獨立後部輸入
專用4活塞液壓卡鉗,用於腳刹調節、追蹤制動與後偏置控制。
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賽車系列 · Drift · 後軸 · 雙4活塞
每個後角配備兩個卡鉗。各自負責一項。DR4+4 將手刹輸入與腳刹輸入分離成獨立的液壓與機械回路,因此手刹啟動時不會將壓力倒流到腳刹線或在轉向中改變後制動偏置。
在競技漂移中,手刹是操控轉向的輸入,而非停車裝置。當單個後卡鉗同時服務於手刹機構與液壓腳刹回路時,強拉手刹可能會將液體倒流至主缸,導致踏板感覺變軟,並在車手試圖用追蹤制動進入轉向時使車輛不穩。DR4+4通過為每個輸入提供獨立的卡鉗來解決此問題。
專用4活塞液壓卡鉗,用於腳刹調節、追蹤制動與後偏置控制。
專用4活塞機械卡鉗負責手刹鎖定與釋放,與液壓腳刹回路完全隔離。
劇烈拉手刹不會反饋到腳刹線。踏板壓力、偏置與調節在進入、轉換與退出階段保持一致。
共用Ø325 mm × 12 mm兩片式實心轉子,為每個後角提供一個熱質量,便於緊湊佈局與行為一致。
經熱處理的高碳鐵轉子,配合0–600°C的制動片範圍,確保多次連續測試與對抗中的μ值穩定。
徑向支架、軟管接頭、轉子偏移與輪圈間隙根據您的底盤、轉向節、輪轂與輪圈配置定制。
| 制動卡鉗 | ||
|---|---|---|
| 系列 | 賽車系列——漂移 | |
| 型號 / 適用範圍 | DR4+4 | |
| 軸位置 | 後方 | |
| 卡钳布局 | 雙卡鉗後制動佈局:每個後角配備4活塞液壓卡鉗與4活塞機械手刹卡鉗 | |
| 活塞數量 | 每個後角配備4個手刹活塞與4個液壓活塞 | |
| 活塞類型 | 無塵罩的賽車活塞 | |
| 活塞直徑 | 35 毫米 | |
| 卡鉗尺寸 | 長 178 毫米 × 寬 82 毫米 × 高 106.5 毫米 | |
| 總活塞面積 | 每個後角配備38.46 cm² × 2 | |
| 製造工藝 | 雙片鍛造鋁合金本體 | |
| 淨重 | 每個卡鉗1.41公斤(不含墊片) | |
| 表面處理 | 高溫亮光塗層 | |
| 建議輪圈尺寸 | 17英寸或更大 | |
| 推薦轉子尺寸 | Ø325 毫米 × 12 毫米 | |
| 制動盤 | ||
| 制動盤材質 | 熱處理高碳鑄鐵 | |
| 軸位置 | 後方 | |
| 轉子尺寸 | Ø325 毫米 × 12 毫米 | |
| 結構 | 雙片式轉子組件 | |
| 通風設計 | 實心 | |
| 安裝方式 | 固定 | |
| 轉子帽 | CNC加工高強度鋁合金制動盤帽 | |
| 方向性設計 | 是 — 左右專用 | |
| 轉子面板圖案 | 弧形槽 | |
| 制動皮套 | ||
| 兼容轉子材料 | 鐵/鋼轉子專用 | |
| 工作溫度範圍 | 0–600 °C | |
| 平均摩擦係數 | μ ≈ 0.38,隨溫度、管路壓力和轉子狀況而變化 | |
| 熱床化 | 比賽前必須完成 | |
| 制動管線、支架與維護 | ||
| 制動油管結構 | 三層加強 | |
| 刹車油管材質 | PTFE內襯 / SUS304不銹鋼編織 / PVC外護套 | |
| 卡尺安裝 | 徑向安裝,配合車輛專用卡鉗支架 | |
| 卡尺支架 | CNC加工的碳鋼徑向支架卡鉗支架 | |
| 制動管線接頭 | 車輛專用;卡鉗側和底盤側接頭依應用而異 | |
| 回路佈局 | 後軸具有獨立的液壓腳刹回路與機械手刹回路 | |
| 輪圈空隙 | 需配備17英寸或更大輪圈;最終的輪輻與輪圈間隙需確認,因為雙卡鉗佈局比單卡鉗後制動佈局佔用更多徑向與軸向空間 | |
| 維修項目 | 制動片、密封件與不銹鋼編織軟管為可更換的維修件 | |
DR4+4屬於賽車系列 — Drift平台,非通用螺栓安裝。最終支架幾何形狀、制動管線接頭、轉子偏移與輪圈間隙需在生產前確認,適用於您的底盤、轉向節、輪轂與輪圈配置。
每個後角配備2個後部4活塞液壓卡鉗與2個後部4活塞機械手刹卡鉗
適用於鐵/鋼轉子的後雙卡鉗套件制動片,耐溫範圍0–600°C
2 個後置兩片式實心轉子,直徑 Ø325 mm × 12 mm,曲槽面花紋,左右專用。
專為雙卡鉗後輪佈局設計的車輛專用 CNC 加工碳鋼徑向支架包。
高強度鋁合金轉子帽經CNC加工,與後輪毂幾何和轉子偏移相匹配。
車輛專用不銹鋼 braided 後制動管,內襯 PTFE,SUS304 編織層,PVC 外護套。
每個 DR4+4 後漂移系統都圍繞車輛的後擺臂、輪轂位置、轉子帽偏移、輪圈桶、輻條間隙、手刹液壓佈局、機械手刹包裝、制動管路、後偏心目標和預期漂移用途進行設計。目標不是通用適配,而是提供一個能將手刹輸入與腳刹輸入隔離,並在進入、轉換和串聯行駛中提供可重複的後輪鎖定、踏板反應和調節的後制動包。
我們會審查底盤、後懸吊和擺臂設置、輪轂包、輪圈包、手刹佈局、目標後制動行為、串聯或比賽用途、輪胎包,以及車輛是否使用 OEM 或定制後擺臂。
對於 OEM 擺臂,請提供底盤、年份、擺臂、輪轂、輪圈直徑、輪圈寬度、偏移、輻條輪廓和手刹佈局細節。對於定制後擺臂,請提供 CAD 文件、技術圖紙、輪轂面數據、轉子安裝尺寸或準確的支架安裝點測量值。
TTSPORT 在生產前確認雙卡鉗支架幾何形狀、轉子帽偏移、制動管接頭、機械手刹包裝、輪圈間隙、制動片選擇、磨合要求和安裝注意事項。
如果您不確定您的輪圈、後擺臂、轉子偏移、手刹佈局或制動管路是否適用, 聯繫我們 請在訂購前提供,以便工程團隊審查您的建構細節。
賽車用途。 此系統專為競技漂移、賽道與封閉賽道使用設計。制動片必須完成磨合程序後才能進行激烈駕駛。賽車用活塞不配備塵封,並需定期檢查密封。
它在後軸兩側使用兩個獨立的卡鉗:一個專用的4活塞液壓卡鉗用於腳踏煞車輸入,另一個專用的4活塞機械卡鉗用於手煞車輸入。兩個回路是隔離的,因此用力拉手煞車不會將壓力倒流到腳踏煞車回路或影響後煞車偏置,尤其在過彎中。
DR4+4 以直徑 Ø325 mm × 12 mm 的兩片式轉子為核心設計,需配備 17 吋或更大輪圈。在生產前必須確認最終的輻條和桶體間隙,因為雙卡鉗佈局比單卡鉗後輪佔用更多徑向和軸向空間。
不,這是一個賽車系列 — 漂移平台。卡鉗支架採用徑向安裝,並根據您的特定轉向節、輪轂和制動盤偏移進行加工。卡鉗側和底盤側的制動管接頭也都是特定應用的。請提交您的底盤、轉向節、輪轂和車輪詳情,以便TTSPORT在製造前確認適配性。
所附的煞車片適用於0–600°C的工作溫度,平均摩擦係數約 μ ≈ 0.38。實際的 μ 會根據轉子溫度、油壓和轉子狀況而變化。在比賽使用前,必須進行適當的磨合程序。
是的。定制建造價格適用於非標準的制動盤偏移、支架幾何形狀、軟管布線或表面處理。請聯繫工程團隊提供您的建造清單,TTSPORT將為您報價定制配置。
是的。卡鉗採用兩件式鍛造鋁合金車身,配備賽車用活塞,無塵封,方便在比賽間進行密封維護。制動片、密封件和不銹鋼編織軟管是可更換的維修件,這對耐久性和競技漂移程序至關重要。
請將您的底盤、轉向節、輪轂、車輪詳情、手剎佈局和後懸掛設置發送給TTSPORT,以確認適配性並獲取定制報價。
Brake Kits · Fitment · Installation · Care Guide
A brake kit is not just a pair of larger calipers. Calipers, rotors, pads, hoses, brackets, rotor hats, mounting hardware, brake fluid, wheel clearance, and bedding procedure all work together as one system.
This guide explains how to confirm the right TTSPORT brake kit before ordering, what to check before installation, and how to care for the system after installation.
Do not order a brake kit by vehicle name alone. The correct kit depends on the vehicle, axle position, wheel package, driving use, and brake system layout.
Brake kits are application-specific. A visually similar kit can still have the wrong rotor offset, bracket geometry, hose fitting, caliper position, or wheel clearance requirement.
Different TTSPORT brake kit series use different hardware layouts. Always confirm what the kit includes before purchase.
Use direct-mount calipers and one-piece rotors where specified. These kits do not use rotor hats or caliper brackets unless the final product page clearly states otherwise.
Use separate friction rings and rotor hats. Hat offset, ring bolt pattern, hardware style, and rotor direction must be matched correctly.
May require bespoke brackets, rotor hats, brake lines, and engineering confirmation based on knuckle, hub, wheel, and competition use.
Require extra attention to wheel clearance, tire size, vehicle load, descent control, hose routing, and dust / water exposure.
Do not assume every brake kit includes the same parts. Package contents vary by product series, vehicle application, and final order configuration.
Before finalizing the order, review the kit specification carefully. Confirm the brake kit is matched to your vehicle and wheel setup, not only to the model name.
If any part is not listed in the final order or product page, do not assume it is included.
Inspect every component before installation. Do not modify, grind, drill, stretch, force, or space brake kit components to make them fit.
Safety: Brake kits affect braking force, hydraulic sealing, heat control, wheel clearance, and vehicle stability. Do not install the kit if fitment, torque, direction, clearance, or compatibility is unclear.
Correct installation is as important as the brake kit itself. A properly engineered kit can still perform poorly if installed with dirty mounting faces, incorrect torque, poor hose routing, or trapped air in the hydraulic system.
Verify caliper centering over the rotor and confirm even pad sweep across the friction surface.
Confirm left / right rotor direction if the rotor uses directional vanes or directional face pattern.
Check brake hose length and routing at full steering lock and full suspension travel. No twisting, rubbing, stretching, or kinking.
Check caliper-to-spoke and caliper-to-barrel clearance before road use. Wheel diameter alone is not enough.
Use the correct brake fluid type and bleed the system until pedal feel is firm and consistent.
Torque all brake hardware to the specified value. Do not reuse damaged, unknown, stretched, or corroded safety-critical fasteners.
Brake pads and rotors need a controlled bedding process before full performance is available. Bedding helps create an even transfer layer on the rotor surface, improving bite, pedal consistency, and vibration resistance.
Street pads, race pads, iron rotors, two-piece rotors, and carbon ceramic rotors may require different bedding procedures. Use the procedure supplied with the specific kit.
After installation and bedding, give the system a short break-in period before aggressive use. Pedal feel, pad contact, dust output, and noise may continue to settle after the first drives.
Brake kits need regular inspection, especially after track use, off-road use, towing, mountain driving, winter salt exposure, or any brake service.
Inspect pads, rotors, fluid level, and hose condition during normal service intervals. Prioritize quiet operation, smooth pedal feel, and even wear.
Check pad thickness, rotor surface condition, and fluid condition more often. Long descents create sustained heat even without track use.
Inspect for mud, sand, stone impact, hose abrasion, dust boot damage, and caliper contamination after trail use.
Inspect pads, rotors, fluid, and hardware before and after every event. Track heat shortens service intervals.
Check rear brake temperature, hydraulic handbrake behavior, pad wear, rotor cracking, and hardware condition frequently.
Use only compatible pads and approved bedding procedures. Inspect rotor surface condition carefully and avoid incompatible friction materials.
Do not continue driving if the brake system shows any of the following symptoms. Inspect the system or contact a qualified brake technician before using the vehicle again.
Send your vehicle details, brake kit series, wheel specs, driving use, photos, and any symptoms you notice. TTSPORT will help confirm fitment, installation checks, and the correct care path for your brake kit.
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