to the third telescopic rod and the fourth connector being connected to the side stop; the third connector and the fourth connector are attached to each other and fixed by fasteners.
[0028] Optionally, the second limiting component further includes a second support member made of the rubber material, the second support member being disposed on the side stop bar, and the side structure of the second support member forming the second limiting tooth.
[0029] Optionally, the side portion of the side stop bar forms a second positioning groove, and the side portion of the second support member forms a second positioning block, the second positioning block being disposed in the second positioning groove, such that the second support member is connected to the side stop bar; and / or
[0030] The second support member is bonded to the side wall of the side stop.
[0031] Optionally, the glass transfer frame further includes an upper stop assembly disposed above the second limiting assembly. The upper stop assembly includes an upper stop arm and a third support member. The first end of the upper stop arm is rotatably connected to the second connecting beam about a third pivot axis parallel to the first pivot axis. The second end of the upper stop arm is connected to the third support member, which is constructed of rubber material.
[0032] Optionally, the upper stop assembly further includes a fourth telescopic rod, the first end of which is rotatably connected to the second connecting beam about a radius parallel to the third pivot axis, the second end of which passes through the upper stop arm, and the fourth telescopic rod is fixed to the upper stop arm by fasteners. Attached Figure Description
[0033] The following drawings, which illustrate embodiments of the present invention, are incorporated herein as part of the present invention for understanding the invention. The drawings show embodiments of the present invention and their descriptions, serving to explain the principles of the present invention. In the drawings,
[0034] Figure 1This is a three-dimensional schematic diagram of a glass transfer rack according to a preferred embodiment of the present invention;
[0035] Figure 2 for Figure 1 A three-dimensional schematic diagram of a glass transfer rack accommodating glass products;
[0036] Figure 3 for Figure 1 A three-dimensional schematic diagram of the glass transfer rack in its extended state;
[0037] Figure 4 for Figure 1 A 3D diagram of the glass transfer rack in a folded state;
[0038] Figure 5 for Figure 1 A three-dimensional schematic diagram of the base frame of the glass transfer rack in the diagram;
[0039] Figure 6 For the first limiting component along Figure 5 A schematic diagram of the cross-section intercepted by the centerline AA;
[0040] Figure 7 for Figure 1 A three-dimensional schematic diagram of the side support of the glass transfer rack in the diagram;
[0041] Figure 8 for Figure 7 A three-dimensional schematic diagram of the side support from the rear view;
[0042] Figure 9 for Figure 8 An enlarged schematic diagram of part B in the diagram;
[0043] Figure 10 for Figure 1 A three-dimensional diagram of the glass transfer rack in its retracted state; and
[0044] Figure 11 for Figure 1 A three-dimensional schematic diagram of the glass transfer rack in its extended state.
[0045] Explanation of reference numerals in the attached figures
[0046] 100: Glass transfer rack; 110: Base frame
[0047] 111: Bottom longitudinal beam; 112: Support leg
[0048] 113: Bottom crossbeam; 114: First telescopic rod
[0049] 115: Forklift frame 116: Fork slot
[0050] 117: Limiting groove; 118: Insertion post
[0051] 120: First limiting component; 121: First limiting tooth
[0052] 122: Support beam; 123: Adjustment port
[0053] 124: First support member; 125: First positioning groove
[0054] 126: First positioning block; 130: Side bracket
[0055] 131: First upright post; 132: First telescopic post
[0056] 133: First connecting beam; 134: Second connecting beam
[0057] 135: Second connector; 140: Back frame
[0058] 141: Second upright post; 142: Second telescopic post
[0059] 143: Third connecting beam; 144: Top beam
[0060] 145: Second telescopic rod; 146: First connecting piece
[0061] 150: Second limiting component; 151: Second limiting tooth
[0062] 152: Side stop bar; 153: First support arm
[0063] 154: Second support arm; 155: Slide rail
[0064] 156: Slider 157: Third telescopic rod
[0065] 158: Third connector 159: Fourth connector
[0066] 160: Second support component; 170: Upper support assembly
[0067] 171: Upper stop arm; 172: Third support component
[0068] 173: Fourth telescopic rod; 180: Third limit assembly
[0069] 181: Backrest 182: Elastic Support
[0070] 183: Mounting hole; 190: Fastening bolt.
[0071] 191: Flexible pin; 192: Adjustment hole
[0072] 193: Pin; 194: Glassware
[0073] 136: Fifth connector AX1: First pivot axis
[0074] AX2: Second pivot axis; AX3: Third pivot axis
[0075] D1: First horizontal direction; D2: Second horizontal direction
[0076] D3: Height direction Detailed Implementation
[0077] In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that embodiments of the present invention may be practiced without one or more of these details. In other instances, certain technical features well-known in the art have not been described in order to avoid confusion with embodiments of the present invention.
[0078] In this document, ordinal numbers such as "first" and "second" used in this invention are merely identifiers and do not have any other meaning, such as a specific order. Moreover, for example, the term "first component" does not imply the existence of "second component," and the term "second component" does not imply the existence of "first component."
[0079] In this article, terms such as "up," "down," "front," "back," "left," and "right" are used only to indicate the relative positional relationship between related parts, rather than to define the absolute position of these related parts.
[0080] In this document, terms such as “equal” and “same” are not strict mathematical and / or geometric limitations, but also include errors that are understandable to those skilled in the art and permissible in manufacturing or use.
[0081] Unless otherwise stated, the numerical ranges in this document include not only the entire range within its two endpoints, but also the subranges contained therein.
[0082] Figure 1A glass transfer rack 100 according to the present invention is shown, including a base frame 110, a side support 130, a first limiting component 120, and a second limiting component 150. The side support 130 is disposed on the base frame 110. The first limiting component 120 is movably connected to the base frame 110 along a first horizontal direction D1, and the first limiting component 120 is used to support a glass article 194. The first limiting component 120 includes a plurality of first limiting teeth 121 spaced apart along a second horizontal direction D2 perpendicular to the first horizontal direction D1, for limiting the glass article 194 along the second horizontal direction D2. The second limiting component 150 is pivotally connected to the side support 130 about a first pivot axis AX1 parallel to the second horizontal direction D2. The second limiting component 150 includes a plurality of second limiting teeth 151 spaced apart along the second horizontal direction D2, for limiting the glass article 194 along the second horizontal direction D2.
[0083] The base frame 110 is designed to be telescopically mounted along the first horizontal direction D1, and the side support 130 is designed to be telescopically mounted along the height direction D3.
[0084] According to the glass transfer rack 100 of this utility model, the first limiting component 120 is movably connected to the base frame 110 along the first horizontal direction D1, and the second limiting component 150 is pivotally connected to the side support 130, thereby limiting glass products 194 of different sizes along the first horizontal direction D1. The telescopic arrangement of the base frame 110 and the side support 130 can further expand the specification range of the glass products 194 accommodated by the glass transfer rack 100, thereby reducing the transportation cost of the glass products 194.
[0085] Figure 2 This illustrates how the glass transfer rack 100 according to the present invention accommodates glass articles 194, while Figure 1 and Figure 2 The glass transfer rack 100 is mainly used for accommodating and transporting small-sized glass products 194. Figure 3 The glass transfer rack 100 is in an extended state, which can accommodate larger glass products 194, further expanding the range of specifications that the glass transfer rack 100 can accommodate and transport glass products 194.
[0086] In addition, such as Figure 4 As shown, when not in use, the side support 130 (and the back frame 140 described in detail below) of the glass transfer rack 100 according to this utility model can be folded to reduce the space occupied by the glass transfer rack 100 and facilitate the stacking, storage and transportation of multiple glass transfer racks 100.
[0087] The following is combined with the appendix Figures 5 to 11 The detailed structure of the glass transfer rack 100 according to this utility model is described below.
[0088] Specifically, the structure of the base frame 110 and the first limiting component 120.
[0089] Reference Figure 5 The base frame 110 includes a bottom longitudinal beam 111 extending along a first horizontal direction D1. The first limiting assembly 120 includes at least two support beams 122 arranged along the first horizontal direction D1, the support beams 122 extending along a second horizontal direction D2, and a first limiting tooth 121 disposed on the support beam 122. Both ends of the support beam 122 are provided with adjustment ports 123, and the two ends of the support beam 122 are respectively fitted onto the two bottom longitudinal beams 111 through the adjustment ports 123, so that the two support beams 122 can be movable relative to the base frame 110 along the first horizontal direction D1, thereby adapting the glass transport rack to limit glass products 194 of different sizes along the first horizontal direction D1.
[0090] Optionally, the base frame 110 further includes four support legs 112, four bottom crossbeams 113, two bottom longitudinal beams 111, and four first telescopic rods 114. The four support legs 112 are respectively located at the four corners of the base frame 110, and the side supports 130 are connected to the support legs 112. The two bottom crossbeams 113 are respectively located at both ends of the bottom longitudinal beams 111 and connected to the support legs 112, and the other two bottom crossbeams 113 are respectively located at both ends of the bottom longitudinal beams 111 and positioned between the two bottom longitudinal beams 111. The four first telescopic rods 114 are respectively located at both ends of the two bottom longitudinal beams 111, and the first telescopic rods 114 extend along a first horizontal direction D1. The first end of the first telescopic rod 114 is connected to the support leg 112, and the second end of the first telescopic rod 114 passes through the bottom longitudinal beam 111, thereby allowing the support leg 112 to move relative to the bottom longitudinal beam 111 along the first horizontal direction D1. The first telescopic rod 114 is fixed to the bottom longitudinal beam 111 by fasteners. Specifically, the first telescopic rod 114 is provided with a plurality of adjustment holes 192 along the first horizontal direction D1, and the bottom longitudinal beam 111 is provided with elastic pins 191. Through the cooperation of the elastic pins 191 and the adjustment holes 192, the first telescopic rod 114 and the bottom longitudinal beam 111 can be fixed together when the telescopic amount is different, so as to adjust the length of the base frame 110 along the first horizontal direction D1 and accommodate glass products 194 of different lengths and sizes.
[0091] Combination Figure 3 As shown, the base frame 110 also includes two forklift frames 115, which are respectively connected to the bottom surfaces of the two bottom longitudinal beams 111. The forklift frames 115 are in the shape of a "mountain" and thus form two fork slots 116 arranged along the first horizontal direction D1 with the bottom longitudinal beams 111, which facilitates the use of forklifts by workers to pick up and transport the glass transfer rack 100.
[0092] Optionally, the first limiting component 120 further includes a first support member 124 made of rubber material. The first support member 124 is disposed on the top of the support beam 122, and the top of the first support member 124 is configured to form first limiting teeth 121. Therefore, the first support member 124 can flexibly support the glass product 194, thereby protecting the glass product 194. Specifically, the first support member 124 is elongated and extends along the second horizontal direction D2, and a plurality of first limiting teeth 121 are formed on the first support member 124 at intervals along the second horizontal direction D2, so that the glass transfer rack 100 can accommodate and limit the plurality of glass products 194 arranged at intervals along the second horizontal direction D2. Optionally, the first limiting teeth 121 and the first support member 124 are integrally formed, which facilitates processing and manufacturing.
[0093] Optionally, refer to Figure 6 The top of the support beam 122 forms a first positioning groove 125, and the cross-section of the first positioning groove 125 perpendicular to the second horizontal direction D2 is inverted T-shaped. The bottom of the first support member 124 forms a first positioning block 126, and the cross-section of the first positioning block 126 perpendicular to the second horizontal direction D2 is also inverted T-shaped. The first positioning block 126 is disposed in the first positioning groove 125. Through the cooperation of the first positioning block 126 and the first positioning groove 125, the first support member 124 is connected to the support beam 122, thereby making the first support member 124 less likely to detach from the support beam 122, making it more stable, and providing a stable protective effect for the glass product 194. In addition, referring to... Figure 5 The first support member 124 can also be fixed to the support beam 122 by fasteners (such as fastening bolts 190) for greater stability.
[0094] As an alternative, the first support member 124 can also be bonded to the top surface of the support beam 122, which is convenient for installation and also has good stability.
[0095] Specifically, the structure of the side bracket 130 and the second limiting component 150.
[0096] like Figure 1 As shown, the glass transfer rack 100 includes two side supports 130, which are respectively arranged at both ends of the base frame 110 along the first horizontal direction D1, so as to limit the glass product 194 at both ends.
[0097] Taking a single side bracket 130 as an example. (Refer to...) Figure 7The side support 130 includes two first uprights 131, two first telescopic columns 132, two first connecting beams 133, and a second connecting beam 134. The two first uprights 131 are spaced apart along a second horizontal direction D2, and the first uprights 131 extend along a height direction D3, with their bottom ends connected to the base frame 110. The first telescopic columns 132 extend along the height direction D3 to the top of the first uprights 131, allowing the first telescopic columns 132 to be movable relative to the first uprights 131 along the height direction D3. The first telescopic columns 132 are provided with a plurality of adjustment holes 192 arranged along the height direction D3 (see...). Figure 3 The first column 131 is equipped with an elastic pin 191, which, through the cooperation of the elastic pin 191 and the adjustment hole 192, enables the first telescopic column 132 to be fixedly connected to the first column 131 at different heights, thereby adjusting the height of the side support 130. Two first connecting beams 133 are spaced apart along the height direction D3, and both ends of the first connecting beams 133 are connected to the two first columns 131 respectively. The two ends of the second connecting beam 134 are connected to the two first telescopic columns 132 respectively.
[0098] The side support 130 has a simple and stable structure and can be adjusted according to glass products 194 with different width dimensions (along the height direction D3).
[0099] Optionally, refer to Figure 5 and Figure 7 The bottom end of the first column 131 is provided with a second connector 135, which is plate-shaped and extends below the first column 131. The top of the support leg 112 is provided with a plug-in post 118 for passing through the first column 131, and the side of the support leg 112 is provided with a limiting groove 117 extending along the height direction D3. The second connector 135 is connected to the support leg 112 through the cooperation of a fastening bolt 190 and the limiting groove 117, thereby allowing the first column 131 to move relative to the support leg 112 along the height direction D3, and the first column 131 to be rotatably connected to the support leg 112. When the bottom end of the first column 131 is fitted onto the plug-in post 118 on the support leg 112, the fastening bolt 190 is tightened, allowing the first column 131 to extend along the height direction D3 and be fixed to the support leg 112. At this time, the glass transfer rack 100 is in use; combined with Figure 4 As shown, when the glass transfer rack 100 is idle, the staff loosens the fastening bolts 190 and moves the first column 131 upward until the first column 131 is disengaged from the plug-in column 118 on the support leg 112, and then rotates the entire side bracket 130 so that the side bracket 130 can be folded above the base frame 110 for easy storage of the glass transfer rack 100.
[0100] Reference Figure 7The second limiting assembly 150 includes a side stop 152, two first support arms 153, and two second support arms 154. A second limiting tooth 151 is disposed on the side stop 152. The two first support arms 153 are respectively disposed at both ends of the first connecting beam 133. The first end of the first support arm 153 is connected to the side stop 152, and the second end of the first support arm 153 is pivotally connected to the first connecting beam 133 around the first pivot axis AX1. Thus, by adjusting the pivot angle of the first support arm 153, the side stop 152 can be fitted to the side edge of glass products 194 of different lengths (along the first horizontal direction D1).
[0101] To keep the first support arm 153 stable at different pivot angles, the second limiting assembly 150 provides a second support arm 154 to support the first support arm 153. The first end of the second support arm 154 is rotatably connected to the first support arm 153 about a second pivot axis AX2 parallel to the first pivot axis AX1. Figure 8 As shown, the second end of the second support arm 154 is movably connected to the first column 131 along the height direction D3, so that the second support arm 154 can be adjusted according to the different pivot angles of the first support arm 153.
[0102] In detail, combined Figure 9 As shown, the second limiting assembly 150 also includes a slide rail 155 and a slider 156. The slide rail 155 is disposed on the side wall of the first column 131 and extends along the height direction D3. The slider 156 is fitted into the slide rail 155. The second end of the second support arm 154 is connected to the slider 156 by a fastening bolt 190. This allows the second support arm 154 to be fastened to different heights as the first support arm 153 is adjusted. By tightening the fastening bolt 190, the second end of the second support arm 154 and the slider 156 are securely clamped on the inner and outer sides of the slide rail 155, thereby allowing the second support arm 154 to stably support the first support arm 153.
[0103] Optionally, refer to Figure 7 The second limiting assembly 150 also includes a third telescopic rod 157. The first end of the third telescopic rod 157 is connected to the side stop 152, and the second end of the third telescopic rod 157 extends through the first support arm 153, thereby allowing the distance between the side stop 152 and the first support arm 153 to be adjusted. The third telescopic rod 157 is provided with multiple adjusting holes 192 (not shown in the figure) arranged along the extension direction of the third telescopic rod 157, so that the first support arm 153 is fixed to the third telescopic rod 157 by the cooperation of the elastic pin 191 and the adjusting holes 192, making operation convenient.
[0104] Optionally, the second limiting assembly 150 further includes a third connector 158 and a fourth connector 159. The third connector 158 is connected to the third telescopic rod 157. The fourth connector 159 is connected to the side stop 152. The third connector 158 and the fourth connector 159 are attached to each other and fixed by a fastening bolt 190, thereby fixing the side stop 152 to the third telescopic rod 157. In addition, by rotating the side stop 152 to different angles relative to the third telescopic rod 157 and then tightening the fastening bolt 190, the angle of the side stop 152 can be adjusted so that the second limiting tooth 151 can better engage with the side edge of the glass product 194.
[0105] Optionally, the second limiting assembly 150 further includes a second support member 160 made of rubber material. The second support member 160 is disposed on the side stop 152, and the side structure of the second support member 160 forms a plurality of second limiting teeth 151 arranged at intervals along the second horizontal direction D2, thereby limiting the glass product 194 along the second horizontal direction D2 and abutting and limiting the side edge of the glass product 194 along the first horizontal direction D1, so that the glass transfer rack 100 can accommodate and limit the plurality of glass products 194 arranged at intervals along the second horizontal direction D2. Optionally, the second limiting teeth 151 and the second support member 160 are integrally formed for easy processing and manufacturing.
[0106] Optionally, similar to the connection between the first support member 124 and the support beam 122, refer to Figure 6 The side structure of the side stop 152 forms a second positioning groove, and the cross-section of the second positioning groove perpendicular to the second horizontal direction D2 is inverted T-shaped. The bottom structure of the second support member 160 forms a second positioning block, and the cross-section of the second positioning block perpendicular to the second horizontal direction D2 is also inverted T-shaped. The second positioning block is disposed in the second positioning groove. Through the cooperation of the second positioning block and the second positioning groove, the second support member 160 is connected to the side stop 152, thereby making the second support member 160 less likely to detach from the side stop 152, making it more stable, and providing a stable protective effect for the glass product 194. In addition, refer to... Figure 7 The second support 160 can also be fixed to the side stop 152 by fasteners (such as fastening bolts 190) for greater stability.
[0107] As an alternative, the second support 160 can also be glued to the side wall of the side stop 152, which is convenient for installation and also has good stability.
[0108] Optionally, refer to Figure 7The glass transfer rack 100 also includes an upper stop assembly 170 disposed above the second limiting assembly 150. The upper stop assembly 170 is used to overlap the top of the glass product 194, thereby cooperating with the first support member 124 to stabilize the glass product 194 along the height direction D3. The upper stop assembly 170 includes an upper stop arm 171 and a third support member 172. The first end of the upper stop arm 171 is rotatably connected to the second connecting beam 134 about a third pivot axis AX3 parallel to the first pivot axis AX1. The second end of the upper stop arm 171 is connected to the third support member 172. The third support member 172 is constructed of rubber material, so that the glass product 194 can be stabilized by the weight of the third support member 172, preventing the glass product 194 from being thrown or jumping during transportation. Moreover, since the third support member 172 is relatively soft, it is beneficial to protect the glass product 194.
[0109] Furthermore, the upper stop assembly 170 also includes a fourth telescopic rod 173. The first end of the fourth telescopic rod 173 is rotatably connected to the second connecting beam 134 about a third pivot axis AX3 parallel to it. The second end of the fourth telescopic rod 173 passes through the upper stop arm 171, thereby allowing adjustment of the distance between the third support member 172 and the side bracket 130, suitable for glass products 194 of different sizes. In addition, the fourth telescopic rod 173 is provided with a plurality of adjustment holes 192 (not shown in the figure) along its own length direction, and the upper stop arm 171 is provided with a spring pin 191. Through the cooperation of the spring pin 191 and the adjustment holes 192, the fourth telescopic rod 173 and the upper stop arm 171 are fixed at different telescopic amounts, thereby adjusting the distance between the third support member 172 and the side bracket 130.
[0110] Reference Figure 1 The glass transfer rack 100 according to this utility model further includes a back frame 140 and a third limiting component 180. The back frame 140 is arranged along the second horizontal direction D2 on one side of the base frame 110. The third limiting component 180 is disposed on the back frame 140 and is used to prevent the glass product 194 from detaching from the glass transfer rack 100 along the second horizontal direction D2, thereby preventing the glass product 194 on the glass transfer rack 100 from tipping over and detaching from the glass transfer rack 100.
[0111] Optionally, refer to Figure 10 and Figure 11The back frame 140 includes two second uprights 141, two second telescopic columns 142, two third connecting beams 143, and a top beam 144. The two second uprights 141 are spaced apart along a first horizontal direction D1, and both are connected to the base frame 110. The second uprights 141 are connected to a third limiting assembly 180. The two second telescopic columns 142 are respectively positioned on the two second uprights 141, with their bottom ends extending through the second uprights 141, thereby allowing the height of the back frame 140 to be adjusted along the height direction D3. The two third connecting beams 143 are spaced apart along the height direction D3, and their two ends are connected to the two second uprights 141 respectively. The top beam 144 is positioned above the second telescopic columns 142, and the upper ends of the two second telescopic columns 142 are connected to the top beam 144, thus making the lifting of the back frame 140 more stable.
[0112] The side of the second telescopic column 142 is provided with a plurality of adjustment holes 192 arranged at intervals along the height direction D3, and the side of the second column 141 is provided with an elastic pin 191. Through the cooperation of the elastic pin 191 and the adjustment holes 192, the second telescopic column 142 can be fixed to the second column 141 when it is raised to different heights along the height direction D3.
[0113] Optionally, the back frame 140 further includes two second telescopic rods 145, which are respectively disposed at both ends of the top beam 144. The first end of each second telescopic rod 145 extends along a first horizontal direction D1 and passes through the top beam 144, while the second end of each second telescopic rod 145 is connected to a first telescopic column 132. Specifically, each second telescopic rod 145 is provided with a plurality of adjustment holes 192 (not shown in the figure) spaced apart along the first horizontal direction D1, thereby allowing the second telescopic rod 145 to be fixed relative to the top beam 144 at different positions along the first horizontal direction D1 through the cooperation of the elastic pin 191 and the adjustment holes 192. The second end of each second telescopic rod 145 is provided with a pin 193, which, in conjunction with… Figure 3 and Figure 7 As shown, a fifth connector 136 is provided on the side of the first telescopic column 132. The second telescopic rod 145 is fixed to the first telescopic column 132 by the insertion and engagement of the pin 193 with the fifth connector 136, making the glass transfer rack 100 more stable.
[0114] Optionally, each second column 141 is provided with two first connectors 146 arranged at intervals along the height direction D3. The third limiting assembly 180 includes a backstop 181 and an elastic support 182. The elastic support 182 is made of rubber and is connected to the backstop 181 to prevent the glass product 194 from being directly tipped over and damaged. Figure 10Four mounting holes 183 are spaced apart in the height direction D3 (some mounting holes 183 can also be constructed as waist holes to meet assembly requirements). The first connecting piece 146 of the back block 181 fixes the elastic support piece 182 by the cooperation of the fastening bolt 190 and the mounting holes 183, thereby realizing the detachable installation between the third limiting component 180 and the back frame 140, which is convenient for installation and adjustment.
[0115] Combination Figure 10 and Figure 11 As shown, when the back frame 140 is in the retracted state, the two higher mounting holes 183 of the back block 181 engage with the two first connectors 146 of the second column 141, so that the third limiting component 180 is at a lower height, suitable for blocking glass products 194 with a smaller width. When the back frame 140 is in the extended state, the two lower mounting holes 183 of the back block 181 engage with the two first connectors 146 of the second column 141, so that the third limiting component 180 is at a higher height, suitable for blocking glass products 194 with a larger width.
[0116] Optionally, the bottom end of the second column 141 can be rotatably connected to the bottom longitudinal beam 111, thereby enabling the back frame 140 to be folded relative to the base frame 110, facilitating the stacking and transportation of the glass transfer rack 100.
[0117] Unless otherwise defined, the technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used herein is for descriptive purposes only and is not intended to limit the scope of the invention. Terms such as “set” appearing herein can refer to either a component being directly attached to another component or a component being attached to another component via an intermediary. A feature described in one embodiment may be applied, alone or in combination with other features, to another embodiment, unless that feature is not applicable in that other embodiment or is otherwise stated.
[0118] This utility model has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative purposes only and are not intended to limit this utility model to the described embodiments. Those skilled in the art will understand that many more variations and modifications can be made based on the teachings of this utility model, and all such variations and modifications fall within the scope of protection claimed by this utility model.
Claims
1. A glass transfer rack, characterized in that, The glass transfer rack includes: Base frame; Side bracket, the side bracket being disposed on the base frame; A first limiting assembly, movably connected to the base frame along a first horizontal direction, the first limiting assembly supporting the glass article, and the first limiting assembly including a plurality of first limiting teeth spaced apart along a second horizontal direction perpendicular to the first horizontal direction for limiting the glass article along the second horizontal direction; and The second limiting component is pivotally connected to the side bracket about a first pivot axis parallel to the second horizontal direction. The second limiting component includes a plurality of second limiting teeth spaced apart along the second horizontal direction for limiting the glass article along the second horizontal direction. The base frame is telescopically oriented along the first horizontal direction, and the side support is telescopically oriented along the height direction.
2. The glass transfer rack according to claim 1, characterized in that, The base frame includes a bottom longitudinal beam extending along the first horizontal direction; the first limiting component includes at least two support beams arranged along the first horizontal direction, and the first limiting tooth is disposed on the support beam; the end of the support beam is provided with an adjustment port, and the support beam is sleeved onto the bottom longitudinal beam through the adjustment port.
3. The glass transfer rack according to claim 2, characterized in that, The base frame also includes support legs, a bottom crossbeam, and a first telescopic rod. The support legs are located at the four corners of the base frame, and the side supports are connected to the support legs. The bottom crossbeam is located at the end of the bottom longitudinal beam and connected to the support legs. The first telescopic rod extends along the first horizontal direction, with its first end connected to the support leg and its second end passing through the bottom longitudinal beam. The first telescopic rod is fixed to the bottom longitudinal beam by fasteners.
4. The glass transfer rack according to claim 3, characterized in that, The side support includes a first upright column, a first telescopic column, a first connecting beam, and a second connecting beam. The first upright column is connected to the base frame. The first telescopic column extends to the top of the first upright column and is fixed to the first upright column by fasteners. The first connecting beam is connected to the first upright column, and the second connecting beam is connected to the first telescopic column.
5. The glass transfer rack according to claim 4, characterized in that, The glass transfer frame further includes a back frame and a third limiting component. The back frame is arranged along the second horizontal direction on at least one side of the base frame, and the third limiting component is disposed on the back frame to prevent the glass product from detaching from the glass transfer frame along the second horizontal direction.
6. The glass transfer rack according to claim 5, characterized in that, The back frame includes a second upright, a second telescopic column, a third connecting beam, and a top beam. The second upright is connected to the base frame and the second upright is also connected to the third limiting component. The second telescopic column passes through the second upright and is fixed to the second upright by fasteners. The third connecting beam is connected to the second upright, and the top beam is connected to the second telescopic column.
7. The glass transfer rack according to claim 6, characterized in that, The back frame also includes a second telescopic rod, the first end of which extends along the first horizontal direction and passes through the top beam and is fixed to the top beam by fasteners, and the second end of the second telescopic rod is used to be fixed to the first telescopic column by fasteners.
8. The glass transfer rack according to claim 6, characterized in that, The second column is provided with a first connector, and the third limiting component includes a back stop and an elastic support. The elastic support is connected to the back stop, and the back stop is provided with mounting holes spaced apart along the length of the back stop. The first connector of the back stop fixes the elastic support through the cooperation of fasteners and the mounting holes.
9. The glass transfer rack according to claim 6, characterized in that, The first column is provided with a second connector, and the top of the support leg is provided with a plug-in post for passing through the first column. The side of the support leg is provided with a limiting groove extending along the height direction. The second connector is connected to the support leg by a fastener and the limiting groove, so that the first column is movable relative to the support leg along the height direction, and the first column is rotatably connected to the support leg; and / or The second column is rotatably connected to the bottom longitudinal beam.
10. The glass transfer rack according to claim 2, characterized in that, The first limiting component further includes a first support member made of rubber material, the first support member being disposed on the top of the support beam, and the top of the first support member being configured to form the first limiting tooth.
11. The glass transfer rack according to claim 10, characterized in that, The top of the support beam forms a first positioning groove, and the bottom of the first support member forms a first positioning block. The first positioning block is disposed in the first positioning groove, such that the first support member is connected to the support beam; and / or The first support member is bonded to the top surface of the support beam.
12. The glass transfer rack according to claim 4, characterized in that, The second limiting component includes a side stop, a first support arm, and a second support arm. The second limiting tooth is disposed on the side stop. The first end of the first support arm is connected to the side stop, and the second end of the first support arm is pivotally connected to the first connecting beam about the first pivot axis. The first end of the second support arm is rotatably connected to the first support arm about the second pivot axis parallel to the first pivot axis, and the second end of the second support arm is movably connected to the first column along the height direction.
13. The glass transfer rack according to claim 12, characterized in that, The second limiting component also includes a slide rail and a slider. The slide rail is disposed on the first column and extends along the height direction. The slider is fitted into the slide rail, and the second end of the second support arm is connected to the slider by a fastener.
14. The glass transfer rack according to claim 12, characterized in that, The second limiting component also includes a third telescopic rod, the first end of which is connected to the side stop bar, and the second end of which passes through the first support arm. The first support arm is fixed to the third telescopic rod by fasteners.
15. The glass transfer rack according to claim 14, characterized in that, The second limiting component also includes a third connector and a fourth connector. The third connector is connected to the third telescopic rod, and the fourth connector is connected to the side stop. The third connector and the fourth connector are attached to each other and fixed by fasteners.
16. The glass transfer rack according to claim 12, characterized in that, The second limiting component further includes a second support member made of rubber material, the second support member being disposed on the side stop bar, and the side structure of the second support member forming the second limiting tooth.
17. The glass transfer rack according to claim 16, characterized in that, The side portion of the side stop bar forms a second positioning groove, and the side portion of the second support member forms a second positioning block. The second positioning block is disposed in the second positioning groove, such that the second support member is connected to the side stop bar; and / or The second support member is bonded to the side wall of the side stop.
18. The glass transfer rack according to claim 4, characterized in that, The glass transfer frame further includes an upper stop assembly disposed above the second limiting assembly. The upper stop assembly includes an upper stop arm and a third support member. The first end of the upper stop arm is rotatably connected to the second connecting beam about a third pivot axis parallel to the first pivot axis. The second end of the upper stop arm is connected to the third support member, which is constructed of rubber material.
19. The glass transfer rack according to claim 18, characterized in that, The upper stop assembly further includes a fourth telescopic rod, the first end of which is rotatably connected to the second connecting beam about a radius parallel to the third pivot axis, the second end of which passes through the upper stop arm, and the fourth telescopic rod is fixed to the upper stop arm by fasteners.