Lining layer pressing device for tire processing
The adjustment structure, consisting of a wear-resistant strip drive roller driven by a servo motor and a servo push rod, solves the problem of low pressing efficiency in existing devices, achieving high-efficiency pressing of tire inner liner layers and adapting to pressing operations with different sizes and process requirements.
Patent Information
- Application Number
- CN202520434612.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-03-13
AI Technical Summary
Existing tire processing inner liner lamination equipment lacks an effective rolling adjustment structure, resulting in low lamination efficiency and inability to achieve effective lamination operations, thus presenting limitations.
The adjustment structure, consisting of a wear-resistant strip drive roller driven by a servo motor and a servo push rod, enables flexible and precise position adjustment of the laminating roller. Combined with the support mechanism and guide rail assembly, it can adapt to tire inner liner lamination operations with different sizes and process requirements.
It improves the rotation efficiency during the inner liner pressing process, enhances the pressing efficiency, and enables effective pressing operations on different tires.
Smart Images

Figure CN223821148U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to tire processing technical field, concretely is a kind of inner liner lamination device for tire processing. BACKGROUND
[0002] Tire is the round annular elasticity rubber product of ground rolling that is equipped on various vehicles or machinery.Usually installed on metal rim, can support vehicle body, buffer external impact, realize contact with road surface and guarantee the driving performance of vehicle, the existing patent a kind of inner liner lamination device for tire processing, patent publication number CN212764898U including bottom plate, the upper side wall of bottom plate is fixedly arranged with fixed frame, the upper side wall of bottom plate is fixedly arranged with placing table, the upper end of placing table is equipped with placing groove, the lower end of placing groove is equipped with cavity, the inside of cavity is fixedly arranged with support mechanism, the upper end of placing groove is provided with tire, the upper end of tire is fixedly arranged with fixed mechanism, the lower side wall of fixed frame is fixedly arranged with crossbeam, the rear end of crossbeam is fixedly arranged with machine case, the inside of machine case is fixedly arranged with motor.The utility model, it is easy to operate, can tire prop open, completely flatten the joint of inner liner, for different size tire can be changed directly by different models of lamination roller, reduce production cost, increase work efficiency.
[0003] For the related technology in the above, the inventor believes that the following defects exist: the existing lamination device lacks effective rolling adjustment structure when in use, which can easily lead to low lamination efficiency when the tire liner is laminated, and cannot realize effective lamination operation, and has limitations, so we propose an inner liner lamination device for tire processing to solve the above problems. UTILITY MODEL CONTENTS
[0004] In view of the deficiencies of the prior art, the utility model provides an inner liner lamination device for tire processing, which solves the problem that the existing lamination device lacks effective rolling adjustment structure when in use, which can easily lead to low lamination efficiency when the tire liner is laminated, and cannot realize effective lamination operation, and has limitations.
[0005] To achieve the above purpose, the utility model is implemented by the following technical solutions: an inner liner lamination device for tire processing, comprising a support mechanism, the main body of the support mechanism is a rectangular plate structure, a horizontal slot is formed in the inside of the support mechanism, and a servo push rod A is fixedly connected in the horizontal slot of the support mechanism;
[0006] The two servo push rods A are oppositely fixedly connected to the left and right sides of the inside of the supporting mechanism, servo push rods A are oppositely fixedly connected to the left and right sides of the inside of the supporting mechanism, the inside output end of the two servo push rods A is fixedly connected with a guide rail assembly, the guide rail assembly is longitudinally arranged, and the guide rail assembly is provided with two guide rail assemblies, the two guide rail assemblies are oppositely arranged, and the outside of the two guide rail assemblies is oppositely fixedly connected with two slider assemblies with protruding structures, the inside of the guide rail assembly is provided with a longitudinal slot, the inside of the longitudinal slot is fixedly connected with a longitudinally arranged servo push rod B, the top end surface of the servo push rod B is fixedly connected with a moving seat, the outside of the moving seat is oppositely fixedly connected with two protruding block assemblies with protruding structures, the inside of the two moving seats is provided with a rotating shaft, the right side of the rotating shaft on the left side is fixedly connected with a pressure roller, and the left side of the rotating shaft on the right side is fixedly connected with a connecting block.
[0007] Preferably, the bottom end surface of the supporting mechanism is fixedly connected with a supporting leg assembly, and the main body of the supporting leg assembly is in a cylindrical structure.
[0008] Preferably, the supporting leg assembly is provided with four supporting leg assemblies, and the four supporting leg assemblies are fixedly connected to the four corner positions of the bottom end surface of the supporting mechanism.
[0009] Preferably, the supporting leg assembly and the supporting block assembly together form a supporting structure for the supporting mechanism, and the top end surface of the supporting mechanism is fixedly connected with a side plate mechanism.
[0010] Preferably, the side plate mechanism is provided with four side plate mechanisms, and each two laterally adjacent side plate mechanisms form a group.
[0011] Preferably, the two side plate mechanisms are oppositely fixedly connected to the front and rear sides of the top end surface of the supporting mechanism.
[0012] Preferably, the outside of the two groups of side plate mechanisms is fixedly connected with a servo motor, the right output shaft of the servo motor is provided with a driving roller, the outer circumferential surface of the driving roller is fixedly connected with a wear-resistant strip in an annular array, and the outside of the driving roller is limited by a carcass.
[0013] The utility model provides a kind of inner liner layer pressing device for tire processing.Compared with prior art, it has the following beneficial effects:
[0014] The inner liner layer pressing device for tire processing drives the driving roller with wear-resistant strip by servo motor, realizes the stable and efficient rolling drive to carcass, changes the condition that effective rolling adjustment structure is lacked in prior art, improves the rotation efficiency of carcass in inner liner layer pressing process, and then improves the pressing efficiency.
[0015] The inner lining pressing device for tire processing can flexibly and accurately adjust the position of the pressing roller in the transverse direction and the longitudinal direction, can adapt to the inner lining pressing operation of tires of different sizes and different process requirements, and realizes effective pressing operation. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a front side view structural schematic diagram of the inner lining pressing device.
[0017] Figure 2 It is a front view structural schematic diagram of the inner lining pressing device.
[0018] Figure 3 It is a guide rail mechanism and sliding block assembly combined structural schematic diagram of the inner lining pressing device.
[0019] Figure 4 It is a top view structural schematic diagram of the inner lining pressing device.
[0020] Figure 5 It is a left view structural schematic diagram of the inner lining pressing device.
[0021] Figure 6 It is a support mechanism and side plate mechanism combined structural schematic diagram of the inner lining pressing device.
[0022] In the figure: 1, support mechanism; 101, leg assembly; 1011, cushion block assembly; 2, side plate mechanism; 201, servo motor; 2011, driving roller; 2012, wear-resistant strip; 2013, tire body; 3, servo push rod A; 301, guide rail assembly; 3011, sliding block assembly; 3012, servo push rod B; 3013, moving seat; 3014, protruding block assembly; 3015, pressing roller; 3016, connecting block. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0024] Please refer to Figures 1-6 The present application provides a technical solution: an inner lining pressing device for tire processing, comprising a support mechanism 1, the main body of the support mechanism 1 is a rectangular plate structure, a horizontal groove is formed in the support mechanism 1, and a servo push rod A 3 is fixedly connected in the horizontal groove.
[0025] The two servo push rods A3 are fixedly connected to the left and right sides inside the supporting mechanism 1 in opposition, the inner side output ends of the two servo push rods A3 are fixedly connected with guide rail assemblies 301, the guide rail assemblies 301 are longitudinally arranged, and the two guide rail assemblies 301 are arranged in opposition, the outer sides of the two guide rail assemblies 301 are fixedly connected with slider assemblies 3011 with two protruding structures in opposition, the inside of the guide rail assembly 301 is provided with a longitudinal slot, the longitudinal slot is fixedly connected with a longitudinally arranged servo push rod B3012, the top end face of the servo push rod B3012 is fixedly connected with a moving seat 3013, the outer side of the moving seat 3013 is fixedly connected with a protruding block assembly 3014 with two protruding structures in opposition, the inner sides of the two moving seats 3013 are both installed with a rotating shaft, the right side of the rotating shaft on the left side is fixedly connected with a pressure covering roller 3015, the left side of the rotating shaft on the right side is fixedly connected with a connecting block 3016, and the connecting block 3016 is inserted into the pressure covering roller 3015.
[0026] Through the cooperative work of the supporting mechanism 1, the servo push rod A3, the guide rail assembly 301, the servo push rod B3012 and other parts, the position of the pressure covering roller 3015 can be flexibly adjusted, so as to meet the pressing needs of the tire inner liner in different situations.
[0027] Referring to Figure 1 , Figure 5 , the bottom end face of the supporting mechanism 1 is fixedly connected with a supporting leg assembly 101, and the main body of the supporting leg assembly 101 is a cylindrical structure.
[0028] The bottom end of the supporting mechanism 1 is fixedly connected with the supporting leg assembly 101, and the cylindrical structure of the supporting leg assembly 101 provides stable support for the supporting mechanism 1.
[0029] Referring to Figure 3 , Figure 4 , the supporting leg assembly 101 is provided with four supporting leg assemblies 101, which are fixedly connected to the four corner positions of the bottom end face of the supporting mechanism 1, and the bottom end face of the four supporting leg assemblies 101 is fixedly connected with a cushion block assembly 1011.
[0030] The four supporting leg assemblies 101 are distributed at the four corners of the bottom end face of the supporting mechanism 1, and the bottom end is connected with the cushion block assembly 1011, which enhances the stability and reliability of the support.
[0031] Referring to Figure 1 , Figure 2 , the supporting leg assembly 101 and the cushion block assembly 1011 together form a support structure for the supporting mechanism 1, and the top end face of the supporting mechanism 1 is fixedly connected with a side plate mechanism 2.
[0032] The support mechanism 1 is stable by forming a support structure with the support leg assembly 101 and the cushion block assembly 1011, and the support mechanism 1 is connected to the side plate mechanism 2 at the top end to provide a basis for subsequent installation of other components.
[0033] Referring to Figure 5 、 Figure 6 , the side plate mechanism 2 is provided with four places, and each two laterally adjacent side plate mechanisms 2 form a group;
[0034] The number and grouping of the side plate mechanism 2 are specified to provide a reference for the subsequent installation and layout of related components.
[0035] Referring to Figure 1 、 Figure 2 , the two side plate mechanisms 2 are fixedly connected to the front and rear sides of the top end surface of the support mechanism 1 in opposition;
[0036] The two side plate mechanisms 2 are fixedly connected to the front and rear sides of the top end surface of the support mechanism 1 in opposition, making the device more symmetrical and stable in structure.
[0037] Referring to Figure 4 、 Figure 5 , the outer sides of the two groups of side plate mechanisms 2 are fixedly connected with servo motors 201, the right side output shaft of the servo motor 201 is provided with a driving roller 2011, the outer circumferential surface of the driving roller 2011 is fixedly connected with a wear-resistant strip 2012 in a ring array, and the outer side of the driving roller 2011 is limited by a carcass 2013;
[0038] The two side plate mechanisms 2 are fixedly connected to the front and rear sides of the top end surface of the support mechanism 1 in opposition, making the device more symmetrical and stable in structure.
[0039] In operation, first, the device is placed in the working area, the support mechanism 1 is kept stable by the support leg assembly 101 and the cushion block assembly 1011 at the bottom end, ensuring that the entire device does not shake during operation, and the cylindrical structure of the support leg assembly 101 and the design of the four distributed corners at the bottom end of the support mechanism 1 cooperate with the cushion block assembly 1011 to enhance the stability and reliability of the support;
[0040] Place the carcass 2013 to be processed on the outer side of the driving roller 2011, and the two groups of side plate mechanisms 2 are fixedly connected to the front and rear sides of the top end surface of the support mechanism 1, respectively, and the servo motors 201 on the outer sides thereof are started, the right side output shaft of the servo motor 201 drives the driving roller 2011 to rotate, and the wear-resistant strip 2012 fixed in a ring array on the outer circumferential surface of the driving roller 2011 increases the friction between the carcass 2013, thereby driving the carcass 2013 to roll, preparing for the inner liner lamination operation;
[0041] When the transverse position of the pressure roller 3015 needs to be adjusted, the servo push rod A3 in the transverse slot inside the support mechanism 1 is started, and because the two servo push rods A3 are fixed opposite to the left and right sides of the support mechanism 1, they are synchronized to stretch and retract, driving the guide rail assembly 301 connected to the inner output end to move in the transverse direction. The guide rail assembly 301 is arranged longitudinally, and the two guide rail assemblies 301 are distributed opposite to each other, which ensures the stability and symmetry of the adjustment.
[0042] After the transverse position of the pressure roller 3015 is determined, if the longitudinal position needs to be adjusted, the servo push rod B3012 in the longitudinal slot inside the guide rail assembly 301 is started. The moving seat 3013 fixed to the top end of the servo push rod B3012 will move in the longitudinal direction as the servo push rod B3012 stretches and retracts. The lug assembly 3014 on the outer side of the moving seat 3013 cooperates with the guide rail assembly 301 to play a guiding and stabilizing role. The pressure roller 3015 (connected through the connecting block 3016) connected to the rotating shaft on the inner side of the moving seat 3013 will move in the longitudinal direction, realizing the accurate adjustment of the longitudinal position of the pressure roller 3015.
[0043] After the position of the pressure roller 3015 is adjusted to the appropriate position, the tire inner liner is placed in the appropriate position, and the driving roller 2011 continuously drives the carcass 2013 to roll. At this time, the pressure roller 3015 performs the pressure operation on the inner liner on the carcass 2013. During the rolling process, the inner liner and the carcass 2013 are fully and effectively pressed together, completing the pressure task of the inner liner for tire processing.
[0044] In summary, the device is provided with a driving roller 2011, which can roll and drive the carcass 2013.
[0045] Meanwhile, the contents not described in detail in the specification all belong to the existing technology known to those skilled in the art.
Claims
1. A tire processing inner liner laminating device, comprising a support mechanism (1), wherein the main body of the support mechanism (1) is a rectangular plate structure, and a transverse groove is provided inside the support mechanism (1), characterized in that: The transverse slot in the support mechanism (1) is fixedly connected to a servo push rod A (3). The servo push rod A (3) is provided in two places. The two servo push rods A (3) are fixedly connected to the left and right sides inside the support mechanism (1) in opposite directions. The inner output end of the two servo push rods A (3) is fixedly connected to the guide rail assembly (301). The guide rail assembly (301) is arranged longitudinally, and there are two guide rail assemblies (301) in total. The two guide rail assemblies (301) are arranged in opposite directions, and the outer sides of the two guide rail assemblies (301) are fixedly connected to two slider assemblies (3011) with protruding structures in opposite directions. The guide rail assembly (301) has a longitudinal groove inside. The longitudinal groove is fixedly connected to a longitudinally arranged servo push rod B (3012). A movable seat (3013) is fixedly connected to the top surface of the servo push rod B (3012). Two protrusion assemblies (3014) with protrusion structures are fixedly connected to the outer side of the movable seat (3013) in opposite directions. A rotating shaft is installed on the inner side of both movable seats (3013). A pressing roller (3015) is fixedly connected to the right side of the rotating shaft on the left side. A connecting block (3016) is fixedly connected to the left side of the rotating shaft on the right side. The connecting block (3016) is inserted into the pressing roller (3015).
2. The tire processing inner liner laminating device according to claim 1, characterized in that: The support mechanism (1) has a leg assembly (101) fixedly connected to its bottom surface. The main body of the leg assembly (101) is a cylindrical structure.
3. The tire processing inner liner laminating device according to claim 2, characterized in that: The outrigger assembly (101) has four parts. The four outrigger assemblies (101) are fixedly connected to the four corners of the bottom surface of the support mechanism (1). The bottom surface of each of the four outrigger assemblies (101) is fixedly connected to a pad assembly (1011).
4. The tire processing inner liner laminating device according to claim 3, characterized in that: The outrigger assembly (101) and the pad assembly (1011) together form a support structure for the support mechanism (1), and a side plate mechanism (2) is fixedly connected to the top surface of the support mechanism (1).
5. The tire processing inner liner laminating device according to claim 4, characterized in that: The side plate mechanism (2) is provided in four places, and each pair of horizontally adjacent side plate mechanisms (2) forms a group.
6. The tire processing inner liner laminating device according to claim 5, characterized in that: The two side plate mechanisms (2) are fixedly connected to the front and rear sides of the top surface of the support mechanism (1) in opposite directions.
7. The tire processing inner liner laminating device according to claim 6, characterized in that: Both sets of side plate mechanisms (2) are fixedly connected to the outer side of a servo motor (201). A drive roller (2011) is installed on the right output shaft of the servo motor (201). Wear-resistant strips (2012) are fixedly connected in a ring array on the outer circumference of the drive roller (2011). A tire body (2013) is limited on the outer side of the drive roller (2011).
Citation Information
Patent Citations
Lining layer pressing device for tire processing
CN212764898U